WO2020125409A1 - 一种时隙调度的方法、设备及介质 - Google Patents

一种时隙调度的方法、设备及介质 Download PDF

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Publication number
WO2020125409A1
WO2020125409A1 PCT/CN2019/122822 CN2019122822W WO2020125409A1 WO 2020125409 A1 WO2020125409 A1 WO 2020125409A1 CN 2019122822 W CN2019122822 W CN 2019122822W WO 2020125409 A1 WO2020125409 A1 WO 2020125409A1
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Prior art keywords
scheduling information
dci
terminal
scheduling
information group
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PCT/CN2019/122822
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English (en)
French (fr)
Inventor
王磊
杨美英
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电信科学技术研究院有限公司
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Application filed by 电信科学技术研究院有限公司 filed Critical 电信科学技术研究院有限公司
Priority to US17/415,710 priority Critical patent/US20220061082A1/en
Priority to EP19900309.6A priority patent/EP3902361A4/en
Publication of WO2020125409A1 publication Critical patent/WO2020125409A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/121Wireless traffic scheduling for groups of terminals or users
    • 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
    • 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
    • H04L5/0091Signaling for the administration of the divided path
    • 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
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • This application relates to the field of communication technology, and in particular, to a method, device, and medium for time slot scheduling.
  • the data transmission scheduling information of the terminal can only be sent through DCI (Downlink Control Information) carried on the physical layer channel PDCCH (Physical Downlink Control Channel); and different The broadcast data is scheduled through different DCIs, and different DCIs need to be carried through different PDCCH candidates (physical downlink control channel candidates).
  • DCI Downlink Control Information
  • PDCCH Physical Downlink Control Channel
  • All PDCCHs on different MOs Monitoring Occasion, monitoring time) in the CSS (Common Search Space) of the terminal at each monitoring time or in the USS (UE-Specific Search Space) dedicated terminal search space
  • the candidate monitors the downlink control channel and detects the DCI of the scheduling data in the downlink control channel, where the DCI contains scheduling information.
  • the terminal determines to perform data transmission in the time slot designated by the DCI according to the scheduling timing information, time resource allocation, frequency domain resource allocation and other information carried in the DCI.
  • a DCI can only schedule one PDSCH (Physical Downlink Shared Channel) or PUSCH (Physical Uplink Shared Channel). If MO is configured as the search space of each time slot, the terminal needs to monitor downlink control information in each time slot, which increases the energy consumption of the terminal.
  • the terminal monitors the DCI of the scheduled data in the PDCCH every time slot, which wastes energy.
  • the present application provides a method, device, and medium for time slot scheduling, to solve the problem in the prior art that a terminal wastes energy by monitoring the DCI for scheduling data in the PDCCH in each time slot.
  • the present application provides a method for time slot scheduling.
  • the method includes:
  • the network side device selects at least one scheduling information group used by the terminal from multiple scheduling information groups configured for the terminal;
  • the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI.
  • the network side device selects at least one scheduling information group used by the terminal from a plurality of scheduling information groups configured for the terminal, and instructs the terminal to use the at least one scheduling information group in one or more time slots through DCI Data transmission is performed, so that after receiving the at least one scheduling information group, the terminal performs data transmission in one or more time slots according to the received at least one scheduling information group, and the terminal can use a DCI in multiple time slots For data transmission within, there is no need to detect each time slot separately, reducing the energy consumption of the terminal.
  • the network-side device configures the terminal through high-level signaling The first correspondence between the dispatch information group and the dispatch information group index;
  • the network-side device When the network-side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, the network-side device determines that it needs to be sent to the The scheduling information group index corresponding to the scheduling information group of the terminal;
  • the network side device sends the determined scheduling information group index to the terminal through DCI.
  • the scheduling information group in the first correspondence configured by the network-side device for the terminal through high-layer signaling includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling , Or the remaining scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • the network side device when the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, the network side device according to the scheduling instruction information
  • the second correspondence between the position index of the domain in the DCI and the time slot determines the position index of the scheduling indication information field corresponding to the time slot to be scheduled in the DCI;
  • the network-side device sends the scheduling information group index corresponding to the time slot to the terminal through the corresponding scheduling indication information field in the DCI according to the location index.
  • the network side device configures the terminal for the terminal through high-level signaling. Indicates the second correspondence between the position index of the information field in the DCI and the time slot.
  • the method further includes:
  • the network-side device determines the length of the scheduling indication information field according to the number of scheduling information groups configured for the terminal.
  • the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI:
  • the network side device directly schedules the scheduling information group carried in the scheduling indication information field corresponding to the time slot through DCI;
  • the scheduling information group configured for the terminal contains part of the scheduling information
  • the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal through the DCI by the network-side device and through high-level signaling are the Schedule the remaining scheduling information configured by the terminal, or;
  • the network side device carries the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal by DCI and the remaining dynamically indicated in DCI Schedule information for scheduling.
  • the network side device notifies the terminal that the DCI payload length used in the scheduling information group is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the network-side device notifies the terminal that the DCI payload length used by the scheduling information group is configured by the network-side device to the terminal through high-level signaling.
  • the network-side device notifies the terminal that the received DCI is a DCI used for scheduling data transmission in multiple time slots in part or all of the following ways:
  • the network-side device scrambles the DCI used to schedule data transmission in multiple time slots through the first RNTI (Radio Network Temporary Identity). or
  • the network-side device carries information indicating the type of DCI in the DCI used for scheduling data transmission in multiple time slots; or
  • the network-side device sends DCI for scheduling data transmission in multiple time slots in a specific search space
  • the network-side device carries information representing the type of DCI on the frozen bits
  • the network side device sets a part of bits in the DCI used to schedule data transmission in multiple time slots to a special value.
  • an embodiment of the present application provides a method for slot scheduling, the method includes:
  • the terminal receives at least one scheduling information group instructed by the network side device through DCI;
  • the terminal uses the at least one scheduling information group for data transmission in one or more time slots;
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • the above method enables the terminal to perform data transmission in one or more time slots according to the received at least one scheduling information group after receiving the at least one scheduling information group, and the terminal can perform data transmission in multiple time slots through one DCI For data transmission, there is no need to separately detect the downlink control channel in each time slot, which reduces the energy consumption of the terminal.
  • the terminal before the terminal receives at least one scheduling information group that the network side device indicates to use through DCI, the terminal receives the scheduling information group and the scheduling configured by the network side device carried by high-layer signaling.
  • the terminal When the terminal receives at least one scheduling information group instructed by the network side device through DCI, the terminal receives the scheduling information group index sent by the network side device through DCI;
  • the scheduling information group index is a scheduling information group index corresponding to a scheduling information group determined by the network side device and needs to be sent to the terminal according to the first correspondence.
  • the terminal receiving the scheduling information group in the first correspondence between the scheduling information group configured by the network-side device and the scheduling information group index carried by high-layer signaling includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-static for the terminal by the network-side device through high-level signaling
  • the configured or remaining scheduling information is dynamically configured by the network side device for the terminal through physical layer signaling.
  • the terminal when the terminal receives at least one scheduling information group used by the network side device through the DCI indication, the terminal obtains the network side device's transmission through the scheduling indication information field in the DCI corresponding to the time slot The scheduling information group index corresponding to the time slot;
  • the scheduling instruction information field is the position of the scheduling instruction information field corresponding to the time slot to be scheduled in the second correspondence between the position index of the scheduling instruction information field in the DCI and the time slot in the DCI The index is determined.
  • the terminal before the terminal receives at least one scheduling information group used by the network side device through the DCI indication, the terminal receives a scheduling indication configured by the network side device for the terminal carried by high-layer signaling The second correspondence between the position index of the information field in the DCI and the time slot.
  • the payload length of the DCI used by the scheduling information group notified by the network side device received by the terminal is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1- 1 same; or
  • the payload length of the DCI used by the scheduling information group notified by the network side device received by the terminal is configured by the network side device to the terminal through high-level signaling.
  • the terminal determines that the DCI sent by the network-side device is a DCI used to schedule data transmission in multiple time slots in some or all of the following ways:
  • the terminal determines that the DCI sent by the network side device is the DCI scrambled by the first RNTI; or
  • the terminal determines that the DCI sent by the network side device carries information indicating the type of DCI;
  • the terminal determines that the DCI sent by the network-side device is information on the frozen bits indicating the type of DCI; or
  • the terminal determines that some bits in the DCI sent by the network side device are special values.
  • an embodiment of the present application provides a slot scheduling device, the device includes: a processor, a memory, and a transceiver;
  • the processor is used to read the program in the memory and execute:
  • an embodiment of the present application provides a slot scheduling device.
  • the device includes: the device includes: a processor, a memory, and a transceiver;
  • the processor is used to read the program in the memory and execute:
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • an embodiment of the present application provides a slot scheduling device, which includes:
  • Selection module used to select at least one scheduling information group used by the terminal from multiple scheduling information groups configured for the terminal;
  • the indicating module is used to instruct the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI.
  • an embodiment of the present application provides a slot scheduling device, which includes:
  • a receiving module configured to receive at least one scheduling information group instructed by the network side device through DCI;
  • a transmission module configured to use the at least one scheduling information group for data transmission in one or more time slots;
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • an embodiment of the present application further provides a computer-storable medium on which a computer program is stored, and when the program is executed by a processor, steps of any method of time slot scheduling are implemented.
  • FIG. 1 is a structural diagram of a time slot scheduling system provided by an embodiment of the present application.
  • FIG. 2 is a schematic diagram of a first type of terminal determining data transmission in a time slot according to DCI provided by an embodiment of the present application;
  • FIG. 3 is a schematic diagram of a second type of terminal determining data transmission in a time slot according to DCI provided by an embodiment of the present application;
  • FIG. 4 is a structural diagram of a first time slot scheduling device provided by an embodiment of this application.
  • FIG. 5 is a structural diagram of a second slot scheduling device provided by an embodiment of the present application.
  • FIG. 6 is a structural diagram of a third slot scheduling device provided by an embodiment of the present application.
  • FIG. 7 is a structural diagram of a fourth slot scheduling device provided by an embodiment of the present application.
  • FIG. 8 is a flowchart of a first time slot scheduling method provided by an embodiment of this application.
  • FIG. 9 is a flowchart of a second time slot scheduling method provided by an embodiment of the present application.
  • the term “plurality” refers to two or more, and other quantifiers are similar.
  • the network architecture and business scenarios described in the embodiments of the present application are to more clearly explain the technical solutions of the embodiments of the present application, and do not constitute a limitation on the technical solutions provided by the embodiments of the present application. With the evolution of the architecture and the emergence of new business scenarios, the technical solutions provided by the embodiments of the present application are also applicable to similar technical problems.
  • the terminal sends or receives data according to the scheduling information on the time slot.
  • the scheduling information on the corresponding time slot is sent by the network-side device through the DCI carried on the PDCCH. Different scheduling information is scheduled through different DCIs, and each DCI can only schedule one set of scheduling information; the terminal needs to monitor the downlink control channel in different time slots, wasting the terminal's energy.
  • the embodiments of the present application provide a time slot scheduling method.
  • the network-side device instructs the terminal to transmit data according to the scheduling information group in one or more time slots through DCI. At this time, it only needs to monitor one downlink control channel. It is not necessary to separately detect the downlink control channel in each time slot, reducing the energy consumption of the terminal.
  • the terminal is a device with wireless communication function, which can be deployed on land, including indoor or outdoor, handheld or vehicle-mounted; it can also be deployed on the water surface (such as ships, etc.); it can also be deployed in the air (such as Aircraft, balloons and satellites etc.).
  • the terminal may be a mobile phone, a tablet computer, a computer with wireless transceiver function, a virtual reality (VR) terminal, an augmented reality (AR) terminal, industrial control
  • the network-side device is a device that provides a wireless communication function for the terminal, including but not limited to: gNB in 5G, a radio network controller (radio network controller, RNC), and node B (node B, NB) , Base station controller (BSC), base transceiver station (BTS), home base station (for example, home evolved nodeB, or home node B, HNB), baseband unit (BaseBand Unit, BBU), transmission Transmitting and receiving point (TRP), transmitting point (TP), mobile switching center, etc.
  • the base station in this application may also be a device that provides a wireless communication function for the terminal in other communication systems that may appear in the future.
  • this is a schematic diagram of a system structure of a time slot scheduling system provided by the present application. Specifically, as shown in FIG. 1, the system includes:
  • the network side device 10 selects at least one scheduling information group used by the terminal from a plurality of scheduling information groups configured for the terminal; instructs the terminal to use the at least one scheduling information group for data in one or more time slots through DCI transmission.
  • Terminal 20 receiving at least one scheduling information group instructed by the network side device through DCI; using the at least one scheduling information group in one or more time slots for data transmission;
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • the network-side device selects at least one scheduling information group used by the terminal from a plurality of scheduling information groups configured for the terminal, and instructs the terminal to use the at least one scheduling slot in one or more time slots through DCI
  • a scheduling information group performs data transmission, so that after receiving the at least one scheduling information group, the terminal performs data transmission in one or more time slots according to the received at least one scheduling information group. For data transmission in multiple time slots, there is no need to separately detect the downlink control channel in each time slot, which reduces the energy consumption of the terminal.
  • the network side device Before selecting at least one scheduling information group used by the terminal from multiple scheduling information groups, the network side device needs to configure a scheduling information group for the terminal;
  • the network-side device configures a scheduling information group for the terminal, and pre-configures a plurality of scheduling information groups and a first correspondence between scheduling information group indexes for the terminal in advance through high-level signaling.
  • the high-level signaling may be RRC Signaling (Radio Resource Control Signaling, radio resource control signaling).
  • the scheduling information group in the first correspondence configured by the network-side device for the terminal through high-level signaling includes:
  • the scheduling information includes the following categories: time-frequency domain resource allocation, MCS (Modulation and coding scheme), antenna port related configuration, HARQ ID (Hybrid Automatic Repeat reQuest; hybrid automatic repeat request), etc.
  • the multiple groups of scheduling information groups configured for the terminal may all be scheduling information groups containing all scheduling information;
  • the multiple sets of scheduling information configured for the terminal may all be scheduling information groups containing part of the scheduling information; or
  • Part of the multi-group scheduling information group configured for the terminal is a scheduling information group containing all scheduling information, and part is a scheduling information group not containing scheduling information;
  • Part of the multi-group scheduling information group configured for the terminal is a scheduling information group containing part of scheduling information, and a part is a scheduling information group not containing scheduling information;
  • Part of the multi-group scheduling information group configured for the terminal is a scheduling information group containing all scheduling information, part is a scheduling information group containing part of scheduling information, and part is a scheduling information group not containing scheduling information; and many other possible situations It is not repeated here, and is mainly determined according to the specific configuration of the network side device.
  • the index of the scheduling information group is mainly determined by the length of the scheduling information indication field in the DCI where the scheduling information group is located; for example, the length of the scheduling information indication field is 4 bits, and the index of the scheduling information group may be 0000- Any of 1111.
  • the length of the scheduling information indication information field in the DCI is determined by the number of scheduling information groups configured by the network side device for the terminal;
  • the network side device determines the length of the scheduling information indication field according to the formula ceil(log2(C)) bits or ceil(log2(C+1)) bits, where C represents a scheduling information group configured by the network side device for the terminal quantity;
  • ceil(log2(C+1)) bits is used to indicate whether the terminal is not scheduled.
  • the scheduling information group index of the scheduling information group configured by the network side device for the terminal is determined according to the length of the scheduling information indication field
  • the network-side device is 8 groups of scheduling information groups configured by the terminal, and all the 8 groups of information groups are scheduling information groups containing all scheduling information; at this time, the network-side device determines scheduling according to the formula ceil(log2(C+1)) bits
  • the length of the indication information field is 4 bits, and the scheduling information group indexes are 0000, 0001, 0010, 0011 to 1111;
  • the eight groups of scheduling information groups are scheduling information groups 1 to 8 containing all scheduling information
  • the scheduling information group indexes corresponding to the scheduling information groups 1 to 8 containing all scheduling information are: 0000-0111, of which additional The index corresponding to one state is 1000; specifically, the correspondence between the scheduling information group and the scheduling information group index shown in Table 1.
  • the network side device sends the first correspondence between the scheduling information group and the scheduling information group index to the terminal according to the correspondence in Table 1.
  • the network-side device when the network-side device sends the first correspondence to the terminal, it does not necessarily need to be in the form of a table, and the correspondence can also be sent directly, or in other formats, which will not be repeated here.
  • the terminal receives the first correspondence between the scheduling information group configured by the network-side device and the scheduling information group index carried in the higher layer signaling.
  • the network-side device configures the correspondence between the scheduling information group and the scheduling information group index for the terminal, so that the terminal can determine the terminal according to the correspondence when passing the scheduling information group index carried in the scheduling indication information field in the DCI
  • the scheduling information group corresponding to the scheduling information group index transmits or receives data.
  • the network device determines the length of the scheduling indication information group in the DCI according to the number of scheduling information groups configured for the terminal:
  • the network side device directly passes ceil(log2 according to the number of scheduling information groups configured for the terminal by the network side device (C)) bits or ceil(log2(C+1)) bits determine the length of the scheduling information indication field; or
  • each of the multiple scheduling information groups configured by the network-side device for the terminal contains different scheduling information types ; Or each scheduling information group contains the same scheduling information category, but the scheduling information content corresponding to the scheduling information category is different;
  • the multiple scheduling information groups configured are scheduling information groups containing partial scheduling information.
  • the length of the scheduling indication information field in the DCI is determined directly based on the scheduling configured by the network side device for the terminal The number of information groups is determined;
  • the network side device may configure multiple scheduling information types for the terminal, and for each scheduling information The category configures different information.
  • the network-side device can determine the number of scheduling information groups according to the information of different types of information configured, and then determine the length of the scheduling indication information field according to the number of scheduling information groups.
  • the number of scheduling information groups configured by the terminal determines the length of the scheduling indication information field;
  • the network-side device configures 2 types of time-frequency domain resource allocation for the terminal through high-level signaling, and 4 types of HARQ processes. At this time, it is determined that the network-side device configures 8 types of scheduling information groups containing partial scheduling information for the terminal, and then according to the formula ceil(log2(C)) bits or ceil(log2(C+1)) bits determine the length of the scheduling information indication field.
  • the length of the scheduling indication information field in the DCI can be accurately determined according to the number of configured scheduling information groups.
  • the remaining scheduling information is predefined; or the remaining scheduling information is semi-statically configured by the network-side device for the terminal through high-level signaling; or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • the scheduling information group includes three types of scheduling information such as time-frequency domain resource allocation, MCS, and antenna port-related configuration, and the remaining scheduling
  • the information HARQ ID can be configured for the terminal in a pre-defined manner or configured uniformly for the terminal through high-level signaling, or dynamically indicated by the bit field in DCI; at this time, DCI can carry two types of scheduling indication information fields, namely high-level The scheduling indication information configured by signaling and the dynamic indication information field related to multiple time slots.
  • the scheduling information of the dynamic indication is not configured in advance by high-level signaling, and can only be configured by physical layer signaling, and the dynamically configured scheduling information is valid for one or more time slots corresponding to the scheduling indication information field in the DCI.
  • the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, including:
  • the network side device directly schedules the scheduling information group carried in the scheduling indication information field corresponding to the time slot through DCI;
  • the scheduling information group configured for the terminal contains part of the scheduling information
  • the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal through the DCI by the network-side device and through high-level signaling are the Schedule the remaining scheduling information configured by the terminal, or;
  • the network side device carries the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal by DCI and the remaining dynamically indicated in DCI Schedule information for scheduling.
  • the network side device configures the scheduling information group for the terminal
  • the multiple scheduling information groups included in the configuration have different scheduling information, that is, the network side device configures multiple different scheduling information groups for the terminal.
  • the multiple scheduling information groups configured by the network side device as the terminal are all scheduling information groups containing all scheduling information:
  • the network-side device configures eight scheduling information groups for the terminal, all of which are scheduling information groups containing all scheduling information, and each scheduling information group includes frequency domain resource allocation, time domain resource allocation, MCS, HARQ related information, and MIMO ( Multiple-Input (Multiple-Output, multiple input multiple output) related information and other scheduling information group categories, different scheduling information groups contain the same scheduling information category, but the scheduling information category corresponds to different scheduling information content;
  • Scheduling information group 1 is scheduling information group 1 containing all scheduling information.
  • Scheduling information group 2 is scheduling information group 2 containing all scheduling information.
  • the multiple scheduling information groups configured with the network side device as the terminal are all scheduling information groups containing partial scheduling information:
  • each scheduling information group needs to have a different scheduling information type; or each scheduling information group
  • the included scheduling information category is the same, but the scheduling information content corresponding to the scheduling information category is different;
  • the network-side device may configure the scheduling information content corresponding to each type of scheduling information through high-level signaling, for example, the network-side device uses high-level signaling Two types of time-frequency domain resource allocation and four types of HARQ process are configured; at this time, it is determined that the network-side device configures eight types of scheduling information groups containing partial scheduling information for the terminal, and each of the partial scheduling information groups is a type of time-frequency domain resource Distribution and a combination of HARQ process;
  • the two types of time-frequency domain resource allocation are ⁇ RA1, RA2 ⁇
  • the four types of HARQ processes are ⁇ HARQ process1, HARQ process2, HARQ process3, HARQ process4 ⁇
  • the eight scheduling information groups of the network-side equipment configuration are ⁇ RA1 , HARQ process1 ⁇ , ⁇ RA1, HARQ process2 ⁇ , ⁇ RA1, HARQ process3 ⁇ , ⁇ RA1, HARQ process4 ⁇ , ⁇ RA2, HARQ process1 ⁇ , ⁇ RA2, HARQ process2 ⁇ , ⁇ RA2, HARQ process3 ⁇ , ⁇ RA2, HARQ process4 ⁇ .
  • the network-side device separately configures the scheduling information for each scheduling information group; for example, four scheduling information groups are configured, which are ⁇ RA2, MCS1 ⁇ , ⁇ RA2, HARQ process4 ⁇ , ⁇ MCS1, HARQ process4 ⁇ , ⁇ antenna port 1, HARQ process4 ⁇ are all configured directly on the network side.
  • scheduling information configured by the network side device for the terminal may be arbitrary, and is not limited to the foregoing scheduling information group;
  • the network-side device configures two types of time-frequency resource allocation for the terminal through high-level signaling, 4 HARQ processes, NDI (New Data Indicator) and RV (Redundant Version), and redundant versions related to retransmission. )Wait.
  • multiple sets of scheduling information groups configured by the network-side device for the terminal are different scheduling information groups, and the number of configurations is not limited;
  • the number of different scheduling information groups configured by the network-side device through RRC Signaling may be greater than the number of time slots scheduled by the same DCI, or equal to the number of time slots scheduled by the same DCI, or less than the number scheduled by the same DCI The number of time slots.
  • the scheduling information groups that do not include scheduling information are used to indicate that the scheduling information groups that do not include scheduling information are in There is no data channel scheduling in the time slot corresponding to the corresponding scheduling indication information field in DCI.
  • the terminal determines that there is no data channel scheduling in the time slot, it does not monitor the downlink control channel in the time slot or multiple time slots.
  • the network-side device When the network-side device configures the first correspondence between the scheduling information group and the scheduling information group index for the terminal through high-level signaling, the network-side device also configures the location index and time slot of the scheduling indication information field in the DCI for the terminal through high-level signaling 'S second correspondence;
  • position index 1 corresponds to the first scheduling indication information field in DCI
  • position index 2 corresponds to the second scheduling indication information field in DCI
  • the network side device may directly notify the terminal of the correspondence between the location index of the scheduling indication field in the DCI and the time slot Relationship, so that the terminal determines the position index in the DCI of the scheduling indication information field corresponding to the time slot according to the received second correspondence relationship;
  • the network side device notifies the terminal of the location index of the scheduling indication information field in DCI, so that the terminal determines the location index of the scheduling indication information field corresponding to the time slot in DCI according to a predefined manner;
  • each scheduling indication information field determines the corresponding time slot in ascending order, that is, the first scheduling indication information field in DCI corresponds to the first time slot between two MOs, and the second scheduling indication information field in DCI Corresponds to the second time slot, and so on; or
  • the corresponding terminal receives the second correspondence between the position index in the DCI of the scheduling indication information field configured by the network-side device through high-level signaling and the time slot, and determines the scheduling indication information corresponding to the time slot according to the second correspondence The index of the position of the domain in DCI;
  • the network side device When the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, the network side device according to the position index of the scheduling instruction information field in the DCI and the second time slot Correspondence, determine the position index of the scheduling indication information field corresponding to the time slot that needs to be scheduled in the DCI; and according to the determined position index, the network side device passes the scheduling information group index corresponding to the time slot to the corresponding scheduling in the DCI The indication information field is sent to the terminal.
  • the terminal when the terminal receives at least one scheduling information group used by the network side device through the DCI indication, the terminal receives the time sent by the network side device through the scheduling indication information field in the DCI corresponding to the time slot The index of the scheduling information group corresponding to the slot;
  • the scheduling instruction information field is the position of the scheduling instruction information field corresponding to the time slot to be scheduled in the second correspondence between the position index of the scheduling instruction information field in the DCI and the time slot in the DCI The index is determined.
  • the corresponding scheduling information group can be determined according to the scheduling instruction information and the scheduling information group index carried therein, and data can be sent or received in the time slot according to the scheduling information in the corresponding scheduling information group.
  • the base station for the terminal configures the location index of the scheduling indication information field in slot N (slot N) as 1, that is, after receiving the DCI scheduling multiple slots, the terminal according to the first scheduling indication information and determination in the DCI Scheduling information group, as shown in FIG.
  • the terminal when the terminal monitors the PDCCH in the first time slot between two adjacent MOs and determines the DCI in the PDCCH, it determines the first scheduling indication information field in the DCI Index of the scheduling information group in the field, for example, the index of the scheduling information group in the first scheduling indication information field is 0000, then the terminal determines to include all scheduling in the time slot N according to the first correspondence configured for the terminal by high-level signaling
  • the scheduling information group of the information transmits data; if the scheduling information group index in the first scheduling indication information field is 1000, it means that the terminal is not scheduled in the time slot N, and the terminal will neither send data nor receive At the same time, it will not monitor other downlink control channels.
  • the length of each scheduling information indication field in the DCI carrying a group of terminal scheduling information transmitted in the public search space or the terminal-specific search space is determined by the number of scheduling information groups configured for the terminal on the network side, if the network side device is configured for the terminal If there are 7 scheduling information groups, the length of each scheduling indication information in the DCI is 3 bits.
  • the network side device indicates that the network side device has no configured scheduling information group index through the scheduling information group index in the scheduling indication information field, When it is an index of reserved positions, it is identified that the terminal is not scheduled at this moment, as shown in FIG. 3.
  • the DCI used is the currently defined DCI format or a new definition DCI format
  • the payload length of the newly defined DCI format is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the payload length of the newly defined DCI format is configured by the network side device to the terminal through high-level signaling.
  • the payload length of the DCI used by the scheduling information group notified by the network side device received by the terminal is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the payload length of the DCI used by the scheduling information group notified by the network side device received by the terminal is configured by the network side device to the terminal through high-level signaling.
  • the payload of the newly defined DCI format X is also 31 bits.
  • the network side device notifies the terminal that the received DCI is a DCI used to schedule data transmission in multiple time slots in part or all of the following ways, that is, the DCI is a newly defined DCI format:
  • Method 1 The network-side device scrambles the DCI for scheduling data transmission in multiple time slots through the first RNTI;
  • the DCI when the CRC added by the DCI is scrambled using the first RNTI, the DCI contains information fields for scheduling multiple terminals, and each information field is combined with scheduling information configured by high-level signaling to schedule data for a specific slot transmission;
  • the first RNTI is an RNTI newly defined outside the existing protocol for scrambling the DCI that schedules data transmission in multiple time slots.
  • the network-side device carries information indicating the type of DCI in the DCI used to schedule data transmission in multiple time slots;
  • an explicit indication field indicating the DCI application scenario is added to indicate the specific use of the DCI. For example, a 1-bit information field is introduced. 0 indicates that the DCI is used for regular scheduling, and 1 indicates that the DCI is used to schedule data transmission of multiple slots.
  • Method 3 The network-side device sends DCI for scheduling data transmission in multiple time slots in a specific search space
  • the high-level configuration is DCI format 0-0 or DCI format 1-0 transmitted with a specific search space number, it is used to schedule the data transmission of a group of terminals, each information
  • the combination of the scheduling information configured by the domain and high-level signaling is used to schedule the data transmission of a specific terminal;
  • Method 4 The network-side device carries information indicating the type of DCI on the frozen bits
  • each information field is combined with the scheduling information configured by high-level signaling to schedule data transmission for a specific slot.
  • Manner 5 The network-side device sets some bits in the DCI used to schedule data transmission in multiple time slots to special values
  • the DCI contains information fields for scheduling multiple slots, and each information field is combined with scheduling information configured by high-level signaling to schedule data transmission for a specific slot.
  • the RA field is set to all 1, and the remaining bits are used for multi-slot scheduling.
  • the terminal determines that the DCI sent by the network-side device is a DCI used to schedule data transmission in multiple time slots in some or all of the following ways:
  • the terminal determines that the DCI sent by the network side device is the DCI scrambled by the first RNTI; or
  • the terminal determines that the DCI sent by the network side device carries information indicating the type of DCI;
  • the terminal determines that the DCI sent by the network-side device is information on the frozen bits indicating the type of DCI; or
  • the terminal determines that some bits in the DCI sent by the network side device are special values.
  • a newly defined DCI format determination method is given.
  • the terminal determines that the DCI sent by the network-side device is used to schedule multiple time slots according to the above-mentioned method.
  • the internal data transmission DCI it can be accurately determined whether multiple data are sent or received upward.
  • time slot scheduling method is not only used for uplink data scheduling, but also used for downlink data scheduling.
  • a first time slot scheduling device As shown in FIG. 4, a first time slot scheduling device according to an embodiment of the present application, the device includes a processor 400, a memory 401, and a transceiver 402;
  • the processor 400 is responsible for managing the bus architecture and general processing, and the memory 401 may store data used by the processor 400 when performing operations.
  • the transceiver 402 is used to receive and transmit data under the control of the processor 400.
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 400 and various circuits of the memory represented by the memory 401 are linked together.
  • the bus architecture can also link various other circuits such as peripheral devices, voltage regulators, and power management circuits, etc., which are well known in the art, and therefore, they will not be further described in this article.
  • the bus interface provides an interface.
  • the processor 400 is responsible for managing the bus architecture and general processing, and the memory 401 may store data used by the processor 400 when performing operations.
  • the process disclosed in the embodiments of the present application may be applied to the processor 400 or implemented by the processor 400.
  • each step of the signal processing flow may be completed by an integrated logic circuit of hardware in the processor 400 or instructions in the form of software.
  • the processor 400 may be a general-purpose processor, a digital signal processor, an application specific integrated circuit, a field programmable gate array or other programmable logic device, a discrete gate or transistor logic device, or a discrete hardware component, and may implement or execute the embodiments of the present application The disclosed methods, steps and logic block diagrams.
  • the general-purpose processor may be a microprocessor or any conventional processor.
  • the steps of the method disclosed in conjunction with the embodiments of the present application may be directly embodied and executed by a hardware processor, or may be executed and completed by a combination of hardware and software modules in the processor.
  • the software module may be located in a mature storage medium in the art, such as random access memory, flash memory, read-only memory, programmable read-only memory, or electrically erasable programmable memory, and registers.
  • the storage medium is located in the memory 401.
  • the processor 400 reads the information in the memory 401 and completes the steps of the signal processing flow in combination with its hardware.
  • the processor 400 is configured to read the program in the memory 401 and execute:
  • processor 400 is also used to:
  • the determined scheduling information group index is sent to the terminal through DCI.
  • the processor 400 is specifically configured to configure the scheduling information group in the first correspondence for the terminal through high-level signaling includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling, or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • processor 400 is specifically used to:
  • the scheduling information group index corresponding to the time slot is sent to the terminal through the corresponding scheduling indication information field in DCI.
  • processor 400 is also used to:
  • the second correspondence between the position index of the scheduling indication information field in the DCI and the time slot is configured for the terminal through high-level signaling.
  • processor 400 is also used to:
  • the length of the scheduling indication information field is determined according to the number of scheduling information groups configured for the terminal.
  • processor 400 is specifically used to:
  • the scheduling information group configured for the terminal contains all scheduling information, then directly schedule the scheduling information group carried in the scheduling indication information field corresponding to the time slot through DCI; or
  • the scheduling information group configured for the terminal contains part of the scheduling information, the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal through DCI and the remaining configured for the terminal through high-level signaling Scheduling information for scheduling, or;
  • the scheduling information group configured for the terminal includes part of the scheduling information
  • the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal by the DCI and the remaining scheduling information dynamically indicated in the DCI are used for scheduling.
  • the processor 400 is specifically used to notify the terminal that the DCI payload length used by the scheduling information group is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the processor 400 is specifically configured to notify the terminal that the payload length of the DCI used by the scheduling information group is configured by the network-side device to the terminal through high-level signaling.
  • processor 400 is specifically used to:
  • Some or all of the following methods are used to notify the terminal that the received DCI is the DCI used to schedule data transmission in multiple time slots:
  • Partial bits in the DCI used to schedule data transmission in multiple time slots are set to special values.
  • a second time slot scheduling device As shown in FIG. 5, a second time slot scheduling device according to an embodiment of the present application, the device includes a processor 500, a memory 501, and a transceiver 502;
  • the processor 500 is responsible for managing the bus architecture and general processing, and the memory 501 may store data used by the processor 500 when performing operations.
  • the transceiver 502 is used to receive and transmit data under the control of the processor 500.
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 500 and various circuits of the memory represented by the memory 501 are linked together.
  • the bus architecture can also link various other circuits such as peripheral devices, voltage regulators, and power management circuits, etc., which are well known in the art, and therefore, they will not be further described in this article.
  • the bus interface provides an interface.
  • the processor 500 is responsible for managing the bus architecture and general processing, and the memory 501 may store data used by the processor 500 when performing operations.
  • the process disclosed in the embodiments of the present application may be applied to the processor 500 or implemented by the processor 500.
  • each step of the signal processing flow may be completed by an integrated logic circuit of hardware in the processor 500 or instructions in the form of software.
  • the processor 500 may be a general-purpose processor, a digital signal processor, an application specific integrated circuit, a field programmable gate array or other programmable logic device, a discrete gate or transistor logic device, or a discrete hardware component, and may implement or execute the embodiments of the present application The disclosed methods, steps and logic block diagrams.
  • the general-purpose processor may be a microprocessor or any conventional processor.
  • the steps of the method disclosed in conjunction with the embodiments of the present application may be directly embodied and executed by a hardware processor, or may be executed and completed by a combination of hardware and software modules in the processor.
  • the software module may be located in a mature storage medium in the art, such as random access memory, flash memory, read-only memory, programmable read-only memory, or electrically erasable programmable memory, and registers.
  • the storage medium is located in the memory 501, and the processor 500 reads the information in the memory 501 and completes the steps of the signal processing flow in combination with its hardware.
  • the processor 500 is configured to read the program in the memory 501 and execute:
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • processor 500 is also used to:
  • the scheduling information group index is a scheduling information group index corresponding to a scheduling information group determined by the network side device and needs to be sent to the terminal according to the first correspondence.
  • the processor 500 is specifically configured to receive the scheduling information group in the first correspondence between the scheduling information group configured by the network-side device and the scheduling information group index carried by high-layer signaling, including:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling, or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • processor 500 is specifically used to:
  • the scheduling instruction information field is the position of the scheduling instruction information field corresponding to the time slot to be scheduled in the second correspondence between the position index of the scheduling instruction information field in the DCI and the time slot in the DCI The index is determined.
  • processor 500 is also used to:
  • the processor 500 is specifically configured to receive the DCI payload length and DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1- or DCI format1- used by the scheduling information group notified by the network side device. 1 same; or
  • the processor is specifically configured to receive the payload length of the DCI used by the scheduling information group notified by the network side device, which is configured by the network side device to the terminal through high-level signaling.
  • processor 500 is specifically used to:
  • the DCI sent by the network-side device is determined to be a DCI used to schedule data transmission in multiple time slots in part or all of the following ways:
  • an embodiment of the present application provides a schematic structural diagram of a third time slot scheduling device.
  • the device includes: a selection module 600 and an instruction module 610;
  • the selection module 600 is configured to: select at least one scheduling information group used by the terminal from a plurality of scheduling information groups configured for the terminal;
  • the indication module 610 is used to instruct the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI.
  • the selection module 600 is also used to:
  • the instruction module 610 is specifically used to:
  • the determined scheduling information group index is sent to the terminal through DCI.
  • the scheduling information group in the first correspondence includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling, or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • the instruction module 610 is specifically used to:
  • the scheduling information group index corresponding to the time slot is sent to the terminal through the corresponding scheduling indication information field in DCI.
  • the indication module 610 is also used to:
  • the second correspondence between the position index of the scheduling indication information field in the DCI and the time slot is configured for the terminal through high-level signaling.
  • the device further includes a determination module, the determination module is configured to:
  • the length of the scheduling indication information field is determined according to the number of scheduling information groups configured for the terminal.
  • the instruction module 610 is specifically used to:
  • the scheduling information group configured for the terminal contains all scheduling information, then directly schedule the scheduling information group carried in the scheduling indication information field corresponding to the time slot through DCI; or
  • the scheduling information group configured for the terminal contains part of the scheduling information, the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal through DCI and the remaining configured for the terminal through high-level signaling Scheduling information for scheduling, or;
  • the scheduling information group configured for the terminal contains part of the scheduling information
  • the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured by the DCI for the terminal and the remaining scheduling information dynamically indicated in the DCI are used for scheduling.
  • the payload length of the DCI used to notify the terminal scheduling information group is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the payload length of the DCI used to notify the terminal of the scheduling information group is configured by the network-side device to the terminal through high-level signaling.
  • some or all of the following methods are used to notify the terminal that the received DCI is the DCI used to schedule data transmission in multiple time slots:
  • Partial bits in the DCI used to schedule data transmission in multiple time slots are set to special values.
  • FIG. 7 it is a schematic structural diagram of a fourth time slot scheduling device provided by an embodiment of the present application.
  • the device includes: a receiving module 700 and a transmitting module 710;
  • the receiving module 700 is configured to: receive at least one scheduling information group instructed by a network-side device through DCI;
  • the transmission module 710 is configured to: use the at least one scheduling information group for data transmission in one or more time slots;
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • the receiving module 700 is also used to:
  • the receiving module 700 is specifically used to:
  • the scheduling information group index is a scheduling information group index corresponding to the scheduling information group that the network side device determines and needs to send to the terminal according to the first correspondence.
  • the receiving module 700 receiving the scheduling information group in the first correspondence between the scheduling information group configured by the network-side device and the scheduling information group index carried by high-layer signaling includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling, or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • the receiving module 700 is specifically used to:
  • the scheduling instruction information field is the position of the scheduling instruction information field corresponding to the time slot to be scheduled in the second correspondence between the position index of the scheduling instruction information field in the DCI and the time slot in the DCI The index is determined.
  • the receiving module 700 is also used to:
  • the payload length of the DCI used by the scheduling information group notified by the network-side device received by the receiving module 700 is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the received payload length of the DCI used by the scheduling information group notified by the network-side device is configured by the network-side device to the terminal through high-level signaling.
  • the DCI sent by the network-side device is determined to be the DCI used to schedule data transmission in multiple time slots in part or all of the following ways:
  • a method for time slot scheduling is also provided in the embodiments of the present application, because the method corresponds to the method corresponding to the equipment for time slot scheduling in the embodiments of the present application, and the principle of the method to solve the problem Similar, so the implementation of this method can refer to the implementation of the device, and the repetition is not repeated here.
  • FIG. 8 it is a flowchart of a method for time slot scheduling provided by an embodiment of the present application, and specifically includes the following steps:
  • Step 800 The network side device selects at least one scheduling information group used by the terminal from multiple scheduling information groups configured for the terminal;
  • Step 810 The network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI.
  • the method further includes:
  • the network side device configures the first correspondence between the scheduling information group and the scheduling information group index for the terminal through high-level signaling
  • the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, including:
  • the network-side device determines the scheduling information group index corresponding to the scheduling information group that needs to be sent to the terminal according to the first correspondence;
  • the network side device sends the determined scheduling information group index to the terminal through DCI.
  • the scheduling information group in the first correspondence configured by the network-side device for the terminal through high-level signaling includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling, or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, including:
  • the network-side device determines the position index of the scheduling instruction information field corresponding to the time slot to be scheduled in the DCI according to the second correspondence between the position index of the scheduling instruction information field in the DCI and the time slot;
  • the network-side device sends the scheduling information group index corresponding to the time slot to the terminal through the corresponding scheduling indication information field in the DCI according to the location index.
  • the method before the network side device instructs the terminal to use the at least one scheduling information group for data transmission through DCI, the method further includes:
  • the network-side device configures the second correspondence between the position index of the scheduling indication information field in the DCI and the time slot for the terminal through high-level signaling.
  • the method further includes:
  • the network-side device determines the length of the scheduling indication information field according to the number of scheduling information groups configured for the terminal.
  • the network side device instructs the terminal to use the at least one scheduling information group for data transmission in one or more time slots through DCI, including:
  • the network side device directly schedules the scheduling information group carried in the scheduling indication information field corresponding to the time slot through DCI;
  • the scheduling information group configured for the terminal contains part of the scheduling information
  • the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal through the DCI by the network-side device and through high-level signaling are the Schedule the remaining scheduling information configured by the terminal, or;
  • the network side device carries the scheduling information group carried in the scheduling indication information field corresponding to the time slot configured for the terminal by DCI and the remaining dynamically indicated in DCI Schedule information for scheduling.
  • the network side device notifies the terminal that the DCI payload length used in the scheduling information group is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the network-side device notifies the terminal that the DCI payload length used by the scheduling information group is configured by the network-side device to the terminal through high-level signaling.
  • the network-side device notifies the terminal that the received DCI is DCI for scheduling data transmission in multiple time slots in part or all of the following ways:
  • the network-side device scrambles the DCI used to schedule data transmission in multiple time slots through the first RNTI;
  • the network-side device carries information indicating the type of DCI in the DCI used for scheduling data transmission in multiple time slots; or
  • the network-side device sends DCI for scheduling data transmission in multiple time slots in a specific search space
  • the network-side device carries information representing the type of DCI on the frozen bits
  • the network side device sets a part of bits in the DCI used to schedule data transmission in multiple time slots to a special value.
  • FIG. 9 it is a flowchart of another method for time slot scheduling provided by an embodiment of the present application, and specifically includes the following steps:
  • Step 900 The terminal receives at least one scheduling information group instructed by the network side device through DCI;
  • Step 910 the terminal uses the at least one scheduling information group for data transmission in one or more time slots;
  • the at least one scheduling information group is selected by the network-side device from a plurality of scheduling information groups configured for the terminal.
  • the method before the terminal receives at least one scheduling information group instructed by the network-side device to use the DCI, the method further includes:
  • the terminal receives the first correspondence between the scheduling information group configured by the network-side device and the scheduling information group index carried by high-layer signaling;
  • the terminal receiving at least one scheduling information group instructed by the network-side device to use the DCI includes:
  • the terminal receives the scheduling information group index sent by the network side device through DCI;
  • the scheduling information group index is a scheduling information group index corresponding to a scheduling information group determined by the network side device and needs to be sent to the terminal according to the first correspondence.
  • the terminal receiving the scheduling information group in the first correspondence between the scheduling information group configured by the network-side device and the scheduling information group index carried by high-layer signaling includes:
  • the remaining scheduling information is predefined, or the remaining scheduling information is semi-statically configured for the terminal by the network-side device through high-level signaling, or the remaining The scheduling information is dynamically configured by the network-side device for the terminal through physical layer signaling.
  • the terminal receiving at least one scheduling information group instructed by the network side device through DCI includes:
  • the terminal obtains the scheduling information group index corresponding to the time slot sent by the network side device through the scheduling indication information field in the DCI corresponding to the time slot;
  • the scheduling instruction information field is the position of the scheduling instruction information field corresponding to the time slot to be scheduled in the second correspondence between the position index of the scheduling instruction information field in the DCI and the time slot in the DCI The index is determined.
  • the method before the terminal receives at least one scheduling information group instructed by the network-side device to use the DCI, the method further includes:
  • the terminal receives the second correspondence between the position index in the DCI and the time slot in the scheduling indication information field configured for the terminal by the network-side device carried by the high-layer signaling.
  • the payload length of the DCI used by the scheduling information group notified by the network side device received by the terminal is the same as DCI format0-0 or DCI format1-0 or DCI format0-1 or DCI format1-1; or
  • the payload length of the DCI used by the scheduling information group notified by the network side device received by the terminal is configured by the network side device to the terminal through high-level signaling.
  • the terminal determines that the DCI sent by the network-side device is a DCI used to schedule data transmission in multiple time slots in some or all of the following ways:
  • the terminal determines that the DCI sent by the network side device is the DCI scrambled by the first RNTI; or
  • the terminal determines that the DCI sent by the network side device carries information indicating the type of DCI;
  • the terminal determines that the DCI sent by the network-side device is information on the frozen bits indicating the type of DCI; or
  • the terminal determines that some bits in the DCI sent by the network side device are special values.
  • the application can also be implemented in hardware and/or software (including firmware, resident software, microcode, etc.).
  • the present application may take the form of a computer-usable or computer-readable storage medium on a computer-readable storage medium, which has computer-usable or computer-readable program code implemented in the medium to be used by an instruction execution system or Used in conjunction with an instruction execution system.
  • a computer-usable or computer-readable medium may be any medium that can contain, store, communicate, transmit, or transmit a program for use by an instruction execution system, apparatus, or device, or in combination with an instruction execution system, Use of device or equipment.

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Abstract

本申请公开了一种时隙调度的方法、设备及介质,用以缓解现有技术中终端在每个时隙监听PDCCH内调度数据的DCI,浪费能量的问题。本申请网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;网络侧设备通过DCI指示终端在一个或者多个时隙内使用至少一个调度信息组进行数据传输。由于从多个调度信息组中选择终端使用的至少一个调度信息组,通过DCI指示终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输,以使终端根据接收到的至少一个调度信息组在一个或多个时隙内进行数据传输,终端通过DCI确定在多个时隙内进行数据传输,不需要在每个时隙中单独检测下行控制信道,降低终端的能量消耗。

Description

一种时隙调度的方法、设备及介质
本申请要求在2018年12月20日提交中国专利局、申请号为201811565144.6、申请名称为“一种时隙调度的方法及设备”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
本申请涉及通信技术领域,特别涉及一种时隙调度的方法、设备及介质。
背景技术
在当前系统中,终端的数据传输调度信息只能通过物理层信道PDCCH(Physical Downlink Control Channel,物理下行控制信道)上承载的DCI(Downlink Control Information,下行控制信息)进行发送;且终端的不同单播数据通过不同的DCI进行调度,不同的DCI需要通过不同的PDCCH candidate(物理下行控制信道候选者)承载。
终端在每个监听时间上的CSS(Common Search Space,公共搜索空间)或终端专属搜索空间USS(UE-Specific space,专属搜索空间)中的不同的MO(Monitoring Occasion,监听时间)上的所有PDCCH candidate上监听下行控制信道,检测下行控制信道内调度数据的DCI,其中DCI包含了调度信息。终端根据DCI中携带的调度时序信息、时间资源分配,频域资源分配等信息,确定在该DCI指定的时隙内进行数据传输。一个DCI只能调度一个PDSCH(Physical Downlink Shared Channel物理下行链路共享信道)或PUSCH(Physical Uplink Shared Channel,物理下行共享信道)。若配置了MO为每一个时隙的搜索空间,终端需要在每一个时隙内监听下行控制信息,增加了终端的能量消耗。
综上所述,在现有技术中终端在每个时隙监听PDCCH内调度数据的DCI,浪费能量。
发明内容
本申请提供一种时隙调度的方法、设备及介质,用以解决现有技术中终端在每个时隙监听PDCCH内调度数据的DCI,浪费能量的问题。
第一方面,本申请提供一种时隙调度的方法,该方法包括:
网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
上述方法,网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组,并通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输,以使终端在接收到所述至少一个调度信息组后,根据接收到的至少一个调度信息组在一个或多个时隙内进行数据传输,终端通过一个DCI可以在多个时隙内进行数据传输,不需要单独检测每个时隙,降低终端的能量消耗。
在一种可能的实现方式中,所述网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组之前,所述网络侧设备通过高层信令为所述终端配置调度信息组与调度信息组索引的第一对应关系;
所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输时,所述网络侧设备根据所述第一对应关系,确定需要发送给所述终端的调度信息组对应的调度信息组索引;
所述网络侧设备通过DCI将确定的调度信息组索引发送给所述终端。
在一种可能的实现方式中,所述网络侧设备通过高层信令为所述终端配置的所述第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
在一种可能的实现方式中,若包含部分调度信息的调度信息组,则剩余 的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
在一种可能的实现方式中,所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输时,所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;
所述网络侧设备根据所述位置索引,将时隙对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
在一种可能的实现方式中,所述网络侧设备通过DCI指示所述终端使用所述至少一个调度信息组进行数据传输之前,所述网络侧设备通过高层信令为所述终端配置所述调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
在一种可能的实现方式中,该方法还包括:
所述网络侧设备根据为所述终端配置的调度信息组的数量确定所述调度指示信息域的长度。
在一种可能的实现方式中,所述网络侧设备通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输时:
若为所述终端配置的调度信息组包含全部调度信息,则所述网络侧设备直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示的剩余的调度信息进行调度。
在一种可能的实现方式中,所述网络侧设备通知终端调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述网络侧设备通知终端调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
在一种可能的实现方式中,所述网络侧设备通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI:
所述网络侧设备通过第一RNTI(Radio Network Temporary Identity,无线网络临时标识)加扰用于调度多个时隙内数据传输的DCI;或
所述网络侧设备在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;或
所述网络侧设备在特定的search space内发送用于调度多个时隙内数据传输的DCI;或
所述网络侧设备在frozen bits上携带用于表示DCI类型的信息;或
所述网络侧设备将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值。
第二方面,本申请实施例提供一种时隙调度的方法,该方法包括:
终端接收网络侧设备通过DCI指示使用的至少一个调度信息组;
所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
上述方法,使终端在接收到所述至少一个调度信息组后,根据接收到的至少一个调度信息组在一个或多个时隙内进行数据传输,终端通过一个DCI可以在多个时隙内进行数据传输,不需要在每个时隙单独检测下行控制信道,降低终端的能量消耗。
在一种可能实现的方式中,所述终端接收网络侧设备通过DCI指示使用 的至少一个调度信息组之前,所述终端通过接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系;
所述终端接收所述网络侧设备通过DCI指示使用的至少一个调度信息组时,所述终端接收所述网络侧设备通过DCI发送的调度信息组索引;
其中,所述调度信息组索引为所述网络侧设备根据所述第一对应关系确定的需要发送给所述终端的调度信息组对应的调度信息组索引。
在一种可能的实现方式中,所述终端接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
在一种可能的实现方式中,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
在一种可能的实现方式中,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组时,所述终端通过时隙对应的DCI中的调度指示信息域获得所述网络侧设备发送的所述时隙对应的调度信息组索引;
其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
在一种可能的实现方式中,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组之前,所述终端接收高层信令携带的所述网络侧设备为所述终端配置的调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
在一种可能的实现方式中,所述终端接收的所述网络侧设备通知的调度 信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
在一种可能的实现方式中,所述终端通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
所述终端确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
所述终端确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
所述终端在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
所述终端确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
所述终端确定所述网络侧设备发送的DCI中的部分bit为特殊值。
第三方面,本申请实施例提供一种时隙调度的设备,该设备包括:处理器、存储器和收发机;
其中,所述处理器,用于读取存储器中的程序并执行:
从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
第四方面,本申请实施例提供一种时隙调度的设备,该设备包括:该设备包括:处理器、存储器和收发机;
其中,所述处理器,用于读取存储器中的程序并执行:
接收网络侧设备通过DCI指示使用的至少一个调度信息组;
在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的 多个调度信息组中选择的。
第五方面,本申请实施例提供一种时隙调度的设备,该设备包括:
选择模块:用于从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
指示模块,用于通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
第六方面,本申请实施例提供一种时隙调度的设备,该设备包括:
接收模块,用于接收网络侧设备通过DCI指示使用的至少一个调度信息组;
传输模块,用于在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
第七方面,本申请实施例还提供一种计算机可存储介质,其上存储有计算机程序,该程序被处理器执行时实现时隙调度任一方法的步骤。
另外,第三方面至第七方面中任一种实现方式所带来的技术效果可参见第一方面及第二方面中不同实现方式所带来的技术效果,此处不再赘述。
本申请的这些方面或其他方面在以下实施例的描述中会更加简明易懂。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简要介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的一种时隙调度的系统结构图;
图2为本申请实施例提供的第一种终端根据DCI确定在时隙内进行数据传输的示意图;
图3为本申请实施例提供的第二种终端根据DCI确定在时隙内进行数据传输的示意图;
图4为本申请实施例提供的第一种时隙调度的设备结构图;
图5为本申请实施例提供的第二种时隙调度的设备结构图;
图6为本申请实施例提供的第三种时隙调度的设备结构图;
图7为本申请实施例提供的第四种时隙调度的设备结构图;
图8为本申请实施例提供的第一种时隙调度的方法流程图;
图9为本申请实施例提供的第二种时隙调度的方法流程图。
具体实施方式
以下,对本申请实施例中的部分用语进行解释说明,以便于本领域技术人员理解。
(1)本申请实施例中,名词“网络”和“系统”经常交替使用,但本领域的技术人员可以理解其含义。
(2)本申请实施例中术语“多个”是指两个或两个以上,其它量词与之类似。
(3)“和/或”,描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
本申请实施例描述的网络架构以及业务场景是为了更加清楚的说明本申请实施例的技术方案,并不构成对于本申请实施例提供的技术方案的限定,本领域普通技术人员可知,随着网络架构的演变和新业务场景的出现,本申请实施例提供的技术方案对于类似的技术问题,同样适用。
终端在时隙上根据调度信息进行数据的发送或接收,对应的时隙上的调度信息是网络侧设备通过PDCCH上承载的DCI进行发送的。不同的调度信息通过不同的DCI进行调度,且每个DCI只能调度一组调度信息;终端需要在不同的时隙内监听下行控制信道,浪费终端的能量。
针对上述场景本申请实施例提供一种时隙调度的方法,网络侧设备通过DCI向指示终端在一个或多个时隙内根据调度信息组进行数据传输,此时只需要监听一个下行控制信道,不需要在每个时隙中单独检测下行控制信道,降低终端的能量消耗。
其中,所述终端,是一种具有无线通信功能的设备,可以部署在陆地上,包括室内或室外、手持或车载;也可以部署在水面上(如轮船等);还可以部署在空中(例如飞机、气球和卫星上等)。所述终端可以是手机(mobile phone)、平板电脑(pad)、带无线收发功能的电脑、虚拟现实(virtual reality,VR)所述终端、增强现实(augmented reality,AR)所述终端、工业控制(industrial control)中的无线所述终端、无人驾驶(self driving)中的无线所述终端、远程医疗(remote medical)中的无线所述终端、智能电网(smart grid)中的无线所述终端、运输安全(transportation safety)中的无线所述终端、智慧城市(smart city)中的无线所述终端、智慧家庭(smart home)中的无线所述终端等;还可以是各种形式的UE,移动台(mobile station,MS),所述终端设备(terminal device)。
所述网络侧设备,是一种为所述终端提供无线通信功能的设备,包括但不限于:5G中的gNB、无线网络控制器(radio network controller,RNC)、节点B(node B,NB)、基站控制器(base station controller,BSC)、基站收发台(base transceiver station,BTS)、家庭基站(例如,home evolved nodeB,或home node B,HNB)、基带单元(BaseBand Unit,BBU)、传输点(transmitting and receiving point,TRP)、发射点(transmitting point,TP)、移动交换中心等。本申请中的基站还可以是未来可能出现的其他通信系统中为所述终端提供无线通信功能的设备。
为了使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请作进一步地详细描述,显然,所描述的实施例仅仅是本申请一部份实施例,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它实施例,都属于本申请保护的 范围。
针对上述场景,为本申请提供的一种时隙调度的系统结构示意图,具体如图1所示,该系统中包括:
网络侧设备10,从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
终端20,接收网络侧设备通过DCI指示使用的至少一个调度信息组;在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
在本申请实施例中,网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组,并通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输,以使终端在接收到所述至少一个调度信息组后,根据接收到的至少一个调度信息组在一个或多个时隙内进行数据传输,终端通过一个DCI可以在多个时隙内进行数据传输,不需要在每个时隙内单独检测下行控制信道,降低终端的能量消耗。
网络侧设备在从多个调度信息组中选择终端使用的至少一个调度信息组之前,网络侧设备需要为终端配置调度信息组;
网络侧设备为终端配置调度信息组,主要通过高层信令预先为终端配置多个调度信息组及调度信息组索引的第一对应关系。
其中,所述高层信令可以为RRC Signaling(Radio Resource Control Signaling,无线资源控制信令)。
可选的,所述网络侧设备通过高层信令为所述终端配置的所述第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
其中,所述调度信息包括如下类别:时频域资源分配、MCS(Modulation and coding scheme,调制编码方式)、天线端口相关配置、HARQ ID(Hybrid Automatic Repeat reQuest;混合自动重传请求)等。
在网络侧设备为终端配置多组不同的调度信息组时,为终端配置的多组调度信息组可以全部为包含全部调度信息的调度信息组;或
为终端配置的多组调度信息可以全部为包含部分调度信息的调度信息组;或
为终端配置的多组调度信息组中一部分为包含全部调度信息的调度信息组、一部分为不包含调度信息的调度信息组;或
为终端配置的多组调度信息组中的一部分为包含部分调度信息的调度信息组,一部分为不包含调度信息的调度信息组;或
为终端配置的多组调度信息组中的一部分为包含全部调度信息的调度信息组、一部分为包含部分调度信息的调度信息组,一部分为不包含调度信息的调度信息组;等多种可能的情况,在此不在赘述,主要根据网络侧设备的具体配置决定。
在本申请实施例中,调度信息组的索引主要由调度信息组所在DCI中的调度信息指示域的长度决定;比如调度信息指示域的长度为4bits,此时调度信息组的索引可以为0000-1111中的任一种。
其中,所述DCI中的调度信息指示信息域的长度由网络侧设备为终端配置的调度信息组的数量确定;
具体的,网络侧设备根据公式ceil(log2(C))bits或ceil(log2(C+1))bits确定所述调度信息指示域的长度,其中C表示网络侧设备为终端配置的调度信息组的数量;
需要说明的是ceil(log2(C+1))bits中额外的一个状态用于指示终端在没有被调度。
进一步的,根据调度信息指示域的长度确定所述网络侧设备为终端配置的调度信息组的调度信息组索引;
比如,网络侧设备为终端配置的8组调度信息组,且8组信息组全部为包含全部调度信息的调度信息组;此时网络侧设备根据公式ceil(log2(C+1))bits确定调度指示信息域的长度为4bits,则所述调度信息组索引为0000、0001、0010、0011~1111;
若8组调度信息组分别为包含全部调度信息的调度信息组1~8,且所述包含全部调度信息的调度信息组1~8对应的调度信息组索引分别为:0000-0111,其中额外的一个状态对应的索引为1000;具体的,如表1所示的调度信息组与调度信息组索引的对应关系。
此时网络侧设备按照表1的对应关系将调度信息组与调度信息组索引的第一对应关系发送给终端;
Figure PCTCN2019122822-appb-000001
表1 调度信息组与调度信息组索引的对应关系
需要说明的是,网络侧设备向终端发送所述第一对应关系时,不一定采用表格的形式进行,还可以直接发送对应关系,或采用其他格式发送,在此 不再赘述。
相应的,终端接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系。
在实施中,网络侧设备为终端配置调度信息组和调度信息组索引的对应关系,以使所述终端在通过DCI中的调度指示信息域中承载的调度信息组索引时,可以根据对应关系确定所述调度信息组索引对应的调度信息组进行数据的发送或接收。
本申请实施例中,当网络设备根据为终端配置的调度信息组的数量确定DCI中调度指示信息组的长度时:
若所述网络侧设备通过高层信令配置的调度信息组全部为包含全部调度信息的调度信息组,则所述网络侧设备直接根据网络侧设备为终端配置的调度信息组的数量通过ceil(log2(C))bits或ceil(log2(C+1))bits确定所述调度信息指示域的长度;或
若所述网络侧设备为终端配置的调度信息组全部为包含部分调度信息的调度信息组,所述网络侧设备为终端配置的多个调度信息组中每个调度信息组包含的调度信息类别不同;或每个调度信息组包含的调度信息类别相同,但调度信息类别对应的调度信息内容不同;
针对配置的多个调度信息组为包含部分调度信息的调度信息组,调度信息组中的调度信息类别不同确定DCI中的调度指示信息域的长度时,还是直接根据网络侧设备为终端配置的调度信息组的数量进行确定;
针对配置的多个调度信息组为包含部分调度信息的调度信息组,每个调度信息组中的调度信息类别相同时,网络侧设备可以为终端配置多种调度信息类别,并针对每种调度信息类别配置不同的信息,此时网络侧设备可以根据配置的多种信息类别不同的信息确定调度信息组的数量,进而根据调度信息组的数量确定调度指示信息域的长度,同时也可以根据直接根据终端配置的调度信息组的数量确定调度指示信息域的长度;
比如,网络侧设备通过高层信令为终端配置了2种时频域资源分配,4种 HARQ process,此时确定网络侧设备为终端配置了8种包含部分调度信息的调度信息组,进而根据公式ceil(log2(C))bits或ceil(log2(C+1))bits确定所述调度信息指示域的长度。
在实施中,根据配置的调度信息组的数量可以准确的确定出DCI中调度指示信息域的长度。
可选的,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义;或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的;或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
比如,网络侧设备通过高层信令为终端配置的调度信息组全部分的调度信息组,调度信息组中包括时频域资源分配、MCS、天线端口相关配置三种调度信息类别,则剩余的调度信息HARQ ID可以通过预定义的方式为终端配置或通过高层信令为终端进行统一配置,或通过DCI中的bit域动态指示;此时DCI中可以携带两种类型的调度指示信息域,即高层信令配置的调度指示信息与和多个时隙相关的动态指示信息域。
其中,所述动态指示的调度信息不由高层信令提前配置,只能通过物理层信令进行配置,且动态配置的调度信息对DCI中调度指示信息域对应的一个或多个时隙均有效。
可选的,所述网络侧设备通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输,包括:
若为所述终端配置的调度信息组包含全部调度信息,则所述网络侧设备直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备 通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示的剩余的调度信息进行调度。
可选的,网络侧设备在为终端配置调度信息组时,配置的多个调度信息组中包含的调度信息都不相同,即网络侧设备为终端配置多个不同的调度信息组。
以网络侧设备为终端配置的多个调度信息组全部为包含全部调度信息的调度信息组进行举例:
比如,若网络侧设备为终端配置了8个调度信息组全部为包含全部调度信息的调度信息组,每个调度信息组包含频域资源分配、时域资源分配、MCS、HARQ相关信息、MIMO(Multiple-Input Multiple-Output,多输入多输出)相关信等调度信息组类别,不同调度信息组中包含的调度信息类别相同,但调度信息类别对应的调度信息内容不同;
调度信息组1为包含全部调度信息的调度信息组1,调度信息组1的频域资源为FRA1、时域资源为TRA1、MCS1、HARQ process ID=1,传输使用的天线端口为AP1;
调度信息组2为包含全部调度信息的调度信息组2,调度信息组2的频域资源为FRA2、时域资源为TRA2、MCS2、HARQ process ID=2,传输使用的天线端口为AP2;以此类推。
以网络侧设备为终端配置的多个调度信息组全部为包含部分调度信息的调度信息组:
若网络侧设备为终端配置了8组调度信息组,且8组调度信息组全部为包含部分调度信息的调度信息组,需要每个调度信息组包含的调度信息类别不同;或每个调度信息组包含的调度信息类别相同,但调度信息类别对应的调度信息内容不同;
具体的,若包含部分调度信息的调度信息组中包含的是相同类别的调度信息,则网络侧设备可以通过高层信令配置每类调度信息对应的调度信息内容,比如网络侧设备通过高层信令配置了2种时频域资源分配,4种HARQ  process;此时确定网络侧设备为终端配置了8种包含部分调度信息的调度信息组,每一个包含部分调度信息组为一种时频域资源分配和一种HARQ process的组合;
比如,2种时频域资源分配为{RA1,RA2},4种HARQ process为{HARQ process1,HARQ process2,HARQ process3,HARQ process4};确定网络侧设备配置的8中调度信息组分别为{RA1,HARQ process1}、{RA1,HARQ process2}、{RA1,HARQ process3}、{RA1,HARQ process4}、{RA2,HARQ process1}、{RA2,HARQ process2}、{RA2,HARQ process3}、{RA2,HARQ process4}。
若包含部分调度信息的调度信息组中包含的是不同类别的调度信息,则网络侧设备单独为每个调度信息组进行调度信息的配置;比如配置了4个调度信息组,分别为{RA2,MCS1}、{RA2,HARQ process4}、{MCS1,HARQ process4}、{天线端口1,HARQ process4},都是网络侧直接进行配置的。
需要说明的是,网络侧设备为终端配置的调度信息组合可以是任意的,不限于上述的调度信息组;
例如,网络侧设备通过高层信令为终端配置了两种时频资源分配,4个HARQ process,与重传相关的NDI(New Data Indicator,新数据指示符)及RV(Redundant Version,冗余版本)等。
可选的,网络侧设备为终端配置的多组调度信息组为不同调度信息组,且配置的数量没有限制;
比如,网络侧设备通过RRC Signaling配置的不同调度信息组的数量可以大于通过同一个DCI调度的时隙的数量,或等于通过同一个DCI调度的时隙的数量,或小于通过同一个DCI调度的时隙的数量。
若所述网络侧设备为终端配置的多组调度信息组中包括不包含调度信息的调度信息组,所述不包含调度信息的调度信息组用于指示所述不包含调度信息的调度信息组在DCI中对应的调度指示信息域对应的时隙内没有数据信道调度。
相应的,当终端确定所述时隙内没有数据信道调度时,不在该时隙或多个时隙内监听下行控制信道。
在网络侧设备通过高层信令为终端配置调度信息组与调度信息组索引的第一对应关系时,网络侧设备还通过高层信令为终端配置调度指示信息域在DCI中的位置索引和时隙的第二对应关系;
其中,位置索引1对应DCI中的第一调度指示信息域,位置索引2对应DCI中的第二调度指示信息域,以此类推。
网络侧设备在为终端配置调度指示信息域在DCI中的位置索引和时隙的第二对应关系时,网络侧设备可以直接向终端通知调度指示信息域在DCI中的位置索引和时隙的对应关系,以使终端根据接收到的所述第二对应关系确定时隙对应的调度指示信息域在DCI中的位置索引;或
网络侧设备通知终端调度指示信息域在DCI中的位置索引,以使终端根据预定义的方式确定时隙对应的调度指示信息域在DCI中的位置索引;
例如:每个调度指示信息域按照升序确定对应的时隙,即DCI中的第一个调度指示信息域对应两个MO之间的第一个时隙,DCI中的第二个调度指示信息域对应第二个时隙,以此类推;或
根据公式i+floor(M/N)确定每个调度指示信息与对应的时隙,其中M为两个MO之间的间隔的时隙数量,N为DCI中包含的调度信息指示域的数量,那么DCI中的第i个调度指示信息域对应的时隙为i+floor(M/N),M和N均为大于1的正整数。
相应的终端接收所述网络侧设备通过高层信令配置的调度指示信息域在DCI中的位置索引和时隙的第二对应关系,并根据所述第二对应关系确定时隙对应的调度指示信息域在DCI中的位置索引;
网络侧设备通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输时,网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;并根据确定的位置索引,将所述网络侧设备将时隙 对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
相应的,终端在所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组时,所述终端通过时隙对应的DCI中的调度指示信息域接收所述网络侧设备发送的所述时隙对应的调度信息组索引;
其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
进一步的根据调度指示信息与中携带的调度信息组索引可以确定对应的调度信息组,根据对应的调度信息组中的调度信息在该时隙上进行数据的发送或接收。
假设基站为终端在时隙N(slot N)配置的调度指示信息域的位置索引为1,即终端在接收到调度多个时隙的DCI后,根据该DCI中的第一调度指示信息与确定调度信息组,如图2所示,当终端在相邻的两个MO之间的第一个时隙内监听PDCCH,确定PDCCH中的DCI后,确定DCI中的第一个调度指示信息域中的调度信息组索引,例如在第一个调度指示信息域中的调度信息组索引为0000,则终端根据高层信令为终端配置的所述第一对应关系确定在时隙N中通过包含全部调度信息的调度信息组进行数据的传输;若在第一个调度指示信息域中的调度信息组索引为1000,则说明终端在时隙N内没有被调度,终端既不会发送数据也不会接收数据,同时也不会监听其他的下行控制信道。
在公共搜索空间或终端专属搜索空间内传输的承载一组终端调度信息的DCI中每个调度信息指示域的长度通过网络侧为终端配置的调度信息组的数量确定,若网络侧设备为终端配置了7个调度信息组,则所述DCI中每个调度指示信息与的长度为3bits,当网络侧设备通过调度指示信息域中的调度信息组索引指示网络侧设备没有配置的调度信息组索引或为保留位置的索引时,标识终端在该时刻没有被调度,如图3所示。
可选的,网络侧设备通过DCI指示终端在时隙内使用调度信息组进行数 据传输时,即网络侧设备通知终端调度信息组的时候,所使用的DCI为当前已定义的DCI format或新定义的DCI format;
若为新定义的DCI format,则新定义的DCI format的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述网络侧设备通知终端调度信息组所使用的DCI为新定义的DCI format时,新定义的DCI format的payload长度由所述网络侧设备通过高层信令配置给终端。
相应的,所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
比如,DCI在USS内传输且在其他USS中传输的DCI大小为31bits,则所述新定义的DCI format X的payload size也为31bits。
可选的,所述网络侧设备通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI,即DCI为新定义的DCI format:
方式一:所述网络侧设备通过第一RNTI加扰用于调度多个时隙内数据传输的DCI;
具体的,当DCI添加的CRC使用第一的RNTI加扰时,则该DCI中包含调度多个终端的信息域,每个信息域结合高层信令配置的调度信息组合用于调度特定slot的数据传输;
其中,所述第一RNTI为对现有协议之外新定义的用于对调度多个时隙内数据传输的DCI进行加扰的RNTI。
方式二:所述网络侧设备在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;
在当前已定义的DCI format中添加指示DCI应用场景的显式指示域,用于指示DCI的具体用途。例如引入1bit信息域,0表示该DCI用于常规调度, 1表示该DCI用于调度多个slot的数据传输。
方式三:所述网络侧设备在特定的search space内发送用于调度多个时隙内数据传输的DCI;
当DCI在某些特定的搜索空间内传输时,例如高层配置在具有特定搜索空间编号内传输的DCI format 0-0或者DCI format 1-0,用于调度一组终端的数据传输,每个信息域结合高层信令配置的调度信息组合用于调度特定终端的数据传输;
方式四:所述网络侧设备在frozen bits上携带用于表示DCI类型的信息;
当DCI经过polar编码后在frozen bits上携带的信息指示该DCI中包含调度多个slot的信息域时,则每个信息域结合高层信令配置的调度信息组合用于调度特定slot的数据传输。
方式五:所述网络侧设备将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值;
当DCI中的某些信息域设成无效值时,则该DCI中包含调度多个slot的信息域,每个信息域结合高层信令配置的调度信息组合用于调度特定slot的数据传输。例如将RA域设置成全1,剩余bit用于多slot调度。
相应的,所述终端通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
所述终端确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
所述终端确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
所述终端确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
所述终端在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
所述终端确定所述网络侧设备发送的DCI中的部分bit为特殊值。
在实施中,给出新定义的DCI format的确定方式,当网络侧设备使用上述DCI承载调度信息组时,同时终端根据上述方式确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI,可以准确的确定出是多个是向上进行数据的发送或接收。
需要说明的是,本申请实施例提供的一种时隙调度的方法不仅用于上行数据调度,还可用于下行数据的调度。
如图4所示,本申请实施例第一种时隙调度的设备,该设备包括处理器400、存储器401和收发机402;
处理器400负责管理总线架构和通常的处理,存储器401可以存储处理器400在执行操作时所使用的数据。收发机402用于在处理器400的控制下接收和发送数据。
总线架构可以包括任意数量的互联的总线和桥,具体由处理器400代表的一个或多个处理器和存储器401代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。处理器400负责管理总线架构和通常的处理,存储器401可以存储处理器400在执行操作时所使用的数据。
本申请实施例揭示的流程,可以应用于处理器400中,或者由处理器400实现。在实现过程中,信号处理流程的各步骤可以通过处理器400中的硬件的集成逻辑电路或者软件形式的指令完成。处理器400可以是通用处理器、数字信号处理器、专用集成电路、现场可编程门阵列或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件,可以实现或者执行本申请实施例中的公开的各方法、步骤及逻辑框图。通用处理器可以是微处理器或者任何常规的处理器等。结合本申请实施例所公开的方法的步骤可以直接体现为硬件处理器执行完成,或者用处理器中的硬件及软件模块组合执行完成。软件模块可以位于随机存储器,闪存、只读存储器,可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存储介质中。该存储介质位 于存储器401,处理器400读取存储器401中的信息,结合其硬件完成信号处理流程的步骤。
具体地,处理器400,用于读取存储器401中的程序并执行:
从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
可选的,所述处理器400还用于:
通过高层信令为所述终端配置调度信息组与调度信息组索引的第一对应关系;
根据所述第一对应关系,确定需要发送给所述终端的调度信息组对应的调度信息组索引;
通过DCI将确定的调度信息组索引发送给所述终端。
可选的,所述处理器400具体用于通过高层信令为所述终端配置的所述第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
可选的,若包含部分调度信息的调度信息组,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
可选的,所述处理器400具体用于:
根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;
根据所述位置索引,将时隙对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
可选的,所述处理器400还用于:
通过高层信令为所述终端配置所述调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
可选的,所述处理器400还用于:
根据为所述终端配置的调度信息组的数量确定所述调度指示信息域的长度。
可选的,所述处理器400具体用于:
若为所述终端配置的调度信息组包含全部调度信息,则直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
若为所述终端配置的调度信息组包含部分调度信息,则通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
若为所述终端配置的调度信息组包含部分调度信息,则通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示的剩余的调度信息进行调度。
可选的,所述处理器400具体用于通知终端调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述处理器400具体用于通知终端调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
可选的,所述处理器400具体用于:
通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI:
通过第一RNTI加扰用于调度多个时隙内数据传输的DCI;或
在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;或
在特定的search space内发送用于调度多个时隙内数据传输的DCI;或
在frozen bits上携带用于表示DCI类型的信息;或
将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值。
如图5所示,本申请实施例第二种时隙调度的设备,该设备包括处理器500、存储器501和收发机502;
处理器500负责管理总线架构和通常的处理,存储器501可以存储处理器500在执行操作时所使用的数据。收发机502用于在处理器500的控制下接收和发送数据。
总线架构可以包括任意数量的互联的总线和桥,具体由处理器500代表的一个或多个处理器和存储器501代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。处理器500负责管理总线架构和通常的处理,存储器501可以存储处理器500在执行操作时所使用的数据。
本申请实施例揭示的流程,可以应用于处理器500中,或者由处理器500实现。在实现过程中,信号处理流程的各步骤可以通过处理器500中的硬件的集成逻辑电路或者软件形式的指令完成。处理器500可以是通用处理器、数字信号处理器、专用集成电路、现场可编程门阵列或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件,可以实现或者执行本申请实施例中的公开的各方法、步骤及逻辑框图。通用处理器可以是微处理器或者任何常规的处理器等。结合本申请实施例所公开的方法的步骤可以直接体现为硬件处理器执行完成,或者用处理器中的硬件及软件模块组合执行完成。软件模块可以位于随机存储器,闪存、只读存储器,可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存储介质中。该存储介质位于存储器501,处理器500读取存储器501中的信息,结合其硬件完成信号处理流程的步骤。
具体地,处理器500,用于读取存储器501中的程序并执行:
接收网络侧设备通过DCI指示使用的至少一个调度信息组;
在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
可选的,所述处理器500还用于:
接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系;
接收所述网络侧设备通过DCI发送的调度信息组索引;
其中,所述调度信息组索引为所述网络侧设备根据所述第一对应关系确定的需要发送给所述终端的调度信息组对应的调度信息组索引。
可选的,所述处理器500具体用于接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
可选的,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
可选的,所述处理器500具体用于:
通过DCI中对应的调度指示信息域获得所述网络侧设备发送的所述时隙对应的调度信息组索引;
其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
可选的,所述处理器500还用于:
接收高层信令携带的所述网络侧设备为所述终端配置的调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
可选的,所述处理器500具体用于接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述处理器具体用于接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
可选的,所述处理器500具体用于:
通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
确定所述网络侧设备发送的DCI中的部分bit为特殊值。
如图6所示,本申请实施例提供第三种时隙调度的设备的结构示意图,该设备包括:选择模块600,指示模块610;
所述选择模块600用于:从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
所述指示模块610用于:通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
可选的,所述选择模块600还用于:
通过高层信令为所述终端配置调度信息组与调度信息组索引的第一对应关系;
所述指示模块610具体用于:
根据所述第一对应关系,确定需要发送给所述终端的调度信息组对应的调度信息组索引;
通过DCI将确定的调度信息组索引发送给所述终端。
可选的,所述第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
可选的,若包含部分调度信息的调度信息组,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
可选的,所述指示模块610具体用于:
根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;
根据所述位置索引,将时隙对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
可选的,所述指示模块610还用于:
通过高层信令为所述终端配置所述调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
可选的,该设备还包括确定模块,所述确定模块用于:
根据为所述终端配置的调度信息组的数量确定所述调度指示信息域的长度。
可选的,所述指示模块610具体用于:
若为所述终端配置的调度信息组包含全部调度信息,则直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
若为所述终端配置的调度信息组包含部分调度信息,则通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
若为所述终端配置的调度信息组包含部分调度信息,则通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示 的剩余的调度信息进行调度。
可选的,通知终端调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
通知终端调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
可选的,通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI:
通过第一RNTI加扰用于调度多个时隙内数据传输的DCI;或
在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;或
在特定的search space内发送用于调度多个时隙内数据传输的DCI;或
在frozen bits上携带用于表示DCI类型的信息;或
将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值。
如图7所示,为本申请实施例提供的第四种时隙调度的设备的结构示意图,该设备包括:接收模块700,传输模块710;
所述接收模块700用于:接收网络侧设备通过DCI指示使用的至少一个调度信息组;
所述传输模块710用于:在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
可选的,所述接收模块700还用于:
接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系;
所述接收模块700具体用于:
接收所述网络侧设备通过DCI发送的调度信息组索引;
其中,所述调度信息组索引为所述网络侧设备根据所述第一对应关系确 定的需要发送给所述终端的调度信息组对应的调度信息组索引。
可选的,所述接收模块700接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
可选的,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
可选的,所述接收模块700具体用于:
通过时隙对应的DCI中的调度指示信息域获得所述网络侧设备发送的所述时隙对应的调度信息组索引;
其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
可选的,所述接收模块700还用于:
接收高层信令携带的所述网络侧设备为所述终端配置的调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
可选的,所述接收模块700接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
可选的,通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
确定所述网络侧设备发送的DCI中的部分bit为特殊值。
基于同一发明构思,本申请实施例中还提供了一种时隙调度的方法,由于该方法对应的是本申请实施例时隙调度的设备对应的方法,并且该方法解决问题的原理与该设备相似,因此该方法的实施可以参见设备的实施,重复之处不再赘述。
如图8所示,为本申请实施例提供的一种时隙调度的方法流程图,具体包括如下步骤:
步骤800,网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
步骤810,所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
可选的,所述网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组之前,还包括:
所述网络侧设备通过高层信令为所述终端配置调度信息组与调度信息组索引的第一对应关系;
所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输,包括:
所述网络侧设备根据所述第一对应关系,确定需要发送给所述终端的调度信息组对应的调度信息组索引;
所述网络侧设备通过DCI将确定的调度信息组索引发送给所述终端。
可选的,所述网络侧设备通过高层信令为所述终端配置的所述第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
可选的,若包含部分调度信息的调度信息组,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
可选的,所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输,包括:
所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;
所述网络侧设备根据所述位置索引,将时隙对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
可选的,所述网络侧设备通过DCI指示所述终端使用所述至少一个调度信息组进行数据传输之前,还包括:
所述网络侧设备通过高层信令为所述终端配置所述调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
可选的,该方法还包括:
所述网络侧设备根据为所述终端配置的调度信息组的数量确定所述调度指示信息域的长度。
可选的,所述网络侧设备通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输,包括:
若为所述终端配置的调度信息组包含全部调度信息,则所述网络侧设备直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示的剩余的调度信息进行调度。
可选的,所述网络侧设备通知终端调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述网络侧设备通知终端调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
可选的,所述网络侧设备通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI:
所述网络侧设备通过第一RNTI加扰用于调度多个时隙内数据传输的DCI;或
所述网络侧设备在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;或
所述网络侧设备在特定的search space内发送用于调度多个时隙内数据传输的DCI;或
所述网络侧设备在frozen bits上携带用于表示DCI类型的信息;或
所述网络侧设备将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值。
基于同一发明构思,本申请实施例中还提供了另一种时隙调度的方法,由于该方法对应的是本申请实施例时隙调度的设备对应的方法,并且该方法解决问题的原理与该设备相似,因此该方法的实施可以参见设备的实施,重复之处不再赘述。
如图9所示,为本申请实施例提供的另一种时隙调度的方法流程图,具体包括如下步骤:
步骤900,终端接收网络侧设备通过DCI指示使用的至少一个调度信息组;
步骤910,所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
可选的,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组之前,还包括:
所述终端接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系;
所述终端接收所述网络侧设备通过DCI指示使用的至少一个调度信息组,包括:
所述终端接收所述网络侧设备通过DCI发送的调度信息组索引;
其中,所述调度信息组索引为所述网络侧设备根据所述第一对应关系确定的需要发送给所述终端的调度信息组对应的调度信息组索引。
可选的,所述终端接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系中的所述调度信息组包括:
包含全部调度信息的调度信息组;
包含部分调度信息的调度信息组;
不包含调度信息的调度信息组。
可选的,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
可选的,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组,包括:
所述终端通过时隙对应的DCI中的调度指示信息域获得所述网络侧设备发送的所述时隙对应的调度信息组索引;
其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI 中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
可选的,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组之前,还包括:
所述终端接收高层信令携带的所述网络侧设备为所述终端配置的调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
可选的,所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
可选的,所述终端通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
所述终端确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
所述终端确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
所述终端确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
所述终端在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
所述终端确定所述网络侧设备发送的DCI中的部分bit为特殊值。
一种计算机可存储介质,其上存储有计算机程序,该程序被处理器执行时实现上述图8所述的方法的步骤,或实现上述图9所述的方法的步骤。
以上参照示出根据本申请实施例的方法、装置(系统)和/或计算机程序产品的框图和/或流程图描述本申请。应理解,可以通过计算机程序指令来实现框图和/或流程图示图的一个块以及框图和/或流程图示图的块的组合。可以 将这些计算机程序指令提供给通用计算机、专用计算机的处理器和/或其它可编程数据处理装置,以产生机器,使得经由计算机处理器和/或其它可编程数据处理装置执行的指令创建用于实现框图和/或流程图块中所指定的功能/动作的方法。
相应地,还可以用硬件和/或软件(包括固件、驻留软件、微码等)来实施本申请。更进一步地,本申请可以采取计算机可使用或计算机可读存储介质上的计算机程序产品的形式,其具有在介质中实现的计算机可使用或计算机可读程序代码,以由指令执行系统来使用或结合指令执行系统而使用。在本申请上下文中,计算机可使用或计算机可读介质可以是任意介质,其可以包含、存储、通信、传输、或传送程序,以由指令执行系统、装置或设备使用,或结合指令执行系统、装置或设备使用。
显然,本领域的技术人员可以对本申请进行各种改动和变型而不脱离本申请的精神和范围。这样,倘若本申请的这些修改和变型属于本申请权利要求及其等同技术的范围之内,则本申请也意图包含这些改动和变型在内。

Claims (39)

  1. 一种时隙调度的方法,其特征在于,该方法包括:
    网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
    所述网络侧设备通过下行控制信息DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
  2. 如权利要求1所述的方法,其特征在于,所述网络侧设备从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组之前,还包括:
    所述网络侧设备通过高层信令为所述终端配置调度信息组与调度信息组索引的第一对应关系;
    所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输,包括:
    所述网络侧设备根据所述第一对应关系,确定需要发送给所述终端的调度信息组对应的调度信息组索引;
    所述网络侧设备通过DCI将确定的调度信息组索引发送给所述终端。
  3. 如权利要求2所述的方法,其特征在于,所述网络侧设备通过高层信令为所述终端配置的所述第一对应关系中的所述调度信息组包括:
    包含全部调度信息的调度信息组;
    包含部分调度信息的调度信息组;
    不包含调度信息的调度信息组。
  4. 如权利要求3所述的方法,其特征在于,若包含部分调度信息的调度信息组,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
  5. 如权利要求1所述的方法,其特征在于,所述网络侧设备通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据 传输,包括:
    所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;
    所述网络侧设备根据所述位置索引,将时隙对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
  6. 如权利要求5所述的方法,其特征在于,所述网络侧设备通过DCI指示所述终端使用所述至少一个调度信息组进行数据传输之前,还包括:
    所述网络侧设备通过高层信令为所述终端配置所述调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
  7. 如权利要求5所述的方法,其特征在于,该方法还包括:
    所述网络侧设备根据为所述终端配置的调度信息组的数量确定所述调度指示信息域的长度。
  8. 如权利要求3所述的方法,其特征在于,所述网络侧设备通过DCI指示所述终端在一个或多个时隙内使用所述至少一个调度信息组进行数据传输,包括:
    若为所述终端配置的调度信息组包含全部调度信息,则所述网络侧设备直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
    若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
    若为所述终端配置的调度信息组包含部分调度信息,则所述网络侧设备通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示的剩余的调度信息进行调度。
  9. 如权利要求1所述的方法,其特征在于,所述网络侧设备通知终端调度信息组所使用的DCI的有效负载payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
    所述网络侧设备通知终端调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
  10. 如权利要求1~9任一所述的方法,其特征在于,所述网络侧设备通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI:
    所述网络侧设备通过第一无线网络临时标识RNTI加扰用于调度多个时隙内数据传输的DCI;或
    所述网络侧设备在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;或
    所述网络侧设备在特定的搜索空间search space内发送用于调度多个时隙内数据传输的DCI;或
    所述网络侧设备在先验比特位frozen bits上携带用于表示DCI类型的信息;或
    所述网络侧设备将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值。
  11. 一种时隙调度的方法,其特征在于,该方法包括:
    终端接收网络侧设备通过DCI指示使用的至少一个调度信息组;
    所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
    其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
  12. 如权利要求11所述的方法,其特征在于,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组之前,还包括:
    所述终端接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系;
    所述终端接收所述网络侧设备通过DCI指示使用的至少一个调度信息组,包括:
    所述终端接收所述网络侧设备通过DCI发送的调度信息组索引;
    其中,所述调度信息组索引为所述网络侧设备根据所述第一对应关系确定的需要发送给所述终端的调度信息组对应的调度信息组索引。
  13. 如权利要求12所述的方法,其特征在于,所述终端接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系中的所述调度信息组包括:
    包含全部调度信息的调度信息组;
    包含部分调度信息的调度信息组;
    不包含调度信息的调度信息组。
  14. 如权利要求13所述的方法,其特征在于,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
  15. 如权利要求11所述的方法,其特征在于,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组,包括:
    所述终端通过时隙对应的DCI中的调度指示信息域获得所述网络侧设备发送的所述时隙对应的调度信息组索引;
    其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
  16. 如权利要求15所述的方法,其特征在于,所述终端接收网络侧设备通过DCI指示使用的至少一个调度信息组之前,还包括:
    所述终端接收高层信令携带的所述网络侧设备为所述终端配置的调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
  17. 如权利要求11所述的方法,其特征在于,所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
    所述终端接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
  18. 如权利要求11~17任一所述的方法,其特征在于,所述终端通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
    所述终端确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
    所述终端确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
    所述终端确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
    所述终端在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
    所述终端确定所述网络侧设备发送的DCI中的部分bit为特殊值。
  19. 一种时隙调度的设备,其特征在于,该设备包括:处理器、存储器和收发机;
    其中,所述处理器,用于读取存储器中的程序并执行:
    从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
    通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
  20. 如权利要求19所述的设备,其特征在于,所述处理器还用于:
    通过高层信令为所述终端配置调度信息组与调度信息组索引的第一对应关系;
    根据所述第一对应关系,确定需要发送给所述终端的调度信息组对应的调度信息组索引;
    通过DCI将确定的调度信息组索引发送给所述终端。
  21. 如权利要求20所述的设备,其特征在于,所述处理器具体用于通过 高层信令为所述终端配置的所述第一对应关系中的所述调度信息组包括:
    包含全部调度信息的调度信息组;
    包含部分调度信息的调度信息组;
    不包含调度信息的调度信息组。
  22. 如权利要求21所述的设备,其特征在于,若包含部分调度信息的调度信息组,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
  23. 如权利要求19所述的设备,其特征在于,所述处理器具体用于:
    根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系,确定需要调度的时隙对应的调度指示信息域在DCI中的位置索引;
    根据所述位置索引,将时隙对应的调度信息组索引通过DCI中对应的调度指示信息域发送给所述终端。
  24. 如权利要求23所述的设备,其特征在于,所述处理器还用于:
    通过高层信令为所述终端配置所述调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
  25. 如权利要求23所述的设备,其特征在于,所述处理器还用于:
    根据为所述终端配置的调度信息组的数量确定所述调度指示信息域的长度。
  26. 如权利要求21所述的设备,其特征在于,所述处理器具体用于:
    若为所述终端配置的调度信息组包含全部调度信息,则直接通过DCI对所述时隙对应的调度指示信息域承载的调度信息组进行调度;或
    若为所述终端配置的调度信息组包含部分调度信息,则通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与通过高层信令为所述终端配置的剩余的调度信息进行调度,或;
    若为所述终端配置的调度信息组包含部分调度信息,则通过DCI为所述终端配置的时隙对应的调度指示信息域承载的调度信息组与DCI中动态指示 的剩余的调度信息进行调度。
  27. 如权利要求19所述的设备,其特征在于,所述处理器具体用于通知终端调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
    所述处理器具体用于通知终端调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
  28. 如权利要求19~27任一所述的设备,其特征在于,所述处理器具体用于:
    通过下列方式中的部分或全部通知终端接收的DCI为用于调度多个时隙内数据传输的DCI:
    通过第一RNTI加扰用于调度多个时隙内数据传输的DCI;或
    在所述用于调度多个时隙内数据传输的DCI中携带用于表示DCI类型的信息;或
    在特定的search space内发送用于调度多个时隙内数据传输的DCI;或
    在frozen bits上携带用于表示DCI类型的信息;或
    将所述用于调度多个时隙内数据传输的DCI中的部分bit设置成特殊值。
  29. 一种时隙调度的设备,其特征在于,该设备包括:处理器、存储器和收发机;
    其中,所述处理器,用于读取存储器中的程序并执行:
    接收网络侧设备通过DCI指示使用的至少一个调度信息组;
    在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
    其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
  30. 如权利要求29所述的设备,其特征在于,所述处理器还用于:
    接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系;
    接收所述网络侧设备通过DCI发送的调度信息组索引;
    其中,所述调度信息组索引为所述网络侧设备根据所述第一对应关系确定的需要发送给所述终端的调度信息组对应的调度信息组索引。
  31. 如权利要求30所述的设备,其特征在于,所述处理器具体用于接收高层信令携带的所述网络侧设备配置的调度信息组与调度信息组索引的第一对应关系中的所述调度信息组包括:
    包含全部调度信息的调度信息组;
    包含部分调度信息的调度信息组;
    不包含调度信息的调度信息组。
  32. 如权利要求31所述的设备,其特征在于,若所述调度信息组包含部分调度信息,则剩余的调度信息为预先定义,或剩余的调度信息由所述网络侧设备通过高层信令为所述终端半静态配置的,或剩余的调度信息由所述网络侧设备通过物理层信令为所述终端动态配置的。
  33. 如权利要求29所述的设备,其特征在于,所述处理器具体用于:
    通过DCI中对应的调度指示信息域获得所述网络侧设备发送的所述时隙对应的调度信息组索引;
    其中,所述调度指示信息域为所述网络侧设备根据调度指示信息域在DCI中的位置索引与时隙的第二对应关系中需要调度的时隙对应的调度指示信息域在DCI中的位置索引确定的。
  34. 如权利要求33所述的设备,其特征在于,所述处理器还用于:
    接收高层信令携带的所述网络侧设备为所述终端配置的调度指示信息域在DCI中的位置索引与时隙的第二对应关系。
  35. 如权利要求29所述的设备,其特征在于,所述处理器具体用于接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度与DCI format0-0或DCI format1-0或DCI format0-1或DCI format1-1相同;或
    所述处理器具体用于接收的所述网络侧设备通知的调度信息组所使用的DCI的payload长度由所述网络侧设备通过高层信令配置给终端。
  36. 如权利要求29~35任一所述的设备,其特征在于,所述处理器具体 用于:
    通过下列方式中的部分或全部确定所述网络侧设备发送的DCI为用于调度多个时隙内数据传输的DCI:
    确定所述网络侧设备发送的DCI为通过第一RNTI加扰的DCI;或
    确定所述网络侧设备发送的DCI中携带用于表示DCI类型的信息;或
    确定所述网络侧设备发送的DCI为在frozen bits上携带用于表示DCI类型的信息;或
    在特定的search space内接收的用于调度多个时隙内数据传输的DCI;或
    确定所述网络侧设备发送的DCI中的部分bit为特殊值。
  37. 一种时隙调度的设备,其特征在于,该设备包括:
    选择模块:用于从为终端配置的多个调度信息组中选择终端使用的至少一个调度信息组;
    指示模块,用于通过DCI指示所述终端在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输。
  38. 一种时隙调度的设备,其特征在于,该设备包括:
    接收模块,用于接收网络侧设备通过DCI指示使用的至少一个调度信息组;
    传输模块,用于在一个或者多个时隙内使用所述至少一个调度信息组进行数据传输;
    其中,所述至少一个调度信息组为所述网络侧设备从为所述终端配置的多个调度信息组中选择的。
  39. 一种计算机可存储介质,其上存储有计算机程序,其特征在于,该程序被处理器执行时实现如权利要求1~10或11~18任一所述方法的步骤。
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