WO2019137491A1 - 一种移动通讯上行信息传输方法和系统 - Google Patents

一种移动通讯上行信息传输方法和系统 Download PDF

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Publication number
WO2019137491A1
WO2019137491A1 PCT/CN2019/071420 CN2019071420W WO2019137491A1 WO 2019137491 A1 WO2019137491 A1 WO 2019137491A1 CN 2019071420 W CN2019071420 W CN 2019071420W WO 2019137491 A1 WO2019137491 A1 WO 2019137491A1
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Prior art keywords
resource
terminal device
configuration information
information
indicator
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PCT/CN2019/071420
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English (en)
French (fr)
Inventor
杜滢
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中国信息通信研究院
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Application filed by 中国信息通信研究院 filed Critical 中国信息通信研究院
Priority to EP19738562.8A priority Critical patent/EP3740004A4/en
Priority to US16/961,278 priority patent/US20210068139A1/en
Publication of WO2019137491A1 publication Critical patent/WO2019137491A1/zh
Priority to US16/926,945 priority patent/US11483808B2/en

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    • 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
    • H04L1/1812Hybrid protocols; Hybrid automatic repeat request [HARQ]
    • H04L1/1819Hybrid protocols; Hybrid automatic repeat request [HARQ] with retransmission of additional or different redundancy
    • 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
    • H04L5/0048Allocation of pilot signals, i.e. of signals known to the receiver
    • 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
    • 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
    • H04L5/0091Signaling for the administration of the divided path
    • H04L5/0094Indication of how sub-channels of the path are allocated
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • H04L5/0096Indication of changes in allocation
    • H04L5/0098Signalling of the activation or deactivation of component carriers, subcarriers or frequency bands
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/06Optimizing the usage of the radio link, e.g. header compression, information sizing, discarding information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W80/00Wireless network protocols or protocol adaptations to wireless operation
    • H04W80/02Data link layer protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W80/00Wireless network protocols or protocol adaptations to wireless operation
    • H04W80/08Upper layer protocols
    • 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
    • H04L1/1671Details of the supervisory signal the supervisory signal being transmitted together with control information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/02Selection of wireless resources by user or terminal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal

Definitions

  • the present application relates to the field of communications, and in particular, to a mobile communication uplink information transmission.
  • the terminal device reports the uplink control information (UCI) to the network device, and is used for the network device to schedule the data transmission of the terminal device.
  • UCI uplink control information
  • the terminal device sends uplink control information on a physical uplink control channel (PUCCH); when the terminal device works on a physical uplink shared channel (PUSCH), it can also be used to send uplink control information.
  • PUCCH physical uplink control channel
  • PUSCH physical uplink shared channel
  • DCI Downlink Control Information
  • the impact of the network device on the uplink shared channel (UL-SCH) data transmission performance sent by the UCI on the PUSCH is expected, and may be adjusted by adjusting the PUSCH.
  • the modulation coding scheme and the like indicated in the physical control information solve the problem of affecting the UL-SCH transmission performance.
  • the resource, the modulation and coding mode, and the like of the terminal device for transmitting the PUSCH are that the network device uses the semi-static signaling configuration to the terminal device to use the video device multiple times according to a certain time pattern within a certain period of time.
  • the network device cannot adjust the scheduling information of the UL-SCH transmitted by the terminal device on the second type of PUSCH through the dynamic physical control information to meet the requirement of the UL-SCH transmission performance.
  • whether the UCI needs to be transmitted on the second type PUSCH of the specific time at a specific time, and the value of the UCI to be transmitted is dynamically changed. In this way, the network device cannot adjust the scheduling information of the UL-SCH by adjusting the terminal device to meet the requirements of the UL-SCH transmission performance.
  • the embodiment of the present invention provides a mobile communication uplink information transmission method and system, which is to solve the problem that when the terminal device allocates uplink control information and an uplink shared channel on a semi-statically configured physical uplink shared channel, the uplink shared channel transmission performance is controlled by uplink.
  • the mobile communication uplink information transmission method is provided by the terminal device for transmitting uplink information and the network device for receiving uplink information.
  • the method of the present invention is used for a network device, where the network device sends the unscheduled resource configuration information, and is used to determine a first resource, where the first resource is used to allocate a physical uplink shared channel, and the unscheduled resource configuration information further includes An indicator, configured to determine a second resource, where the second resource is used to allocate uplink control information;
  • the method of the present invention is used for a terminal device, where the terminal device receives the unscheduled resource configuration information, and determines that the first resource is used to allocate the physical An uplink shared channel;
  • the non-scheduled resource configuration information further includes an indicator, the terminal device determines a second resource according to the indicator, and the second resource is used to allocate uplink control information; Part of the first resource, or the second resource is empty.
  • the indicator is configured to determine a quantity value and or a quantity maximum value of the second resource; when the
  • the terminal device determines a third resource, configured to allocate an uplink shared channel; the third resource is a part of the first resource, and does not intersect with the second resource.
  • the terminal device discards the uplink control information.
  • the terminal device allocates the uplink control information in a fourth resource; the fourth resource does not belong to the first resource.
  • the unscheduled resource configuration information is transmitted in at least one of the following: the unscheduled resource configuration information is included in the high layer signaling, and the unscheduled resource configuration information is included in the physical control information. Or included in the activation/deactivation signaling of the medium access control layer control unit; part of the unscheduled resource configuration information is included in the high layer signaling, and another part is included in the physical control information or included in the medium access control layer. In the activation/deactivation signaling of the control unit.
  • the uplink control information corresponding to the indicator of the second resource includes one or more of the following types: HARQ-ACK, PMI, CRI, PTI, BMI, RI.
  • the application further includes a mobile communication uplink information transmission system for implementing the method described in any one of the embodiments.
  • the system includes a network device and at least one terminal device; the network device sends the scheduling-free resource to the terminal device by using high layer signaling and or physical control information or activation/deactivation signaling of the medium access control layer control unit.
  • Configuration information the terminal device sends information to the network device by using a physical uplink shared channel.
  • the network device can adjust, by using an indicator in the unscheduled resource configuration information, the unscheduled physical uplink shared channel of the terminal device corresponding to the unscheduled resource configuration information.
  • the resource occupancy of the UCI in the medium avoids the transmission performance of the UL-SCH.
  • Figure 1 is a flow chart of an embodiment of the method of the present invention
  • FIG. 2 is a flow chart of an embodiment of the method of the present invention including allocating an uplink shared channel
  • FIG. 3 is a flowchart of an embodiment of a method for limiting an uplink control channel according to the method of the present invention
  • FIG. 4 is a flow chart of another embodiment of a method for limiting an uplink control channel according to the method of the present invention.
  • Figure 5 is a schematic diagram of a system and signaling for implementing the method.
  • the network device includes, in the schedule-free resource configuration information for the terminal device, an indicator for the amount of resources for transmitting the UCI in the unscheduled PUSCH resource; the terminal device determines at least one of the following information according to the indicator. Whether the UCI is allowed to be transmitted in the unscheduled PUSCH, the UCI resource and the amount of resources used for transmitting the UL-SCH in the unscheduled PUSCH, and the maximum amount of the UCI resource allowed in the unscheduled PUSCH.
  • the foregoing configuration information may be separately configured for different UCI types (HARQ-ACK, CSI-part1, and CSI-part2).
  • the mobile communication uplink information transmission method proposed by the present invention is used for a terminal device, and includes the following steps:
  • Step 11 The terminal device receives the unscheduled resource configuration information, and determines that the first resource is used to allocate a physical uplink shared channel.
  • the unscheduled resource configuration information is transmitted in at least one of the following: the unscheduled resource configuration information is included in the high layer signaling, and the unscheduled resource configuration information is included in the physical control information. Or included in the activation/deactivation signaling of the medium access control layer control unit; part of the unscheduled resource configuration information is included in the high layer signaling, and another part is included in the physical control information or included in the medium access control layer. In the activation/deactivation signaling of the control unit.
  • Step 12 The scheduling resource configuration information further includes an indicator, where the terminal device determines, according to the indicator, a second resource, where the uplink control information is allocated, where the second resource is part of the first resource. Or the second resource is empty.
  • the mobile communication uplink information transmission method of the present invention is used for a network device, and includes the following steps:
  • the network device sends the unscheduled resource configuration information, where the first resource is used, and the first resource is used to allocate a physical uplink shared channel;
  • the non-scheduled resource configuration information further includes an indicator, configured to determine a second resource, where the second resource is used to allocate uplink control information; the second resource is a part of the first resource, or the The second resource is empty.
  • the target device When the network device configures the terminal device to send the unscheduled physical uplink shared channel by using the unscheduled resource configuration information, the target device needs to transmit the target performance of the uplink control channel UL-SCH on the unscheduled physical uplink shared channel as the first target.
  • the performance requirement of the terminal device for transmitting uplink control information is higher than that of the UL-SCH, for example, the second target.
  • the first target is the bit error rate X
  • the second target is the bit error rate Y, X>Y.
  • the indicator includes a value coefficient of the second resource, and the terminal device determines the quantity value of the second resource by using the value of the value.
  • the indicator is for determining a quantity value and or a quantity maximum of the second resource.
  • the indicator includes a maximum value for indicating the second resource
  • the second resource usage is not greater than the maximum number of the quantity.
  • the quantity of the second resource is the number of resource units included in the second resource.
  • the maximum number of the second resources is used by the terminal device to determine the quantity limit of the resource unit for allocating the uplink control information in the first resource, that is, the second resource usage is not greater than the maximum number of the quantity.
  • the quantity corresponding to the second resource is N.
  • the terminal device determines the value of N by using the unscheduled resource configuration information. The following implementations are available:
  • the indicator includes the value of the second resource, and the terminal device calculates the quantity value of the second resource by using the value, that is, determines the number of resource units included in the second resource.
  • the value of the value in the indicator corresponds to the value of the variable ⁇
  • the terminal device calculates the value according to the value of ⁇ , the number of bits of the uplink control information, and the configuration information of the unscheduled PUSCH in the unscheduled resource configuration information.
  • the quantity corresponding to the two resources is N.
  • the value of the variable ⁇ includes a case equal to zero.
  • O is the number of bits of the uplink control information. It is the number of subcarriers included in the PUSCH.
  • C and K r are the number of code blocks corresponding to the UL-SCH data transmitted in the unscheduled physical uplink shared channel and the number of bits included in the respective code blocks, respectively. It is the number of OFDM symbols except the DMRS and PTRS symbols in the unscheduled physical uplink shared channel.
  • N The specific value of N can also be obtained by:
  • O is the number of bits of the uplink control information
  • L is the number of bits of the CRC. It is the number of subcarriers included in the PUSCH.
  • C and K r are the number of code blocks corresponding to the UL-SCH data transmitted in the unscheduled physical uplink shared channel and the number of bits included in the respective code blocks, respectively. It is the number of OFDM symbols except DMRS and PTRS in the unscheduled physical uplink shared channel.
  • Q is the number of physical uplink shared channel than the free transmission scheduling the uplink control information other high priority uplink control information bits
  • Q m is the modulation order Free scheduled physical uplink shared channel is used.
  • the priority order between the uplink control information is that the priority of the HARQ-ACK is higher than the first part CSI, and the priority of the first part CSI is higher than the second part CSI.
  • the number of bits of the second partial CSI is determined by the information of the first partial CSI.
  • the first partial CSI includes rank indication information RI
  • the second partial CSI includes precoding matrix indication information.
  • the precoding matrix indicates that the number of bits of information is related to the value of RI.
  • the indicator may be included in the higher layer signaling. It may also be included in the physical control information or in the activation/deactivation signaling of the media access control layer control unit.
  • the value of the second resource is composed of two parts, and the two states of the first part of the value coefficient respectively indicate to the terminal device the quantity value of the second resource used for transmitting the first uplink control information in the first resource. 0 or N>0.
  • a part of the value coefficient of the indicator may be Included in the higher layer signaling, another part of the value coefficients may be included in the physical control information or in the activation/deactivation signaling of the medium access control layer control unit.
  • the first partial value coefficient is included in the high layer signaling
  • the second partial value coefficient is included in the physical control information or in the activation/deactivation signaling included in the medium access control layer control unit.
  • the indicator is included in the In the high layer signaling; or if the part of the unscheduled resource configuration information is included in the high layer signaling and the other part is included in the physical control information or the activation/deactivation signaling of the medium access control layer control unit, the indication is The symbol is included in the physical control information or the activation/deactivation signaling of the medium access control layer control unit.
  • the indicator includes a quantity value and or a quantity maximum value of the second resource.
  • the network device configures the unscheduled physical uplink shared channel for the terminal device by using the unscheduled resource configuration information, how many resource units in the unscheduled physical uplink shared channel can be allocated to the uplink control information.
  • the indicator includes the quantity value of the second resource
  • the terminal device can directly determine the quantity value of the second resource according to the indicator.
  • the indicator sent by the network device to the terminal device may further include a maximum number of resources occupied by the uplink control information.
  • the terminal device further limits the number of the second resources according to the value of the value and the maximum value, and ensures that the number of the second resources does not exceed the maximum value of the resources occupied by the uplink control information.
  • the terminal device determines the value of N through the unscheduled resource configuration information.
  • the following embodiments may be adopted: when the network device configures the unscheduled physical uplink shared channel for the terminal device by using the unscheduled resource configuration information, the maximum number of resource units in the unscheduled physical uplink shared channel may be allocated to the network device. Uplink control information.
  • the terminal device determines the quantity value of the second resource according to other conditions and information. If the quantity value is greater than the quantity maximum value determined by the indicator, the usage of the second resource is determined by the quantity maximum value; if the quantity value is not greater than the maximum quantity of the second resource indicated by the indicator, then The amount of the two resources is determined by the quantity value.
  • the indicator includes a quantity rating identifier.
  • the second resource used to transmit the first uplink control information in the first resource may include two states, which are empty or not empty.
  • the indicator indicates that the number of second resources is 0 by the character "0" or the value 0. At this time, the character "0" or the value 0 is a quantity grading mark.
  • different levels of the second resource are represented by a predefined number of hierarchical identifiers; each of the numbered hierarchical identifiers is used to represent a value as a quantity or maximum of the second resource.
  • the terminal device determines a maximum value or a quantity of the second resource according to the quantity classification identifier.
  • the terminal device receives the unscheduled resource configuration information, determines the first resource according to the unscheduled resource configuration information, and determines the second resource according to the indicator in the unscheduled resource configuration information.
  • the terminal device may receive multiple unscheduled resource configuration information, and the terminal device determines, according to the multiple unscheduled resource configuration information, resources of the plurality of unscheduled physical uplink shared channels.
  • Each of the plurality of unscheduled resource configuration information includes an indicator for the terminal device to determine a resource for allocating uplink control information in the resources of each of the unscheduled physical uplink shared channels.
  • the indicators in each of the schedule-free resource configuration information are independent of each other.
  • the terminal device receives the M pieces of the unscheduled resource configuration information, where the M pieces of the unscheduled resource configuration information each include an indicator, and the indicators in the unscheduled resource configuration information are independent of each other;
  • the indicator of each of the M schedule-free resource configuration information determines a resource for allocating uplink control information in resources of each of the unscheduled physical uplink shared channels.
  • the network device sends M unscheduled resource configuration information, where the M unscheduled resource configuration information each includes an indicator, and the indicators in the unscheduled resource configuration information are independent of each other;
  • the respective indicators of the resource configuration information are respectively used to determine resources for allocating uplink control information among the resources of the unscheduled physical uplink shared channels.
  • M is greater than or equal to 2.
  • the mobile communication uplink information transmission method proposed by the present invention is used for a terminal device, and includes the following steps:
  • Step 21 The terminal device receives the configuration information of the unscheduled resource, and determines that the first resource is used to allocate a physical uplink shared channel.
  • Step 22 The scheduling resource configuration information further includes an indicator, where the terminal device determines, according to the indicator, a second resource, configured to allocate uplink control information;
  • Step 23 The terminal device determines a third resource, configured to allocate an uplink shared channel, where the third resource is part of the first resource, and does not intersect with the second resource.
  • the mobile communication uplink information transmission method proposed by the present invention is used for a terminal device, and includes the following steps:
  • Step 31 The terminal device receives the configuration information of the unscheduled resource, and determines that the first resource is used to allocate the physical uplink shared channel.
  • Step 32 The scheduling resource configuration information further includes an indicator, and the terminal device determines, according to the indicator, a second resource, configured to allocate uplink control information. When the indicator is 0, the terminal device discards the uplink control information;
  • the indicator indicates that the network device is incompatible with the terminal device to send uplink control information on the unscheduled PUSCH resource.
  • the terminal device is configured to send an uplink shared channel UL-SCH in the third resource, and discard the first uplink control information. Based on this, the network device can control the amount of resources occupied by the UCI sent by the non-scheduled PUSCH sent by the terminal device, and prevent the terminal device from transmitting uplink control information and UL-SCH on the semi-statically configured PUSCH.
  • the transmission performance of the UL-SCH is affected by the amount of resources occupied by UCI.
  • Step 33 The terminal device determines a third resource, where the third resource is used to allocate an uplink shared channel, where the third resource is part of the first resource.
  • the mobile communication uplink information transmission method proposed by the present invention is used for a terminal device, and includes the following steps:
  • Step 41 The terminal device receives the configuration information of the unscheduled resource, and determines that the first resource is used to allocate the physical uplink shared channel.
  • Step 42 The scheduling resource configuration information further includes an indicator, where the indicator is 0, that is, the quantity of the second resource used to allocate the uplink control information in the first resource is 0; Determining a fourth resource, configured to allocate uplink control information; the fourth resource does not belong to the first resource.
  • the indicator indicates that the network device is incompatible with the terminal device to send uplink control information on the unscheduled PUSCH resource.
  • the terminal device sends the first uplink control information on the fourth resource, and does not send the uplink information in the first resource. Based on this, it can be ensured that the first uplink control information is successfully transmitted in the fourth resource.
  • the fourth resource is a resource of a physical uplink control channel PUCCH. On the first resource, the terminal device does not send uplink information on the first resource because the terminal device does not support or is not allowed to simultaneously transmit the PUCCH and the PUSCH.
  • FIG. 5 is a schematic diagram of a system and signaling for implementing the method.
  • the system of the present invention comprises a network device 1 and at least one terminal device 2; the network device sends the scheduling-free resource configuration information to the terminal device through the high layer signaling 101 and the activation/deactivation signaling 102 of the physical control information.
  • the terminal device transmits information to the network device through the physical uplink shared channel 201.
  • the terminal device further sends information to the network device through the physical uplink control channel 202.
  • the unscheduled resource configuration information is transmitted in at least one of the following: the unscheduled resource configuration information is included in the high layer signaling, and the unscheduled resource configuration information is included in the physical control information. Or included in the activation/deactivation signaling of the medium access control layer control unit; part of the unscheduled resource configuration information is included in the high layer signaling; part of the non-scheduled resource configuration information is included in the physical control information or It is included in the activation/deactivation signaling of the media access control layer control unit.
  • the scheduling-free resource configuration information is included in higher layer signaling.
  • RRC signaling The RRC configuration or reconfiguration signaling includes a resource-related period for transmitting the unscheduled PUSCH, a time offset, a time domain resource, a frequency domain resource, a terminal device-specific DMRS, an MCS/TBS value, and a repeated transmission number K, Send power related parameters, etc.
  • the terminal device After the terminal device obtains the configuration information of the unscheduled resource, it can determine which resources are used to send the unscheduled PUSCH.
  • the schedule-free resource configuration information is included in the activation/deactivation signaling of the higher layer signaling and physical control information.
  • the signaling of RRC configuration or reconfiguration includes parameters related to resource-related periods, transmission power correlation, etc. for transmitting the unscheduled PUSCH.
  • the resource time offset, the time domain resource, the frequency domain resource, the terminal device specific DMRS, and the MCS/TBS value of the PUSCH for transmitting the unscheduled PUSCH are carried in the activation/deactivation signaling of the physical control information.
  • the number of repeated transmissions K may be in the schedule-free resource configuration information or in the activation/deactivation signaling of the physical control information.
  • the terminal device may determine, on which resources, the unscheduled PUSCH by using the unscheduled resource configuration information during the active state.
  • the unscheduled resource configuration information is included in the high layer signaling, or part of the high layer signaling is included, and the other part is included in the activation/deactivation signaling of the physical control information, and the terminal device is used by the PUSCH in the unscheduled resource for a period of time.
  • Resources, and delivery methods are semi-static.
  • the network device configures the appropriate scheduling-free resource configuration information for the terminal device according to the capability of the terminal device or the requirement that the terminal device sends the unscheduled PUSCH to meet the requirements of the transmission-free traffic and performance of the scheduling-free PUSCH. However, at a specific moment, whether UCI needs to be sent on the unscheduled PUSCH, and the value of the UCI to be transmitted is dynamically changed.
  • the performance of the UL-SCH transmitted by the terminal device on the unscheduled PUSCH will be affected by the UCI transmitted therein, and the transmission of the UL-SCH when the network device transmits the unscheduled resource configuration information to the terminal device. Performance expectations are different.
  • a part of the schedule-free resource configuration information is included in the high layer signaling, and another part is included in the physical control information or the activation/deactivation signaling of the medium access control layer control unit: a part is included in the high layer signaling, and another part is included in the physical control information or the activation/deactivation signaling of the medium access control layer control unit;
  • the indicator includes: In the high layer signaling;
  • the indicator includes: In the physical control information or the activation/deactivation signaling of the medium access control layer control unit.
  • the uplink control information corresponding to the indicator of the second resource includes one or more of the following types: HARQ-ACK, PMI, CRI, PTI, BMI, RI.
  • the network device sends downlink service data through the physical downlink shared channel PDSCH, and after receiving the information service data, the terminal device feeds back the acknowledgement ACK of the downlink service data received by the terminal device on the physical uplink control channel PUCCH or the physical uplink shared channel PUSCH. Or non-acknowledging the NACK information, so that the network device determines whether to reschedule the downlink service data or to schedule new downlink service data to the terminal device.
  • the ACK and NACK information are collectively referred to as hybrid automatic repeat request response information HARQ-ACK.
  • the UCI information may also include CSI and RI, etc.
  • the CSI includes at least one of CQI, PMI, CRI, PTI, and BMI.
  • the CSI information is used by the terminal device to send the downlink channel information to the network device, so that the network device can schedule the downlink data of the terminal device.
  • Each type of uplink control information corresponds to at least one indicator; therefore, correspondingly, the indicator is one or more; the quantity value, the maximum number of values, and the value coefficient are one or more.
  • the indicator includes L pieces of information, and the L pieces of information respectively correspond to L types of uplink control information, and the terminal device respectively determines respective occupied resources of the L types of uplink control information according to the L pieces of information.
  • the second resource is composed of occupied resources of the L types of uplink control information, where L is a positive integer.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware.
  • the present invention has been described with reference to flowchart illustrations and/or block diagrams of methods, apparatus (system), and computer program products according to embodiments of the invention. It will be understood that each flow and/or block of the flowchart illustrations and/or FIG.
  • These computer program instructions can be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing device to produce a machine for the execution of instructions for execution by a processor of a computer or other programmable data processing device. Means for implementing the functions specified in one or more of the flow or in a block or blocks of the flow chart.

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Abstract

一种移动通讯上行信息传输方法和系统,旨在解决终端设备在半静态配置的物理上行共享信道上分配上行控制信息和上行共享信道时,上行共享信道的传输性能受上行控制信息占用资源量影响的问题。所述方法,用于终端设备发送上行信息以及网络设备接收上行信息,终端设备接收免调度资源配置信息,确定第一资源用于分配物理上行共享信道;所述免调度资源配置信息中还包含指示符,指示符用于确定第二资源,所述第二资源用于分配上行控制信息;所述第二资源为第一资源的一部分。所述终端设备还确定第三资源,用于分配上行共享信道;第三资源为第一资源的一部分,且和第二资源不相交,或者所述第二资源为空。本发明还提供一种用于所述方法的系统。

Description

一种移动通讯上行信息传输方法和系统
本申请要求在2018年1月12日提交中国专利局、申请号为201810028943.3,发明名称为“一种移动通讯上行信息传输方法和系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及通信领域,尤其涉及一种移动通讯上行信息传输。
背景技术
新无线通信(NR)技术、LTE技术中,终端设备向网络设备上报上行控制信息(UCI),用于网络设备调度终端设备的数据传输的依据。一般地,终端设备在物理上行控制信道(PUCCH)发送上行控制信息;当终端设备在物理上行共享信道(PUSCH)工作时,也可以用来发送上行控制信息。
PUSCH的配置方式有两种类型,第一种是网络设备发送下行控制信息(DCI)调度终端设备发送的PUSCH,第二种是网络设备半静态配置终端设备发送的PUSCH。
当终端设备在第一种类型的PUSCH上发送UCI时,网络设备对于该UCI对PUSCH上发送的上行共享信道(UL-SCH)数据传输性能的影响是有预期的,并可以通过调整PUSCH对应的物理控制信息中所指示的调制编码方式等解决对UL-SCH传输性能影响的问题。
对于第二种类型的PUSCH。终端设备发送PUSCH的资源、调制编码方式等是网络设备通过半静态的信令配置给终端设备在一定时间段内按照一定的时间样式多次使用的。网络设备无法通过动态的物理控制信息调整终端设备在第二类型的PUSCH发送UL-SCH的调度信息,以满足UL-SCH传输性能的需求。另一方面,终端设备在特定时刻的第二类型PUSCH上是否有UCI需要发送,以及需要发送的UCI的数量值是动态变化的。这样,网络设备无法通过调整终端设备发送UL-SCH的调度信息,以满足UL-SCH传输性能的需求。
发明内容
本申请实施例提供一种移动通讯上行信息传输方法和系统,旨在解决终端设备在半静态配置的物理上行共享信道上分配上行控制信息和上行共享信道时,上行共享信道的传输性能受上行控制信息占用资源量影响的问题。
本发明提出的移动通讯上行信息传输方法,用于终端设备发送上行信息以及网络设备接收上行信息。本发明的方法用于网络设备,所述网络设备发送免调度资源配置信息,用于确定第一资源,所述第一资源用于分配物理上行共享信道,所述免调度资源配置信息中还包含指示符,用于确定第二资源,所述第二资源用于分配上行控制信息;本发明的方法用于终端设备,所述终端设备接收免调度资源配置信息,确定第一资源用于分配物理上行共享信道;所述免调度资源配置信息中还包含指示符,所述终端设备根据所述指示符确定第二资源,所述第二资源用于分配上行控制信息;所述第二资源为所述第一资源的一部分,或者所述第二资源为空。在本发明的实施例中,所述指示符用于确定所述第二资源的数量值和或数量最大值;当所述指示符用于确定所述第二资源的数量最大值时,所述第二资源用量不大于所述数量最大值。
作为本发明进一步优化的实施例,所述终端设备确定第三资源,用于分配上行共享信道;所述第三资源为所述第一资源的一部分,且和所述第二资源不相交。
优选地,当所述指示符指示所述第二资源为空时,所述终端设备丢弃所述上行控制信息。
进一步优选地,当所述指示符指示所述第二资源为空时,所述终端设备在第四资源分配所述上行控制信息;所述第四资源不属于所述第一资源。
在本发明的实施例中,所述免调度资源配置信息的传送方式为以下至少一种:所述免调度资源配置信息包含在高层信令中;所述免调度资源配置信息包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中;所述免调度资源配置信息的一部分包含在高层信令中,另一部分包 含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。
在本发明的实施例中,所述第二资源的指示符对应的上行控制信息,包含以下一种或多种类型:HARQ-ACK、PMI、CRI、PTI、BMI、RI。
本申请还包含一种移动通讯上行信息传输系统,用于实施本申请任意一项实施例所述方法。所述系统包含网络设备和至少一个终端设备;所述网络设备通过高层信令和或物理控制信息或者媒体接入控制层控制单元的激活/去激活信令,向所述终端设备发送免调度资源配置信息;所述终端设备通过物理上行共享信道,向所述网络设备发送信息。
本申请实施例采用的上述至少一个技术方案能够达到以下有益效果:网络设备可通过免调度资源配置信息中的指示符调整终端设备在和该免调度资源配置信息对应的免调度的物理上行共享信道中UCI的资源占用量,避免UL-SCH的传输性能受到影响。
附图说明
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为本发明方法的实施例流程图;
图2为本发明方法包含分配上行共享信道的实施例流程图;
图3为本发明方法限制上行控制信道的实施例流程图;
图4为本发明方法限制上行控制信道的另一实施例流程图;
图5为实施本方法的系统和信令示意图。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请具体实施例及相应的附图对本申请技术方案进行清楚、完整地描述。显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中 的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本发明的构思是,网络设备在给终端设备的免调度资源配置信息中包括免调度的PUSCH资源中用于发送UCI的资源量的指示符;终端设备根据该指示符确定以下信息的至少一种:免调度的PUSCH中是否允许发送UCI;免调度的PUSCH中发送UCI资源和用于发送UL-SCH的资源量;免调度的PUSCH中允许发送UCI的资源量的最大值。可选的,上述配置信息可以针对不同的UCI类型(HARQ-ACK、CSI-part1、CSI-part2)分别配置。
以下结合附图,详细说明本申请各实施例提供的技术方案。
图1为本发明方法的实施例流程图。本发明提出的移动通讯上行信息传输方法,用于终端设备,包含以下步骤:
步骤11、所述终端设备接收免调度资源配置信息,确定第一资源用于分配物理上行共享信道;
在本发明的实施例中,所述免调度资源配置信息的传送方式为以下至少一种:所述免调度资源配置信息包含在高层信令中;所述免调度资源配置信息包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中;所述免调度资源配置信息的一部分包含在高层信令中,另一部分包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。
步骤12、所述免调度资源配置信息中还包含指示符,所述终端设备根据所述指示符确定第二资源,用于分配上行控制信息;所述第二资源为所述第一资源的一部分,或者第二资源为空。
与步骤11~12对应地,本发明的移动通讯上行信息传输方法,用于网络设备,包括以下步骤:
所述网络设备发送免调度资源配置信息,用于确定第一资源,所述第一资源用于分配物理上行共享信道;
所述免调度资源配置信息中还包含指示符,用于确定第二资源,所述第二资源用于分配上行控制信息;所述第二资源为所述第一资源的一部分,或者所述第二资源为空。
网络设备通过免调度资源配置信息配置终端设备发送免调度的物理上行共享信道时,需考虑终端设备发送在该免调度的物理上行共享信道发送上行控制信道UL-SCH的目标性能为第一目标。一般来说,终端设备传输上行控制信息的性能要求高于UL-SCH的性能,例如为第二目标。举例来说,第一目标为误码率X,第二目标为误码率Y,X>Y。为达到上行控制信息的传输目标性能,相同数量的上行控制信息和UL-SCH信息在免调度的物理上行共享信道传输时,所需的资源单元的数量不同,二者所需的资源单元的比值可以用β表示。例如在下文所述方式一中,所述指示符中包括第二资源的取值系数,终端设备通过该取值系数确定第二资源的数量值
在本发明的实施例中,所述指示符用于确定所述第二资源的数量值和或数量最大值。
当所述指示符包含用于指示所述第二资源的数量最大值时,所述第二资源用量不大于所述数量最大值。
第二资源的数量值为第二资源所包括的资源单元的数量。第二资源的数量最大值用于终端设备确定在第一资源中用于分配上行控制信息的资源单元的数量极限,即所述第二资源用量不大于所述数量最大值。
第二资源所对应的数量值为N。在发明实施例中,终端设备通过免调度资源配置信息确定N的取值。可采用以下实施方式:
方式一:所述指示符中包括第二资源的取值系数,终端设备通过该取值系数计算第二资源的数量值,即确定第二资源所包括的资源单元的数量。
该取值系数包括对应N=0和N>0的两种情况。如果N>0,终端设备可以根据预设的取值系数β,确定出N的具体取值。
或者,所述指示符中的取值系数对应变量β的取值,终端设备根据β的 取值、上行控制信息的比特数、免调度资源配置信息中关于免调度的PUSCH的配置信息等计算第二资源所对应的数量值为N。其中变量β的取值包括等于0的情况。例如
Figure PCTCN2019071420-appb-000001
其中,O是上行控制信息的比特数,
Figure PCTCN2019071420-appb-000002
是PUSCH包括的子载波的个数。C和K r分别是免调度的物理上行共享信道中传输的UL-SCH数据对应的码块个数和各自码块包括的比特数。
Figure PCTCN2019071420-appb-000003
是免调度的物理上行共享信道中除DMRS和PTRS符号外的OFDM符号的个数。
N的具体取值也可以通过以下方式获取:
Figure PCTCN2019071420-appb-000004
其中,O是上行控制信息的比特数,L是CRC的比特数。
Figure PCTCN2019071420-appb-000005
是PUSCH包括的子载波的个数。C和K r分别是免调度的物理上行共享信道中传输的UL-SCH数据对应的码块个数和各自码块包括的比特数。
Figure PCTCN2019071420-appb-000006
是免调度的物理上行共享信道中除DMRS和PTRS外的OFDM符号的个数。Q是在该免调度的物理上行共享信道中传输的比该上行控制信息的优先级高的其它上行控制信息的比特数,Q m是该免调度的物理上行共享信道使用的调制阶数。上行控制信息之间的优先级顺序为HARQ-ACK的优先级高于第一部分CSI,第一部分CSI的优先级高于第二部分CSI。这里,第二部分CSI的比特数由第一部分CSI的信息确定。例如第一部分CSI包括秩指示信息RI,第二部分CSI包括预编码矩阵指示信息。预编码矩阵指示信息的比特数和RI的取值相关。
如果免调度资源配置信息的一部分包含在高层信令中,另一部分包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中,该指示符可以包含在高层信令中,也可以包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。
再或者,第二资源的取值系数由两部分组成,第一部分取值系数的两种状态分别向终端设备指示第一资源中用于传输第一上行控制信息的第二资源的数量值N=0还是N>0。第二部分取值系数对应变量β的取值。如果终端设备根据第一部分取值系数确定N=0,则终端设备确定第二资源为空。如果终端设备根据第一部分取值系数确定N>0,则终端设备根据本实施例的上述方法,用第二部分取值系数对应的变量β的取值确定第二资源的数量值。如果免调度资源配置信息的一部分包含在高层信令中,另一部分包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中,该指示符中一部分取值系数可以包含在高层信令中,另一部分取值系数可以包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。例如上述第一部分取值系数包含在高层信令中,第二部分取值系数包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。或者,如果所述免调度资源配置信息的一部分包含在高层信令中,另一部分包含在物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中,则指示符包含在所述高层信令中;或者,如果所述免调度资源配置信息的一部分包含在高层信令中,另一部分包含在物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中,则指示符包含在所述物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中。
方式二:所述指示符包含第二资源的数量值和或数量最大值。
网络设备通过免调度资源配置信息为终端设备配置免调度的物理上行共享信道时,同时配置该免调度的物理上行共享信道中多少数量的资源单元可以分配给上行控制信息。所述指示符包含第二资源的数量值时,终端设备根 据该指示符可以直接确定第二资源的数量值。
需要说明的是,网络设备向终端设备发送的指示符,还可以包含上行控制信息占用资源的数量最大值。终端设备还根据取值系数和最大值限制第二资源的数量,保证第二资源数量不超过上行控制信息占用资源的最大值。
即,当所述指示符包含所述第二资源的数量最大值时,所述第二资源的数量不大于所述数量最大值。终端设备通过免调度资源配置信息确定N的取值。
例如,可采用以下实施方式:网络设备通过免调度资源配置信息为终端设备配置免调度的物理上行共享信道时,同时配置该免调度的物理上行共享信道中最多有多少数量的资源单元可以分配给上行控制信息。终端设备根据其它条件和信息确定第二资源的数量值。如果所述数量值大于指示符所确定的数量最大值,则第二资源的用量由该数量最大值确定;如果所述数量值不大于指示符所指示的第二资源的数量最大值,则第二资源的用量由所述数量值确定。
方式三:所述指示符包含数量分级标识。
例如,第一资源中用于传输第一上行控制信息的第二资源可以包括两种状态,为空或者不为空。作为一个实施例,所述指示符用字符“0”或数值0来表示第二资源数量为0。此时,字符“0”或数值0就是一个数量分级标识。
再例如,第二资源的不同数量级别,用预定义的数量分级标识表示;每一个所述数量分级标识用来代表一个值,作为所述第二资源的数量值或最大值。所述终端设备根据所述数量分级标识确定第二资源的数量值或数量最大值。
需要说明的是,本实施例中,终端设备接收免调度资源配置信息,并根据免调度资源配置信息确定第一资源,并根据该免调度资源配置信息中的指示符确定第二资源。在实际应用中,终端设备可能接收多个免调度资源配置信息,终端设备根据该多个免调度资源配置信息确定出多个免调度的物理上 行共享信道的资源。该多个免调度资源配置信息中各自都包括指示符,用于终端设备确定各免调度的物理上行共享信道的资源中用于分配上行控制信息的资源。各免调度资源配置信息中指示符相互独立。
也就是说,所述终端设备接收M个免调度资源配置信息,所述M个免调度资源配置信息各自包括指示符,所述各免调度资源配置信息中指示符相互独立;所述终端设备根据所述M个免调度资源配置信息各自的指示符确定各免调度的物理上行共享信道的资源中用于分配上行控制信息的资源。对应地,所述网络设备发送M个免调度资源配置信息,所述M个免调度资源配置信息各自包括指示符,所述各免调度资源配置信息中指示符相互独立;所述M个免调度资源配置信息各自的指示符分别用于确定各免调度的物理上行共享信道的资源中用于分配上行控制信息的资源。其中M大于等于2。
图2为本发明方法包含分配上行共享信道的实施例流程图。本发明提出的移动通讯上行信息传输方法,用于终端设备,包含以下步骤:
步骤21、终端设备接收免调度资源配置信息,确定第一资源用于分配物理上行共享信道;
步骤22、所述免调度资源配置信息中还包含指示符,所述终端设备根据所述指示符确定第二资源,用于分配上行控制信息;
作为本发明进一步优化的实施例,进一步包含以下步骤
步骤23、所述终端设备确定第三资源,用于分配上行共享信道;所述第三资源为所述第一资源的一部分,且和所述第二资源不相交。
例如,如果指示符包含N>0,终端设备可以在第三资源发送上行共享信道UL-SCH,第三资源属于第一资源,并且所述第三资源不包括所述第二资源。如果指示符包含N=0,第三资源和第二资源相同。
图3为本发明方法限制上行控制信道的实施例流程图。本发明提出的移动通讯上行信息传输方法,用于终端设备,包含以下步骤:
步骤31、终端设备接收免调度资源配置信息,确定第一资源用于分配物 理上行共享信道;
步骤32、所述免调度资源配置信息中还包含指示符,所述终端设备根据所述指示符确定第二资源,用于分配上行控制信息。当所述指示符为0时,所述终端设备丢弃所述上行控制信息;
需要说明的是,如果指示符包含N=0,说明网络设备不兼容终端设备在免调度的PUSCH资源上发送上行控制信息。该终端设备能够在所述第三资源发送上行共享信道UL-SCH,并丢弃所述第一上行控制信息。基于此,可实现网络设备对终端设备发送的免调度PUSCH中发送的UCI占用的资源量有一定的控制权,避免终端设备在半静态配置的PUSCH上传输上行控制信息和UL-SCH(上行共享信道)时,UL-SCH的传输性能受UCI占用资源量影响的问题。
步骤33、所述终端设备确定第三资源,用于分配上行共享信道;所述第三资源为所述第一资源的一部分。
图4为本发明方法限制上行控制信道的另一实施例流程图。本发明提出的移动通讯上行信息传输方法,用于终端设备,包含以下步骤:
步骤41、终端设备接收免调度资源配置信息,确定第一资源用于分配物理上行共享信道;
步骤42、所述免调度资源配置信息中还包含指示符,当所述指示符为0时,即所述第一资源内用于分配上行控制信息的第二资源数量为0;所述终端设备确定第四资源,用于分配上行控制信息;所述第四资源不属于所述第一资源。
需要说明的是,如果指示符包含N=0,说明网络设备不兼容终端设备在免调度的PUSCH资源上发送上行控制信息。该终端设备在第四资源发送第一上行控制信息,并在所述第一资源不发送上行信息。基于此,可以保证第一上行控制信息在第四资源顺利传输。可选的,该第四资源是物理上行控制信道PUCCH的资源。而在第一资源上,由于终端设备不支持或者不被允许 同时发送PUCCH和PUSCH,终端设备在该第一资源上不发送上行信息。
图5为实施本方法的系统和信令示意图。本发明的系统,包含网络设备1和至少一个终端设备2;所述网络设备通过高层信令101和或物理控制信息的激活/去激活信令102,向所述终端设备发送免调度资源配置信息;所述终端设备通过物理上行共享信道201向所述网络设备发送信息。优选地,所述终端设备还通过物理上行控制信道202向所述网络设备发送信息。
在本发明的实施例中,所述免调度资源配置信息的传送方式为以下至少一种:所述免调度资源配置信息包含在高层信令中;所述免调度资源配置信息包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中;所述免调度资源配置信息的一部分包含在高层信令中;所述免调度资源配置信息的一部分包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。
作为一个实施例,免调度资源配置信息包含在高层信令中。例如RRC信令。RRC配置或者重配置的信令包括用于传输免调度的PUSCH的资源相关的周期以及时间偏置、时域资源、频域资源、终端设备特定的DMRS、MCS/TBS值、重复传输次数K、发送功率相关参数等。终端设备获取该免调度资源配置信息后,即可确定在哪些资源上用什么的方式发送免调度的PUSCH。
作为可选择的另一实施例,免调度资源配置信息包含在高层信令和物理控制信息的激活/去激活信令中。例如,RRC配置或者重配置的信令包括用于传输免调度的PUSCH的资源相关的周期、发送功率相关等参数。而在物理控制信息的激活/去激活信令中携带用于传输免调度的PUSCH的资源时间偏置、时域资源、频域资源、终端设备特定的DMRS、MCS/TBS值。重复传输次数K可以在免调度资源配置信息或者在物理控制信息的激活/去激活信令中。终端设备获取该免调度资源配置信息后,可在免调度资源配置信息处于激活状态期间确定在哪些资源上用什么的方式发送免调度的PUSCH。
无论免调度资源配置信息包含在高层信令中,还是一部分包含在高层信令、另一部分包含在物理控制信息的激活/去激活信令中,终端设备在一段时间内在免调度资源发送PUSCH所占用的资源、和发送方式等都是半静态的。网络设备根据终端设备的能力或者终端设备发送免调度的PUSCH的需求为终端设备配置合适的免调度资源配置信息,以满足免调度PUSCH的传输业务量以及性能的需求。但在特定的时刻,免调度的PUSCH上是否有UCI需要发送,以及需要发送的UCI的数量值是动态变化的。这样,终端设备在免调度的PUSCH上传输的UL-SCH的性能将受到在其中发送的UCI的影响,而和网络设备对该终端设备发送该免调度资源配置信息时,对UL-SCH的传输性能的预期不同。
进一步优选地,如果所述免调度资源配置信息的一部分包含在高层信令中、另一部分包含在物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中,则:所述指示符一部分包含在所述高层信令中、另一部分包含在所述物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中;
或者,如果所述免调度资源配置信息的一部分包含在高层信令中、另一部分包含在物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中,则:所述指示符包含在所述高层信令中;
或者,如果所述免调度资源配置信息的一部分包含在高层信令中、另一部分包含在物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中,则:所述指示符包含在所述物理控制信息或者媒体接入控制层控制单元的激活/去激活信令中。
在本发明的实施例中,所述第二资源的指示符对应的上行控制信息,包含以下一种或多种类型:HARQ-ACK、PMI、CRI、PTI、BMI、RI。
例如,网络设备通过物理下行共享信道PDSCH发送下行业务数据,终端设备接收到该信息业务数据后,在物理上行控制信道PUCCH或者物理上行共享信道PUSCH上反馈终端设备对该下行业务数据接收的确认ACK或者 非确认NACK信息,以便网络设备确定重新调度该下行业务数据还是向该终端设备调度新的下行业务数据。ACK和NACK信息统称为混合自动重传请求应答信息HARQ-ACK。除HARQ-ACK外,UCI信息还可能包括CSI和RI等,CSI包括CQI、PMI、CRI、PTI、BMI中的至少一种。CSI信息用于终端设备向网络设备发送下行信道的信息,便于网络设备调度该终端设备的下行数据。
每一种类型上行控制信息对应至少一个指示符;因此,相对应地,所述指示符为一个或多个;所述数量值、数量最大值、取值系数为一个或多个。
例如,指示符包括L个信息,所述L个信息分别和L种类型的上行控制信息对应,所述终端设备根据所述L个信息分别确定所述L种类型的上行控制信息各自的占用资源,所述第二资源由所述L种类型的上行控制信息各自的占用资源组成,其中L为正整数。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
还需要说明的是,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、商品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、商品或者设备所固有的要素。在没有更多限制的情况下,由 语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、商品或者设备中还存在另外的相同要素。
以上所述仅为本申请的实施例而已,并不用于限制本申请。对于本领域技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本申请的权利要求范围之内。

Claims (13)

  1. 一种移动通讯上行信息传输方法,用于终端设备,所述终端设备接收免调度资源配置信息,确定第一资源,用于分配物理上行共享信道,其特征在于,还包括以下步骤:
    所述免调度资源配置信息中还包含指示符,所述终端设备根据所述指示符确定第二资源,用于分配上行控制信息;
    所述第二资源为所述第一资源的一部分,或者所述第二资源为空。
  2. 一种移动通讯上行信息传输方法,用于网络设备,所述网络设备发送免调度资源配置信息,用于确定第一资源,所述第一资源用于分配物理上行共享信道,其特征在于,还包括以下步骤:
    所述免调度资源配置信息中还包含指示符,用于确定第二资源,所述第二资源用于分配上行控制信息;
    所述第二资源为所述第一资源的一部分,或者所述第二资源为空。
  3. 如权利要求1或2所述方法,其特征在于
    所述指示符用于确定所述第二资源的数量值和或数量最大值;
    当所述指示符用于确定所述第二资源的数量最大值时,所述第二资源用量不大于所述数量最大值。
  4. 如权利要求1所述方法,其特征在于,
    所述终端设备确定第三资源,用于分配上行共享信道;
    所述第三资源为所述第一资源的一部分,且和所述第二资源不相交。
  5. 如权利要求1所述方法,其特征在于,
    当所述指示符指示所述第二资源为空时,所述终端设备丢弃所述上行控制信息。
  6. 如权利要求1所述方法,其特征在于,
    当所述指示符指示第二资源为空时,所述终端设备在第四资源分配上行控制信息;
    所述第四资源不属于所述第一资源。
  7. 如权利要求3所述方法,其特征在于,
    所述指示符包含取值系数,用于计算所述数量值。
  8. 如权利要求1或2所述方法,其特征在于
    所述免调度资源配置信息的传送方式为以下至少一种:
    所述免调度资源配置信息包含在高层信令中;
    所述免调度资源配置信息包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中;
    所述免调度资源配置信息的一部分包含在高层信令中,另一部分包含在物理控制信息或者包含在媒体接入控制层控制单元的激活/去激活信令中。
  9. 如权利要求8所述方法,其特征在于
    如果所述免调度资源配置信息的一部分包含在高层信令中、另一部分包含在物理控制信息中,则:
    所述指示符一部分包含在所述高层信令中、另一部分包含在所述物理控制信息中。
  10. 如权利要求1~2、4~7任意一项所述方法,其特征在于,所述第二资源的指示符对应的上行控制信息,包含以下一种或多种类型:
    HARQ-ACK、PMI、CRI、PTI、BMI、RI。
  11. 如权利要求1所述方法,其特征在于:
    所述终端设备接收M个免调度资源配置信息,所述M个免调度资源配置信息各自包括指示符,所述各免调度资源配置信息中指示符相互独立;
    所述终端设备根据所述M个免调度资源配置信息各自的指示符确定各免调度的物理上行共享信道的资源中用于分配上行控制信息的资源,其中M大于等于2。
  12. 如权利要求2所述方法,其特征在于:
    所述网络设备发送M个免调度资源配置信息,所述M个免调度资源配 置信息各自包括指示符,所述各免调度资源配置信息中指示符相互独立;
    所述M个免调度资源配置信息各自的指示符分别用于确定各免调度的物理上行共享信道的资源中用于分配上行控制信息的资源,其中M大于等于2。
  13. 一种用于权利要求1~12任意一项所述方法的移动通讯上行信息传输系统,其特征在于,包含网络设备和至少一个终端设备;
    所述网络设备通过高层信令和或物理控制信息的激活/去激活信令,向所述终端设备发送免调度资源配置信息;
    所述终端设备通过物理上行共享信道,向所述网络设备发送信息。
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