WO2017117744A1 - 传输信息的方法和设备 - Google Patents

传输信息的方法和设备 Download PDF

Info

Publication number
WO2017117744A1
WO2017117744A1 PCT/CN2016/070279 CN2016070279W WO2017117744A1 WO 2017117744 A1 WO2017117744 A1 WO 2017117744A1 CN 2016070279 W CN2016070279 W CN 2016070279W WO 2017117744 A1 WO2017117744 A1 WO 2017117744A1
Authority
WO
WIPO (PCT)
Prior art keywords
subframe
information
end device
unit
receiving
Prior art date
Application number
PCT/CN2016/070279
Other languages
English (en)
French (fr)
Inventor
曾元清
Original Assignee
广东欧珀移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=59273117&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO2017117744(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Priority to KR1020187009963A priority Critical patent/KR20180100296A/ko
Priority to EP16882889.5A priority patent/EP3361662B1/en
Priority to US15/772,439 priority patent/US11296856B2/en
Priority to JP2018519047A priority patent/JP6711909B2/ja
Priority to RU2018120193A priority patent/RU2702725C1/ru
Application filed by 广东欧珀移动通信有限公司 filed Critical 广东欧珀移动通信有限公司
Priority to PCT/CN2016/070279 priority patent/WO2017117744A1/zh
Priority to ES16882889T priority patent/ES2814299T3/es
Priority to EP20184317.4A priority patent/EP3742644A1/en
Priority to CN201680055312.XA priority patent/CN108141323B/zh
Priority to CN202010732923.1A priority patent/CN111884789A/zh
Priority to CN202010734540.8A priority patent/CN111885727A/zh
Publication of WO2017117744A1 publication Critical patent/WO2017117744A1/zh
Priority to HK18109117.9A priority patent/HK1249680A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1829Arrangements specially adapted for the receiver end
    • H04L1/1848Time-out mechanisms
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1829Arrangements specially adapted for the receiver end
    • H04L1/1854Scheduling and prioritising arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/14Two-way operation using the same type of signal, i.e. duplex
    • H04L5/1469Two-way operation using the same type of signal, i.e. duplex using time-sharing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/1607Details of the supervisory signal
    • H04L1/1628List acknowledgements, i.e. the acknowledgement message consisting of a list of identifiers, e.g. of sequence numbers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/1607Details of the supervisory signal
    • H04L1/1657Implicit acknowledgement of correct or incorrect reception, e.g. with a moving window
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1867Arrangements specially adapted for the transmitter end
    • H04L1/1887Scheduling and prioritising arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • H04L5/0055Physical resource allocation for ACK/NACK
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/14Two-way operation using the same type of signal, i.e. duplex
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/14Two-way operation using the same type of signal, i.e. duplex
    • H04L5/143Two-way operation using the same type of signal, i.e. duplex for modulated signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling

Definitions

  • Embodiments of the present invention relate to the field of communications and, more particularly, to methods and apparatus for transmitting information.
  • the end-to-end delay of Real-time Remote Computing for Mobile Terminals is less than 10ms, and the delay requirement of Traffic Efficienty and Safety is 5ms, and the existing long-term evolution (Long Term)
  • the transmission time interval ("TTI") of the evolution referred to as "LTE" is 1 ms.
  • Data processing and decoding delay are mainly related to TTI, so one of the key techniques for reducing transmission delay is to shorten the TTI.
  • LTE-A Rel-13 has decided to start researching data transmission using a shorter TTI.
  • the carrier that supports short TTI transmission needs to ensure compatibility with the existing LTE system, that is, it is compatible with 1 ms TTI.
  • the advantage of short TTI is to shorten the transmission delay, but the corresponding cost is high control signaling overhead and low spectral efficiency.
  • the system may support different TTIs for the uplink and downlink. Therefore, it is necessary to determine the timing of scheduling and feedback when the uplink and downlink use different TTIs. method.
  • the present invention provides a method and a device for transmitting information, which can determine a reasonable scheduling and feedback timing when using different transmission time intervals TTI for uplink and downlink or a plurality of TTIs for a communication system to ensure normal transmission of information.
  • the first aspect provides a method for transmitting information, including: receiving, by a receiving end device, first information sent by a sending end device in a first time unit; and sending, by the receiving end device, the sending end device to the sending end device in a second time unit The second information corresponding to the first information, wherein the duration of the first time unit is different from the duration of the second time unit.
  • the method for transmitting information in the embodiment of the present invention may be such that when the uplink and downlink use different transmission time intervals TTI or the communication system uses multiple TTIs, the receiving end device and the transmitting end device may Determine reasonable scheduling and feedback timing to ensure the normal transmission of information.
  • the second time unit is a first one of the second time units after a target time length elapses from a start time of the first time unit Wherein the target time length is an integer multiple of the duration of the first time unit.
  • the receiving end device and the transmitting end device can determine an optimal feedback timing according to the method of the embodiment of the present invention.
  • the M subframes include the first time unit, and the ith of the M first time units are the first one.
  • the end time of the time unit is before the start time of the i+1th first time unit, or the end time of the i th first time unit is the start time of the i+1th first time unit, wherein , M is a positive integer greater than or equal to 1, i is 0 when the value of M is 1, and i is a positive integer greater than or equal to 1 and less than or equal to M-1 when M is a positive integer greater than 1.
  • N subframes include N second time units, and an end time of the kth second time unit of the N second time units is before a start time of the k+1th second time unit Or, the end time of the kth second time unit of the N second time units is a start time of the k+1th second time unit, where N is a positive integer greater than or equal to 1, k takes a value of 0 when the value of N is 1, and k is a positive integer greater than or equal to 1 and less than or equal to N-1 when N is a positive integer greater than one.
  • the value of N is 1 and the value of M is 2;
  • the receiving end device receives the first information sent by the sending end device in the first time unit; the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, including The receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the second information to the sending end device in the subframe a+2, where a is a sub a frame index number; and/or, the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the sending end device in the subframe a+3
  • the second information, a is a subframe index number.
  • the receiving end device receives the first message sent by the sending end device in the first time unit.
  • the receiving device sends the second information corresponding to the first information to the sending end device in the second time unit, including: the first M-3 first time in the subframe a of the receiving end device Receiving the first information in any one of the first time units in the unit, the receiving end device transmitting the second information to the sending end device in a subframe a+1, where a is a subframe index number; and/or Receiving, by the receiving end device, the first information in any one of the last three first time units in the subframe a, the receiving end device transmitting the first information to the sending end device in the subframe a+2
  • the second information, a is a subframe index number.
  • the value of M is 1, and N is greater than or equal to 2.
  • the receiving end device receives the first information sent by the sending end device in the first time unit; the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, including The receiving end device receives the first information in the subframe a; the receiving end device sends the second information to the sending end device in the first second time unit in the subframe a+4, where a is a sub Frame index number.
  • the value of M is 3, and N is greater than or equal to 2.
  • the receiving end device receives the first information sent by the sending end device in the unit at the first time; the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, The receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information in the second second time unit in the subframe a+1 End device sends the second information, a is a subframe index number; and/or, the receiving device receives the second time unit in the second time or the third time unit in the subframe a The first information, the receiving end device sends the second information to the sending end device in a first one of the second time units in the subframe a+2, where a is a subframe index number.
  • the value of M is 4, and N is greater than or equal to 2.
  • the receiving end device receives the first information sent by the sending end device in the unit at the first time; the receiving end device sends, to the sending end device, the first information in the second time unit.
  • the second information should include: the receiving device receives the first information in the first first time unit in the subframe a, and the first device in the subframe a+1 Sending the second information to the sending end device, where a is a subframe index number; and/or the second first time unit or the third one of the receiving end device in the subframe a Receiving the first information in the time unit, the receiving end device sends the second information to the sending end device in a second second time unit in the subframe a+1, where a is a subframe index number; and/or Receiving, by the receiving end device, the first information in the fourth first time unit in the subframe a, the receiving end device is in the second time unit in the subframe a+2 to the terminal device The second information is sent, where a is a subframe index number.
  • M is a positive integer greater than or equal to 6, and N is greater than Or a positive integer equal to 2;
  • the receiving end device receives the first information sent by the sending end device in the unit at the first time; the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, The receiving end device receives the first information in any one of the first M-3 first time units in the subframe a, and the receiving end device is in the subframe a+1.
  • the receiving end device Transmitting, by the first one of the second time units, the second information to the sending end device, where a is a subframe index number; and/or, the receiving end device is in the last three first time units in the subframe a Receiving the first information in any of the first time units, the receiving end device sends the second information to the sending end device in a second second time unit in the subframe a+1, where a is a subframe index number.
  • the value of N is 1, and the value of M is 2;
  • the receiving end device receives the first information sent by the sending end device in the first time unit; the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, including :
  • the method is applied to the TDD uplink/downlink configuration 0, and the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 0, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+3.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 1.
  • the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+3.
  • the device sends the second information, where a is a subframe index number, and the value of a is 4 and/or 9;
  • the method is applied to the TDD uplink/downlink configuration 1, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+3.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 4 and/or 5 and/or 9;
  • the method is applied to the TDD uplink/downlink configuration 1.
  • the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 1, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+3.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 1.
  • the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+6.
  • the device sends the second information, where a is a subframe index number, and the value of a is 1 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 2, and the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 2, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+7.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 2, and the first device of the receiving end device in the subframe a And/or receiving the first information in the second first time unit, the receiving end device sends the second information to the sending end device in a subframe a+6, where a is a subframe index number, and the value of a is Is 1 and / or 6;
  • the method is applied to the TDD uplink/downlink configuration 2, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +4 internally sends the second information to the sender device, where a is a subframe index number, and the value of a is 3 and/or 8;
  • the method is applied to the TDD uplink/downlink configuration 2, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +3 internally sends the second information to the sender device, a is a subframe index number, and the value of a is 4 and/or 9;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +7 sends the second information to the sender device, where a is the subframe index number, and the value of a is 5;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +6 sends the second information to the sender device, where a is the subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +5 sends the second information to the sender device, where a is the subframe index number, and the value of a is 7;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +4 sends the second information to the sender device, where a is the subframe index number, and the value of a is 8;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +3 internally sends the second information to the sender device, a is a subframe index number, and the value of a is 9;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1;
  • the method is applied to the TDD uplink/downlink configuration 3, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+3.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+11.
  • the device sends the second information, where a is a subframe index number, and the value of a is 1;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving end device receives the first information in the first and/or second first time units in the subframe a, and the receiving end device is in the subframe a+ 8 transmitting the second information to the sending end device, where a is a subframe index number, and the value of a is 4;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving device is in the subframe a +7 sends the second information to the sender device, where a is the subframe index number, and the value of a is 5;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving device is in the subframe a +6 sends the second information to the sender device, where a is the subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving device is in the subframe a +5 sends the second information to the sender device, where a is the subframe index number, and the value of a is 7;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving device is in the subframe a +4 sends the second information to the sender device, where a is the subframe index number, and the value of a is 8;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving device is in the subframe a +3 internally sends the second information to the sender device, a is a subframe index number, and the value of a is 9;
  • the method is applied to the TDD uplink/downlink configuration 4, and the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+12.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or second first time units in the subframe a, and the receiving end device is in the subframe a+
  • the second information is sent to the sending end device, where a is a subframe index number, and the value of a is 1;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or second first time units in the subframe a, and the receiving end device is in the subframe a+ 9 transmitting the second information to the sender device, where a is a subframe index number, and a is a value of 3;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or second first time units in the subframe a, and the receiving end device is in the subframe a+ 8 transmitting the second information to the sending end device, where a is a subframe index number, and the value of a is 4;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +7 sends the second information to the sender device, where a is the subframe index number, and the value of a is 5;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +6 Transmitting the second information to the sending end device, where a is a subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +5 sends the second information to the sender device, where a is the subframe index number, and the value of a is 7;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +4 sends the second information to the sender device, where a is the subframe index number, and the value of a is 8;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +3 internally sends the second information to the sender device, a is a subframe index number, and the value of a is 9;
  • the method is applied to the TDD uplink/downlink configuration 5, and the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+2.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+3.
  • the device sends the second information, where a is a subframe index number, and the value of a is 0 and/or 1 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the first information to the transmitting end in the subframe a+6.
  • the device sends the second information, where a is a subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 6, the first of the receiving end devices in the subframe a And/or receiving the first information in the second first time unit, the receiving end device sends the second information to the sending end device in a subframe a+3, where a is a subframe index number, and the value of a is Is 9.
  • the receiving end device receives the first information sent by the sending end device in the first time unit, including: the receiving end device is in the Receiving downlink data sent by the sending end device on the physical downlink shared channel PDSCH in the first time unit;
  • the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, where the receiving end device sends the feedback information to the sending end device in the second time unit.
  • the feedback information is used to indicate whether the receiving end device successfully receives the downlink data.
  • the receiving end device receives the first information sent by the sending end device in the first time unit, including: the receiving end device is The downlink control signaling sent by the sending end device is received in the first time unit, where the downlink control signaling is used to schedule transmission of uplink data of the receiving end device;
  • the receiving end device sends the second information corresponding to the first information to the sending end device in the second time unit, including: the receiving end device is in the second time unit on the physical uplink shared channel PUSCH
  • the sender device sends uplink data.
  • a method for transmitting information includes: the sending end device sends the first information to the receiving end device in the first time unit; the sending end device receives the receiving end in the second time unit The second information corresponding to the first information sent by the device, wherein the duration of the first time unit is different from the duration of the second time unit.
  • the second time unit is a first one of the second time units after a target time length elapses from a start time of the first time unit, where The target time length is an integral multiple of the duration of the first time unit.
  • the M subframes include the first time unit, and the ith of the M first time units are the first one.
  • the end time of the time unit is before the start time of the i+1th first time unit, or the end time of the i th first time unit is the start time of the i+1th first time unit, wherein , M is a positive integer greater than or equal to 1, i is 0 when the value of M is 1, and i is a positive integer greater than or equal to 1 and less than or equal to M-1 when M is a positive integer greater than 1.
  • N subframes including N second time units, and k of the N second time units The end time of the second time unit is before the start time of the k+1th second time unit, or the end time of the kth second time unit of the N second time units is K+1 the start time of the second time unit, where N is a positive integer greater than or equal to 1, k is 0 when the value of N is 1, and k is greater than when N is a positive integer greater than 1. Or a positive integer equal to 1 and less than or equal to N-1.
  • the sending end device sends the first information to the receiving end device in the first time unit; the sending end device receives the second information corresponding to the first information sent by the receiving end device in the second time unit, including
  • the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the second information in the subframe a+2, where a is the subframe index number.
  • the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the second information in the subframe a+3, where a is a sub Frame index number.
  • the sending end device sends the first information to the sending end device in the first time unit.
  • the sending end device receives the second information corresponding to the first information in the second time unit, including:
  • the transmitting end device sends the first information in any one of the first M-3 first time units in the subframe a, and the sending end device receives the first information in the subframe a+1.
  • Two information, a is a subframe index number; and/or, the transmitting device sends the first information in any one of the last three first time units in the subframe a, the sending The end device receives the second information in subframe a+2, where a is a subframe index number.
  • the value of M is 1, and N is greater than or equal to 2.
  • the sending end device sends the first information to the receiving end device in the first time unit; the sending end device receives the second information corresponding to the first information sent by the receiving end device in the second time unit, including
  • the transmitting device transmits the first information in the subframe a; the transmitting device receives the second information in the first second time unit in the subframe a+4, where a is a subframe index number.
  • the value of M is 3, and N is greater than or equal to 2.
  • the sending end device sends the first information to the receiving end device according to the unit at the first time; the sending end device receives the second information corresponding to the first information sent by the receiving end device in the second time unit,
  • the method includes: the sending end device sends the first information in a first one of the first time units in the subframe a, and the sending end device receives the second information in the second second time unit in the subframe a+1
  • the second information, a is a subframe index number; and/or, the sending end device sends the first information in the second first time unit or the third first time unit in the subframe a,
  • the transmitting end device receives the second information in a first one of the second time units in the subframe a+2, where a is a subframe index number.
  • the value of M is 4, and N is greater than or equal to 2.
  • the sending end device sends the first information to the receiving end device in the unit at the first time; the sending end device receives the second information corresponding to the first information sent by the receiving end device in the second time unit, include:
  • the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the second information in the first second time unit in the subframe a+1 Information, a is a subframe index number; and/or, the sending end device sends the first information in the second first time unit or the third first time unit in the subframe a, the sending end The device receives the second information in the second second time unit in the subframe a+1, where a is a subframe index number; and/or the fourth of the transmitting device in the subframe a
  • the first information is sent in a time unit, and the transmitting device receives the second information in the first second time unit in the subframe a+2, where a is a subframe index number.
  • M is a positive integer greater than or equal to 6, and N is greater than Or a positive integer equal to 2;
  • the sending end device sends the first information to the receiving end device in the unit at the first time; the sending end device receives the second information corresponding to the first information sent by the receiving end device in the second time unit,
  • the method includes: the sending end device sends the first information in any one of the first M-3 first time units in the subframe a, where the sending end device is in the subframe a+1 Receiving the second information in the first second time unit, a is a subframe index number; and/or, the transmitting device is any one of the last three first time units in the subframe a
  • the first information is sent in the first time unit, and the sending end device receives the second information in the second second time unit in the subframe a+1, where a is a subframe index number.
  • the value of N is 1 and the value of M is 2. ;
  • the sending end device sends the first information to the receiving end device in the unit at the first time; the sending end device receives the second information corresponding to the first information sent by the receiving end device in the second time unit, include:
  • the method is applied to the TDD uplink/downlink configuration 0, the transmitting device sends the first information in the first first time unit of the subframe a, and the transmitting device receives the second information in the subframe a+2.
  • Information a is the subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 0, and the sending end device sends the first information in the second first time unit in the subframe a, and the sending end device receives the first information in the subframe a+3.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 1.
  • the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+3.
  • Two information, a is a sub-frame index number, and the value of a is 4 and/or 9;
  • the method is applied to the TDD uplink/downlink configuration 1.
  • the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+3.
  • Two information, a is a subframe index number, and the value of a is 0 and/or 4 and/or 5 and/or 9;
  • the method is applied to the TDD uplink/downlink configuration 1.
  • the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+2.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 1, the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the second information in the subframe a+3.
  • Letter Information a is the subframe index number, and the value of a is 0 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 1, the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the second information in the subframe a+6.
  • Information a is the subframe index number, and the value of a is 1 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 2, the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+2.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 2, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +6, a is a subframe index number, and the value of a is 1 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 2, and the transmitting end device sends the first information in the first and/or the second first time unit in the subframe a, and the receiving end device is in the subframe a +4 receives the second information, a is a subframe index number, and the value of a is 3 and/or 8;
  • the method is applied to the TDD uplink/downlink configuration 2, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a +3 receives the second information, a is a subframe index number, and the value of a is 4 and/or 9;
  • the method is applied to the TDD uplink/downlink configuration 3.
  • the transmitting device sends the first information in the first and/or second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +7, a is a subframe index number, and the value of a is 5;
  • the method is applied to the TDD uplink/downlink configuration 3, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the receiving device is in the subframe a
  • the second information is received in +6, a is a subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 3, and the first device of the transmitting end device in the subframe a And/or transmitting the first information in the second first time unit, the sending end device receiving the second information in the subframe a+5, a is a subframe index number, and the value of a is 7;
  • the method is applied to the TDD uplink/downlink configuration 3.
  • the transmitting device sends the first information in the first and/or second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +4, a is a subframe index number, and the value of a is 8;
  • the method is applied to the TDD uplink/downlink configuration 3.
  • the transmitting device sends the first information in the first and/or second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +3, a is a subframe index number, and the value of a is 9;
  • the method is applied to the TDD uplink/downlink configuration 3.
  • the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+2.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 1;
  • the method is applied to the TDD uplink/downlink configuration 3.
  • the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+3.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 1;
  • the method is applied to the TDD uplink/downlink configuration 4, and the sending end device sends the first information in the second first time unit in the subframe a, and the sending end device receives the first information in the subframe a+11.
  • Two information, a is a sub-frame index number, and the value of a is 1;
  • the method is applied to the TDD uplink/downlink configuration 4, and the sending end device sends the first information in the first and/or second first time units in the subframe a, and the transmitting end device is in the subframe a+ 8 receives the second information, a is a subframe index number, and the value of a is 4;
  • the method is applied to the TDD uplink/downlink configuration 4, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +7, a is a subframe index number, and the value of a is 5;
  • the method is applied to the TDD uplink/downlink configuration 4, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +6, a is a subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 4, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +5, a is the subframe index number, and the value of a is 7;
  • the method is applied to the TDD uplink/downlink configuration 4, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a +4 receives the second information, a is a subframe index number, and the value of a is 8;
  • the method is applied to the TDD uplink/downlink configuration 4, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a +3 Inbound receiving the second information, a is a subframe index number, and a is a value of 9;
  • the method is applied to the TDD uplink/downlink configuration 4, the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+2.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 1;
  • the method is applied to the TDD uplink/downlink configuration 5, the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+12.
  • Two information, a is the subframe index number, and the value of a is 0;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or second first time units in the subframe a, and the transmitting device is in the subframe a+ 11 receives the second information, a is a subframe index number, and a takes a value of 1;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or second first time units in the subframe a, and the transmitting device is in the subframe a+ 9 receives the second information, a is a subframe index number, and the value of a is 3;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or second first time units in the subframe a, and the transmitting device is in the subframe a.
  • the second information is received in +8, a is a subframe index number, and the value of a is 4;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +7, a is a subframe index number, and the value of a is 5;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +6, a is a subframe index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +5, a is the subframe index number, and the value of a is 7;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +4, a is a subframe index number, and the value of a is 8;
  • the method is applied to the TDD uplink/downlink configuration 5, and the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received in +3, a is a subframe index number, and the value of a is 9;
  • the method is applied to the TDD uplink/downlink configuration 5, the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+2.
  • Two information, a is the subframe index number, and the value of a is 0;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the transmitting device sends the first information in the first first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+2.
  • Two Information a is the subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+3.
  • Two information, a is a sub-frame index number, and the value of a is 0 and/or 1 and/or 5;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the transmitting device sends the first information in the second first time unit in the subframe a, and the transmitting device receives the first information in the subframe a+6.
  • Two information, a is a sub-frame index number, and the value of a is 6;
  • the method is applied to the TDD uplink/downlink configuration 6.
  • the transmitting device sends the first information in the first and/or the second first time unit in the subframe a, and the transmitting device is in the subframe a
  • the second information is received within +3, a is the subframe index number, and the value of a is 9.
  • the sending end device sends the first information to the receiving end device in the first time unit, including: the sending end device is in the first Transmitting downlink data to the receiving end device on the physical downlink shared channel PDSCH in a time unit;
  • the sending end device receives, in the second time unit, the second information that is sent by the receiving end device and corresponds to the first information, where the sending end device sends the receiving end device to the receiving end device in the second time unit.
  • the feedback information is used to indicate whether the receiving end device successfully receives the downlink data.
  • the sending end device sends the first information to the receiving end device in the first time unit, including: the sending end device is in the first Sending downlink control signaling to the receiving end device in a time unit, where the downlink control signaling is used to schedule transmission of uplink data of the receiving end device;
  • the sending end device receives, in the second time unit, the second information that is sent by the receiving end device and corresponds to the first information, where the sending end device is on the physical uplink shared channel PUSCH in the second time unit. Receiving uplink data sent by the receiving device.
  • a receiving end device for performing the method of any of the first aspect or the first aspect of the first aspect.
  • the receiving end device is configured to perform the unit of the method in the above first aspect or any possible implementation manner of the first aspect.
  • a transmitting device for performing the method in any of the above-mentioned second aspect or any possible implementation of the second aspect.
  • the transmitting end device is configured to perform the unit of the method in any of the foregoing possible aspects of the second aspect or the second aspect.
  • a computer readable medium for storing a computer program, the computer program comprising instructions for performing the method of the first aspect or any of the possible implementations of the first aspect.
  • a computer readable medium for storing a computer program comprising instructions for performing the method of any of the second aspect or any of the possible implementations of the second aspect.
  • FIG. 1 is a schematic flowchart of a method for transmitting information according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of timing of transmitting information according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of timings of transmitting information in an FDD system according to another embodiment of the present invention.
  • FIG. 4 is a schematic diagram of timings of transmitting information in an FDD system according to still another embodiment of the present invention.
  • FIG. 5 is a schematic diagram showing timings of transmitting information in an FDD system according to still another embodiment of the present invention.
  • FIG. 6 is a schematic diagram of timings of transmitting information in an FDD system according to still another embodiment of the present invention.
  • FIG. 7 is a schematic diagram of timings of transmitting information in an FDD system according to still another embodiment of the present invention.
  • FIG. 8 is a schematic diagram showing timings of transmitting information in an FDD system according to still another embodiment of the present invention.
  • FIG. 9 is a schematic diagram showing timings of transmitting information in an FDD system according to still another embodiment of the present invention.
  • FIG. 10 is a schematic diagram of timings of transmitting information in a TDD system according to an embodiment of the present invention.
  • FIG. 11 is a schematic diagram showing timings of transmitting information in a TDD system according to another embodiment of the present invention.
  • FIG. 13 is a schematic diagram showing timings of transmitting information in a TDD system according to still another embodiment of the present invention.
  • FIG. 14 is a schematic diagram showing timings of transmitting information in a TDD system according to still another embodiment of the present invention.
  • 15 is a schematic diagram of timings of transmitting information in a TDD system according to still another embodiment of the present invention.
  • 16 is a schematic diagram showing timings of transmitting information in a TDD system according to still another embodiment of the present invention.
  • FIG. 17 is a schematic block diagram of a sink device according to an embodiment of the present invention.
  • FIG. 18 is a schematic block diagram of a receiving end device according to another embodiment of the present invention.
  • FIG. 19 is a schematic block diagram of a source device according to an embodiment of the present invention.
  • FIG. 20 is a schematic block diagram of a transmitting device according to another embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of a method 100 for transmitting information according to an embodiment of the present invention. As shown in FIG. 1, the method 100 includes:
  • the sending end device sends the first information to the receiving end device.
  • the sending end device sends the first information to the receiving end device in the first time unit n (n is the index of the first time unit), and the duration of the first time unit is the first transmission time interval (Transmission Time Interval, referred to as "TTI")
  • TTI Transmission Time Interval
  • the receiving end device may determine the duration of the first time unit according to the default rule of the system, or the receiving end device may further determine the duration of the first time unit according to the indication information sent by the sending end device.
  • the receiving end device sends the second information for the first information to the sending end device.
  • the receiving end device may send the second information for the first information to the receiving end device in the second time unit k (k is an index of the second time unit).
  • the duration of the second time unit is a second TTI, and the second TTI is different from the first TTI, and the receiving end device may determine the time interval between the second time unit k and the first time unit n according to a default rule of the system.
  • the time interval between the second time unit k and the first time unit n may also be determined according to the indication information sent by the sender device.
  • the receiving end device when the receiving end device is a terminal device (or a user equipment), the corresponding sending end device is a base station, and if the terminal device is in the physical unit in the first time unit n
  • the downlink data sent by the downlink shared channel Physical Downlink Control Channel, referred to as "PDCCH"
  • the terminal device sends, in the second time unit k, feedback information indicating whether the terminal device successfully receives the downlink data, the feedback
  • the information may for example be ACK/NACK.
  • the receiving end device is a base station
  • the corresponding sending end device is a terminal device
  • the terminal device receives, in the first time unit, the uplink data transmission sent by the base station for scheduling the terminal device.
  • the downlink control signaling for example, the uplink scheduling grant UL Grant
  • the terminal device sends uplink data to the base station on the physical uplink shared channel (Physical Uplink Shared Channel, referred to as "PUSCH") in the second time unit n.
  • PUSCH Physical Uplink Shared Channel
  • the second time unit k is the first second time unit after the target time length elapses from the start time of the first time unit n, where the target time length is An integer multiple of the duration of the first time unit n.
  • the time interval between the start time of the second time unit k and the start time of the first time unit n is four times the length of the first time unit.
  • the first time unit is included in one subframe, and the end time of the i-th first time unit in the M first time units is in the i+1th Before the start time of the first time unit, or the end time of the i-th first time unit is the start time of the i+1th first time unit, where M is a positive integer greater than or equal to 1, i When the value of M is 1, the value is 0, and when M is a positive integer greater than 1, it is a positive integer greater than or equal to 1 and less than or equal to M-1;
  • N subframes include N second time units, and an end time of the kth second time unit of the N second time units is before a start time of the k+1th second time unit Or, the end time of the kth second time unit of the N second time units is a start time of the k+1th second time unit, where N is a positive integer greater than or equal to 1, k takes a value of 0 when the value of N is 1, and k is a positive integer greater than or equal to 1 and less than or equal to N-1 when N is a positive integer greater than one.
  • one or more first time units may be included in the 1 ms duration of the existing subframe, and one or more second time units may be included in the 1 ms duration of the existing subframe.
  • the value of N is 1 and the value of M is 2. That is, for the FDD system, the first time unit is an LTE time slot, and the second time unit is an LTE subframe, as shown in FIG. 3 . As shown in the following example, the following data transmission is performed, and the downlink data is transmitted in time slots, that is, 0.5 ms.
  • the TTI transmits the ACK/NACK information in units of time, that is, 1 ms TTI, assuming that the processing delay specified by the system is N times the TTI corresponding to the data transmission, and when the value of N is 4, if the receiving device is in the subframe a
  • the downlink data is received in the time slot 0, and the ACK/NACK information corresponding to the downlink data is transmitted in the subframe a+2; if the receiving device receives the downlink data in the time slot 1 of the subframe a, the ACK/NACK information corresponding to the downlink data Transmitted in subframe a+3.
  • the value of N is 1, and M is a positive integer greater than or equal to 3; that is, for an FDD system, one subframe includes three or more first time units, and second The time unit is a subframe.
  • One subframe includes three time units (first time units) for transmitting downlink data, and the ACK/NACK information is transmitted with a subframe as a time unit, that is, a 1 ms subframe.
  • FIG. 5 is a schematic diagram of a time slot containing two time units for transmitting downlink data, and transmitting timing information of the downlink data and feedback information when the subframe is a time unit. It is assumed that the processing delay specified by the system is 4 times of the TTI corresponding to the data transmission, and when the receiving device receives the downlink data in the first first time unit of the subframe a, the receiving end device transmits the downlink data in the subframe a+1.
  • the device sends feedback information (ACK/NACK) for the downlink data; when the receiving device receives the downlink data in the second or third or fourth first time unit of the subframe a, the receiving device is in the subframe.
  • the a+2 inbound sends the feedback information for the downlink data to the sender device.
  • the value of M is 1, and N is a positive integer greater than or equal to 2; that is, for the FDD system, one subframe includes one first time unit, and one subframe includes at least two.
  • the second time unit As shown in FIG. 6, the following data transmission is taken as an example. It is assumed that the processing delay specified by the system is four times that of the TTI corresponding to the data transmission.
  • the receiving device receives the downlink data in the subframe a, the receiving device is in the subframe a.
  • the first second time unit in +4 transmits feedback information (ACK/NACK) for the downlink data to the transmitting device.
  • the value of M is 3, and N is a positive integer greater than or equal to 2; as shown in FIG. 7, the following data transmission is taken as an example, and the processing delay specified by the system is assumed to be 4 times of the TTI corresponding to the data transmission, when the receiving end device receives the downlink data in the first first time unit in the subframe a, the receiving end device in the second second time unit in the subframe a+1
  • the sending end device sends feedback information, where a is a subframe index number; and/or, when the receiving end device receives downlink data in the second first time unit in the subframe a or in the third first time unit,
  • the receiving device sends feedback information to the transmitting device in a first second time unit in the subframe a+2, where a is a subframe index number.
  • the value of M is 4, and N is a positive integer greater than or equal to 2; taking the downlink data transmission as shown in FIG. 8 as an example, in FIG. 8, one subframe includes 4 first time units, one subframe includes 2 second time units, assuming that the processing delay specified by the system is 4 times of the TTI corresponding to the data transmission, and the first time of the receiving end device in the subframe a
  • the receiving device sends the feedback information to the transmitting device in the first second time unit in the subframe a+1, where a is the subframe index number; and/or, the receiving device is in the sub-
  • the receiving end device sends the second data to the sending end device in the second second time unit in the subframe a+1.
  • a is a subframe index number; and/or, when the receiving device receives the downlink data in the fourth first time unit in the subframe a, the first device of the receiving device in the subframe a+2
  • the feedback information is sent to the terminal device in a second time unit, where a is a subframe index number.
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • M is a positive integer greater than or equal to 6
  • M is a positive integer greater than or equal to 6
  • M is a positive integer greater than or equal to 6
  • M is a positive integer greater than or equal to 2
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • the processing delay specified by the system is four times that of the TTI corresponding to the data transmission, and the top 4 of the receiving end
  • the receiving device receives downlink data in any of the first three time units in the subframe a, and the second device in the subframe a+1 is received by the receiving device.
  • the time unit sends feedback information to the sender device, where a is the subframe index number.
  • TDD Time Division Duplexing
  • S denotes a special subframe
  • U denotes an uplink subframe, assuming that the processing delay specified by the system is four times that of the TTI corresponding to the data transmission, and that the receiving device is the first in the subframe a.
  • the receiving end device When receiving the first information in the first time unit, the receiving end device sends the second information to the sending end device in the subframe a+2, where a is the subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6; and/or, the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device sends the second information to the sending end device in the subframe a+3, a is the sub-frame index number, and the value of a is 0 and/or 1 and/or 5 and/or 6.
  • the receiving device receives the first information in the first first time unit in the subframe a, and the receiving device is in the subframe a+3.
  • the inbound transmitting device sends the second information, where a is the subframe index number, and the value of a is 4 and/or 9; and/or, the receiving device receives the second time unit in the subframe a.
  • the receiving device sends the second information to the transmitting device in the subframe a+3, where a is the subframe index number, and the value of a is 0 and/or 4 and/or 5 and/or 9; and/or
  • the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device sends the second information to the sending end device in the subframe a+2, where a is the subframe index number, a of The value is 0 and/or 1 and/or 5 and/or 6; and/or, the receiving device receives the first information in the second first time unit in the subframe a, the receiving device
  • the subframe a+3 sends the second information to the sending end device, where a is the subframe index number, and the value of a is 0 and/or 5; and/or the second device of the receiving end device in the subframe a Receiving the first information in the time unit, the receiving end device sends the second information to the sending end device in the subframe a+
  • the value of N is 1 and the value of M is 2, as shown in FIG. 12, where D represents a downlink subframe, S represents a special subframe, and U represents an uplink subframe.
  • the receiving end device receives the first information in the first first time unit in the subframe a, and the receiving end device is in the subframe a +2 inward to send the second information to the transmitting device, where a is the subframe index number, and the value of a is 0 and/or 5; and/or, the receiving device is in the second first time unit in the subframe a Receiving the first information, the receiving end device sends the second information to the sending end device in the subframe a+7, where a is a subframe index number, and the value of a is 0 and/or 5; and/or, the receiving end device Receiving the first information in the first and/or the second first time unit in the subframe a, the receiving end device sends the second information to the sending end device in the subframe a+6, where a is the subframe index number, The value of a is 1 and/or 6; and/or,
  • the value of N is 1, and the value of M is 2, as shown in FIG. 13, in the figure, D represents a downlink subframe, S represents a special subframe, and U represents an uplink subframe.
  • the processing delay specified by the system is 4 times that of the TTI corresponding to the data transmission
  • the receiving device is Receiving the first information in the first and/or second first time units in the subframe a
  • the receiving end device sends the second information to the transmitting end device in the subframe a+7, where a is the subframe index number, a The value of the value is 5; and/or, the receiving end device receives the first information in the first and/or second first time unit in the subframe a, and the receiving end device transmits the first information in the subframe a+6 to the transmitting end.
  • the device sends the second information, where a is the subframe index number, and the value of a is 6; and/or, the receiving device receives the first in the first and/or second first time unit in the subframe a.
  • Information the receiving end device sends the second information to the sending end device in the subframe a+5, where a is the subframe index number, and the value of a is 7; and/or the first device of the receiving end device in the subframe a And/or receiving the first information in the second first time unit, the receiving end device sends the second information to the sending end device in the subframe a+4, where a is a subframe Quotation marks, the value of a is 8; and/or, the receiving device receives the first information in the first and/or second first time unit in the subframe a, and the receiving device is in the subframe a+3
  • the inbound transmitting device sends the second information, where a is the subframe index number, and the value of a is 9; and/or, the receiving
  • the value of N is 1 and the value of M is 2.
  • D represents a downlink subframe
  • S represents a special subframe
  • U represents an uplink subframe.
  • the frame assuming that the processing delay specified by the system is four times that of the TTI corresponding to the data transmission, the receiving device receives the first information in the second first time unit in the subframe a, and the receiving device is in the subframe a+11.
  • the inbound transmitting device sends the second information, where a is a subframe index number, and the value of a is 1; and/or, the receiving device receives the first and/or second first time unit in the subframe a.
  • the first information the receiving end device sends the second information to the sending end device in the subframe a+8, where a is the subframe index number, and the value of a is 4; and/or, the receiving device is in the subframe a.
  • Receiving the first information in one and/or the second first time unit the receiving end device sends the second information to the sending end device in the subframe a+7, where a is the subframe index number, and the value of a is 5; And/or, the receiving device receives the first information in the first and/or second first time unit in the subframe a, and the receiving device is in the subframe a+6
  • the inbound transmitting device sends the second information, where a is the subframe index number, and the value of a is 6; and/or, the receiving device is in the first and/or second first time unit in the subframe a.
  • the receiving device is in the subframe
  • the a+5 sends the second information to the sending device, where a is the subframe index number, and the value of a is 7; and/or, the first and/or the second first of the receiving device in the subframe a
  • the receiving end device sends the second information to the sending end device in the subframe a+4, where a is the subframe index number, and the value of a is 8; and/or, the receiving device is in the subframe.
  • the receiving end device receives the second information to the sending end device in the subframe a+3, where a is the subframe index number, and the a is taken The value is 9; and/or, the receiving device receives the first information in the first first time unit in the subframe a, and the receiving device sends the second information to the sending device in the subframe a+2, where a is The sub-frame index number, a, is 0 and/or 1.
  • the receiving end device receives the first information in the second first time unit in the subframe a, and the receiving end device is in the subframe a+12.
  • the inbound transmitting device sends the second information, where a is the subframe index number, and the value of a is 0; and/or, the receiving device receives the first and/or the second first time unit in the subframe a.
  • the receiving end device sends the second information to the sending end device in the subframe a+11, where a is the subframe index number, and the value of a is 1; and/or the receiving device is in the subframe a.
  • the receiving end device receives the first information in the first and/or the second first time unit, sends the second information to the sending end device in the subframe a+9, where a is the subframe index number, and the value of a is 3;
  • the receiving device receives the first information in the first and/or second first time units in the subframe a, and the receiving device is in the subframe a+ 8 transmitting the second information to the transmitting device, where a is the subframe index number, and the value of a is 4; and/or the first and/or the second first time unit of the receiving device in the subframe a
  • the receiving end device sends the second information to the sending end device in the subframe a+7, where a is the subframe index number, and the value of a is 1; and
  • the receiving end device receives the first information in the first and/or second first time unit, the receiving end device sends the second information to the sending end device in the subframe a+6, where a is the subframe index number, and the value of a is 6; and/or, the receiving end device receives the first information in the first and/or second first time unit in the subframe a, and the receiving end device sends the second information to the sending end device in the subframe a+5.
  • a is a subframe index number, and the value of a is 7; and/or, the receiving device receives the first information in the first and/or second first time unit in the subframe a, and the receiving end The device sends the second information to the transmitting device in the subframe a+4, where a is the subframe index number, and the value of a is 8; and/or the first device in the subframe a and/or Or receiving the first information in the second first time unit, and the receiving end device sends the second information to the sending end device in the subframe a+3, where a is the subframe index number, and the value of a is 9; Or, the receiving device receives the first information in the first first time unit in the subframe a, and the receiving device sends the second information to the transmitting device in the subframe a+2, where a is the subframe index number, The value of a is 0.
  • the receiving device receives the first information in the first first time unit in the subframe a, and the receiving device is in the subframe a+2.
  • the inbound transmitting device sends the second information, where a is the subframe index number, the value of a is 0 and/or 1 and/or 5 and/or 6; and/or the second of the receiving device in the subframe a
  • the first time unit receives the first information
  • the receiving end device sends the second information to the sending end device in the subframe a+3, where a is the subframe index number, and the value of a is 0 and/or 1 and/or 5
  • the receiving device receives the first information in the second first time unit in the subframe a, and the receiving device sends the second information to the transmitting device in the subframe a+6, where a is the subframe index.
  • the value of a is 6; and/or, the receiving device receives the first information in the first and/or second first time unit in the subframe a, the receiving device A + 3 subframe within the transmission side apparatus transmits a second message, a is the subframe index, a value of nine.
  • N is 1 and the value of M is 2 as an example.
  • the timing relationship between the received information and the transmitted information when N and M take other values may be according to an embodiment of the present invention. The method described is given and will not be described here.
  • the base station may send a UL Grant to the terminal device in multiple first time units, and the terminal device receives multiple UL Grants.
  • the UL Grant which is later received, can be used.
  • the base station may transmit the UL Grant by using the last one of the plurality of first time units. The present invention does not limit this.
  • the method for transmitting information in the embodiment of the present invention enables the receiving end device and the transmitting end device to determine a reasonable scheduling and feedback timing to ensure information when different uplink transmission time intervals TTI are used in the uplink and downlink or when the communication system uses multiple TTIs. Normal transmission.
  • the receiving device 10 includes:
  • the receiving unit 11 is configured to receive the first information sent by the sending end device in the first time unit;
  • the sending unit 12 is configured to send the first information to the sending end device in the second time unit Corresponding second information, wherein the duration of the first time unit is different from the duration of the second time unit.
  • the receiving end device of the embodiment of the present invention can determine a reasonable scheduling and feedback timing when using different transmission time intervals TTI in the uplink and downlink or when the communication system adopts multiple TTIs to ensure normal transmission of information.
  • the second time unit is the first second time unit after the target time length elapses from the start time of the first time unit, where the target time length is An integer multiple of the duration of the first time unit.
  • one subframe is included in the first time unit, and the end time of the i-th first time unit in the M first time units is in the (i+1)th Before the start time of the first time unit, or the end time of the i-th first time unit is the start time of the i+1th first time unit, where M is a positive integer greater than or equal to , i is 0 when the value of M is 1, and i is a positive integer greater than or equal to 1 and less than or equal to M-1 when M is a positive integer greater than 1.
  • N subframes include N second time units, and an end time of the kth second time unit of the N second time units is before a start time of the k+1th second time unit Or, the end time of the kth second time unit of the N second time units is a start time of the k+1th second time unit, where N is a positive integer greater than or equal to 1, k takes a value of 0 when the value of N is 1, and k is a positive integer greater than or equal to 1 and less than or equal to N-1 when N is a positive integer greater than one.
  • the receiving end device when the receiving end device is applied to the frequency division duplex FDD, the value of N is 1 and the value of M is 2; wherein the receiving unit 11 is specifically configured to be in the subframe.
  • the sending unit 12 receives the first information in the first one of the first time units in a
  • the sending unit 12 is specifically configured to send the second information to the sending end device in a subframe a+2, where a is a subframe index number;
  • the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to send in the subframe a+3
  • the end device sends the second information, where a is a subframe index number.
  • the receiving end device when the receiving end device is applied to the frequency division duplex FDD, the value of N is 1, and M is a positive integer greater than or equal to 3; wherein, the receiving unit 11 is specifically used.
  • the first information is received in any one of the first M-3 first time units in the subframe a, and the sending unit 12 is specifically configured to send the data in the subframe a+1.
  • the end device sends the second Information, a is a subframe index number; and/or the receiving unit 11 is configured to receive the first information in any one of the last three first time units in the subframe a.
  • the sending unit 12 is specifically configured to send the second information to the sending end device in the subframe a+2, where a is a subframe index number.
  • the receiving end device when the receiving end device is applied to the frequency division duplex FDD, the value of M is 1, and N is a positive integer greater than or equal to 2; wherein, the receiving unit 11 is specifically used.
  • the sending unit 12 is specifically configured to send the second information to the sending end device in the first second time unit in the subframe a+4, where a is a sub Frame index number.
  • the receiving end device when the receiving end device is applied to the frequency division duplex FDD, the value of M is 3, and N is a positive integer greater than or equal to 2; wherein, the receiving unit 11 is specifically used.
  • the sending unit 12 receives the first information in the first first time unit in the subframe a, the sending unit 12 is specifically configured to send to the sending end in the second second time unit in the subframe a+1 The device sends the second information, where a is a subframe index number; and/or the receiving unit 11 is specifically configured to be in the second first time unit or the third first time unit in the subframe a.
  • the sending unit 12 is configured to send the second information to the sending end device in a first one of the second time units in the subframe a+2, where a is a subframe index number.
  • the receiving end device when the receiving end device is applied to the frequency division duplex FDD, the value of M is 4, and N is a positive integer greater than or equal to 2; wherein, the receiving unit 11 is specifically used.
  • the sending unit 12 is specifically configured to send to the sending end in the first second time unit in the subframe a+1
  • the device sends the second information, where a is a subframe index number; and/or the receiving unit 11 is specifically configured to be in the second first time unit or the third first time unit in the subframe a.
  • the sending unit 12 is specifically configured to send the second information to the sending end device in a second second time unit in the subframe a+1, where a is a subframe index number; and Or the receiving unit 11 is configured to receive the first information in the fourth first time unit in the subframe a, where the sending unit 12 is specifically used in the first one of the subframes a+2.
  • the second information is sent to the terminal device in the second time unit, where a is a subframe index number.
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • the receiving unit 11 The first information is used to receive the first information in any one of the first M-3 first time units in the subframe a, where the sending unit 12 is specifically used in the subframe a+
  • the first in 1 Transmitting, by the second time unit, the second information to the sending end device, where a is a subframe index number; and/or,
  • the receiving unit 11 is configured to receive the first information in any one of the last three first time units in the subframe a, where the sending unit 12 is specifically used in the subframe a
  • the second information in the second time unit of +1 is sent to the sending end device, where a is a subframe index number.
  • the value of N is 1 and the value of M is 2;
  • the receiving end device is applied to the TDD uplink/downlink configuration 0, and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, the sending unit 12, specifically For transmitting the second information to the sending end device in the subframe a+2, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the receiving device is configured to receive the TDD uplink/downlink configuration 0, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the source device in the subframe a+3, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the receiving end device is applied to the TDD uplink/downlink configuration 1 , and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+3, where a is a subframe index number, and the value of a is 4 and/or 9;
  • the receiving end device is applied to the TDD uplink/downlink configuration 1 , and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the source device in the subframe a+3, a is a subframe index number, and the value of a is 0 and/or 4 and/or 5 and/or 9;
  • the receiving end device is applied to the TDD uplink/downlink configuration 1 , and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the transmitting device in subframe a+2, where a is a subframe index number, a of Values of 0 and / or 1 and / or 5 and / or 6;
  • the receiving end device is applied to the TDD uplink/downlink configuration 1 , and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+3, where a is a subframe index number, and the value of a is 0 and/or 5;
  • the receiving end device is applied to the TDD uplink/downlink configuration 1 , and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+6, where a is a subframe index number, and the value of a is 1 and/or 6;
  • the receiving device is applied to the TDD uplink/downlink configuration 2, and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+2, where a is a subframe index number, and the value of a is 0 and/or 5;
  • the receiving end device is applied to the TDD uplink/downlink configuration 2, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+7, a is a subframe index number, and the value of a is 0 and/or 5;
  • the receiving device is applied to the TDD uplink/downlink configuration 2, and the receiving unit 11 is configured to receive the first information in the first and/or the second first time unit in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+6, where a is a subframe index number, and the value of a is 1 and/or 6;
  • the receiving device is applied to the TDD uplink/downlink configuration 2, and the receiving unit 11 is configured to receive the first information in the first and/or the second first time unit in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+4, where a is a subframe index number, and the value of a is 3 and/or 8;
  • the receiving device is applied to the TDD uplink/downlink configuration 2, and the receiving unit 11 is configured to receive the first information in the first and/or the second first time unit in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+3, where a is a subframe index number, and the value of a is 4 and/or 9;
  • the receiving device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, where the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+7, where a is a subframe index number, and the value of a is 5;
  • the receiving device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, where the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+6, where a is a subframe index number, and the value of a is 6;
  • the receiving device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, where the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+5, where a is a subframe index number, and the value of a is 7;
  • the receiving device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, where the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+4, where a is a subframe index number, and the value of a is 8;
  • the receiving device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, where the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+3, where a is a subframe index number, and the value of a is 9;
  • the receiving end device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+2, where a is a subframe index number, and the value of a is 0 and/or 1;
  • the receiving end device is applied to the TDD uplink/downlink configuration 3, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the sending end device in the subframe a+3, a is a subframe index number, and the value of a is 0 and/or 1;
  • the receiving end device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the sending end device in the subframe a+11, where a is a subframe index number, and the value of a is 1;
  • the receiving device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending unit 12, specifically for transmitting the second information to the sending end device in the subframe a+8, a is a subframe index number, and the value of a is 4;
  • the receiving device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+7, where a is a subframe index number, and the value of a is 5;
  • the receiving device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+6, where a is a subframe index number, and the value of a is 6;
  • the receiving end device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is specifically configured to be used in
  • the first information is received in the first and/or second first time units in the subframe a
  • the sending unit 12 is specifically configured to send the second information to the sending end device in the subframe a+5.
  • a is the subframe index number, and the value of a is 7;
  • the receiving device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+4, where a is a subframe index number, and the value of a is 8;
  • the receiving device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+3, where a is a subframe index number, and the value of a is 9;
  • the receiving device is applied to the TDD uplink/downlink configuration 4, and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the source device in the subframe a+2, where a is a subframe index number, and the value of a is 0 and/or 1;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the sending end device in the subframe a+12, where a is a subframe index number, and the value of a is 0;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending unit 12, specifically for transmitting the second information to the sending end device in the subframe a+11, a is a subframe index number, and the value of a is 1;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending unit 12, specifically for transmitting the second information to the sending end device in the subframe a+9, a is a subframe index number, and the value of a is 3;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending unit 12, specifically for transmitting the second information to the sending end device in the subframe a+8, a is a subframe index number, and the value of a is 4;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+7, where a is a subframe index number, and the value of a is 5;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+6, where a is a subframe index number, and the value of a is 6;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+5, where a is a subframe index number, and the value of a is 7;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+4, where a is a subframe index number, and the value of a is 8;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, the sending The unit 12 is specifically configured to send the second information to the sending end device in the subframe a+3, where a is a subframe Quotation marks, the value of a is 9;
  • the receiving device is applied to the TDD uplink/downlink configuration 5, and the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Transmitting the second information to the sending end device in the subframe a+2, where a is a subframe index number, and the value of a is 0;
  • the receiving device is applied to the TDD uplink/downlink configuration 6.
  • the receiving unit 11 is configured to receive the first information in the first first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the source device in the subframe a+2, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the receiving end device is applied to the TDD uplink/downlink configuration 6, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the source device in the subframe a+3, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5;
  • the receiving end device is applied to the TDD uplink/downlink configuration 6, and the receiving unit 11 is configured to receive the first information in the second first time unit in the subframe a, where the sending unit 12 is specifically configured to: Sending the second information to the sending end device in the subframe a+6, a is a subframe index number, and the value of a is 6;
  • the receiving device is applied to the TDD uplink/downlink configuration 6.
  • the receiving unit 11 is configured to receive the first information in the first and/or second first time units in the subframe a, where the sending
  • the unit 12 is specifically configured to send the second information to the sending end device in the subframe a+3, where a is a subframe index number, and the value of a is 9.
  • the receiving unit 11 is specifically configured to: receive, in the first time unit, downlink data that is sent by the sending end device on the physical downlink shared channel PDSCH;
  • the sending unit 12 is configured to send feedback information to the sending end device in the second time unit, where the feedback information is used to indicate whether the receiving end device successfully receives the downlink data.
  • the receiving unit 11 is specifically configured to receive, in the first time unit, downlink control signaling sent by the sending end device, where the downlink control signaling is used to schedule the receiving end device. Transmission of uplink data;
  • the sending unit 12 is specifically configured to send uplink data to the sending end device on the physical uplink shared channel PUSCH in the second time unit.
  • the receiving end device 10 may correspond to the method 100 for transmitting information in the embodiment of the present invention, and the foregoing and other operations and/or functions of the respective units in the receiving end device 10 are respectively implemented for The corresponding process performed by the receiving end device in the method in FIG. 1 is omitted here for brevity.
  • the receiving unit 11 may be implemented by a receiver, and the sending unit 12 may be implemented by a transmitter.
  • the receiving end device 100 may include a processor 101, a receiver 102, and a transmitter 103. And memory 104.
  • the memory 104 can be used to store code and the like executed by the processor 101.
  • the various components in the receiving device 100 are coupled together by a bus system 105, which in addition to the data bus includes a power bus, a control bus, and a status signal bus.
  • a bus system 105 which in addition to the data bus includes a power bus, a control bus, and a status signal bus.
  • the receiving end device 100 may correspond to the receiving end device 10 in the embodiment of the present invention, and may correspond to the corresponding main body in the method according to the embodiment of the present invention. Let me repeat.
  • FIG. 19 is a schematic block diagram of a transmitting device 20 according to an embodiment of the present invention. As shown in FIG. 19, the transmitting device 20 includes:
  • the sending unit 21 is configured to send the first information to the receiving end device in the first time unit;
  • the receiving unit 22 is configured to receive, in the second time unit, the second information that is sent by the receiving end device and corresponding to the first information, where the duration of the first time unit is different from the duration of the second time unit.
  • the transmitting end device of the embodiment of the present invention can determine a reasonable scheduling and feedback timing when the uplink and downlink use different transmission time intervals TTI or when the communication system adopts multiple TTIs to ensure normal transmission of information.
  • the second time unit is the first second time unit after the target time length elapses from the start time of the first time unit, where the target time length is An integer multiple of the duration of the first time unit.
  • the M first time units are included in one subframe. End time of the i-th first time unit of the M first time units is before the start time of the i+1th first time unit, or the end time of the i-th first time unit Is the start time of the i+1th first time unit, where M is a positive integer greater than or equal to 1, i is 0 when the value of M is 1, and i is a positive integer greater than 1 when M is a positive integer greater than 1. a positive integer greater than or equal to 1 and less than or equal to M-1;
  • N subframes include N second time units, and an end time of the kth second time unit of the N second time units is before a start time of the k+1th second time unit Or, the end time of the kth second time unit of the N second time units is a start time of the k+1th second time unit, where N is a positive integer greater than or equal to 1, k takes a value of 0 when the value of N is 1, and k is a positive integer greater than or equal to 1 and less than or equal to N-1 when N is a positive integer greater than one.
  • the transmitting end device when the transmitting end device is applied to the frequency division duplex FDD system, the value of N is 1 and the value of M is 2; wherein the sending unit 21 is specifically configured to be used in The first information is sent in the first one of the first time units in the subframe a, and the receiving unit 22 is configured to receive the second information in the subframe a+2, where a is a subframe index number; and Or the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to receive the second in the subframe a+3. Information, a is the subframe index number.
  • the value of N is 1.
  • M is a positive integer greater than or equal to 3; wherein, the sending unit 21, Specifically, the first information is sent in any one of the first M-3 first time units in the subframe a, and the receiving unit 22 is specifically used in the subframe a+1.
  • Receiving the second information a is a subframe index number; and/or, the sending unit 21 is specifically configured to send in any one of the last three first time units in the subframe a
  • the first information, the receiving unit 22 is specifically configured to receive the second information in the subframe a+2, where a is a subframe index number.
  • the transmitting end device when the transmitting end device is applied to the frequency division duplex FDD system, the value of M is 1, and N is a positive integer greater than or equal to 2; wherein, the sending unit 21, Specifically, the first information is sent in the subframe a.
  • the receiving unit 22 is configured to receive the second information in the first second time unit in the subframe a+4, where a is a subframe index. number.
  • the transmitting end device when the transmitting end device is applied to the frequency division duplex FDD system, the value of M is 3, and N is a positive integer greater than or equal to 2; wherein, the sending unit 21, Specifically, the first information is sent in the first first time unit in the subframe a, the receiving order
  • the element 22 is configured to receive the second information in a second second time unit in the subframe a+1, where a is a subframe index number; and/or the sending unit 21 is specifically configured to be in the child Transmitting the first information in the second first time unit or the third first time unit in the frame a, the receiving unit 22, specifically for the first one in the subframe a+2
  • the second information is received in the second time unit, and a is a subframe index number.
  • the transmitting end device when the transmitting end device is applied to the frequency division duplex FDD system, the value of M is 4, and N is a positive integer greater than or equal to 2; wherein, the sending unit 21, Specifically, the first information is sent in the first first time unit in the subframe a, and the receiving unit 22 is specifically configured to receive in the first second time unit in the subframe a+1.
  • the second information, a is a subframe index number; and/or the sending unit 21 is specifically configured to send the second time unit or the third time unit in the second subframe
  • the first information, the receiving unit 22 is configured to receive the second information in a second second time unit in the subframe a+1, where a is a subframe index number; and/or, the sending unit 21 Specifically, the first information is sent in the fourth first time unit in the subframe a, and the receiving unit 22 is specifically configured to be in the first second time unit in the subframe a+2.
  • Receiving the second information, a is a subframe index number.
  • M is a positive integer greater than or equal to 6
  • N is a positive integer greater than or equal to 2
  • the sending unit 21 is configured to send the first information in any one of the first M-3 first time units in the subframe a, where the receiving unit 22 is specifically configured to be in the subframe.
  • Receiving the second information in the first second time unit in a+1, a is a subframe index number; and/or, the sending unit 21 is specifically configured to use the last three in the subframe a.
  • the first information is sent in any one of the first time units, and the receiving unit 22 is configured to receive the second information in the second second time unit in the subframe a+1, a is the subframe index number.
  • the transmitting end device when the transmitting end device is applied to the time division duplex TDD system, the value of N is 1 and the value of M is 2;
  • the sending end device is configured to apply the TDD uplink/downlink configuration 0, and the sending unit 21 is configured to send the first information in the first first time unit of the subframe a, where the receiving unit 22 is used.
  • the sending end device is applied to the TDD uplink/downlink configuration 0, and the sending unit 21 is specifically configured to be used in The first information is sent in the second first time unit in the subframe a, and the receiving unit 22 is specifically configured to receive the second information in the subframe a+3, where a is a subframe index number, a of Values of 0 and / or 1 and / or 5 and / or 6;
  • the transmitting device is configured to be used in the TDD uplink/downlink configuration 1 , where the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in the subframe a+3, a is a subframe index number, and the value of a is 4 and/or 9;
  • the sending end device is configured to apply to the TDD uplink/downlink configuration 1 , where the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in subframe a+3, a is a subframe index number, and the value of a is 0 and/or 4 and/or 5 and/or 9;
  • the transmitting device is configured to be used in the TDD uplink/downlink configuration 1 , where the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in subframe a+2, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the sending end device is configured to apply to the TDD uplink/downlink configuration 1 , where the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in subframe a+3, a is a subframe index number, and a is 0 and/or 5;
  • the sending end device is configured to apply the first information in the second first time unit in the subframe a, and the sending unit 22 is specifically configured to be used in the TDD uplink/downlink configuration 1
  • the second information is received in the subframe a+6, a is a subframe index number, and the value of a is 1 and/or 6;
  • the transmitting device is configured to be applied to the TDD uplink/downlink configuration 2, where the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically configured to use Receiving the second information in the subframe a+2, a is a subframe index number, and the value of a is 0 and/or 5;
  • the sending end device is applied to the TDD uplink/downlink configuration 2, and the sending unit 21 is specifically configured to be used in The first information is sent in the first and/or second first time units in the subframe a, and the receiving unit 22 is specifically configured to receive the second information in the subframe a+6, where a is a sub- Frame index number, the value of a is 1 and / or 6;
  • the transmitting device is applied to the TDD uplink/downlink configuration 2, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+4, where a is a subframe index number, and the value of a is 3 and/or 8;
  • the transmitting device is applied to the TDD uplink/downlink configuration 2, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+3, where a is a subframe index number, and the value of a is 4 and/or 9;
  • the sending end device is applied to the TDD uplink/downlink configuration 3, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+7, where a is a subframe index number, and the value of a is 5;
  • the sending end device is applied to the TDD uplink/downlink configuration 3, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+6, where a is a subframe index number, and the value of a is 6;
  • the sending end device is applied to the TDD uplink/downlink configuration 3, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+5, where a is a subframe index number, and the value of a is 7;
  • the sending end device is applied to the TDD uplink/downlink configuration 3, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving Single
  • the element 22 is specifically configured to receive the second information in the subframe a+4, where a is a subframe index number, and the value of a is 8;
  • the sending end device is applied to the TDD uplink/downlink configuration 3, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+3, where a is a subframe index number, and the value of a is 9;
  • the transmitting device is configured to be used in the TDD uplink/downlink configuration 3, where the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically configured to use Receiving the second information in the subframe a+2, a is a subframe index number, and the value of a is 0 and/or 1;
  • the sending end device is configured to be applied to the TDD uplink/downlink configuration 3, and the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in the subframe a+3, a is a subframe index number, and the value of a is 0 and/or 1;
  • the sending end device is configured to be applied to the TDD uplink/downlink configuration 4, where the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically used to Receiving the second information in the subframe a+11, a is a subframe index number, and the value of a is 1;
  • the sending end device is applied to the TDD uplink/downlink configuration 4, and the sending unit 21 is configured to send the first information in the first and/or second first time units in the subframe a, the receiving unit 22, specifically for receiving the second information in the subframe a+8, a is a subframe index number, and the value of a is 4;
  • the sending end device is applied to the TDD uplink/downlink configuration 4, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+7, where a is a subframe index number, and the value of a is 5;
  • the sending end device is applied to the TDD uplink/downlink configuration 4, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving Single
  • the element 22 is specifically configured to receive the second information in the subframe a+6, where a is a subframe index number, and the value of a is 6;
  • the sending end device is applied to the TDD uplink/downlink configuration 4, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+5, where a is a subframe index number, and the value of a is 7;
  • the sending end device is applied to the TDD uplink/downlink configuration 4, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+4, where a is a subframe index number, and the value of a is 8;
  • the sending end device is applied to the TDD uplink/downlink configuration 4, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+3, where a is a subframe index number, and the value of a is 9;
  • the sending end device is configured to be used in the TDD uplink/downlink configuration 4, where the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically used to Receiving the second information in the subframe a+2, a is a subframe index number, and the value of a is 0 and/or 1;
  • the transmitting device is configured to be applied to the TDD uplink/downlink configuration 5, where the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in the subframe a+12, a is a subframe index number, and the value of a is 0;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or second first time units in the subframe a, the receiving unit 22, specifically for receiving the second information in the subframe a + 11, a is a subframe index number, a value of a is 1;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or second first time units in the subframe a, the receiving unit 22, specifically for receiving the second information in the subframe a+9, a is a subframe index number, and the value of a is 3;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or second first time units in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+8, where a is a subframe index number, and the value of a is 4;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+7, where a is a subframe index number, and the value of a is 5;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+6, where a is a subframe index number, and the value of a is 6;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+5, where a is a subframe index number, and the value of a is 7;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+4, where a is a subframe index number, and the value of a is 8;
  • the sending end device is applied to the TDD uplink/downlink configuration 5, and the sending unit 21 is configured to send the first information in the first and/or the second first time unit in the subframe a, the receiving Single
  • the element 22 is specifically configured to receive the second information in the subframe a+3, where a is a subframe index number, and the value of a is 9;
  • the transmitting device is configured to be applied to the TDD uplink/downlink configuration 5, where the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically configured to use Receiving the second information in the subframe a+2, a is a subframe index number, and the value of a is 0;
  • the sending end device is applied to the TDD uplink/downlink configuration 6.
  • the sending unit 21 is configured to send the first information in the first first time unit in the subframe a, where the receiving unit 22 is specifically configured to use Receiving the second information in subframe a+2, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5 and/or 6;
  • the sending end device is configured to be used in the TDD uplink/downlink configuration 6.
  • the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in the subframe a+3, a is a subframe index number, and the value of a is 0 and/or 1 and/or 5;
  • the sending end device is configured to be used in the TDD uplink/downlink configuration 6.
  • the sending unit 21 is configured to send the first information in the second first time unit in the subframe a, where the receiving unit 22 is specifically configured to: Receiving the second information in the subframe a+6, a is a subframe index number, and the value of a is 6;
  • the sending end device is applied to the TDD uplink/downlink configuration 6, and the sending unit 21 is configured to send the first information in the first and/or second first time units in the subframe a, the receiving The unit 22 is specifically configured to receive the second information in the subframe a+3, where a is a subframe index number, and the value of a is 9.
  • the sending unit 21 is specifically configured to: send the downlink data to the receiving end device on the physical downlink shared channel PDSCH in the first time unit; where the receiving unit 22 is specifically configured to: The feedback information sent by the receiving end device is received in the second time unit, and the feedback information is used to indicate whether the receiving end device successfully receives the downlink data.
  • the sending unit 21 is specifically configured to: send, in the first time unit, downlink control signaling to the receiving end device, where the downlink control signaling is used to schedule the receiving end. Transmission of uplink data of the device;
  • the receiving unit 22 is specifically configured to: receive the uplink data sent by the receiving end device on the physical uplink shared channel PUSCH in the second time unit.
  • the transmitting device 20 may correspond to the method 100 for transmitting information in the embodiment of the present invention, and the above operations and/or functions of the respective units in the transmitting device 20 are respectively implemented for The corresponding process performed by the source device in the method in FIG. 1 is omitted here for brevity.
  • the sending unit 21 may be implemented by a receiver, and the receiving unit 22 may be implemented by a transmitter.
  • the transmitting end device 200 may include a processor 201, a receiver 202, and a transmitter 203. And memory 204.
  • the memory 204 can be used to store code and the like executed by the processor 201.
  • the various components in the transmitting device 200 are coupled together by a bus system 205, which in addition to the data bus includes a power bus, a control bus, and a status signal bus.
  • a bus system 205 which in addition to the data bus includes a power bus, a control bus, and a status signal bus.
  • the source device 200 may correspond to the sender device 20 in the embodiment of the present invention, and may correspond to the corresponding body in the method according to the embodiment of the present invention. Let me repeat.
  • the disclosed systems, devices, and methods may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product.
  • the technical solution of the present invention which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Mobile Radio Communication Systems (AREA)
  • Detection And Prevention Of Errors In Transmission (AREA)
  • Bidirectional Digital Transmission (AREA)

Abstract

本发明提供一种传输信息的方法和设备,该方法包括:接收端设备在第一时间单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向发送端设备发送与该第一信息相对应的第二信息,其中,该第一时间单元的时长与该第二时间单元的时长不同。本发明实施例的传输信息的方法,能够在上下行使用不同的传输时间间隔或者通信系统采用多种传输时间间隔时,使接收端和发送端的设备确定合理的调度及反馈的时序,保证信息的正常传输。

Description

传输信息的方法和设备 技术领域
本发明实施例涉及通信领域,并且更具体地,涉及传输信息的方法和设备。
背景技术
在未来的通信技术中,随着空口技术和应用的不断扩展,降低时延成为关键的绩效指标之一。如移动终端的实时远程监控(Real-time Remote Computing for Mobile Terminals)的端到端时延小于10ms,高效安全业务(Traffic Efficienty and Safety)的时延要求为5ms,而现有长期演进(Long Term Evolution,简称为“LTE”)的传输时间间隔(Transmission Time Interval,简称为“TTI”)的时长为1ms。
数据处理及解码时延主要与TTI有关,因此,降低传输时延的关键技术之一就是缩短TTI。目前LTE-A Rel-13已经确定开始研究使用更短的TTI进行数据传输。但要求支持短TTI传输的载波上需要保证对现有LTE系统的兼容性,即要同时兼容1ms TTI。短TTI的优势在于缩短传输时延,但相应的代价是控制信令开销高,频谱效率低。
考虑上下行业务时延要求可能不同,且上行传输的覆盖性可能较差,因此系统可能会支持上下行使用不同的TTI,因此需要一种确定上下行使用不同TTI时的调度及反馈的时序的方法。
发明内容
本发明提供一种传输信息的方法和设备,能够在上下行使用不同的传输时间间隔TTI或者通信系统采用多种TTI时,确定合理的调度及反馈的时序,保证信息的正常传输。
第一方面,提供了一种传输信息的方法,包括:接收端设备在第一时间单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,其中,该第一时间单元的时长与该第二时间单元的时长不同。
因此,本发明实施例的传输信息的方法,使得在上下行使用不同的传输时间间隔TTI或者通信系统采用多种TTI时,接收端设备和发送端设备可以 确定合理的调度及反馈时序,保证信息的正常传输。
结合第一方面,在第一方面的第一种可能的实现方式中,该第二时间单元为自该第一时间单元的起始时刻开始经过目标时间长度之后的第一个该第二时间单元,其中,该目标时间长度为该第一时间单元的时长的整数倍。
进而,当通信系统采用比现有技术更短的TTI时,接收端设备和发送端设备可以根据本发明实施例的方法,确定最优的反馈时序。
结合第一方面或上述实现方式,在第一方面的第二种实现方式中,一个子帧内包括M个该第一时间单元,该M个该第一时间单元中的第i个该第一时间单元的结束时刻在第i+1个该第一时间单元的开始时刻之前,或,第i个该第一时间单元的结束时刻为第i+1个该第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
一个子帧内包括N个该第二时间单元,该N个该第二时间单元中的第k个该第二时间单元的结束时刻在第k+1个该第二时间单元的开始时刻之前,或,该N个该第二时间单元中的第k个该第二时间单元的结束时刻为第k+1个该第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
结合第一方面的第二种实现方式,在第一方面的第三种实现方式中,在该方法应用于频分双工FDD系统中时,N的值为1,M的值为2;
其中,该接收端设备在第一时间单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号。
结合第一方面的第二种实现方式中,在第一方面的第四种实现方式中,在该方法应用于频分双工FDD系统中时,N的值为1,M为大于或等于3的正整数;
其中,该接收端设备在第一时间单元内接收发送端设备发送的第一信 息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该接收端设备在子帧a+1内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收端设备在子帧a内的后3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号。
结合第一方面的第二种实现方式,在第一方面的第五种实现方式中,在该方法应用于频分双工FDD系统中时,M的值为1,N为大于或等于2的正整数;
其中,该接收端设备在第一时间单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在子帧a内接收该第一信息;该接收端设备在子帧a+4内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号。
结合第一方面的第二种实现方式,在第一方面的第六种实现方式中,在该方法应用于频分双工FDD系统中时,M的值为3,N为大于或等于2的正整数;
其中,该接收端设备在第一时间按单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+1内的第二个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收端设备在子帧a内的第二个该第一时间单元内或第三个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号。
结合第一方面的第二种实现方式,在第一方面的第七种实现方式中,在该方法应用于频分双工FDD系统中时,M的值为4,N为大于或等于2的正整数;
其中,该接收端设备在第一时间按单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对 应的第二信息,包括:该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+1内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收端设备在子帧a内的第二个该第一时间单元或第三个该第一时间单元内接收该第一信息,该接收端设备在子帧a+1内的第二个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收端设备在子帧a内的第四个该第一时间单元中接收该第一信息,该接收端设备在子帧a+2内的第一个该第二时间单元内向该终端设备发送该第二信息,a为子帧索引号。
结合第一方面的第二种实现方式,在第一方面的第八种实现方式中,在该方法应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;
其中,该接收端设备在第一时间按单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该接收端设备在子帧a+1内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收端设备在子帧a内的后3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该接收端设备在子帧a+1内的第二个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号。
结合第一方面的第二种可能的实现方式,在第一方面的第九种可能的实现方式中,在该方法应用于时分双工TDD系统中时,N的值为1,M的值为2;
其中,该接收端设备在第一时间单元内接收发送端设备发送的第一信息;该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:
该方法应用于TDD上/下行配置0,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置0,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端 设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置1,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该方法应用于TDD上/下行配置1,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
和/或,
该方法应用于TDD上/下行配置1,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置1,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该方法应用于TDD上/下行配置1,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该方法应用于TDD上/下行配置2,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该方法应用于TDD上/下行配置2,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该方法应用于TDD上/下行配置2,该接收端设备在子帧a内的第一个 和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该方法应用于TDD上/下行配置2,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为3和/或8;
和/或,
该方法应用于TDD上/下行配置2,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为5;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+5内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为7;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为8;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该方法应用于TDD上/下行配置3,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+11内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+8内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为5;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+5内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为7;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为8;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9;
和/或,
该方法应用于TDD上/下行配置4,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+12内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+11内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+9内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为3;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+8内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为5;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+6 内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+5内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为7;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为8;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9;
和/或,
该方法应用于TDD上/下行配置5,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0;
和/或,
该方法应用于TDD上/下行配置6,该接收端设备在子帧a内的第一个该第一时间单元内接收该第一信息,该接收端设备在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置6,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
和/或,
该方法应用于TDD上/下行配置6,该接收端设备在子帧a内的第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置6,该接收端设备在子帧a内的第一个 和/或第二个该第一时间单元内接收该第一信息,该接收端设备在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9。
结合第一方面及其上述实现方式,在第一方面的第十种实现方式中,该接收端设备在第一时间单元内接收发送端设备发送的第一信息,包括:该接收端设备在该第一时间单元内接收该发送端设备在物理下行共享信道PDSCH上发送的下行数据;
其中,该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在该第二时间单元内向该发送端设备发送反馈信息,该反馈信息用于指示该接收端设备是否成功接收该下行数据。
结合第一方面及其上述实现方式,在第一方面的第十一种实现方式中,该接收端设备在第一时间单元内接收发送端设备发送的第一信息,包括:该接收端设备在该第一时间单元内接收该发送端设备发送的下行控制信令,该下行控制信令用于调度该接收端设备的上行数据的传输;
其中,该接收端设备在第二时间单元内向该发送端设备发送与该第一信息相对应的第二信息,包括:该接收端设备在该第二时间单元内在物理上行共享信道PUSCH上向该发送端设备发送上行数据。
第二方面,提供了一种传输信息的方法,其特征在于,包括:发送端设备在第一时间单元内向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,其中,该第一时间单元的时长与该第二时间单元的时长不同。
结合第二方面,在第二方面的第一种实现方式中,该第二时间单元为自该第一时间单元的起始时刻开始经过目标时间长度之后的第一个该第二时间单元,其中,该目标时间长度为该第一时间单元的时长的整数倍。
结合第二方面或上述实现方式,在第二方面的第二种实现方式中,一个子帧内包括M个该第一时间单元,该M个该第一时间单元中的第i个该第一时间单元的结束时刻在第i+1个该第一时间单元的开始时刻之前,或,第i个该第一时间单元的结束时刻为第i+1个该第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
一个子帧内包括N个该第二时间单元,该N个该第二时间单元中的第k 个该第二时间单元的结束时刻在第k+1个该第二时间单元的开始时刻之前,或,该N个该第二时间单元中的第k个该第二时间单元的结束时刻为第k+1个该第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
结合第二方面的第二种实现方式,在第二方面的第三种实现方式中,在该方法应用于频分双工FDD系统中时,N的值为1,M的值为2;
其中,该发送端设备在第一时间单元内向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该该第二信息,a为子帧索引号;和/或,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号。
结合第二方面的第二种实现方式,在第二方面的第四中实现方式中,在该方法应用于频分双工FDD系统中时,N的值为1,M为大于或等于3的正整数;
其中,该发送端设备在第一时间单元内向发送端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送与该第一信息相对应的第二信息,包括:该发送端设备在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该发送端设备在子帧a+1内接收该第二信息,a为子帧索引号;和/或,该发送端设备在子帧a内的后3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号。
结合第二方面的第二种实现方式,在第二方面的第五种实现方式中,在该方法应用于频分双工FDD系统中时,M的值为1,N为大于或等于2的正整数;
其中,该发送端设备在第一时间单元内向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:该发送端设备在子帧a内发送该第一信息;该发送端设备在子帧a+4内的第一个该第二时间单元内接收该第二信息,a为子帧索引号。
结合第二方面的第二种实现方式,在第二方面的第六种实现方式中,在该方法应用于频分双工FDD系统中时,M的值为3,N为大于或等于2的正整数;
其中,该发送端设备在第一时间按单元向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+1内的第二个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送端设备在子帧a内的第二个该第一时间单元内或第三个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内的第一个该第二时间单元内接收该第二信息,a为子帧索引号。
结合第二方面的第二种实现方式,在第二方面的第七种实现方式中,在该方法应用于频分双工FDD系统中时,M的值为4,N为大于或等于2的正整数;
其中,该发送端设备在第一时间按单元内向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:
该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+1内的第一个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送端设备在子帧a内的第二个该第一时间单元或第三个该第一时间单元内发送该第一信息,该发送端设备在子帧a+1内的第二个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送端设备在子帧a内的第四个该第一时间单元中发送该第一信息,该发送端设备在子帧a+2内的第一个该第二时间单元内接收该第二信息,a为子帧索引号。
结合第二方面的第二种实现方式,在第二方面的第八种实现方式中,在该方法应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;
其中,该发送端设备在第一时间按单元内向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:该发送端设备在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该发送端设备在子帧a+1内 的第一个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送端设备在子帧a内的后3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该发送端设备在子帧a+1内的第二个该第二时间单元内接收该第二信息,a为子帧索引号。
结合第二方面的第二种可能的实现方式,在第二方面的第九种可能的实现方式中,在该方法应用于时分双工TDD系统时,N的值为1,M的值为2;
其中,该发送端设备在第一时间按单元内向接收端设备发送第一信息;该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:
该方法应用于TDD上/下行配置0,该发送端设备在子帧a的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置0,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置1,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该方法应用于TDD上/下行配置1,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
和/或,
该方法应用于TDD上/下行配置1,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置1,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3接收该第二信 息,a为子帧索引号,a的取值为0和/或5;
和/或,
该方法应用于TDD上/下行配置1,该发送端设备在子帧a内第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该方法应用于TDD上/下行配置2,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该方法应用于TDD上/下行配置2,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该方法应用于TDD上/下行配置2,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收端设备在子帧a+4内接收该第二信息,a为子帧索引号,a的取值为3和/或8;
和/或,
该方法应用于TDD上/下行配置2,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+7内接收该第二信息,a为子帧索引号,a的取值为5;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收端设备在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第一个 和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+5内接收该第二信息,a为子帧索引号,a的取值为7;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+4内接收该第二信息,a为子帧索引号,a的取值为8;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为9;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该方法应用于TDD上/下行配置3,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+11内接收该第二信息,a为子帧索引号,a的取值为1;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+8内接收该第二信息,a为子帧索引号,a的取值为4;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+7内接收该第二信息,a为子帧索引号,a的取值为5;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+5内接收该第二信息,a为子帧索引号,a的取值为7;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+4接收该第二信息,a为子帧索引号,a的取值为8;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内向接收该第二信息,a为子帧索引号,a的取值为9;
和/或,
该方法应用于TDD上/下行配置4,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+12内接收该第二信息,a为子帧索引号,a的取值为0;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+11内接收该第二信息,a为子帧索引号,a的取值为1;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+9内接收该第二信息,a为子帧索引号,a的取值为3;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一和/或第二个该第一时间单元内接发送述第一信息,该发送端设备在子帧a+8内接收该第二信息,a为子帧索引号,a的取值为4;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+7内接收该第二信息,a为子帧索引号,a的取值为5;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+5内接收该第二信息,a为子帧索引号,a的取值为7;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+4内接收该第二信息,a为子帧索引号,a的取值为8;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为9;
和/或,
该方法应用于TDD上/下行配置5,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0;
和/或,
该方法应用于TDD上/下行配置6,该发送端设备在子帧a内的第一个该第一时间单元内发送该第一信息,该发送端设备在子帧a+2内接收该第二 信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该方法应用于TDD上/下行配置6,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
和/或,
该方法应用于TDD上/下行配置6,该发送端设备在子帧a内的第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该方法应用于TDD上/下行配置6,该发送端设备在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该发送端设备在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为9。
结合第二方面及其上述实现方式,在第二方面的第十种实现方式中,该发送端设备在第一时间单元内向接收端设备发送第一信息,包括:该发送端端设备在该第一时间单元内在物理下行共享信道PDSCH上向该接收端设备发送下行数据;
其中,该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:该发送端设备在该第二时间单元内向接收该接收端设备发送的反馈信息,该反馈信息用于指示该接收端设备是否成功接收该下行数据。
结合第二方面及其上述实现方式,在第二方面的第十一种实现方式中,该发送端设备在第一时间单元内向接收端设备发送第一信息,包括:该发送端设备在该第一时间单元内向该接收端设备发送下行控制信令,该下行控制信令用于调度该接收端设备的上行数据的传输;
其中,该发送端设备在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,包括:该发送端设备在该第二时间单元内在物理上行共享信道PUSCH上接收该接收端设备发送的上行数据。
第三方面,提供了一种接收端设备,用于执行上述第一方面或第一方面的任意可能的实现方式中的方法。具体地,该接收端设备用于执行上述第一方面或第一方面的任意可能的实现方式中的方法的单元。
第四方面,提供了一种发送端设备,用于执行上述第二方面或第二方面的任意可能的实现方式中的方法。具体地,该发送端设备用于执行上述第二方面或第二方面的任意可能的实现方式中的方法的单元。
第五方面,提供了一种计算机可读介质,用于存储计算机程序,该计算机程序包括用于执行第一方面或第一方面的任意可能的实现方式中的方法的指令。
第六方面,提供了一种计算机可读介质,用于存储计算机程序,该计算机程序包括用于执行第二方面或第二方面的任意可能的实现方式中的方法的指令。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对本发明实施例中所需要使用的附图作简单地介绍,显而易见地,下面所描述的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是根据本发明实施例的传输信息的方法的示意性流程图;
图2是根据本发明实施例的传输信息的时序的示意图;
图3是根据本发明另一实施例的FDD系统中传输信息的时序的示意图;
图4是根据本发明再一实施例的FDD系统中传输信息的时序的示意图;
图5是根据本发明再一实施例的FDD系统中传输信息的时序的示意图;
图6是根据本发明再一实施例的FDD系统中传输信息的时序的示意图;
图7是根据本发明再一实施例的FDD系统中传输信息的时序的示意图;
图8是根据本发明再一实施例的FDD系统中传输信息的时序的示意图;
图9是根据本发明再一实施例的FDD系统中传输信息的时序的示意图;
图10是根据本发明实施例的TDD系统中传输信息的时序的示意图;
图11是根据本发明另一实施例的TDD系统中传输信息的时序的示意图;
图13是根据本发明再一实施例的TDD系统中传输信息的时序的示意图;
图14是根据本发明再一实施例的TDD系统中传输信息的时序的示意图;
图15是根据本发明再一实施例的TDD系统中传输信息的时序的示意图;
图16是根据本发明再一实施例的TDD系统中传输信息的时序的示意图;
图17是根据本发明实施例的接收端设备的示意性框图;
图18是根据本发明另一实施例的接收端设备的示意性框图;
图19是根据本发明实施例的发送端设备的示意性框图;
图20是根据本发明另一实施例的发送端设备的示意性框图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明的一部分实施例,而不是全部实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都应属于本发明保护的范围。
图1示出了本发明实施例提供的传输信息的方法100的示意性流程图,如图1所示,该方法100包括:
S110,发送端设备向接收端设备发送第一信息;
具体地,发送端设备在第一时间单元n(n为第一时间单元的索引)中向接收端设备发送第一信息,第一时间单元的时长为第一传输时间间隔(Transmission Time Interval,简称“TTI”),接收端设备可以根据系统默认的规则确定第一时间单元的时长,或者接收端设备还可以根据发送端设备发送的指示信息确定第一时间单元的时长。
S120,接收端设备向发送端设备发送针对该第一信息的第二信息。
具体地,接收端设备接收到发送端设备发送的第一信息时,可以在第二时间单元k(k为第二时间单元的索引)中向接收端设备发送针对该第一信息的第二信息,该第二时间单元的时长为第二TTI,且该第二TTI与第一TTI不同,接收端设备可以根据系统默认的规则确定第二时间单元k与第一时间单元n之间的时间间隔,也可以根据发送端设备发送的指示信息确定第二时间单元k与第一时间单元n之间的时间间隔。
可选地,作为一个实施例,在该接收端设备为终端设备(或称为用户设备)时,对应的发送端设备为基站,若终端设备在第一时间单元n内在物理 下行共享信道(Physical Downlink Control Channel,简称为“PDCCH”)上发送的下行数据,终端设备会在第二时间单元k内向基站发送用于指示终端设备是否成功接收该下行数据的反馈信息,该反馈信息例如可以是ACK/NACK。
可选地,作为一个实施例,在该接收端设备为基站,对应的发送端设备为终端设备,若终端设备在第一时间单元内n接收到基站发送的用于调度终端设备的上行数据传输的下行控制信令,例如,上行调度授权UL Grant,终端设备会在第二时间单元n内在物理共享信道(Physical Uplink Shared Channel,简称为“PUSCH”)上向基站发送上行数据。
可选地,作为一个实施例,第二时间单元k为自该第一时间单元n的起始时刻开始经过目标时间长度之后的第一个该第二时间单元,其中,该目标时间长度为该第一时间单元n的时长的整数倍。例如,如图2所示,第二时间单元k的开始时刻与第一时间单元n的开始时刻的时间间隔为第一时间单元的时长的4倍。
可选地,作为一个实施例,一个子帧内包括M个该第一时间单元,该M个该第一时间单元中的第i个该第一时间单元的结束时刻在第i+1个该第一时间单元的开始时刻之前,或,第i个该第一时间单元的结束时刻为第i+1个该第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
一个子帧内包括N个该第二时间单元,该N个该第二时间单元中的第k个该第二时间单元的结束时刻在第k+1个该第二时间单元的开始时刻之前,或,该N个该第二时间单元中的第k个该第二时间单元的结束时刻为第k+1个该第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
也就是说,现有子帧的1ms时长内可以包括1个或多个第一时间单元,现有子帧的1ms时长内可以包括1个或多个第二时间单元。
具体来说,作为一个实施例,N的值为1,M的值为2;也就是说,对于FDD系统,第一时间单元为LTE时隙,第二时间单元为LTE子帧,如图3所示,以下行数据传输为例,传输下行数据以时隙为时间单位,即0.5ms  TTI,传输ACK/NACK信息以子帧为时间单位,即1ms TTI,假设系统规定的处理时延为数据传输对应的TTI的N倍,在N的值为4时,若接收设备在子帧a的时隙0内接收下行数据,下行数据对应的ACK/NACK信息在子帧a+2中传输;若接收设备在子帧a的时隙1内接收下行数据,下行数据对应的ACK/NACK信息在子帧a+3中传输。
可选地,作为一个实施例,N的值为1,M为大于或等于3的正整数;也就是说,对于FDD系统,一个子帧包含三个或三个以上第一时间单元,第二时间单元为子帧。如图4所示,以下行数据传输为例,一个子帧中包含3个传输下行数据的时间单元(第一时间单元),传输ACK/NACK信息以子帧为时间单元,即1ms子帧,系统规定的处理时延为数据传输对应的TTI的N倍,N为正整数,假设N=4,具体ACK/NACK信息的反馈时间如图4所示。
图5是一个时隙包含两个传输下行数据的时间单元,传输反馈信息以子帧为时间单位时,下行数据与反馈信息传输时序的示意图。假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a的第一个第一时间单元内接收下行数据时,接收端设备在子帧a+1内向发送端设备发送针对该下行数据的反馈信息(ACK/NACK);接收端设备在子帧a的第二个或第三个或第四个第一时间单元内接收下行数据时,接收端设备在子帧a+2内向发送端设备发送针对该下行数据的反馈信息。
可选地,作为一个实施例,M的值为1,N为大于或等于2的正整数;也就是说,对于FDD系统,一个子帧包含一个第一时间单元,一个子帧包含至少两个第二时间单元。如图6所示,以下行数据传输为例,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内接收下行数据时,接收端设备在子帧a+4内的第一个第二时间单元中向发送端设备发送针对该下行数据的反馈信息(ACK/NACK)。
可选地,作为一个实施例,对于FDD系统,M的值为3,N为大于或等于2的正整数;如图7所示,以下行数据传输为例,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个第一时间单元内接收下行数据时,接收端设备在子帧a+1内的第二个第二时间单元内向发送端设备发送反馈信息,a为子帧索引号;和/或,接收端设备在子帧a内的第二个第一时间单元内或第三个第一时间单元内接收下行数据时,接 收端设备在子帧a+2内的第一个第二时间单元内向发送端设备发送反馈信息,a为子帧索引号。
可选地,作为一个实施例,对于FDD系统,M的值为4,N为大于或等于2的正整数;以如图8所示的下行数据传输为例,图8中,一个子帧包括4个第一时间单元,一个子帧包括2个第二时间单元,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个第一时间单元内接收下行数据时,接收端设备在子帧a+1内的第一个第二时间单元内向该发送端设备发送反馈信息,a为子帧索引号;和/或,接收端设备在子帧a内的第二个第一时间单元或第三个第一时间单元内接收下行数据时,接收端设备在子帧a+1内的第二个第二时间单元内向发送端设备发送第二信息,a为子帧索引号;和/或,接收端设备在子帧a内的第四个第一时间单元中接收下行数据时,接收端设备在子帧a+2内的第一个第二时间单元内向终端设备发送反馈信息,a为子帧索引号。
可选地,作为一个实施例,对于FDD系统,M为大于或等于6的正整数,N为大于或等于2的正整数;以如图9所示的下行数据传输为例,图9中,一个子帧包括7个第一时间单元,一个子帧包括2个第二时间单元,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的前4个第一时间单元中的任一第一时间单元内接收下行数据,接收端设备在子帧a+1内的第一个第二时间单元内向发送端设备发送反馈信息,a为子帧索引号;和/或,接收端设备在子帧a内的后3个第一时间单元中的任一第一时间单元内接收下行数据,接收端设备在子帧a+1内的第二个第二时间单元内向发送端设备发送反馈信息,a为子帧索引号。
可选地,作为一个实施例,对于时分双工(Time Division Duplexing,简称为“TDD”)系统,在采用上下行配置0时,N的值为1,M的值为2,如图10所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个第一时间单元内接收第一信息时,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6。
或者,对于TDD系统,在采用上下行配置1时,N的值为1,M的值为2,如图11所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为4和/或9;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;和/或,接收端设备在子帧a内的第一个第一时间单元内接收第一信息,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或5;和/或,接收端设备在子帧a内的第二个第一时间单元内接收所述第一信息,接收端设备在子帧a+6内向发送端设备发送所述第二信息,a为子帧索引号,a的取值为1和/或6。
或者,对于TDD系统,在采用上下行配置1时,N的值为1,M的值为2,如图12所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个第一时间单元内接收所述第一信息,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或5;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+7内向发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或5;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+6内向发送端设备发送第二信息,a为子帧索引号,a的取值为1和/或6;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收所述第一信息,接收端设备在子帧a+4内向发送端设备发送第二信息,a为子帧索引号,a的取值为3和/或8;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送所述第二信息,a为子帧索引号,a的取值为4和/或9。
或者,对于TDD系统,在采用上下行配置1时,N的值为1,M的值 为2,如图13所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+7内向发送端设备发送第二信息,a为子帧索引号,a的取值为5;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+6内向发送端设备发送第二信息,a为子帧索引号,a的取值为6;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+5内向发送端设备发送第二信息,a为子帧索引号,a的取值为7;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+4内向所述发送端设备发送第二信息,a为子帧索引号,a的取值为8;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为9;和/或,接收端设备在子帧a内的第一个第一时间单元内接收第一信息,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1。
或者,对于TDD系统,在采用上下行配置1时,N的值为1,M的值为2,如图14所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+11内向发送端设备发送第二信息,a为子帧索引号,a的取值为1;和/或,接收端设备在子帧a内的第一和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+8内向发送端设备发送第二信息,a为子帧索引号,a的取值为4;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+7内向发送端设备发送第二信息,a为子帧索引号,a的取值为5;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+6内向发送端设备发送第二信息,a为子帧索引号,a的取值为6;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧 a+5内向发送端设备发送第二信息,a为子帧索引号,a的取值为7;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+4内向发送端设备发送第二信息,a为子帧索引号,a的取值为8;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为9;和/或,接收端设备在子帧a内的第一个第一时间单元内接收第一信息,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1。
或者,对于TDD系统,在采用上下行配置1时,N的值为1,M的值为2,如图15所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+12内向发送端设备发送第二信息,a为子帧索引号,a的取值为0;和/或,接收端设备在子帧a内的第一和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+11内向发送端设备发送第二信息,a为子帧索引号,a的取值为1;和/或,接收端设备在子帧a内的第一和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+9内向发送端设备发送第二信息,a为子帧索引号,a的取值为3;和/或,接收端设备在子帧a内的第一和/或第二个所述第一时间单元内接收第一信息,接收端设备在子帧a+8内向发送端设备发送第二信息,a为子帧索引号,a的取值为4;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+7内向发送端设备发送第二信息,a为子帧索引号,a的取值为5;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+6内向发送端设备发送第二信息,a为子帧索引号,a的取值为6;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+5内向发送端设备发送第二信息,a为子帧索引号,a的取值为7;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+4内向发送端设备发送第二信息,a为子帧索引号,a的取值为8;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为9;和 /或,接收端设备在子帧a内的第一个第一时间单元内接收第一信息,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0。
或者,对于TDD系统,在采用上下行配置1时,N的值为1,M的值为2,如图16所示,图中D表示下行子帧,S表示特殊子帧,U表示上行子帧,假设系统规定的处理时延为数据传输对应的TTI的4倍,接收端设备在子帧a内的第一个第一时间单元内接收第一信息,接收端设备在子帧a+2内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为0和/或1和/或5;和/或,接收端设备在子帧a内的第二个第一时间单元内接收第一信息,接收端设备在子帧a+6内向发送端设备发送第二信息,a为子帧索引号,a的取值为6;和/或,接收端设备在子帧a内的第一个和/或第二个第一时间单元内接收第一信息,接收端设备在子帧a+3内向发送端设备发送第二信息,a为子帧索引号,a的取值为9。
应理解,在本发明实施例中,仅仅以N的值为1,M的值为2为例进行说明,N与M取其他值时接收信息与发送信息的时序关系,可以根据本发明实施例描述的方法得出,在此不再赘述。
进一步的,在本发明实施例中,当多个第一时间单元与一个第二时间单元对应时,基站可以在多个第一时间单元内向终端设备发送UL Grant,终端设备接收到多个UL Grant时,可以以接收时间靠后的UL Grant为准。或者,基站可以固定使用多个第一时间单元中的最后一个第一时间单元传输UL Grant,本发明对此不作限定。
因此,本发明实施例的传输信息的方法,使得在上下行使用不同的传输时间间隔TTI或者通信系统采用多种TTI时,接收端设备和发送端设备可以确定合理的调度及反馈时序,保证信息的正常传输。
以上结合图1至图16,详细描述了根据本发明实施例的传输信息的方法,下面将结合图17,描述根据本发明实施例的接收端设备10。
如图17所示,根据本发明实施例的接收端设备10包括:
接收单元11,用于在第一时间单元内接收发送端设备发送的第一信息;
发送单元12,用于在第二时间单元内向该发送端设备发送与该第一信息 相对应的第二信息,其中,该第一时间单元的时长与该第二时间单元的时长不同。
因此,本发明实施例的接收端设备能够在上下行使用不同的传输时间间隔TTI或者通信系统采用多种TTI时,确定合理的调度及反馈的时序,保证信息的正常传输。
在本发明实施例中,可选地,该第二时间单元为自该第一时间单元的起始时刻开始经过目标时间长度之后的第一个该第二时间单元,其中,该目标时间长度为该第一时间单元的时长的整数倍。
在本发明实施例中,可选地,一个子帧内包括M个该第一时间单元,该M个该第一时间单元中的第i个该第一时间单元的结束时刻在第i+1个该第一时间单元的开始时刻之前,或,第i个该第一时间单元的结束时刻为第i+1个该第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
一个子帧内包括N个该第二时间单元,该N个该第二时间单元中的第k个该第二时间单元的结束时刻在第k+1个该第二时间单元的开始时刻之前,或,该N个该第二时间单元中的第k个该第二时间单元的结束时刻为第k+1个该第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
在本发明实施例中,可选地,在该接收端设备应用于频分双工FDD时,N的值为1,M的值为2;其中,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该接收端设备应用于频分双工FDD时,N的值为1,M为大于或等于3的正整数;其中,该接收单元11,具体用于在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+1内向该发送端设备发送该第二 信息,a为子帧索引号;和/或,该接收单元11,具体用于在子帧a内的后3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该接收端设备应用于频分双工FDD时,M的值为1,N为大于或等于2的正整数;其中,该接收单元11,具体用于在子帧a内接收该第一信息;该发送单元12,具体用于在子帧a+4内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该接收端设备应用于频分双工FDD时,M的值为3,N为大于或等于2的正整数;其中,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+1内的第二个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内或第三个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该接收端设备应用于频分双工FDD时,M的值为4,N为大于或等于2的正整数;其中,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+1内的第一个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收单元11,具体用于在子帧a内的第二个该第一时间单元或第三个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+1内的第二个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,该接收单元11,具体用于在子帧a内的第四个该第一时间单元中接收该第一信息,该发送单元12,具体用于在子帧a+2内的第一个该第二时间单元内向该终端设备发送该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该接收端设备应用于频分双工FDD时,M为大于或等于6的正整数,N为大于或等于2的正整数;其中,该接收单元11,具体用于在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+1内的第一个 该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号;和/或,
该接收单元11,具体用于在子帧a内的后3个该第一时间单元中的任一该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+1内的第二个该第二时间单元内向该发送端设备发送该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该接收端设备应用于时分双工TDD系统中时,N的值为1,M的值为2;
其中,该接收端设备应用于TDD上/下行配置0,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该接收端设备应用于TDD上/下行配置0,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该接收端设备应用于TDD上/下行配置1,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该接收端设备应用于TDD上/下行配置1,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
和/或,
该接收端设备应用于TDD上/下行配置1,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的 取值为0和/或1和/或5和/或6;
和/或,
该接收端设备应用于TDD上/下行配置1,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该接收端设备应用于TDD上/下行配置1,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该接收端设备应用于TDD上/下行配置2,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该接收端设备应用于TDD上/下行配置2,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该接收端设备应用于TDD上/下行配置2,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该接收端设备应用于TDD上/下行配置2,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为3和/或8;
和/或,
该接收端设备应用于TDD上/下行配置2,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为5;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+5内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为7;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为8;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该接收端设备应用于TDD上/下行配置3,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+11内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+8内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为5;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在 子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+5内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为7;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为8;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9;
和/或,
该接收端设备应用于TDD上/下行配置4,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+12内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+11内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为1;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该发送单元 12,具体用于在子帧a+9内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为3;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+8内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为4;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+7内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为5;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+5内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为7;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+4内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为8;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索 引号,a的取值为9;
和/或,
该接收端设备应用于TDD上/下行配置5,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0;
和/或,
该接收端设备应用于TDD上/下行配置6,该接收单元11,具体用于在子帧a内的第一个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+2内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该接收端设备应用于TDD上/下行配置6,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
和/或,
该接收端设备应用于TDD上/下行配置6,该接收单元11,具体用于在子帧a内的第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+6内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为6;
和/或,
该接收端设备应用于TDD上/下行配置6,该接收单元11,具体用于在子帧a内的第一个和/或第二个该第一时间单元内接收该第一信息,该发送单元12,具体用于在子帧a+3内向该发送端设备发送该第二信息,a为子帧索引号,a的取值为9。
在本发明实施例中,可选地,该接收单元11具体用于:在该第一时间单元内接收该发送端设备在物理下行共享信道PDSCH上发送的下行数据;
其中,该发送单元12具体用于:在该第二时间单元内向该发送端设备发送反馈信息,该反馈信息用于指示该接收端设备是否成功接收该下行数据。
在本发明实施例中,可选地,该接收单元11具体用于:在该第一时间单元内接收该发送端设备发送的下行控制信令,该下行控制信令用于调度该接收端设备的上行数据的传输;
其中,该发送单元12具体用于:在该第二时间单元内在物理上行共享信道PUSCH上向该发送端设备发送上行数据。
应理解,根据本发明实施例的接收端设备10可对应执行本发明实施例中的传输信息的方法100,并且接收端设备10中的各个单元的上述和其他操作和/或功能分别为了实现图1中的方法中由接收端设备执行的相应流程,为了简洁,在此不再赘述。
应注意,本发明实施例中,接收单元11可以由接收器实现,发送单元12可以由发送器实现,如图18所示,接收端设备100可以包括处理器101、接收器102、发送器103和存储器104。其中,存储器104可以用于存储处理器101执行的代码等。
接收端设备100中的各个组件通过总线系统105耦合在一起,其中总线系统105除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。
应理解,根据本发明实施例的接收端设备100可对应于本发明实施例中的接收端设备10,并可以对应于执行根据本发明实施例的方法中的相应主体,为了简洁,在此不再赘述。
图19是根据本发明实施例的发送端设备20的示意性框图,如图19所示,该发送端设备20包括:
发送单元21,用于在第一时间单元内向接收端设备发送第一信息;
接收单元22,用于在第二时间单元内接收该接收端设备发送的与该第一信息相对应的第二信息,其中,该第一时间单元的时长与该第二时间单元的时长不同。
因此,本发明实施例的发送端设备能够在上下行使用不同的传输时间间隔TTI或者通信系统采用多种TTI时,确定合理的调度及反馈的时序,保证信息的正常传输。
在本发明实施例中,可选地,该第二时间单元为自该第一时间单元的起始时刻开始经过目标时间长度之后的第一个该第二时间单元,其中,该目标时间长度为该第一时间单元的时长的整数倍。
在本发明实施例中,可选地,一个子帧内包括M个该第一时间单元, 该M个该第一时间单元中的第i个该第一时间单元的结束时刻在第i+1个该第一时间单元的开始时刻之前,或,第i个该第一时间单元的结束时刻为第i+1个该第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
一个子帧内包括N个该第二时间单元,该N个该第二时间单元中的第k个该第二时间单元的结束时刻在第k+1个该第二时间单元的开始时刻之前,或,该N个该第二时间单元中的第k个该第二时间单元的结束时刻为第k+1个该第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
在本发明实施例中,可选地,在该发送端设备应用于频分双工FDD系统中时,N的值为1,M的值为2;其中,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号;和/或,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号。
在本发明实施例中,可选地,N的值为1,在该发送端设备应用于频分双工FDD系统中时,M为大于或等于3的正整数;其中,该发送单元21,具体用于在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+1内接收该第二信息,a为子帧索引号;和/或,该发送单元21,具体用于在子帧a内的后3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该发送端设备应用于频分双工FDD系统中时,M的值为1,N为大于或等于2的正整数;其中,该发送单元21,具体用于在子帧a内发送该第一信息;该接收单元22,具体用于在子帧a+4内的第一个该第二时间单元内接收该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该发送端设备应用于频分双工FDD系统中时,M的值为3,N为大于或等于2的正整数;其中,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单 元22,具体用于在子帧a+1内的第二个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内或第三个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内的第一个该第二时间单元内接收该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该发送端设备应用于频分双工FDD系统中时,M的值为4,N为大于或等于2的正整数;其中,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+1内的第一个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送单元21,具体用于在子帧a内的第二个该第一时间单元或第三个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+1内的第二个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送单元21,具体用于在子帧a内的第四个该第一时间单元中发送该第一信息,该接收单元22,具体用于在子帧a+2内的第一个该第二时间单元内接收该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该发送端设备应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;其中,该发送单元21,具体用于在子帧a内的前M-3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+1内的第一个该第二时间单元内接收该第二信息,a为子帧索引号;和/或,该发送单元21,具体用于在子帧a内的后3个该第一时间单元中的任一该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+1内的第二个该第二时间单元内接收该第二信息,a为子帧索引号。
在本发明实施例中,可选地,在该发送端设备应用于时分双工TDD系统时,N的值为1,M的值为2;
其中,该发送端设备应用于TDD上/下行配置0,该发送单元21,具体用于在子帧a的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该发送端设备应用于TDD上/下行配置0,该发送单元21,具体用于在 子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该发送端设备应用于TDD上/下行配置1,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该发送端设备应用于TDD上/下行配置1,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
和/或,
该发送端设备应用于TDD上/下行配置1,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该发送端设备应用于TDD上/下行配置1,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3接收该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该发送端设备应用于TDD上/下行配置1,该发送单元21,具体用于在子帧a内第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该发送端设备应用于TDD上/下行配置2,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或5;
和/或,
该发送端设备应用于TDD上/下行配置2,该发送单元21,具体用于在 子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为1和/或6;
和/或,
该发送端设备应用于TDD上/下行配置2,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+4内接收该第二信息,a为子帧索引号,a的取值为3和/或8;
和/或,
该发送端设备应用于TDD上/下行配置2,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为4和/或9;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+7内接收该第二信息,a为子帧索引号,a的取值为5;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+5内接收该第二信息,a为子帧索引号,a的取值为7;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单 元22,具体用于在子帧a+4内接收该第二信息,a为子帧索引号,a的取值为8;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为9;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该发送端设备应用于TDD上/下行配置3,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+11内接收该第二信息,a为子帧索引号,a的取值为1;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+8内接收该第二信息,a为子帧索引号,a的取值为4;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+7内接收该第二信息,a为子帧索引号,a的取值为5;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单 元22,具体用于在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+5内接收该第二信息,a为子帧索引号,a的取值为7;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+4接收该第二信息,a为子帧索引号,a的取值为8;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内向接收该第二信息,a为子帧索引号,a的取值为9;
和/或,
该发送端设备应用于TDD上/下行配置4,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+12内接收该第二信息,a为子帧索引号,a的取值为0;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+11内接收该第二信息,a为子帧索引号,a的取值为1;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+9内接收该第二信息,a为子帧索引号,a的取值为3;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一和/或第二个该第一时间单元内接发送述第一信息,该接收单元22,具体用于在子帧a+8内接收该第二信息,a为子帧索引号,a的取值为4;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+7内接收该第二信息,a为子帧索引号,a的取值为5;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+5内接收该第二信息,a为子帧索引号,a的取值为7;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+4内接收该第二信息,a为子帧索引号,a的取值为8;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单 元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为9;
和/或,
该发送端设备应用于TDD上/下行配置5,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0;
和/或,
该发送端设备应用于TDD上/下行配置6,该发送单元21,具体用于在子帧a内的第一个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+2内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
和/或,
该发送端设备应用于TDD上/下行配置6,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
和/或,
该发送端设备应用于TDD上/下行配置6,该发送单元21,具体用于在子帧a内的第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+6内接收该第二信息,a为子帧索引号,a的取值为6;
和/或,
该发送端设备应用于TDD上/下行配置6,该发送单元21,具体用于在子帧a内的第一个和/或第二个该第一时间单元内发送该第一信息,该接收单元22,具体用于在子帧a+3内接收该第二信息,a为子帧索引号,a的取值为9。
在本发明实施例中,可选地,该发送单元21具体用于:在第一时间单元内在物理下行共享信道PDSCH上向该接收端设备发送下行数据;其中,该接收单元22具体用于:在该第二时间单元内向接收该接收端设备发送的反馈信息,该反馈信息用于指示该接收端设备是否成功接收该下行数据。
在本发明实施例中,可选地,该发送单元21具体用于:在第一时间单元内向该接收端设备发送下行控制信令,该下行控制信令用于调度该接收端 设备的上行数据的传输;
其中,该接收单元22具体用于:在该第二时间单元内在物理上行共享信道PUSCH上接收该接收端设备发送的上行数据。
应理解,根据本发明实施例的发送端设备20可对应执行本发明实施例中的传输信息的方法100,并且发送端设备20中的各个单元的上述和其他操作和/或功能分别为了实现图1中的方法中由发送端设备执行的相应流程,为了简洁,在此不再赘述。
应注意,本发明实施例中,发送单元21可以由接收器实现,接收单元22可以由发送器实现,如图20所示,发送端设备200可以包括处理器201、接收器202、发送器203和存储器204。其中,存储器204可以用于存储处理器201执行的代码等。
发送端设备200中的各个组件通过总线系统205耦合在一起,其中总线系统205除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。
应理解,根据本发明实施例的发送端设备200可对应于本发明实施例中的发送端设备20,并可以对应于执行根据本发明实施例的方法中的相应主体,为了简洁,在此不再赘述。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本发明的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统、装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应所述以权利要求的保护范围为准。

Claims (48)

  1. 一种传输信息的方法,其特征在于,包括:
    接收端设备在第一时间单元内接收发送端设备发送的第一信息;
    所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,其中,所述第一时间单元的时长与所述第二时间单元的时长不同。
  2. 根据权利要求1所述的方法,其特征在于,所述第二时间单元为自所述第一时间单元的起始时刻开始经过目标时间长度之后的第一个所述第二时间单元,其中,所述目标时间长度为所述第一时间单元的时长的整数倍。
  3. 根据权利要求1或2所述的方法,其特征在于,一个子帧内包括M个所述第一时间单元,所述M个所述第一时间单元中的第i个所述第一时间单元的结束时刻在第i+1个所述第一时间单元的开始时刻之前,或,第i个所述第一时间单元的结束时刻为第i+1个所述第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
    一个子帧内包括N个所述第二时间单元,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻在第k+1个所述第二时间单元的开始时刻之前,或,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻为第k+1个所述第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
  4. 根据权利要求3所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,N的值为1,M的值为2;
    其中,所述接收端设备在第一时间单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一 信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号。
  5. 根据权利要求3所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,N的值为1,M为大于或等于3的正整数;
    其中,所述接收端设备在第一时间单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+1内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收端设备在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号。
  6. 根据权利要求3所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M的值为1,N为大于或等于2的正整数;
    其中,所述接收端设备在第一时间单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在子帧a内接收所述第一信息;
    所述接收端设备在子帧a+4内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号。
  7. 根据权利要求3所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M的值为3,N为大于或等于2的正整数;
    其中,所述接收端设备在第一时间按单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+1内的第二个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收端设备在子帧a内的第二个所述第一时间单元内或第三个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号。
  8. 根据权利要求3所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M的值为4,N为大于或等于2的正整数;
    其中,所述接收端设备在第一时间按单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+1内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收端设备在子帧a内的第二个所述第一时间单元或第三个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+1内的第二个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收端设备在子帧a内的第四个所述第一时间单元中接收所述第一信息,所述接收端设备在子帧a+2内的第一个所述第二时间单元内向所述终端设备发送所述第二信息,a为子帧索引号。
  9. 根据权利要求3所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;
    其中,所述接收端设备在第一时间按单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+1内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收端设备在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+1内的第二个所 述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号。
  10. 根据权利要求3所述的方法,其特征在于,在所述方法应用于时分双工TDD系统中时,N的值为1,M的值为2;
    其中,所述接收端设备在第一时间单元内接收发送端设备发送的第一信息;所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述方法应用于TDD上/下行配置0,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置0,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置1,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述方法应用于TDD上/下行配置1,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
    和/或,
    所述方法应用于TDD上/下行配置1,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置1,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述方法应用于TDD上/下行配置1,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述方法应用于TDD上/下行配置2,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述方法应用于TDD上/下行配置2,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述方法应用于TDD上/下行配置2,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述方法应用于TDD上/下行配置2,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为3和/或8;
    和/或,
    所述方法应用于TDD上/下行配置2,所述接收端设备在子帧a内的第 一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+5内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内 向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述方法应用于TDD上/下行配置3,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+11内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+8内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+5内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述方法应用于TDD上/下行配置4,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+12内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+11内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+9内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为3;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第 一和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+8内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+5内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述方法应用于TDD上/下行配置5,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内 向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述方法应用于TDD上/下行配置6,所述接收端设备在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置6,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
    和/或,
    所述方法应用于TDD上/下行配置6,所述接收端设备在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置6,所述接收端设备在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述接收端设备在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9。
  11. 根据权利要求1至10中任一项所述的方法,其特征在于,所述接收端设备在第一时间单元内接收发送端设备发送的第一信息,包括:
    所述接收端设备在所述第一时间单元内接收所述发送端设备在物理下行共享信道PDSCH上发送的下行数据;
    其中,所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在所述第二时间单元内向所述发送端设备发送反馈信息,所述反馈信息用于指示所述接收端设备是否成功接收所述下行数据。
  12. 根据权利要求1至10中任一项所述的方法,其特征在于,所述接收端设备在第一时间单元内接收发送端设备发送的第一信息,包括:
    所述接收端设备在所述第一时间单元内接收所述发送端设备发送的下 行控制信令,所述下行控制信令用于调度所述接收端设备的上行数据的传输;
    其中,所述接收端设备在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,包括:
    所述接收端设备在所述第二时间单元内在物理上行共享信道PUSCH上向所述发送端设备发送上行数据。
  13. 一种传输信息的方法,其特征在于,包括:
    发送端设备在第一时间单元内向接收端设备发送第一信息;
    所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,其中,所述第一时间单元的时长与所述第二时间单元的时长不同。
  14. 根据权利要求13所述的方法,其特征在于,所述第二时间单元为自所述第一时间单元的起始时刻开始经过目标时间长度之后的第一个所述第二时间单元,其中,所述目标时间长度为所述第一时间单元的时长的整数倍。
  15. 根据权利要求13或14所述的方法,其特征在于,一个子帧内包括M个所述第一时间单元,所述M个所述第一时间单元中的第i个所述第一时间单元的结束时刻在第i+1个所述第一时间单元的开始时刻之前,或,第i个所述第一时间单元的结束时刻为第i+1个所述第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
    一个子帧内包括N个所述第二时间单元,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻在第k+1个所述第二时间单元的开始时刻之前,或,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻为第k+1个所述第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
  16. 根据权利要求15所述的方法,其特征在于,在所述方法应用于频分双工FDD系统时,N的值为1,M的值为2;
    其中,所述发送端设备在第一时间单元内向接收端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一 信息相对应的第二信息,包括:
    所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述所述第二信息,a为子帧索引号;
    和/或,
    所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号。
  17. 根据权利要求15所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,N的值为1,M为大于或等于3的正整数;
    其中,所述发送端设备在第一时间单元内向发送端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送与所述第一信息相对应的第二信息,包括:
    所述发送端设备在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+1内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送端设备在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号。
  18. 根据权利要求15所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M的值为1,N为大于或等于2的正整数;
    其中,所述发送端设备在第一时间单元内向接收端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,包括:
    所述发送端设备在子帧a内发送所述第一信息;
    所述发送端设备在子帧a+4内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  19. 根据权利要求15所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M的值为3,N为大于或等于2的正整数;
    其中,所述发送端设备在第一时间按单元向接收端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一 信息相对应的第二信息,包括:
    所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+1内的第二个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送端设备在子帧a内的第二个所述第一时间单元内或第三个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  20. 根据权利要求15所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M的值为4,N为大于或等于2的正整数;
    其中,所述发送端设备在第一时间按单元内向接收端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,包括:
    所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+1内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送端设备在子帧a内的第二个所述第一时间单元或第三个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+1内的第二个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送端设备在子帧a内的第四个所述第一时间单元中发送所述第一信息,所述发送端设备在子帧a+2内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  21. 根据权利要求15所述的方法,其特征在于,在所述方法应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;
    其中,所述发送端设备在第一时间按单元内向接收端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,包括:
    所述发送端设备在子帧a内的前M-3个所述第一时间单元中的任一所述 第一时间单元内发送所述第一信息,所述发送端设备在子帧a+1内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送端设备在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+1内的第二个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  22. 根据权利要求15所述的方法,其特征在于,在所述方法应用于时分双工TDD系统时,N的值为1,M的值为2;
    其中,所述发送端设备在第一时间按单元内向接收端设备发送第一信息;所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,包括:
    所述方法应用于TDD上/下行配置0,所述发送端设备在子帧a的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置0,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置1,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述方法应用于TDD上/下行配置1,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
    和/或,
    所述方法应用于TDD上/下行配置1,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置1,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3接收所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述方法应用于TDD上/下行配置1,所述发送端设备在子帧a内第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述方法应用于TDD上/下行配置2,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述方法应用于TDD上/下行配置2,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述方法应用于TDD上/下行配置2,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收端设备在子帧a+4内接收所述第二信息,a为子帧索引号,a的取值为3和/或8;
    和/或,
    所述方法应用于TDD上/下行配置2,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+7内接收所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收端设备在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+5内接收所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+4内接收所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述方法应用于TDD上/下行配置3,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+11内接收所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+8内接收所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在 子帧a+7内接收所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+5内接收所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+4接收所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内向接收所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述方法应用于TDD上/下行配置4,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+12内接收所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+11内接收所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第 一和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+9内接收所述第二信息,a为子帧索引号,a的取值为3;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一和/或第二个所述第一时间单元内接发送述第一信息,所述发送端设备在子帧a+8内接收所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+7内接收所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+5内接收所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+4内接收所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述方法应用于TDD上/下行配置5,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述方法应用于TDD上/下行配置6,所述发送端设备在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述方法应用于TDD上/下行配置6,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
    和/或,
    所述方法应用于TDD上/下行配置6,所述发送端设备在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述方法应用于TDD上/下行配置6,所述发送端设备在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述发送端设备在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为9。
  23. 根据权利要求13至22中任一项所述的方法,其特征在于,所述发送端设备在第一时间单元内向接收端设备发送第一信息,包括:
    所述发送端端设备在所述第一时间单元内在物理下行共享信道PDSCH上向所述接收端设备发送下行数据;
    其中,所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,包括:
    所述发送端设备在所述第二时间单元内向接收所述接收端设备发送的反馈信息,所述反馈信息用于指示所述接收端设备是否成功接收所述下行数据。
  24. 根据权利要求13至22中任一项所述的方法,其特征在于,所述发送端设备在第一时间单元内向接收端设备发送第一信息,包括:
    所述发送端设备在所述第一时间单元内向所述接收端设备发送下行控制信令,所述下行控制信令用于调度所述接收端设备的上行数据的传输;
    其中,所述发送端设备在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,包括:
    所述发送端设备在所述第二时间单元内在物理上行共享信道PUSCH上 接收所述接收端设备发送的上行数据。
  25. 一种接收端设备,其特征在于,包括:
    接收单元,用于在第一时间单元内接收发送端设备发送的第一信息;
    发送单元,用于在第二时间单元内向所述发送端设备发送与所述第一信息相对应的第二信息,其中,所述第一时间单元的时长与所述第二时间单元的时长不同。
  26. 根据权利要求25所述的接收端设备,其特征在于,所述第二时间单元为自所述第一时间单元的起始时刻开始经过目标时间长度之后的第一个所述第二时间单元,其中,所述目标时间长度为所述第一时间单元的时长的整数倍。
  27. 根据权利要求25或26所述的接收端设备,其特征在于,一个子帧内包括M个所述第一时间单元,所述M个所述第一时间单元中的第i个所述第一时间单元的结束时刻在第i+1个所述第一时间单元的开始时刻之前,或,第i个所述第一时间单元的结束时刻为第i+1个所述第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
    一个子帧内包括N个所述第二时间单元,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻在第k+1个所述第二时间单元的开始时刻之前,或,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻为第k+1个所述第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
  28. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于频分双工FDD时,N的值为1,M的值为2;
    其中,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号。
  29. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于FDD系统中时,N的值为1,M为大于或等于3的正整数;
    其中,所述接收单元,具体用于在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+1内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收单元,具体用于在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号。
  30. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于频分双工FDD系统中时,M的值为1,N为大于或等于2的正整数;
    其中,所述接收单元,具体用于在子帧a内接收所述第一信息;
    所述发送单元,具体用于在子帧a+4内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号。
  31. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于频分双工FDD系统中时,M的值为3,N为大于或等于2的正整数;
    其中,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+1内的第二个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内或第三个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号。
  32. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于频分双工FDD系统中时,M的值为4,N为大于或等于2的正整数;
    其中,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+1内的第一个所述 第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收单元,具体用于在子帧a内的第二个所述第一时间单元或第三个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+1内的第二个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收单元,具体用于在子帧a内的第四个所述第一时间单元中接收所述第一信息,所述发送单元,具体用于在子帧a+2内的第一个所述第二时间单元内向所述终端设备发送所述第二信息,a为子帧索引号。
  33. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;
    其中,所述接收单元,具体用于在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+1内的第一个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号;
    和/或,
    所述接收单元,具体用于在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+1内的第二个所述第二时间单元内向所述发送端设备发送所述第二信息,a为子帧索引号。
  34. 根据权利要求27所述的接收端设备,其特征在于,在所述接收端设备应用于时分双工TDD系统中时,N的值为1,M的值为2;
    其中,所述接收端设备应用于TDD上/下行配置0,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述接收端设备应用于TDD上/下行配置0,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元, 具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述接收端设备应用于TDD上/下行配置1,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述接收端设备应用于TDD上/下行配置1,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
    和/或,
    所述接收端设备应用于TDD上/下行配置1,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述接收端设备应用于TDD上/下行配置1,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述接收端设备应用于TDD上/下行配置1,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述接收端设备应用于TDD上/下行配置2,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引 号,a的取值为0和/或5;
    和/或,
    所述接收端设备应用于TDD上/下行配置2,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述接收端设备应用于TDD上/下行配置2,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述接收端设备应用于TDD上/下行配置2,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为3和/或8;
    和/或,
    所述接收端设备应用于TDD上/下行配置2,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+5内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述接收端设备应用于TDD上/下行配置3,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+11内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+8内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+5内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述接收端设备应用于TDD上/下行配置4,所述接收单元,具体用于 在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+12内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+11内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+9内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为3;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+8内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+7内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所 述发送单元,具体用于在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+5内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+4内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述接收端设备应用于TDD上/下行配置5,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述接收端设备应用于TDD上/下行配置6,所述接收单元,具体用于在子帧a内的第一个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+2内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述接收端设备应用于TDD上/下行配置6,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引 号,a的取值为0和/或1和/或5;
    和/或,
    所述接收端设备应用于TDD上/下行配置6,所述接收单元,具体用于在子帧a内的第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+6内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述接收端设备应用于TDD上/下行配置6,所述接收单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内接收所述第一信息,所述发送单元,具体用于在子帧a+3内向所述发送端设备发送所述第二信息,a为子帧索引号,a的取值为9。
  35. 根据权利要求25至34中任一项所述的接收端设备,其特征在于,所述接收单元具体用于:
    在所述第一时间单元内接收所述发送端设备在物理下行共享信道PDSCH上发送的下行数据;
    其中,所述发送单元具体用于:
    在所述第二时间单元内向所述发送端设备发送反馈信息,所述反馈信息用于指示所述接收端设备是否成功接收所述下行数据。
  36. 根据权利要求25至34中任一项所述的接收端设备,其特征在于,所述接收单元具体用于:
    在所述第一时间单元内接收所述发送端设备发送的下行控制信令,所述下行控制信令用于调度所述接收端设备的上行数据的传输;
    其中,所述发送单元具体用于:
    在所述第二时间单元内在物理上行共享信道PUSCH上向所述发送端设备发送上行数据。
  37. 一种发送端设备,其特征在于,包括:
    发送单元,用于在第一时间单元内向接收端设备发送第一信息;
    接收单元,用于在第二时间单元内接收所述接收端设备发送的与所述第一信息相对应的第二信息,其中,所述第一时间单元的时长与所述第二时间单元的时长不同。
  38. 根据权利要求37所述的发送端设备,其特征在于,所述第二时间 单元为自所述第一时间单元的起始时刻开始经过目标时间长度之后的第一个所述第二时间单元,其中,所述目标时间长度为所述第一时间单元的时长的整数倍。
  39. 根据权利要求37或38所述的发送端设备,其特征在于,一个子帧内包括M个所述第一时间单元,所述M个所述第一时间单元中的第i个所述第一时间单元的结束时刻在第i+1个所述第一时间单元的开始时刻之前,或,第i个所述第一时间单元的结束时刻为第i+1个所述第一时间单元的开始时刻,其中,M为大于或等于1的正整数,i在M的值为1时取值为0,i在M为大于1的正整数时为大于或等于1且小于或等于M-1的正整数;
    一个子帧内包括N个所述第二时间单元,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻在第k+1个所述第二时间单元的开始时刻之前,或,所述N个所述第二时间单元中的第k个所述第二时间单元的结束时刻为第k+1个所述第二时间单元的开始时刻,其中,N为大于或等于1的正整数,k在N的值为1时取值为0,k在N为大于1的正整数时为大于或等于1且小于或等于N-1的正整数。
  40. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于频分双工FDD系统时,N的值为1,M的值为2;
    其中,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号。
  41. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于频分双工FDD系统时,N的值为1,M为大于或等于3的正整数;
    其中,所述发送单元,具体用于在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+1内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送单元,具体用于在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号。
  42. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于频分双工FDD系统时,M的值为1,N为大于或等于2的正整数;
    其中,所述发送单元,具体用于在子帧a内发送所述第一信息;
    所述接收单元,具体用于在子帧a+4内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  43. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于频分双工FDD系统时,M的值为3,N为大于或等于2的正整数;
    其中,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+1内的第二个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内或第三个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  44. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于频分双工FDD系统时,M的值为4,N为大于或等于2的正整数;
    其中,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+1内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送单元,具体用于在子帧a内的第二个所述第一时间单元或第三个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+1内的第二个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送单元,具体用于在子帧a内的第四个所述第一时间单元中发送 所述第一信息,所述接收单元,具体用于在子帧a+2内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  45. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于频分双工FDD系统中时,M为大于或等于6的正整数,N为大于或等于2的正整数;
    其中,所述发送单元,具体用于在子帧a内的前M-3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+1内的第一个所述第二时间单元内接收所述第二信息,a为子帧索引号;
    和/或,
    所述发送单元,具体用于在子帧a内的后3个所述第一时间单元中的任一所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+1内的第二个所述第二时间单元内接收所述第二信息,a为子帧索引号。
  46. 根据权利要求39所述的发送端设备,其特征在于,在所述发送端设备应用于时分双工TDD系统时,N的值为1,M的值为2;
    其中,所述发送端设备应用于TDD上/下行配置0,所述发送单元,具体用于在子帧a的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述发送端设备应用于TDD上/下行配置0,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述发送端设备应用于TDD上/下行配置1,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述发送端设备应用于TDD上/下行配置1,所述发送单元,具体用于 在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或4和/或5和/或9;
    和/或,
    所述发送端设备应用于TDD上/下行配置1,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述发送端设备应用于TDD上/下行配置1,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3接收所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述发送端设备应用于TDD上/下行配置1,所述发送单元,具体用于在子帧a内第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述发送端设备应用于TDD上/下行配置2,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或5;
    和/或,
    所述发送端设备应用于TDD上/下行配置2,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为1和/或6;
    和/或,
    所述发送端设备应用于TDD上/下行配置2,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所 述接收单元,具体用于在子帧a+4内接收所述第二信息,a为子帧索引号,a的取值为3和/或8;
    和/或,
    所述发送端设备应用于TDD上/下行配置2,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为4和/或9;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+7内接收所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+5内接收所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+4内接收所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a 的取值为9;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述发送端设备应用于TDD上/下行配置3,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+11内接收所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+8内接收所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+7内接收所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+5内接收所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+4接收所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内向接收所述第二信息,a为子帧索引号,a的取值为9;
    和/或,
    所述发送端设备应用于TDD上/下行配置4,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+12内接收所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+11内接收所述第二信息,a为子帧索引号,a的取值为1;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内发送所述第一信息,所述 接收单元,具体用于在子帧a+9内接收所述第二信息,a为子帧索引号,a的取值为3;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一和/或第二个所述第一时间单元内接发送述第一信息,所述接收单元,具体用于在子帧a+8内接收所述第二信息,a为子帧索引号,a的取值为4;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+7内接收所述第二信息,a为子帧索引号,a的取值为5;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+5内接收所述第二信息,a为子帧索引号,a的取值为7;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+4内接收所述第二信息,a为子帧索引号,a的取值为8;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a 的取值为9;
    和/或,
    所述发送端设备应用于TDD上/下行配置5,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0;
    和/或,
    所述发送端设备应用于TDD上/下行配置6,所述发送单元,具体用于在子帧a内的第一个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+2内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5和/或6;
    和/或,
    所述发送端设备应用于TDD上/下行配置6,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为0和/或1和/或5;
    和/或,
    所述发送端设备应用于TDD上/下行配置6,所述发送单元,具体用于在子帧a内的第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+6内接收所述第二信息,a为子帧索引号,a的取值为6;
    和/或,
    所述发送端设备应用于TDD上/下行配置6,所述发送单元,具体用于在子帧a内的第一个和/或第二个所述第一时间单元内发送所述第一信息,所述接收单元,具体用于在子帧a+3内接收所述第二信息,a为子帧索引号,a的取值为9。
  47. 根据权利要求37至46中任一项所述的发送端设备,其特征在于,所述发送单元具体用于:
    在第一时间单元内在物理下行共享信道PDSCH上向所述接收端设备发送下行数据;
    其中,所述接收单元具体用于:
    在所述第二时间单元内向接收所述接收端设备发送的反馈信息,所述反馈信息用于指示所述接收端设备是否成功接收所述下行数据。
  48. 根据权利要求37至46中任一项所述的发送端设备,其特征在于,所述发送单元具体用于:
    在第一时间单元内向所述接收端设备发送下行控制信令,所述下行控制信令用于调度所述接收端设备的上行数据的传输;
    其中,所述接收单元具体用于:
    在所述第二时间单元内在物理上行共享信道PUSCH上接收所述接收端设备发送的上行数据。
PCT/CN2016/070279 2016-01-06 2016-01-06 传输信息的方法和设备 WO2017117744A1 (zh)

Priority Applications (12)

Application Number Priority Date Filing Date Title
CN202010734540.8A CN111885727A (zh) 2016-01-06 2016-01-06 传输信息的方法和设备
ES16882889T ES2814299T3 (es) 2016-01-06 2016-01-06 Método de transmisión de información y dispositivo
US15/772,439 US11296856B2 (en) 2016-01-06 2016-01-06 Method for transmitting information and device
JP2018519047A JP6711909B2 (ja) 2016-01-06 2016-01-06 情報伝送の方法及び装置
RU2018120193A RU2702725C1 (ru) 2016-01-06 2016-01-06 Способ и устройство для передачи информации
KR1020187009963A KR20180100296A (ko) 2016-01-06 2016-01-06 정보를 전송하는 방법 및 장비
PCT/CN2016/070279 WO2017117744A1 (zh) 2016-01-06 2016-01-06 传输信息的方法和设备
EP16882889.5A EP3361662B1 (en) 2016-01-06 2016-01-06 Method for transmitting information and device
EP20184317.4A EP3742644A1 (en) 2016-01-06 2016-01-06 Method for transmitting information and device
CN201680055312.XA CN108141323B (zh) 2016-01-06 2016-01-06 传输信息的方法和设备
CN202010732923.1A CN111884789A (zh) 2016-01-06 2016-01-06 传输信息的方法和设备
HK18109117.9A HK1249680A1 (zh) 2016-01-06 2018-07-13 傳輸信息的方法和設備

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2016/070279 WO2017117744A1 (zh) 2016-01-06 2016-01-06 传输信息的方法和设备

Publications (1)

Publication Number Publication Date
WO2017117744A1 true WO2017117744A1 (zh) 2017-07-13

Family

ID=59273117

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/070279 WO2017117744A1 (zh) 2016-01-06 2016-01-06 传输信息的方法和设备

Country Status (9)

Country Link
US (1) US11296856B2 (zh)
EP (2) EP3742644A1 (zh)
JP (1) JP6711909B2 (zh)
KR (1) KR20180100296A (zh)
CN (3) CN108141323B (zh)
ES (1) ES2814299T3 (zh)
HK (1) HK1249680A1 (zh)
RU (1) RU2702725C1 (zh)
WO (1) WO2017117744A1 (zh)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPWO2017130990A1 (ja) * 2016-01-29 2018-11-22 株式会社Nttドコモ ユーザ端末
JP7130692B2 (ja) * 2020-04-14 2022-09-05 パナソニック インテレクチュアル プロパティ コーポレーション オブ アメリカ 端末、通信方法及び集積回路

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1402463A (zh) * 2001-08-22 2003-03-12 松下电器产业株式会社 自动请求重发发送和接收方法及其设备
CN101414900A (zh) * 2007-10-15 2009-04-22 大唐移动通信设备有限公司 时分双工系统混合自动重传方法及装置
US20150334685A1 (en) * 2014-05-19 2015-11-19 Qualcomm Incorporated Apparatus and method for synchronous multiplexing and multiple access for different latency targets utilizing thin control

Family Cites Families (28)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB9721782D0 (en) 1997-10-14 1997-12-17 No Climb Prod Ltd Test apparatus for testing detectors
US6804252B1 (en) * 2000-05-19 2004-10-12 Ipr Licensing, Inc. Automatic reverse channel assignment in a two-way TDM communication system
KR20020034640A (ko) * 2000-11-02 2002-05-09 윤종용 협대역 시분할 코드 분할 다중 접속 시스템에서 부프레임전송 타임 슬럿을 랜덤하게 제어하는 장치 및 방법
CN1965513B (zh) * 2004-05-01 2014-11-26 桥扬科技有限公司 用于以时分双工进行通信的方法和装置
GB0420658D0 (en) 2004-09-16 2004-10-20 Nokia Corp Scheduling data transmissions in a wireless communications network
CN101292456A (zh) 2005-08-24 2008-10-22 高通股份有限公司 用于无线通信系统的多样传输时间间隔
JP4703513B2 (ja) 2006-08-22 2011-06-15 株式会社エヌ・ティ・ティ・ドコモ 移動通信システムで使用される無線基地局及び方法
US8363606B2 (en) * 2006-09-05 2013-01-29 Qualcomm Incorporated Method and apparatus for data and control multiplexing
US20080316995A1 (en) * 2007-06-20 2008-12-25 Motorola, Inc. Broadcast channel signal and apparatus for managing the transmission and receipt of broadcast channel information
CN101646239B (zh) * 2008-08-06 2012-05-09 中兴通讯股份有限公司 一种半持久调度的方法
US9007979B2 (en) * 2008-09-29 2015-04-14 Electronics And Telecommunications Research Institute Apparatus and method for transmitting and receiving data in wireless communication system using relay
US8239723B2 (en) * 2009-01-05 2012-08-07 Intel Corporation HARQ timing control in wireless communication systems
US8649281B2 (en) * 2009-04-27 2014-02-11 Samsung Electronics Co., Ltd. Control design for backhaul relay to support multiple HARQ processes
EP2493092B1 (en) * 2009-10-25 2018-12-05 LG Electronics Inc. Backhaul downlink signal decoding method of relay station and relay station using same
US20120230216A1 (en) * 2009-10-29 2012-09-13 Electronics And Telecommunications Research Institute Communication method
US8605748B2 (en) * 2009-12-08 2013-12-10 Electronics And Telecommunications Research Institute Communication method
US20120275355A1 (en) * 2011-04-27 2012-11-01 Electronics And Telecommunications Research Institute Method and apparatus for resource allocation and method and apparatus for receiving resource allocation information signal
US9515696B2 (en) * 2012-03-16 2016-12-06 Interdigital Patent Holdings, Inc. Method for half-duplex FDD operation in LTE FDD network
WO2014007556A1 (ko) * 2012-07-05 2014-01-09 엘지전자 주식회사 무선 통신 시스템에서 단말 간 직접 통신을 위한 단말 검출 신호 송신 방법 및 이를 위한 장치
EP4080976A1 (en) * 2012-09-26 2022-10-26 Interdigital Patent Holdings, Inc. Methods for dynamic tdd uplink/downlink configuration
CN103796235B (zh) * 2012-11-01 2018-07-13 中兴通讯股份有限公司 服务小区子帧配置信息的传递方法及供者基站
WO2015126027A1 (ko) * 2014-02-18 2015-08-27 엘지전자 주식회사 무선 통신 시스템에서 사용자 특정 플렉서블 tdd 기법을 이용하여 신호를 송수신하는 방법 및 이를 위한 장치
US11153875B2 (en) * 2014-05-19 2021-10-19 Qualcomm Incorporated Apparatus and method for inter-band pairing of carriers for time division duplex transmit- and receive-switching and its application to multiplexing of different transmission time intervals
CN104468030B (zh) 2014-08-26 2018-06-05 上海华为技术有限公司 一种数据传输方法、用户设备及基站
US10085255B2 (en) 2015-09-02 2018-09-25 Qualcomm Incorporated Physical uplink control channel for low latency downlink communications
CN106571895B (zh) 2015-10-13 2020-11-20 中兴通讯股份有限公司 混合自动重传请求的定时方法及装置
US10122559B2 (en) * 2016-03-21 2018-11-06 Qualcomm Incorporated Uplink channel quality measurement using a subframe with high-intensity reference signal bursts
US10848258B2 (en) * 2017-01-17 2020-11-24 Qualcomm Incorporated Coordinating reference signals in wireless communication

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1402463A (zh) * 2001-08-22 2003-03-12 松下电器产业株式会社 自动请求重发发送和接收方法及其设备
CN101414900A (zh) * 2007-10-15 2009-04-22 大唐移动通信设备有限公司 时分双工系统混合自动重传方法及装置
US20150334685A1 (en) * 2014-05-19 2015-11-19 Qualcomm Incorporated Apparatus and method for synchronous multiplexing and multiple access for different latency targets utilizing thin control

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3361662A4 *

Also Published As

Publication number Publication date
CN108141323B (zh) 2020-09-15
JP6711909B2 (ja) 2020-06-17
CN111884789A (zh) 2020-11-03
US11296856B2 (en) 2022-04-05
EP3361662A4 (en) 2019-06-19
KR20180100296A (ko) 2018-09-10
EP3361662B1 (en) 2020-07-29
JP2019508911A (ja) 2019-03-28
RU2702725C1 (ru) 2019-10-09
CN108141323A (zh) 2018-06-08
HK1249680A1 (zh) 2018-11-02
ES2814299T3 (es) 2021-03-26
US20180323950A1 (en) 2018-11-08
EP3742644A1 (en) 2020-11-25
EP3361662A1 (en) 2018-08-15
CN111885727A (zh) 2020-11-03

Similar Documents

Publication Publication Date Title
TWI732000B (zh) 傳輸數據的方法和裝置
WO2017101107A1 (zh) 用于数据传输的方法和终端
EP2947802B1 (en) Data transmission method and device
EP3481115B1 (en) Timing sequence adjustment method, base station, terminal and communication system
WO2018149273A1 (zh) 一种多码字传输方法及装置
JP2019525652A (ja) 無線通信システムにおいて上りリンク送信のための方法及びそのための装置
WO2014067140A1 (zh) 一种信息传输方法、用户设备及基站
WO2015042893A1 (zh) 传输上行数据的方法、用户设备和基站
WO2018228477A1 (zh) 通信方法、网络设备和终端
KR101774183B1 (ko) 스펙트럼 통합의 데이터 발송 방법 및 장치
WO2017028014A1 (zh) 一种信息发送、接收方法及设备
WO2017005131A1 (zh) 一种物理信道传输方法及设备
CN111436094A (zh) 通信方法及装置
WO2017117744A1 (zh) 传输信息的方法和设备
US20150092675A1 (en) System and method for transmission adaption to avoid reception interference in a device that implmenents more than one wireless technology
WO2017088178A1 (zh) 一种发送控制信息的方法、传输数据块的方法及相关装置
CN110663209A (zh) 反馈应答信息的传输方法、装置及系统
WO2019238014A1 (zh) 反馈信息的传输方法和装置
WO2017041240A1 (zh) 一种数据传输方法以及相关设备
US20180110050A1 (en) Radio frame transmission method and apparatus
CN107769903B (zh) 一种无线通信中的方法和装置
JP2019500816A (ja) ミリ波システムにおいてサブフレームをスケジューリングする方法
JP7041190B2 (ja) 情報伝送の方法及び装置
CN106793102B (zh) 系统配置指示方法及装置
WO2017107731A1 (zh) 上行控制信道发送方法和装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16882889

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 20187009963

Country of ref document: KR

Kind code of ref document: A

ENP Entry into the national phase

Ref document number: 2018519047

Country of ref document: JP

Kind code of ref document: A

WWE Wipo information: entry into national phase

Ref document number: 15772439

Country of ref document: US

WWE Wipo information: entry into national phase

Ref document number: 2016882889

Country of ref document: EP

NENP Non-entry into the national phase

Ref country code: DE

WWE Wipo information: entry into national phase

Ref document number: 2018120193

Country of ref document: RU