WO2023040328A1 - 一种ecp时隙确定方法、用户设备以及网络侧设备 - Google Patents

一种ecp时隙确定方法、用户设备以及网络侧设备 Download PDF

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Publication number
WO2023040328A1
WO2023040328A1 PCT/CN2022/094208 CN2022094208W WO2023040328A1 WO 2023040328 A1 WO2023040328 A1 WO 2023040328A1 CN 2022094208 W CN2022094208 W CN 2022094208W WO 2023040328 A1 WO2023040328 A1 WO 2023040328A1
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WIPO (PCT)
Prior art keywords
time slot
indication information
ecp
ssb
unit length
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PCT/CN2022/094208
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English (en)
French (fr)
Inventor
王俊伟
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大唐移动通信设备有限公司
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Publication date
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Priority to EP22868705.9A priority Critical patent/EP4404661A1/en
Publication of WO2023040328A1 publication Critical patent/WO2023040328A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal

Definitions

  • the present application relates to the technical field of wireless communication, and in particular to a method for determining an ECP time slot, user equipment and network side equipment.
  • SFN Single frequency network
  • ECP Extended Cyclic Prefix
  • the transmission position of the synchronization signal block (Synchronous signaling block, SSB) is fixed, and the time slot containing the initial access signal and the time slot for unicast scheduling default to the Normal Cyclic Prefix (Normal Cyclic Prefix, NCP), indicating whether other time slots except the time slot including the initial access signal and the time slot for unicast scheduling are ECP time slots through indication information.
  • SSB Synchronous signaling block
  • NCP Normal Cyclic Prefix
  • a radio frame contains multiple candidate positions, and the SSB can be transmitted through any/any multiple candidate positions.
  • the above-mentioned method of determining the ECP time slot is not applicable to the NR system.
  • the present application provides a method for determining an ECP time slot, a user equipment and a network side device, so as to solve the problem of determining an ECP time slot in an NR system.
  • an embodiment of the present application provides a method for determining an ECP time slot, which is applied to a user equipment (User Equipment, UE), and the method includes:
  • the network side device determine whether the ECP time slot indication information indicates the time slot containing SSB;
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information, determine the ECP time slot within the preset unit length sent by the network side device.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the high-level signaling including configuration information sent by the network side device is received, it is determined according to the configuration information whether the ECP time slot indication information indicates a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the network side device determines whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule
  • the default rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the sub-indication information is used to indicate whether the corresponding time slot is ECP time slot;
  • the first preset number is the difference between the total number of time slots within the preset unit length and the time slot adjustment amount.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the first ECP time slot indication information does not indicate a time slot containing SSB
  • the second ECP time slot indication information indicates a time slot containing SSB .
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information
  • determine the ECP time within the preset unit length sent by the network side device gaps including:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • the ECP time slot indication information includes a plurality of sub-indication information, and the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot;
  • any first time slot within the preset unit length if the sub-indication information indicates that the corresponding time slot is an ECP time slot, then determine the first time slot as an ECP time slot.
  • the method further includes:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the second time slots determine the remaining sub-indication information corresponding to part or all of the second time slots, and the second time slots are within the preset unit length except the first A time slot other than a time slot that does not contain an SSB;
  • the remaining sub-indication information is the sub-indication information of the first time slot not corresponding to the ECP time slot indication information of the preset unit length.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined sequentially;
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in reverse order.
  • the ECP time slot indication information indicates a time slot containing SSB, after determining the time slot containing SSB as an ECP time slot, it also includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • determining the position symbol belonging to the NCP also includes:
  • PDCCH Physical Downlink Control Channel
  • determine the ECP time within the preset unit length sent by the network side device Before gaps also include:
  • the embodiment of the present application provides a method for determining an ECP time slot, which is applied to a network side device, and the method includes:
  • the ECP time slot indication information indicates the time slot containing the SSB
  • the ECP time slot indication information with a preset unit length is sent to the UE.
  • it also includes:
  • the configuration information indicates that the ECP time slot indication information indicates the time slot containing the SSB; or the configuration information indicates that the ECP time slot indication information does not indicate the time slot containing the SSB.
  • it also includes:
  • the high-level signaling that does not include configuration information is used to instruct the UE to determine whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule; wherein, the default The rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB, then the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slot indications information;
  • the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the ECP time slot indication information of the preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB
  • the ECP time slot indication information does not indicate a time slot containing an SSB, configure an ECP time slot indication information corresponding to the preset unit length.
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • each first time slot in the preset unit length is an ECP time slot
  • the ECP time slot indication information of the preset unit length is determined.
  • the ECP time slot indication information does not indicate a time slot containing SSB, based on the sub-indication information corresponding to each first time slot in the preset unit length, determine the ECP time slot indication information, including:
  • the second time slot is a time slot that does not contain an SSB except the first time slot within the preset unit length.
  • the first time slot within the preset unit length and the ECP time slot indication information are determined sequentially;
  • Both the first time slot within the preset unit length and the indication information of the ECP time slot are determined in reverse order.
  • the ECP time slot indication information indicates a time slot containing SSB
  • the time slot containing SSB is an ECP time slot, it also includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • determining the position symbol belonging to the NCP also includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the ECP time slot indication information indicates a time slot containing SSB, before the preset unit length ECP time slot indication information sent to the UE, it also includes:
  • the embodiment of the present application provides a UE, including: a processor and a memory;
  • said memory for storing computer instructions
  • the processor is configured to read the computer instructions and perform the following operations:
  • the network side device determine whether the ECP time slot indication information indicates the time slot containing SSB;
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information, determine the ECP time slot within the preset unit length sent by the network side device.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the high-level signaling including configuration information sent by the network side device is received, it is determined according to the configuration information whether the ECP time slot indication information indicates a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the network side device determines whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule
  • the default rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the sub-indication information is used to indicate whether the corresponding time slot is ECP time slot;
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the ECP time slot indication information indicates the time slot containing the SSB, including:
  • the first ECP time slot indication information does not indicate a time slot containing SSB
  • the second ECP time slot indication information indicates a time slot containing SSB .
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information
  • determine the ECP time within the preset unit length sent by the network side device gaps including:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • the ECP time slot indication information includes a plurality of sub-indication information, and the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot;
  • any first time slot within the preset unit length if the sub-indication information indicates that the corresponding time slot is an ECP time slot, then determine the first time slot as an ECP time slot.
  • the operation further includes:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the second time slots determine the remaining sub-indication information corresponding to part or all of the second time slots, and the second time slots are within the preset unit length except the first A time slot other than a time slot that does not contain an SSB;
  • the remaining sub-indication information is the sub-indication information of the first time slot not corresponding to the ECP time slot indication information of the preset unit length.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined sequentially;
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in reverse order.
  • the operation further includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • the position symbol belonging to the NCP is determined, and the operation further includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the operation also includes:
  • the embodiment of the present application provides a network side device, including: a processor and a memory;
  • said memory for storing computer instructions
  • the processor is configured to read the computer instructions and perform the following operations:
  • the ECP time slot indication information indicates the time slot containing the SSB
  • the ECP time slot indication information with a preset unit length is sent to the UE.
  • the operations also include:
  • the configuration information indicates that the ECP time slot indication information indicates the time slot containing the SSB; or the configuration information indicates that the ECP time slot indication information does not indicate the time slot containing the SSB.
  • the operations also include:
  • the high-level signaling that does not include configuration information is used to instruct the UE to determine whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule; wherein, the default The rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB, then the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slot indications information;
  • the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB
  • the ECP time slot indication information does not indicate a time slot containing an SSB, configure an ECP time slot indication information corresponding to the preset unit length.
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • each first time slot in the preset unit length is an ECP time slot
  • the ECP time slot indication information of the preset unit length is determined.
  • the ECP time slot indication information does not indicate a time slot containing SSB, based on the sub-indication information corresponding to each first time slot in the preset unit length, determine the ECP time slot indication information, including:
  • the second time slot is a time slot that does not contain an SSB except the first time slot within the preset unit length.
  • the first time slot within the preset unit length and the ECP time slot indication information are determined sequentially;
  • Both the first time slot within the preset unit length and the indication information of the ECP time slot are determined in reverse order.
  • the operation further includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • the position symbol belonging to the NCP is determined, and the operation further includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the operation further includes:
  • the embodiment of this application provides a UE, including:
  • An indication determination module configured to determine whether the ECP time slot indication information indicates a time slot containing SSB according to an indication of the network side device;
  • An ECP time slot determination module configured to determine the ECP time slot within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information .
  • the embodiment of the present application provides a network side device, including:
  • a sending module configured to send ECP time slot indication information with a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB.
  • the embodiment of the present application provides a storage medium, the storage medium stores computer-executable instructions, and the computer-executable instructions are used to make a computer execute the method described in any one of the first aspect or the second aspect. method.
  • the ECP time slot indication information may indicate the time slot containing the SSB, or may not indicate the time slot containing the SSB, and the UE flexibly determines the ECP time slot according to the instruction of the network side device Whether the indication information indicates the time slot containing SSB; and then according to the above determination result and the ECP time slot indication information, accurately determine the ECP time slot within the preset unit length sent by the network side device, which can be compatible with the flexibility of the existing design and guarantee Flexible deployment of network-side devices.
  • FIG. 1 is a schematic diagram of an indication of an LTE system ECP time slot provided by an embodiment of the present application
  • FIG. 2A is a schematic diagram of a wireless frame in an NR system provided by an embodiment of the present application.
  • FIG. 2B is a schematic diagram of candidate positions for sending SSBs in time slots in the NR system provided by the embodiment of the present application;
  • FIG. 2C is a schematic structural diagram of an SSB provided in an embodiment of the present application.
  • Fig. 3 is the interactive flowchart of the first kind of ECP timeslot determining method provided by the embodiment of the present application;
  • Fig. 4 is the interactive flowchart of the second ECP timeslot determining method provided by the embodiment of the present application.
  • Fig. 5 is the interaction flowchart of the third ECP time slot determination method provided by the embodiment of the present application.
  • FIG. 6 is an interactive flowchart of a fourth ECP time slot determination method provided by an embodiment of the present application.
  • FIG. 7 is an interactive flowchart of the fifth ECP time slot determination method provided by the embodiment of the present application.
  • FIG. 8 is an interactive flow chart of the sixth ECP time slot determination method provided by the embodiment of the present application.
  • FIG. 9 is an interactive flowchart of the seventh ECP time slot determination method provided by the embodiment of the present application.
  • FIG. 10A is a schematic diagram of an NCP time slot provided by an embodiment of the present application.
  • FIG. 10B is a schematic diagram of an ECP time slot provided by an embodiment of the present application.
  • FIG. 11 is an interactive flowchart of the eighth ECP time slot determination method provided by the embodiment of the present application.
  • FIG. 12 is a schematic diagram of an indication of the first SSB sending position provided by the embodiment of the present application.
  • FIG. 13A is a schematic diagram of an indication of the second SSB sending position provided by the embodiment of the present application.
  • FIG. 13B is a schematic diagram of ECP time slot indication in the first NR system provided by the embodiment of the present application.
  • FIG. 13C is a schematic diagram of ECP time slot indication in the second NR system provided by the embodiment of the present application.
  • FIG. 13D is a schematic diagram of the first position symbol in a time slot containing SSB provided by the embodiment of the present application.
  • FIG. 13E is a schematic diagram of the second position symbol in a time slot containing SSB provided by the embodiment of the present application.
  • FIG. 14A is a schematic diagram of an indication of the third SSB sending position provided by the embodiment of the present application.
  • FIG. 14B is a schematic diagram of ECP time slot indication in the third NR system provided by the embodiment of the present application.
  • FIG. 14C is a schematic diagram of ECP time slot indication in the fourth NR system provided by the embodiment of the present application.
  • FIG. 14D is a schematic diagram of a third position symbol in a time slot containing SSB provided by the embodiment of the present application.
  • Fig. 14E is a schematic diagram of the position symbols in the fourth time slot containing SSB provided by the embodiment of the present application.
  • FIG. 15A is a schematic diagram of an indication of the fourth SSB sending position provided by the embodiment of the present application.
  • FIG. 15B is a schematic diagram of ECP time slot indication in the fifth NR system provided by the embodiment of the present application.
  • FIG. 15C is a schematic diagram of ECP time slot indication in the sixth NR system provided by the embodiment of the present application.
  • FIG. 15D is a schematic diagram of a position symbol in a fifth slot containing SSB provided by the embodiment of the present application.
  • Fig. 15E is a schematic diagram of the position symbol in the sixth slot containing SSB provided by the embodiment of the present application.
  • FIG. 16 is a schematic flowchart of a method for determining an ECP time slot provided in an embodiment of the present application.
  • FIG. 17 is a structural diagram of a UE provided in an embodiment of the present application.
  • FIG. 18 is a structural diagram of a network-side device provided in an embodiment of the present application.
  • FIG. 19 is a structural diagram of another UE provided in the embodiment of the present application.
  • FIG. 20 is a structural diagram of another network-side device provided by an embodiment of the present application.
  • first and second in the embodiments of the present application are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of indicated technical features. Thus, a feature defined as “first” and “second” may explicitly or implicitly include one or more of these features.
  • the UE involved in this embodiment of the application may be a device that provides voice and/or data connectivity to users, a handheld device with a wireless connection function, or other processing devices connected to a wireless modem.
  • the wireless UE can communicate with one or more core networks (Core Network, CN) via the radio access network (Radio Access Network, RAN), and the wireless UE can be a mobile terminal device, such as a mobile phone (or called a "cellular" phone ) and computers with mobile terminals, for example portable, pocket, hand-held, computer built-in or vehicle-mounted mobile devices, which exchange language and/or data with the radio access network.
  • Core Network Core Network
  • RAN Radio Access Network
  • a wireless UE may also be called a system, a subscriber unit, a subscriber station, a mobile station, a mobile station, a remote station, an access point, Remote terminal equipment (remote terminal), access terminal equipment (access terminal), user terminal equipment (user terminal), user agent (user agent), and user device (user device) are not limited in this embodiment of the application.
  • the network side device involved in the embodiment of the present application may be a base station, and the base station may include multiple cells providing services for the UE.
  • the base station can also be called an access point, or it can be a device in the access network that communicates with the wireless terminal device through one or more sectors on the air interface, or other names.
  • the network-side device can be used to exchange received air frames and Internet Protocol (Internet Protocol, IP) packets, and act as a router between the wireless terminal device and the rest of the access network, where the rest of the access network can include IP communication network.
  • IP Internet Protocol
  • the network side device can also coordinate attribute management of the air interface.
  • the network-side device involved in the embodiment of the present application may be the network-side device (Base Transceiver Station) in Global System for Mobile communications (GSM) or Code Division Multiple Access (CDMA). , BTS), or the network side equipment (NodeB) in Wide-band Code Division Multiple Access (WCDMA), or the evolution in the long term evolution (LTE) system Evolutionary Node B (eNB or e-NodeB), 5G base station (gNB) in the 5G network architecture (next generation system), or Home evolved Node B (HeNB), relay node (relay node), home base station (femto), pico base station (pico), etc., are not limited in this embodiment of the present application.
  • the network side device may include a centralized unit (centralized unit, CU) node and a distributed unit (distributed unit, DU) node, and the centralized unit and the distributed unit may also be arranged geographically separately.
  • MIMO transmission can be Single User MIMO (Single User MIMO, SU-MIMO) or Multi-User MIMO (Multiple User MIMO, MU-MIMO).
  • MIMO transmission can be 2D-MIMO, 3D-MIMO, FD-MIMO, or massive-MIMO, or diversity transmission, precoding transmission, or beamforming transmission, etc.
  • the applicable system may be a global system of mobile communication (GSM) system, a code division multiple access (CDMA) system, a wideband code division multiple access (WCDMA) general packet Wireless business (general packet radio service, GPRS) system, long term evolution (long term evolution, LTE) system, advanced long term evolution (long term evolution advanced, LTE-A) system, universal mobile telecommunications system (universal mobile telecommunications system, UMTS), Worldwide interoperability for microwave access (WiMAX) system, 5G NR system, etc.
  • GSM global system of mobile communication
  • CDMA code division multiple access
  • WCDMA wideband code division multiple access
  • GPRS general packet Wireless business
  • long term evolution long term evolution
  • LTE-A advanced long term evolution
  • Universal mobile telecommunications system Universal mobile telecommunications system
  • WiMAX Worldwide interoperability for microwave access
  • 5G NR system etc.
  • the system may also include a core network part, such as an evolved packet system (Evloved Packe
  • the 6-bit ECP time slot indication information respectively indicates whether other time slots except the time slot containing the initial access signal and the time slot for unicast scheduling are ECP time slots.
  • b0 in the ECP time slot indication information indicates whether time slot #1 is an ECP time slot
  • b1 indicates whether time slot #2 is an ECP time slot
  • b2 indicates whether time slot #3 is an ECP time slot
  • b3 indicates Whether time slot #6 is an ECP time slot
  • b4 indicates whether time slot #7 is an ECP time slot
  • b5 indicates whether time slot #8 is an ECP time slot.
  • a radio frame contains multiple candidate positions.
  • time slot #0 ⁇ time slot #3 each has 2 candidate positions that can send SSB
  • Fig. 2B takes time slot #0 as an example, time slot #0 contains 14 position symbols, recorded as position symbol #0 ⁇ position Symbol #13, location symbol #2 to location symbol #5 are one candidate location where SSB can be sent, and location symbol #8 to location symbol #11 are another candidate location where SSB can be sent.
  • SSB includes primary synchronous signal (Primary Synchronous Signal, PSS), secondary synchronous signal (Second Synchronous Signal, SSS) and physical broadcast channel (Physical Broadcast Channel, PBCH), in addition to the symbols behind the PSS and SSS are PBCH data, the two ends of the SSS also have PBCH data; when the UE searches for the cell, it performs a synchronization search according to the PSS/SSS, and after the synchronization search is completed , to receive PBCH.
  • PSS Primary Synchronous Signal
  • SSS secondary synchronous signal
  • PBCH Physical Broadcast Channel
  • the embodiment of the present application provides an ECP time slot determination method, user equipment, and network side equipment.
  • the ECP time slot indication information may indicate the time slot containing the SSB, or The time slot containing SSB may not be indicated, and the UE flexibly determines whether the ECP time slot indication information indicates a time slot containing SSB according to the indication of the network side device; and then determines the network side device to send
  • the ECP time slot within the preset unit length can be compatible with the flexibility of the existing design and ensure the flexible deployment of network-side devices.
  • the embodiments of the present application may be applied to a 5G system, and may also be applied to other systems.
  • the implementation of the UE and the network side equipment, and the cooperation between the two will be described. Such an explanation does not mean that the two must be implemented together or must be implemented separately. In fact, when the UE and the network-side equipment are implemented separately, they also solve the problems of the UE and the network-side equipment respectively. When the two are used in combination , a better technical effect will be obtained.
  • Fig. 3 is the interactive flowchart of the first kind of ECP timeslot determining method provided by the embodiment of the present application, as shown in Fig. 3, may include:
  • Step S301 The network side device sends ECP time slot indication information with a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB.
  • the time slot for sending SSB is more flexible, and SSB can be transmitted through any/any candidate position. Therefore, the number of time slots and position symbols for sending SSB are not fixed. Whether the ECP time slot indication information indicates that it contains The time slot of the SSB can also be flexibly set. Exemplarily, the network side device determines whether the ECP time slot indication information indicates the time slot containing the SSB according to the service requirement.
  • the network side device determines the ECP slot indication information with a preset unit length to be sent to the UE according to whether the ECP slot indication information indicates a time slot containing SSB or does not indicate a time slot containing SSB. That is, for a preset unit length, when a time slot containing an SSB is indicated and when a time slot containing an SSB is not indicated, the corresponding ECP time slot indication information is different.
  • the above ECP time slot indication information includes a plurality of sub-indication information, and each sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot. That is to say, if the ECP time slot indication information indicates a time slot containing SSB, there is sub-indication information for indicating whether the time slot containing SSB is an ECP time slot in the ECP time slot indication information; if the ECP time slot indication information does not indicate that it contains For the time slot of SSB, there is no sub-indication information for indicating whether the time slot containing the SSB is an ECP time slot in the ECP time slot indication information.
  • Step S302 The UE determines whether the ECP time slot indication information indicates the time slot containing the SSB according to the indication of the network side device.
  • the corresponding ECP slot indication information is different when the slot containing the SSB is indicated and when the slot containing the SSB is not indicated. Therefore, the UE needs to determine whether the ECP time slot indication information indicates the time slot containing the SSB according to the indication of the network side equipment; and then the UE can accurately determine the time slot within the preset unit length after receiving the time slot of the preset unit length. ECP time slots.
  • Step S303 The UE determines the ECP time slot within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • the ECP time slot indication information may indicate a time slot containing SSB, or may not indicate a time slot containing SSB, and the UE flexibly determines whether the ECP time slot indication information indicates a time slot containing SSB according to the indication of the network side device; Furthermore, according to the above determination result and the ECP time slot indication information, the ECP time slot within the preset unit length sent by the network side device can be accurately determined, which can be compatible with the flexibility of the existing design and ensure the flexible deployment of the network side device.
  • Fig. 4 is the interactive flowchart of the second ECP time slot determination method provided by the embodiment of the present application, as shown in Fig. 4, may include:
  • Step S401 The network side device sends ECP time slot indication information with a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB.
  • step S401 For a specific implementation manner of step S401, reference may be made to the foregoing embodiments, and details are not repeated here.
  • Step S402 the network side device sends high layer signaling including configuration information to the UE.
  • the above-mentioned high-level signaling may be a system broadcast message transmitted through a broadcast control channel, or a broadcast multicast configuration message transmitted over a multicast control channel, or a UE-based radio link control message, or a media access layer-based The control message, which is not specifically limited in this embodiment.
  • a piece of configuration information may be added to the above-mentioned high-level signaling, which is recorded as isSSBslotinlcuded.
  • isSSBslotinlcuded when isSSBslotinlcuded is configured as 1, it indicates that the ECP time slot indication information indicates a time slot containing SSB, that is, the ECP time slot indication information includes sub-indication information for indicating whether the time slot containing SSB is an ECP time slot;
  • the configuration is 0, it means that the ECP slot indication information does not indicate a time slot containing SSB, that is, there is no sub-indication information in the ECP slot indication information for indicating whether the time slot containing SSB is an ECP time slot.
  • isSSBslotinlcuded is just an example.
  • isSSBslotinlcuded is configured as 1, it can also indicate that the ECP slot indication information does not indicate a slot containing SSB; when isSSBslotinlcuded is configured as 0, it can also indicate that the ECP slot indication information Indicates the time slot containing the SSB; or isSSBslotinlcuded can also be configured as other values, which are not specifically limited in this application, and can be configured according to actual application scenarios.
  • Step S403 The UE determines whether the ECP time slot indication information indicates a time slot containing an SSB according to the configuration information.
  • the configuration value of the configuration information represents whether the ECP time slot indication information indicates a time slot containing SSB.
  • the UE can determine whether the ECP time slot indication information indicates a time slot containing SSB according to the configuration information. For the specific configuration of the information, refer to the above steps, which will not be repeated here.
  • Step S404 The UE determines the ECP time slot within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • step S404 For a specific implementation manner of step S404, reference may be made to the foregoing embodiments, and details are not repeated here.
  • the network side device adds configuration information to high-level signaling to make an explicit indication.
  • the configuration information represents whether the ECP time slot indication information indicates a time slot containing SSB.
  • the UE can directly determine the ECP time slot indication information according to the configuration information. Whether to indicate the slot containing SSB.
  • Fig. 5 is the interactive flowchart of the third kind of ECP timeslot determination method that the embodiment of the present application provides, as shown in Fig. 5, may include:
  • Step S501 The network side device sends ECP time slot indication information with a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB.
  • step S501 For a specific implementation manner of step S501, reference may be made to the foregoing embodiments, and details are not repeated here.
  • Step S502 the network side device sends high-level signaling not including configuration information to the UE.
  • the network side device may send high-level signaling not including configuration information to the UE.
  • the UE and the network side equipment adopt the same default rules, and the default rules can be set according to the actual application scenario.
  • the default rules are that the ECP time slot indication information indicates the time slot containing the SSB; some other optional implementations In the example, the default rule is that the ECP slot indication information does not indicate the slot containing the SSB.
  • Step S503 The UE determines whether the ECP time slot indication information indicates a time slot containing an SSB based on a default rule.
  • the network-side device When the network-side device sends high-level signaling that does not include configuration information, it indicates that it is determined based on the default rule whether the ECP time slot indication information indicates a time slot containing SSB.
  • the default rule is that the ECP time slot indication information indicates a time slot containing SSB.
  • the UE After receiving the high-layer signaling that does not contain configuration information, the UE determines that the ECP time slot indication information indicates a time slot containing SSB; or, when the default rule is ECP The slot indication information does not indicate the time slot containing the SSB, and the UE determines that the ECP time slot indication information does not indicate the time slot containing the SSB after receiving the high layer signaling that does not include the configuration information.
  • Step S504 The UE determines the ECP time slot within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • step S504 For a specific implementation manner of step S504, reference may be made to the foregoing embodiments, and details are not repeated here.
  • the UE and the network-side device adopt the same default rules, so that the network-side device sends high-layer signaling that does not contain configuration information to the UE, and the UE determines whether the ECP time slot indication information indicates a time slot containing SSB based on the default rule, which can be more efficient. Conveniently carry out explicit instructions to meet the needs of different application scenarios.
  • the above-mentioned embodiment in FIG. 4 can be combined with the embodiment in FIG. 5 , that is, if it can be determined based on the default rules whether the ECP time slot indication information indicates a time slot containing SSB, the network side device sends a high-level Signaling; otherwise, high-level signaling including configuration information is sent to the UE.
  • the network side device sends a high-level Signaling; otherwise, high-level signaling including configuration information is sent to the UE.
  • Fig. 6 is the interaction flowchart of the fourth ECP time slot determination method provided by the embodiment of the present application, as shown in Fig. 6, may include:
  • Step S601 If the network side device determines that the ECP time slot indication information indicates a time slot containing SSB, the total number of configured sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configured sub-indication information is not greater than the first preset number. Set the number of ECP slot indication information.
  • the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the above-mentioned time slot adjustment amount can be 0, 1, 4, etc., and this embodiment does not specifically limit the determination method of the above-mentioned time slot adjustment amount, for example:
  • the above methods for determining the time slot adjustment amount are just examples. In implementation, as long as the UE determines the time slot adjustment amount in the same manner as that of the network side device, no more examples are given here.
  • Step S602 For any preset unit length, the UE determines whether the total number of sub-indication information in the ECP time slot indication information of the preset unit length is greater than the first preset number; if so, then determines that the ECP time slot indication information contains SSB time slot; otherwise, it is determined that the ECP time slot indication information does not indicate a time slot containing SSB.
  • the UE can use any of the above methods to determine the time slot adjustment amount (as long as the UE uses the same method as the network side device to determine the time slot adjustment amount), and then determine the first preset number; by setting the preset unit length The total number of sub-indication information in the ECP time slot indication information (that is, how many time slots the ECP time slot indication information can indicate in total) is compared with the first preset number; if the ECP time slot of the preset unit length The total number of sub-indication information in the indication information is greater than the first preset number, and it is determined that the ECP time slot indication information indicates a time slot containing SSB; if the total number of sub-indication information in the ECP time slot indication information of the preset unit length is not greater than the first The preset number is used to determine that the ECP time slot indication information does not indicate the time slot containing the SSB.
  • Step S603 The UE determines the ECP time slot within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • step S603 For a specific implementation manner of step S603, reference may be made to the foregoing embodiments, and details are not repeated here.
  • the network side device configures the relationship between the total number of sub-indication information in the ECP time slot indication information and the first preset number according to whether the ECP time slot indication information indicates a time slot containing SSB; correspondingly, the UE bases the ECP time slot
  • the relationship between the total number of sub-indication information in the indication information and the first preset number can accurately determine whether the ECP time slot indication information indicates a time slot containing SSB, and can perform implicit indication more flexibly to meet the needs of different application scenarios .
  • Fig. 7 is an interactive flowchart of the fifth ECP time slot determination method provided by the embodiment of the present application, as shown in Fig. 7, may include:
  • Step S701 If the network side device determines that the ECP time slot indication information indicates a time slot containing SSB, configure the first ECP time slot indication information corresponding to the preset unit length that does not indicate a time slot containing SSB, and indicate that it contains SSB The second ECP time slot indication information of the time slot; and after sending the first ECP time slot indication information to the UE, send the second ECP time slot indication information to the UE; if the ECP time slot is determined If the indication information does not indicate the time slot containing the SSB, the indication information of one ECP time slot corresponding to the preset unit length is configured.
  • the first ECP time slot indication information includes the second preset quantity of quantum indication information, and does not indicate the time slot containing SSB; the second ECP time slot indication information
  • the slot indication information includes a third preset quantity of quantum indication information, indicating time slots containing SSBs.
  • the second ECP time slot indication information also indicates those that do not contain SSBs that are not indicated in the first ECP time slot indication information. time slot.
  • the network side device in order for the UE to distinguish between the first ECP time slot indication information and the second ECP time slot indication information, the network side device needs to first send the first ECP time slot indication information to the UE, and then send the second ECP time slot indication information to the UE. Instructions.
  • Step S702 For any preset unit length, if the UE receives an ECP time slot indication information corresponding to the preset unit length, it determines that the ECP time slot indication information does not indicate a time slot containing SSB; if received For the two ECP time slot indication information corresponding to the preset unit length, it is determined that the first ECP time slot indication information does not indicate a time slot containing SSB, and the second ECP time slot indication information indicates a time slot containing SSB.
  • the UE if the UE only receives one ECP time slot indication information corresponding to the preset unit length, it determines that the ECP time slot indication information does not indicate a time slot containing SSB;
  • the UE If the UE receives two ECP time slot indication information corresponding to the preset unit length, it determines that the first ECP time slot indication information received first does not indicate a time slot containing SSB, and the second ECP time slot indication information received later indicates Contains the time slot of the SSB.
  • Step S703 The UE determines the ECP time slots within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • step S703 For a specific implementation manner of step S703, reference may be made to the foregoing embodiments, and details are not repeated here.
  • the network side device configures the number of ECP time slot indication information corresponding to the preset unit length according to whether the ECP time slot indication information indicates a time slot containing SSB; the UE configures the number of ECP time slot indication information corresponding to the preset unit length , it can be accurately determined whether the ECP time slot indication information indicates the time slot containing the SSB, and the implicit indication can be performed more flexibly to meet the requirements of different application scenarios.
  • FIG. 8 is an interactive flowchart of the sixth ECP time slot determination method provided in the embodiment of the present application. As shown in FIG. 8 , it may include:
  • Step S801 For any preset unit length, if the ECP time slot indication information does not indicate a time slot containing SSB, the network side device will, according to the sequence of time slots not containing SSB in the preset unit length and the preset indication The rule is to determine the first time slots that can be indicated in the preset unit length from the time slots that do not contain SSB in the preset unit length; and determine that each first time slot in the preset unit length corresponds to sub-instructions for .
  • the above-mentioned preset indication rule is a preset indication rule, such as including: which time slot within the preset unit length needs to be indicated, and the specific indication rule can be set according to the actual application scenario.
  • the network side device can determine which time slot can be indicated based on the preset indication rule, and determine the time slots that can be indicated within the preset unit length according to the sequence of time slots that do not contain SSB within the preset unit length.
  • the first time slot and then according to whether the first time slot is an ECP time slot, determine sub-indication information corresponding to each first time slot (indicating that the corresponding time slot is an ECP time slot, or indicating that the corresponding time slot is not an ECP time slot).
  • Step S802 The network side device determines the ECP time slot indication information of the preset unit length based on the sub-indication information corresponding to each first time slot within the preset unit length.
  • the sub-indication information corresponding to each first time slot within the preset unit length may be combined to obtain corresponding ECP time slot indication information.
  • the number of sub-indication information included in the ECP time slot indication information is fixed; however, when the ECP time slot indication information does not indicate a time slot containing SSB, it is from a time slot that does not contain SSB For the determined first time slot, it may appear that the total number of sub-indication information in the ECP time slot indication information of the preset unit length is greater than the total number of the first time slots within the preset unit length.
  • the ECP time slot indication information of the preset unit length includes 8 sub-indication information, and there are 6 first time slots in the preset unit length, so there are two remaining sub-indication information without corresponding first time slots.
  • the following steps are also included:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the preset unit length is one wireless frame as an example:
  • time slot #0 ⁇ time slot #9 There are 10 time slots in the preset unit length, which are respectively recorded as time slot #0 ⁇ time slot #9, among which, time slot #1 and time slot #2 are time slots containing SSB, time slot #3, time slot # 4. Time slot #5, time slot #8 and time slot #9 are the first time slot, then time slot #0, time slot #6 and time slot #7 are the second time slot.
  • the two remaining sub-indicators may indicate the first two first time slots within the next preset unit length
  • the two remaining sub-indication information may also indicate the first two second time slots within the preset unit length, such as the above-mentioned time slot #0 and time slot #6;
  • one remaining sub-indication information indicates the previous first time slot in the next preset unit length
  • the other remaining sub-indication information indicates the order of the previous second time slot in the preset unit length, such as the above-mentioned time slot #0 .
  • the sub-indication information corresponding to each first time slot within the preset unit length and the remaining sub-indication information may be combined to obtain corresponding ECP time slot indication information.
  • Step S803 The UE determines whether the ECP time slot indication information indicates the time slot containing the SSB according to the indication of the network side device.
  • step S803 For the specific implementation manner of step S803, reference may be made to the foregoing embodiments, and details are not repeated here.
  • Step S804 For any preset unit length, if the ECP time slot indication information does not indicate a time slot containing SSB, according to the sequence of time slots not containing SSB in the preset unit length and the preset indication rule, From the time slots that do not contain the SSB in the preset unit length, determine the first time slot that can be indicated in the preset unit length.
  • Determining the first time slot that can be indicated within the preset unit length by the UE is similar to determining the first time slot that can be indicated within the preset unit length by the above-mentioned network side device, and will not be repeated here.
  • Step S805 The UE determines the sub-indication corresponding to each first time slot in the preset unit length according to the sequence of the first time slots in the preset unit length and the ECP time slot indication information of the preset unit length information.
  • each first time slot corresponds to sub-indication information to indicate that the corresponding first time slot is an ECP time slot or not an ECP time slot. Based on this, the UE needs to determine the sub-indication information corresponding to each first time slot in the preset unit length according to the sequence of the first time slots in the preset unit length and the ECP time slot indication information of the preset unit length.
  • the slot indication information may also include remaining sub-indication information indicating the first time slot in the next preset unit length, and/or indicating the preset unit Sub-indication information of the second time slot within the length.
  • the following steps are also included:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the second time slots in the preset unit length determine the remaining sub-indication information corresponding to part or all of the second time slots, and the second time slots are within the preset unit length except the first A slot other than a slot that does not contain an SSB.
  • the two remaining sub-indicators indicate the first two first time slots in the next preset unit length, determine the remaining sub-indication information corresponding to the first two first time slots in the next preset unit length;
  • the two remaining sub-indicators indicate the order of the first two second time slots within the preset unit length, then determine the remaining sub-indication information corresponding to the first two second time slots within the preset unit length, such as the above-mentioned time slots #0 and slot #6;
  • the next preset unit is determined The remaining sub-indication information corresponding to the previous first time slot within the length, and the remaining sub-indication information corresponding to the previous second time slot within the preset unit length, such as the remaining sub-indication information corresponding to the above-mentioned time slot #0.
  • Step S806 For any first time slot within the preset unit length, if the sub-indication information indicates that the corresponding time slot is an ECP time slot, the UE determines the first time slot as an ECP time slot.
  • the sub-indication information is used to indicate that the corresponding first time slot is an ECP time slot, or not an ECP time slot. For any first time slot within the preset unit length, if the sub-indication information indicates that the corresponding time slot is ECP time slot, the first time slot can be accurately determined as an ECP time slot.
  • remaining sub-indication information corresponding to these second time slots It is determined whether these second time slots are ECP time slots.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in a sequential manner.
  • step S801 can be implemented in the following manner:
  • the network side device For any preset unit length, the network side device, according to the order of the time slots not containing SSB in the preset unit length and the preset indication rule, from the time slots not containing SSB in the preset unit length, Sequentially determining the first time slots that can be indicated within the preset unit length; and sequentially determining sub-indication information corresponding to each first time slot within the preset unit length.
  • step S802 can be realized in the following ways:
  • the network side device sequentially determines the ECP time slot indication information of the preset unit length based on the sub-indication information corresponding to each first time slot within the preset unit length.
  • step S804 can be realized in the following manner:
  • the UE determines the sequence from the time slots that do not contain SSB in the preset unit length according to the order of the time slots that do not contain SSB in the preset unit length and the preset indication rules.
  • the first time slot that may be indicated within the preset unit length.
  • step S805 can be realized in the following manner:
  • the UE sequentially determines sub-indication information corresponding to each first time slot in the preset unit length according to the order of the first time slots in the preset unit length and the ECP time slot indication information of the preset unit length.
  • the preset unit length is one wireless frame as an example, there are 10 time slots in the preset unit length, which are respectively recorded as time slot #0 ⁇ time slot #9, and time slot #1 and time slot #2 are For time slots containing SSB, the preset indication rule is to indicate the 2nd, 3rd, 4th, 7th, 8th, and 9th time slots within the preset unit length.
  • time slots that do not contain SSB are respectively time slot #3, time slot #4, time slot #5, time slot #8 and time slot #9, and there is no ninth non-SSB within the preset unit length
  • the time slot containing SSB the network side equipment sequentially determines the corresponding sub-indication information of time slot #3, time slot #4, time slot #5, time slot #8 and time slot #9 respectively; and based on time slot #3 corresponding
  • the ECP slot indication information of the frame the sub-indication information of the frame.
  • the UE sequentially determines the 2nd, 3rd, 4th, 7th, and 8th slots without SSB within the preset unit length as slot #3, slot #4, slot #5, slot #8, and slot # 9; and respectively determine sub-indication information corresponding to time slot #3, time slot #4, time slot #5, time slot #8, and time slot #9.
  • the above example is only for illustrating how to sequentially determine the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot, and the present application is not limited thereto.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in reverse order.
  • step S801 can be implemented in the following manner:
  • the network side device For any preset unit length, the network side device, according to the order of the time slots not containing SSB in the preset unit length and the preset indication rule, from the time slots not containing SSB in the preset unit length, Determining the first time slots that can be indicated within the preset unit length in reverse order; and determining sub-indication information corresponding to each first time slot in the preset unit length in reverse order.
  • step S802 can be realized in the following ways:
  • the network side device determines the ECP time slot indication information of the preset unit length in reverse order based on the sub-indication information corresponding to each first time slot within the preset unit length.
  • step S804 can be realized in the following manner:
  • the UE determines in reverse order from the time slots that do not contain SSB in the preset unit length according to the order of time slots that do not contain SSB in the preset unit length and the preset indication rule The first time slot that may be indicated within the preset unit length.
  • step S805 can be realized in the following manner:
  • the UE determines sub-indication information corresponding to each first time slot in the preset unit length in reverse order according to the order of the first time slots in the preset unit length and the ECP time slot indication information of the preset unit length.
  • the preset unit length is one wireless frame as an example, there are 10 time slots in the preset unit length, which are respectively recorded as time slot #0 ⁇ time slot #9, and time slot #1 and time slot #2 are For time slots containing SSB, the preset indication rule is that the 1st to 8th time slots within the preset unit length need to be indicated, and the network side device determines them in reverse order, and the 1st to 8th time slots without SSB within the preset unit length are respectively For time slot #9, time slot #8, time slot #7, time slot #6, time slot #5, time slot #4, time slot #3, and time slot #0; the network side equipment respectively determines the time slot # 9.
  • the UE determines in reverse order that the 1st to 8th time slots that do not contain SSB within the preset unit length are respectively time slot #9, time slot #8, time slot #7, time slot #6, time slot #5, and time slot #4 , time slot #3 and time slot #0; and determine time slot #9, time slot #8, time slot #7, time slot #6, time slot #5, time slot #4, time slot #3 and time slot #0 respectively Sub-indication information corresponding to each slot #0.
  • the network side device can centrally configure the sending position of the SSB in the first few time slots of the preset unit length, In this way, the impact of deploying the SSB on the ECP time slot indication by the network side equipment is reduced.
  • FIG. 9 is an interactive flowchart of the seventh ECP time slot determination method provided in the embodiment of the present application. As shown in FIG. 9 , it may include:
  • Step S901 For any preset unit length, if the ECP time slot indication information indicates a time slot containing SSB, then according to the order of all time slots in the preset unit length and the preset indication rules, the Among all the time slots in the preset unit length, determine the first time slots that can be indicated in the preset unit length; and determine the sub-indication information corresponding to each first time slot in the preset unit length.
  • the network side device can determine which time slot can be indicated based on the preset indication rule, and determine the first time slot that can be indicated within the preset unit length according to the sequence of all time slots within the preset unit length. Then according to whether the first time slot is an ECP time slot, determine the sub-indication information corresponding to each first time slot (indicating that the corresponding time slot is an ECP time slot, or indicating that the corresponding time slot is not an ECP time slot).
  • Step S902 The network side device determines the ECP time slot indication information of the preset unit length based on the sub-indication information corresponding to each first time slot within the preset unit length.
  • Step S903 The UE determines whether the ECP time slot indication information indicates the time slot containing the SSB according to the indication of the network side device.
  • Step S904 For any preset unit length, if the ECP time slot indication information indicates a time slot containing SSB, then according to the order of all time slots in the preset unit length and the preset indication rule, Assuming that among all time slots within the unit length, the first time slot that can be indicated within the preset unit length is determined.
  • Determining the first time slot that can be indicated within the preset unit length by the UE is similar to determining the first time slot that can be indicated within the preset unit length by the above-mentioned network side device, and will not be repeated here.
  • Step S905 The UE determines the sub-indicator corresponding to each first time slot in the preset unit length according to the sequence of the first time slots in the preset unit length and the ECP time slot indication information of the preset unit length information.
  • Step S906 For any first time slot within the preset unit length, if the sub-indication information indicates that the corresponding time slot is an ECP time slot, the UE determines the first time slot as an ECP time slot.
  • steps S905-S906 For the specific implementation of steps S905-S906, reference may be made to the above-mentioned embodiments, which will not be repeated here.
  • the first time slot within the above-mentioned preset unit length and the sub-indication information corresponding to each first time slot can also be determined sequentially or in reverse order, specifically For the implementation manner, reference may be made to the foregoing embodiments, and details are not repeated here.
  • the time slot containing SSB may be indicated as an ECP time slot. Since the SSB needs to be sent using NCP, when the time slot containing SSB is indicated as ECP When slots are used, only some of the place symbols are place symbols belonging to the ECP.
  • step S902 if the ECP time slot indication information indicates a time slot containing SSB, and it is determined that the time slot containing SSB is an ECP time slot, after step S902, further include:
  • the network side device determines the position symbol belonging to the NCP based on the SSB position symbol in the time slot containing the SSB.
  • step S906 it also includes:
  • the UE determines the position symbols belonging to the NCP based on the SSB position symbols in the slot containing the SSB.
  • one NCP slot contains 14 NCP position symbols
  • one ECP slot contains 12 ECP position symbols.
  • determining the position symbol belonging to the NCP can be realized by but not limited to the following methods:
  • the SSB position symbol in the time slot containing the SSB is determined as the position symbol belonging to the NCP. For example:
  • the SSB position symbols in the time slot containing the SSB are position symbol #8 to position symbol #11, and position symbol #8 to position symbol #11 are determined as position symbols belonging to the NCP;
  • All the position symbols in the half of the time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP. For example:
  • the SSB position symbols in the time slot containing SSB are position symbol #8 ⁇ position symbol #11, there are 14 NCP position symbols in a time slot, or 12 ECP position symbols, and the last 7 position symbols are determined to belong to Place symbols of the NCP; the first 6 place symbols were identified as place symbols belonging to the ECP.
  • determining the position symbol belonging to the NCP based on the SSB position symbol in the time slot containing the SSB also includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • Fig. 11 is an interactive flowchart of the eighth ECP time slot determination method provided by the embodiment of the present application, as shown in Fig. 11 , may include:
  • Step S1101 The network side device determines the time slots containing SSB and/or the time slots not containing SSB within the preset unit length.
  • the ECP time slot indication information does not indicate the time slot containing SSB, and the first time slot needs to be determined from the time slots that do not contain SSB within the preset unit length; in some scenarios, the ECP time slot indication information To indicate the time slot containing the SSB, and the time slot containing the SSB is an ECP time slot, it is necessary to determine the position symbol belonging to the NCP in the time slot containing the SSB. Based on this, the network side device and the UE need to determine the time slots containing the SSB and/or the time slots not containing the SSB within the preset unit length.
  • the network side device can pass the SSB position parameter ssb - A group of values (inOneGroup) in PositionsInBurst indicating whether to send SSB for each candidate position.
  • the network side device uses the 8-bit indication of inOneGroup (B0-B8). The value of inOneGroup is 0, indicating that the corresponding candidate position has not sent SSB, and the value of inOneGroup is 1, indicating that the corresponding candidate position has sent SSB.
  • inOneGroup value is just an example.
  • inOneGroup value is 1, it can also indicate that the corresponding candidate position has not sent SSB; when the inOneGroup value is 0, it can also indicate that the corresponding candidate position has sent SSB; or inOneGroup can also be configured It is other values, which are not specifically limited in this application, and can be configured according to actual application scenarios.
  • the network side device can also indicate the sending period of the SSB burst block through the SSB period parameter (ssb-PeriodicityServingCell) of the serving cell, and the sending period can be 5ms, 10ms, 20ms, 40ms, 80ms or 160ms, etc.
  • the sending period can be 5ms, 10ms, 20ms, 40ms, 80ms or 160ms, etc.
  • Step S1102 The network side device sends ECP time slot indication information with a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB.
  • Step S1103 The UE determines whether the ECP time slot indication information indicates the time slot containing the SSB according to the indication of the network side device.
  • Step S1104 the UE determines the time slots containing the SSB and/or the time slots not containing the SSB within the preset unit length.
  • the network side device can indicate whether each candidate position sends SSB through the inOneGroup value in the SSB position parameter ssb-PositionsInBurst; correspondingly, the UE determines whether each candidate position sends SSB.
  • Step S1105 The UE determines the ECP time slots within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • step S1105 For a specific implementation manner of step S1105, reference may be made to the foregoing embodiments, and details are not repeated here.
  • the network side device sends high-level signaling to UE, such as system broadcast message transmitted through broadcast control channel, broadcast multicast configuration message transmitted through multicast control channel, UE-based radio link control message or media access layer-based control message wait.
  • the high-level signaling contains configuration information, and the UE determines whether the ECP time slot indication information indicates a time slot containing SSB according to the configuration information; or the high-level information does not contain configuration information, and the UE bases the default rule on It is determined whether the ECP slot indication information indicates a slot containing an SSB.
  • the UE Based on the system broadcast message, the UE obtains the inOneGroup value in the SSB position parameter ssb-PositionsInBurst sent by the network side device, and determines whether the corresponding candidate position sends SSB based on the inOneGroup value.
  • SCS 15KHz
  • the preset unit length is one wireless frame.
  • the network side device uses the 8-bit indication of inOneGroup (B0-B8). The value of inOneGroup is 0, indicating that the corresponding candidate position has not sent SSB, and the value of inOneGroup is 1, indicating that the corresponding candidate position has sent SSB. Referring to FIG.
  • the inOneGroup value corresponding to candidate position #3 and candidate position #4 is 1, and the inOneGroup value corresponding to other candidate positions is 0, and candidate position #3 and candidate position #4 have sent SSB, Therefore slot #1 and slot #2 are slots containing SSB; slot #0, slot #3, slot #4, slot #5, slot #6, slot #7, slot # 8 and slot #9 are slots that do not include the SSB.
  • the preset indication rule is that it is necessary to indicate the 2nd, 3rd, 4th, 7th, 8th, and 9th time slots in the preset unit length, the first time slot in the preset unit length, and each first time slot
  • the sub-indicator information corresponding to each slot is determined sequentially.
  • the time slot containing SSB needs to be skipped (that is, time slot #1 and time slot #2 are skipped).
  • the second , 3, 4, 7, and 8 time slots that do not contain SSB are respectively time slot #3, time slot #4, time slot #5, time slot #8, and time slot #9, that is, these five time slots are available
  • time slot #0, time slot #6, and time slot #7 do not contain SSB except for the first time slot Second slot of SSB.
  • b0 in the ECP time slot indication information indicates whether time slot #3 is an ECP time slot, b1 indicates whether time slot #4 is an ECP time slot, b2 indicates whether time slot #5 is an ECP time slot, and b3 indicates Whether time slot #8 is an ECP time slot, b4 indicates whether time slot #9 is an ECP time slot, and b5 has no corresponding first time slot.
  • b5 may indicate the first second time slot in the above radio frame, that is, slot #0; in some other scenarios, b5 may indicate the first first time slot in the next radio frame.
  • the ECP time slot indication information indicates the time slot containing the SSB, there is no need to skip the time slot containing the SSB.
  • the 2nd, 3rd, 4th, 7th, 8th, and 9th time slots are time slots respectively Slot #1, slot #2, slot #3, slot #6, slot #7, and slot #8, that is, these six slots are the first slots that can be indicated.
  • b0 indicates whether time slot #1 is an ECP time slot
  • b1 indicates whether time slot #2 is an ECP time slot
  • b2 indicates whether time slot #3 is an ECP time slot
  • b3 indicates Whether time slot #6 is an ECP time slot
  • b4 indicates whether time slot #7 is an ECP time slot
  • b5 indicates whether time slot #8 is an ECP time slot.
  • the SSB position symbols are NCP position symbols #8 ⁇ position symbols #11, at least the time domain positions where these position symbols are located cannot be ECP, and the last 7 position symbols (NCP Position symbol #7 to NCP position symbol #13) are determined to belong to the NCP; in addition, ECP position symbol #0 to ECP position symbol #5 of the ECP slot can use the ECP symbol to schedule the PDSCH.
  • the SSB position symbols are NCP position symbols #2 ⁇ position symbols #5, at least the time domain positions of these position symbols cannot be ECP, and the first 7 position symbols (NCP Position symbol #0 to NCP position symbol #6) are determined to belong to the NCP; in addition, ECP position symbol #6 to ECP position symbol #11 of the ECP slot can use the ECP symbol to schedule the PDSCH.
  • Embodiment 1 takes the preset unit length as one wireless frame as an example.
  • Embodiment 1 takes the ECP time slot indication information to include 6 sub-indication information as an example, the sub-indication information contained in the ECP time slot indication information in practical applications There may be more or less, such as 5, 10, or 8; the position symbols belonging to the ECP in the ECP time slot containing the SSB in Embodiment 1 are only illustrative, and the present application is not limited thereto.
  • the network side device determines that the ECP time slot indication information indicates a time slot containing SSB, the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slot indication information.
  • the network side device determines that the ECP time slot indication information indicates a time slot containing SSB, the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slot indication information.
  • the UE Based on the system broadcast message, the UE obtains the inOneGroup value in the SSB position parameter ssb-PositionsInBurst sent by the network side device, and determines whether the corresponding candidate position sends SSB based on the inOneGroup value.
  • SCS 15KHz
  • the preset unit length is one wireless frame.
  • the network side device uses the 8-bit indication of inOneGroup (B0-B8). The value of inOneGroup is 0, indicating that the corresponding candidate position has not sent SSB, and the value of inOneGroup is 1, indicating that the corresponding candidate position has sent SSB. Referring to FIG.
  • the inOneGroup value corresponding to candidate position #2 and candidate position #5 is 1, and the inOneGroup value corresponding to other candidate positions is 0, and candidate position #2 and candidate position #5 have sent SSB, Therefore slot #1 and slot #2 are slots containing SSB; slot #0, slot #3, slot #4, slot #5, slot #6, slot #7, slot # 8 and slot #9 are slots that do not include the SSB.
  • the first time slots within the preset unit length and the sub-indication information corresponding to each first time slot are determined in reverse order; the first preset number is 8, and the sub-indication information in the ECP time slot indication information
  • the total number of indication information is greater than 8, and the ECP time slot indication information indicates a time slot containing SSB; the total number of sub-indication information in the ECP time slot indication information is less than or equal to 8, and the ECP time slot indication information does not indicate a time slot containing SSB.
  • the preset indication rule is to indicate the 1st to 8th time slots within the preset unit length, the total number of sub-indication information in the ECP time slot indication information is equal to 8, and the ECP time slot indication information does not indicate the time slot containing the SSB, and it needs to be skipped.
  • the first to eighth time slots that do not contain SSB are time slot #9, Slot #8, Slot #7, Slot #6, Slot #5, Slot #4, Slot #3, and Slot #0.
  • b0 indicates whether time slot #9 is an ECP time slot
  • b1 indicates whether time slot #8 is an ECP time slot
  • b2 indicates whether time slot #7 is an ECP time slot
  • b3 indicates whether time slot #9 is an ECP time slot.
  • time slot #6 is an ECP time slot
  • b4 indicates whether time slot #5 is an ECP time slot
  • b5 indicates whether time slot #4 is an ECP time slot
  • b6 indicates whether time slot #3 is an ECP time slot
  • b7 indicates a time slot Whether #0 is an ECP time slot.
  • the preset indication rule is to indicate the 1st to 10th time slots within the preset unit length
  • the total number of sub-indication information in the ECP time slot indication information is greater than 8
  • the ECP time slot indication information indicates the time slot containing SSB, no need to jump Among all the time slots in the wireless frame
  • the 1st to 10th time slots are respectively time slot #9, time slot #8, time slot #7, time slot #6, time slot #5, Slot #4, Slot #3, Slot #2, Slot #1, and Slot #0.
  • b0 indicates whether time slot #9 is an ECP time slot
  • b1 indicates whether time slot #8 is an ECP time slot
  • b2 indicates whether time slot #7 is an ECP time slot
  • b3 indicates whether time slot #9 is an ECP time slot.
  • time slot #6 is an ECP time slot
  • b4 indicates whether time slot #5 is an ECP time slot
  • b5 indicates whether time slot #4 is an ECP time slot
  • b6 indicates whether time slot #3 is an ECP time slot
  • b7 indicates a time slot Whether #2 is an ECP time slot
  • b8 indicates whether time slot #1 is an ECP time slot
  • b9 indicates whether time slot #0 is an ECP time slot.
  • time slot #1 the SSB location symbols are NCP location symbols #2 to #5
  • the location symbols of the PDCCH that need to send system broadcast messages are NCP location symbols #6 and location symbols #7 , determine NCP position symbol #0 to NCP position symbol #7 as position symbols belonging to the NCP; in addition, ECP position symbol #7 to ECP position symbol #11 of the ECP time slot can use the ECP symbol to schedule the PDSCH.
  • the SSB position symbols are NCP position symbols #8 to #11
  • the PDCCH position symbols that need to send system broadcast messages are NCP position symbols #6 and position symbols #7 , determine NCP position symbol #6 to NCP position symbol #13 as position symbols belonging to the NCP; in addition, ECP position symbol #0 to ECP position symbol #4 of the ECP time slot can use the ECP symbol to schedule the PDSCH.
  • Embodiment 2 takes the preset unit length as one wireless frame as an example.
  • Embodiment 2 is an example that the ECP time slot indication information includes 8 sub-indication information or 10 sub-indication information, and the ECP time slot indication in practical application
  • the sub-indicator information contained in the information can be more or less, such as 5, 6 or 7, etc.; the position symbol belonging to the ECP in the ECP time slot containing the SSB in embodiment 2 is only an illustration, and this application does not This is the limit.
  • the network side device determines that the ECP time slot indication information indicates a time slot containing SSB, it configures the first ECP time slot indication information corresponding to the preset unit length that does not indicate a time slot containing SSB, and the first ECP time slot indication information indicating a time slot containing SSB.
  • Two ECP time slot indication information and after sending the first ECP time slot indication information to the UE, send the second ECP time slot indication information to the UE; if it is determined that the ECP time slot indication information does not indicate the time slot containing the SSB, configure One ECP time slot indication information corresponding to the preset unit length.
  • the UE Based on the system broadcast message, the UE obtains the inOneGroup value in the SSB position parameter ssb-PositionsInBurst sent by the network side device, and determines whether the corresponding candidate position sends SSB based on the inOneGroup value.
  • SCS 15KHz
  • the preset unit length is one wireless frame.
  • the network side device uses the 8-bit indication of inOneGroup (B0-B8). The value of inOneGroup is 0, indicating that the corresponding candidate position has not sent SSB, and the value of inOneGroup is 1, indicating that the corresponding candidate position has sent SSB. Referring to FIG.
  • the inOneGroup value corresponding to candidate position #0, candidate position #1, candidate position #3, and candidate position #4 is 1, and the inOneGroup value corresponding to the remaining candidate positions is 0.
  • Candidate position #1, candidate position #3 and candidate position #4 have sent SSB, so time slot #0, time slot #1 and time slot #2 are time slots containing SSB; time slot #3, time slot # 4.
  • Time slot #5, time slot #6, time slot #7, time slot #8 and time slot #9 are time slots not including SSB.
  • the first time slot within the preset unit length and the sub-indicator information corresponding to each first time slot are determined sequentially;
  • the first ECP time slot indication information needs to indicate the first to sixth time slots within the preset unit length, the first ECP time slot indication information does not indicate the time slot containing SSB, and the time slot containing SSB needs to be skipped.
  • slots that is, skipping slot #0, slot #1, and slot #2
  • the first to sixth slots that do not contain SSB are respectively Time slot #3 to time slot #8.
  • b0 in the ECP time slot indication information indicates whether time slot #3 is an ECP time slot
  • b1 indicates whether time slot #4 is an ECP time slot
  • b2 indicates whether time slot #5 is an ECP time slot
  • b3 indicates Whether time slot #6 is an ECP time slot
  • b4 indicates whether time slot #7 is an ECP time slot
  • b5 indicates whether time slot #8 is an ECP time slot.
  • the second ECP time slot indication information indicates the time slot containing SSB, and there is no need to skip the time slot containing SSB.
  • the first to fourth time slots except the time slots indicated by the above-mentioned first ECP time slot indication information are respectively time slot # 0, slot #1, slot #2, and slot #9.
  • b0 in the ECP time slot indication information indicates whether time slot #0 is an ECP time slot, b1 indicates whether time slot #1 is an ECP time slot, b2 indicates whether time slot #2 is an ECP time slot, and b3 indicates Whether time slot #9 is an ECP time slot.
  • the above-mentioned time slot #0 can only be an NCP time slot, and when the above-mentioned time slot #1 and time slot #2 are ECP time slots, only part of the position symbols belong to ECP location symbol.
  • the SSB position symbols are NCP position symbols #8 to #11
  • the position symbols of the PDCCH that need to send system broadcast messages are NCP position symbols #6 and position symbols #7 , determine NCP position symbol #6 to NCP position symbol #13 as position symbols belonging to the NCP; in addition, ECP position symbol #0 to ECP position symbol #4 of the ECP time slot can use the ECP symbol to schedule the PDSCH.
  • the SSB position symbols are NCP position symbols #2 to #5
  • the PDCCH position symbols that need to send system broadcast messages are NCP position symbols #6 and position symbols #7 , determine NCP position symbol #0 to NCP position symbol #7 as position symbols belonging to the NCP; in addition, ECP position symbol #7 to ECP position symbol #11 of the ECP time slot can use the ECP symbol to schedule the PDSCH.
  • Embodiment 3 takes the preset unit length as one wireless frame as an example.
  • Embodiment 3 takes the ECP time slot indication information including 6 sub-indication information and 4 sub-indication information as an example, the ECP time slot indication information in practical applications
  • the included sub-indication information may be more or less; the location symbol belonging to the ECP in the ECP time slot containing the SSB in Embodiment 3 is just an illustration, and the present application is not limited thereto.
  • an embodiment of the present application also provides a method for determining an ECP time slot, which is applied to the above-mentioned UE, as shown in FIG. 16 , the method includes:
  • Step S1601 According to the instruction of the network side device, determine whether the ECP time slot indication information indicates a time slot containing SSB;
  • Step S1602 According to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information, determine the ECP time slot within the preset unit length sent by the network side device.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the high-level signaling including configuration information sent by the network side device is received, it is determined according to the configuration information whether the ECP time slot indication information indicates a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the network side device determines whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule
  • the default rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the sub-indication information is used to indicate whether the corresponding time slot is ECP time slot;
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the first ECP time slot indication information does not indicate a time slot containing SSB
  • the second ECP time slot indication information indicates a time slot containing SSB .
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information
  • determine the ECP time within the preset unit length sent by the network side device gaps including:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • the ECP time slot indication information includes a plurality of sub-indication information, and the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot;
  • any first time slot within the preset unit length if the sub-indication information indicates that the corresponding time slot is an ECP time slot, then determine the first time slot as an ECP time slot.
  • the method further includes:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the second time slots determine the remaining sub-indication information corresponding to part or all of the second time slots, and the second time slots are within the preset unit length except the first A time slot other than a time slot that does not contain an SSB;
  • the remaining sub-indication information is the sub-indication information of the first time slot not corresponding to the ECP time slot indication information of the preset unit length.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined sequentially;
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in reverse order.
  • the ECP time slot indication information indicates a time slot containing SSB, after determining the time slot containing SSB as an ECP time slot, it also includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • determining the position symbol belonging to the NCP also includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • determine the ECP time within the preset unit length sent by the network side device Before gaps also include:
  • this method is a method corresponding to the above-mentioned UE, reference may be made to the above-mentioned embodiment for the specific implementation manner of this method, and repeated descriptions will not be repeated.
  • ECP time slot determination method is provided in the embodiment of the present application, which is applied to the above-mentioned network side device, and the method includes:
  • the ECP time slot indication information indicates the time slot containing the SSB
  • the ECP time slot indication information with a preset unit length is sent to the UE.
  • it also includes:
  • the configuration information indicates that the ECP time slot indication information indicates the time slot containing the SSB; or the configuration information indicates that the ECP time slot indication information does not indicate the time slot containing the SSB.
  • it also includes:
  • the high-level signaling that does not include configuration information is used to instruct the UE to determine whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule; wherein, the default The rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB, then the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slot indications information;
  • the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB
  • the ECP time slot indication information does not indicate a time slot containing an SSB, configure an ECP time slot indication information corresponding to the preset unit length.
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • each first time slot in the preset unit length is an ECP time slot
  • the ECP time slot indication information of the preset unit length is determined.
  • the ECP time slot indication information does not indicate a time slot containing SSB, based on the sub-indication information corresponding to each first time slot in the preset unit length, determine the ECP time slot indication information, including:
  • the second time slot is a time slot that does not contain an SSB except the first time slot within the preset unit length.
  • the first time slot within the preset unit length and the ECP time slot indication information are determined sequentially;
  • Both the first time slot within the preset unit length and the indication information of the ECP time slot are determined in reverse order.
  • the ECP time slot indication information indicates a time slot containing SSB
  • the time slot containing SSB is an ECP time slot, it also includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • determining the position symbol belonging to the NCP also includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the ECP time slot indication information indicates a time slot containing SSB, before the preset unit length ECP time slot indication information sent to the UE, it also includes:
  • this method is a method corresponding to the foregoing network-side device, reference may be made to the foregoing embodiments for the specific implementation manner of this method, and repeated descriptions will not be repeated.
  • a UE provided in this embodiment of the present application includes: a processor 1701 , a memory 1702 , a transceiver 1703 and a bus interface 1704 .
  • the processor 1701 is responsible for managing the bus architecture and general processing, and the memory 1702 can store data used by the processor 1701 when performing operations.
  • the transceiver 1703 is used to receive and transmit data under the control of the processor 1701 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 1701 and various circuits of the memory represented by the memory 1702 are linked together.
  • the bus architecture can also link together various other circuits, such as peripherals, voltage regulators, and power management circuits, etc., which are well known in the art and therefore will not be further described herein.
  • the bus interface provides the interface.
  • the processor 1701 is responsible for managing the bus architecture and general processing, and the memory 1702 can store data used by the processor 1701 when performing operations.
  • each step of the method for determining an ECP time slot may be implemented by an integrated logic circuit of hardware in the processor 1701 or instructions in the form of software.
  • the processor 1701 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 realize or execute the The disclosed methods, steps and logical block diagrams.
  • a general purpose processor may be a microprocessor or any conventional processor or the like.
  • the steps of the methods disclosed in connection with the embodiments of the present application may be directly implemented by a hardware processor, or implemented by a combination of hardware and software modules in the processor.
  • the software module can be located in random access memory, flash memory, read-only memory, programmable read-only memory or electrically erasable programmable memory, registers and other mature storage media in this field.
  • the storage medium is located in the memory 1702, and the processor 1701 reads the information in the memory 1702, and completes the steps of the method for determining the ECP time slot in combination with its hardware.
  • the processor 1701 is configured to read computer instructions in the memory 1702, and perform the following operations:
  • the network side device determine whether the ECP time slot indication information indicates the time slot containing SSB;
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information, determine the ECP time slot within the preset unit length sent by the network side device.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the high-level signaling including configuration information sent by the network side device is received, it is determined according to the configuration information whether the ECP time slot indication information indicates a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the network side device determines whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule
  • the default rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the sub-indication information is used to indicate whether the corresponding time slot is ECP time slot;
  • the first preset number is the difference between the total number of time slots within the preset unit length and the time slot adjustment amount.
  • determining whether the ECP time slot indication information indicates the time slot containing the SSB includes:
  • the first ECP time slot indication information does not indicate a time slot containing SSB
  • the second ECP time slot indication information indicates a time slot containing SSB .
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information
  • determine the ECP time within the preset unit length sent by the network side device gaps including:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • the ECP time slot indication information includes a plurality of sub-indication information, and the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot;
  • any first time slot within the preset unit length if the sub-indication information indicates that the corresponding time slot is an ECP time slot, then determine the first time slot as an ECP time slot.
  • the operations further include:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the second time slots determine the remaining sub-indication information corresponding to part or all of the second time slots, and the second time slots are within the preset unit length except the first A time slot other than a time slot that does not contain an SSB;
  • the remaining sub-indication information is the sub-indication information of the first time slot not corresponding to the ECP time slot indication information of the preset unit length.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined sequentially;
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in reverse order.
  • the operation further includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • the position symbol belonging to the NCP is determined, and the operation further includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the operation also includes:
  • a network side device provided by the embodiment of the present application includes: a processor 1801 , a memory 1802 , a transceiver 1803 and a bus interface 1804 .
  • the processor 1801 is responsible for managing the bus architecture and general processing, and the memory 1802 can store data used by the processor 1801 when performing operations.
  • the transceiver 1803 is used to receive and transmit data under the control of the processor 1801 .
  • the bus architecture may include any number of interconnected buses and bridges, specifically one or more processors represented by the processor 1801 and various circuits of the memory represented by the memory 1802 are linked together.
  • the bus architecture can also link together various other circuits, such as peripherals, voltage regulators, and power management circuits, etc., which are well known in the art and therefore will not be further described herein.
  • the bus interface provides the interface.
  • the processor 1801 is responsible for managing the bus architecture and general processing, and the memory 1802 can store data used by the processor 1801 when performing operations.
  • each step of the method for determining the ECP time slot may be completed by an integrated logic circuit of hardware in the processor 1801 or instructions in the form of software.
  • the processor 1801 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 realize or execute the The disclosed methods, steps and logical block diagrams.
  • a general purpose processor may be a microprocessor or any conventional processor or the like.
  • the steps of the methods disclosed in connection with the embodiments of the present application may be directly implemented by a hardware processor, or implemented by a combination of hardware and software modules in the processor.
  • the software module can be located in a mature storage medium in the field such as random access memory, flash memory, read-only memory, programmable read-only memory or electrically erasable programmable memory, register.
  • the storage medium is located in the memory 1802, and the processor 1801 reads the information in the memory 1802, and completes the steps of the method for determining the ECP time slot in combination with its hardware.
  • the processor 1801 is configured to read computer instructions in the memory 1802, and perform the following operations:
  • the ECP time slot indication information indicates the time slot containing the SSB
  • the ECP time slot indication information with a preset unit length is sent to the UE.
  • the operations also include:
  • the configuration information indicates that the ECP time slot indication information indicates the time slot containing the SSB; or the configuration information indicates that the ECP time slot indication information does not indicate the time slot containing the SSB.
  • the operations also include:
  • the high-level signaling that does not include configuration information is used to instruct the UE to determine whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule; wherein, the default The rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB, then the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slot indications information;
  • the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information indicates a time slot containing SSB
  • the ECP time slot indication information does not indicate a time slot containing an SSB, configure an ECP time slot indication information corresponding to the preset unit length.
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot indication information of a preset unit length sent to the UE includes:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • each first time slot in the preset unit length is an ECP time slot
  • the ECP time slot indication information of the preset unit length is determined.
  • the ECP time slot indication information does not indicate a time slot containing SSB, based on the sub-indication information corresponding to each first time slot in the preset unit length, determine the ECP time slot indication information, including:
  • the second time slot is a time slot that does not contain an SSB except the first time slot within the preset unit length.
  • the first time slot within the preset unit length and the ECP time slot indication information are determined sequentially;
  • Both the first time slot within the preset unit length and the indication information of the ECP time slot are determined in reverse order.
  • the operation further includes:
  • the position symbols belonging to the NCP are determined.
  • determining the position symbol belonging to the NCP includes:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • the position symbol belonging to the NCP is determined, and the operation further includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the operation further includes:
  • a UE 1900 provided in the embodiment of this application includes:
  • An indication determining module 1901 configured to determine whether the ECP time slot indication information indicates a time slot containing SSB according to an indication of the network side device;
  • ECP time slot determination module 1902 configured to determine the ECP time within the preset unit length sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information Gap.
  • the indication determination module 1901 determines whether the ECP time slot indication information indicates a time slot containing SSB according to the indication of the network side device, including:
  • the high-level signaling including configuration information sent by the network side device is received, it is determined according to the configuration information whether the ECP time slot indication information indicates a time slot containing SSB.
  • the indication determination module 1901 determines whether the ECP time slot indication information indicates a time slot containing SSB according to the indication of the network side device, including:
  • the network side device determines whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule
  • the default rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • the indication determination module 1901 determines whether the ECP time slot indication information indicates a time slot containing SSB according to the indication of the network side device, including:
  • the sub-indication information is used to indicate whether the corresponding time slot is ECP time slot;
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the indication determination module 1901 determines whether the ECP time slot indication information indicates a time slot containing SSB according to the indication of the network side device, including:
  • the first ECP time slot indication information does not indicate a time slot containing SSB
  • the second ECP time slot indication information indicates a time slot containing SSB .
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the ECP time slot determination module 1902 determines the preset time slot sent by the network side device according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information.
  • ECP slots within a unit length including:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • the ECP time slot indication information includes a plurality of sub-indication information, and the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot;
  • any first time slot within the preset unit length if the sub-indication information indicates that the corresponding time slot is an ECP time slot, then determine the first time slot as an ECP time slot.
  • the ECP time slot indication information does not indicate a time slot containing SSB, and the total number of sub-indication information in the ECP time slot indication information of the preset unit length is greater than the preset unit length
  • the total number of first time slots in the ECP time slot determination module 1902 is also used for:
  • the order of the first time slots in the next preset unit length determine the remaining sub-indication information corresponding to some or all of the first time slots in the next preset unit length;
  • the second time slots determine the remaining sub-indication information corresponding to part or all of the second time slots, and the second time slots are within the preset unit length except the first A time slot other than a time slot that does not contain an SSB;
  • the remaining sub-indication information is the sub-indication information of the first time slot not corresponding to the ECP time slot indication information of the preset unit length.
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined sequentially;
  • the first time slots within the preset unit length and the sub-indicator information corresponding to each first time slot are determined in reverse order.
  • the ECP time slot indication information indicates a time slot containing SSB
  • the ECP time slot determining module 1902 determines the time slot containing SSB as an ECP time slot, it is further used to:
  • the position symbols belonging to the NCP are determined.
  • the ECP time slot determining module 1902 determines the position symbol belonging to the NCP based on the SSB position symbol in the time slot containing the SSB, including:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • the ECP time slot determination module 1902 determines the position symbol belonging to the NCP based on the SSB position symbol in the time slot containing the SSB, and further includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the ECP time slot determination module 1902 determines the time slot sent by the network side device at the ECP according to the determination result of whether the ECP time slot indication information indicates a time slot containing SSB and the ECP time slot indication information. Before the ECP time slot within the preset unit length, it is also used for:
  • a network side device 2000 provided in the embodiment of the present application includes:
  • the sending module 2001 is configured to send ECP time slot indication information with a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB.
  • the sending module 2001 is also used to:
  • the configuration information indicates that the ECP time slot indication information indicates the time slot containing the SSB; or the configuration information indicates that the ECP time slot indication information does not indicate the time slot containing the SSB.
  • the sending module 2001 is also used to:
  • the high-level signaling that does not include configuration information is used to instruct the UE to determine whether the ECP time slot indication information indicates a time slot containing SSB based on a default rule; wherein, the default The rule is that the ECP time slot indication information indicates a time slot containing SSB, or the ECP time slot indication information does not indicate a time slot containing SSB.
  • the sending module 2001 sends the ECP time slot indication information of a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB, including:
  • the total number of configuration sub-indication information is greater than the first preset number of ECP time slot indication information; otherwise, the total number of configuration sub-indication information is not greater than the first preset number of ECP time slots instructions;
  • the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the first preset number is a difference between the total number of time slots within the preset unit length and a time slot adjustment amount.
  • the sending module 2001 sends the ECP time slot indication information of a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB, including:
  • the ECP time slot indication information indicates a time slot containing SSB
  • the ECP time slot indication information does not indicate a time slot containing an SSB, configure one piece of ECP time slot indication information corresponding to the preset unit length.
  • the sum of the total number of sub-indication information in the first ECP time slot indication information and the total number of sub-indication information in the second ECP time slot indication information is the preset unit The total number of time slots within the length; wherein, the sub-indication information is used to indicate whether the corresponding time slot is an ECP time slot.
  • the sending module 2001 sends the ECP time slot indication information of a preset unit length to the UE according to whether the ECP time slot indication information indicates a time slot containing an SSB, including:
  • the ECP time slot indication information does not indicate a time slot containing SSB, then according to the sequence of time slots that do not contain SSB in the preset unit length and the preset indication rule, from the predetermined Assuming that the unit length does not contain SSB in the time slot, determine the first time slot that can be indicated in the preset unit length; if the ECP time slot indication information indicates a time slot containing SSB, then according to the preset unit length The order of all time slots in the time slot and the preset indication rule determine the first time slot that can be indicated in the preset unit length from all the time slots in the preset unit length;
  • each first time slot in the preset unit length is an ECP time slot
  • the ECP time slot indication information of the preset unit length is determined.
  • the sending module 2001 determines the preset Unit-length ECP slot indication information, including:
  • the second time slot is a time slot that does not contain an SSB except the first time slot within the preset unit length.
  • the first time slot within the preset unit length and the ECP time slot indication information are determined sequentially;
  • Both the first time slot within the preset unit length and the indication information of the ECP time slot are determined in reverse order.
  • the ECP time slot indication information indicates a time slot containing SSB
  • the sending module 2001 determines that the time slot containing SSB is an ECP time slot, it is further used to:
  • the position symbols belonging to the NCP are determined based on the SSB position symbols in the slot containing the SSB.
  • the sending module 2001 determines the position symbol belonging to the NCP based on the SSB position symbol in the time slot containing the SSB, including:
  • All the position symbols in the half time slot where the SSB position symbols in the time slot containing the SSB are located are determined as the position symbols belonging to the NCP.
  • the sending module 2001 determines the position symbol belonging to the NCP based on the SSB position symbol in the time slot containing the SSB, and further includes:
  • the position symbol of the PDCCH that needs to send the system broadcast message in the time slot containing the SSB is determined as the position symbol belonging to the NCP.
  • the sending module 2001 is further used to:
  • An embodiment of the present application provides a storage medium, which stores computer-executable instructions, and the computer-executable instructions are used to cause a computer to execute the method for determining an ECP time slot as executed by the above UE.
  • An embodiment of the present application provides a storage medium, which stores computer-executable instructions, and the computer-executable instructions are used to cause a computer to execute the method for determining an ECP time slot as executed by the network-side device.
  • the above-mentioned storage medium can be any available medium or data storage device that can be accessed by a computer, including but not limited to magnetic storage (such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.), optical storage (such as CD, DVD, BD, HVD, etc.), and semiconductor memory (such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state hard drive (SSD)), etc.
  • magnetic storage such as floppy disk, hard disk, magnetic tape, magneto-optical disk (MO), etc.
  • optical storage such as CD, DVD, BD, HVD, etc.
  • semiconductor memory such as ROM, EPROM, EEPROM, non-volatile memory (NAND FLASH), solid-state hard drive (SSD)
  • the present application may also be implemented in hardware and/or software (including firmware, resident software, microcode, etc.). Still further, the present application may take the form of a computer program product on a computer-usable or computer-readable storage medium having computer-usable or computer-readable program code embodied in the medium for use by an instruction execution system or Used in conjunction with command execution systems.
  • a computer-usable or computer-readable medium may be any medium that may contain, store, communicate, transmit, or convey a program for use by, or in connection with, an instruction execution system, apparatus, or device device or equipment used.

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Abstract

本申请实施例涉及一种ECP时隙确定方法、用户设备以及网络侧设备,该方法包括:UE根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。上述方法,ECP时隙指示信息可以指示含有SSB的时隙,也可以不指示含有SSB的时隙,UE根据网络侧设备的指示,灵活地确定ECP时隙指示信息是否指示含有SSB的时隙;进而根据上述确定结果以及ECP时隙指示信息,准确地确定网络侧设备发送的预设单位长度内的ECP时隙,保障了网络侧灵活部署。

Description

一种ECP时隙确定方法、用户设备以及网络侧设备
相关申请的交叉引用
本申请要求在2021年09月14日提交中国专利局、申请号为202111084150.1、申请名称为“一种ECP时隙确定方法、用户设备以及网络侧设备”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
本申请涉及无线通信技术领域,特别涉及一种ECP时隙确定方法、用户设备以及网络侧设备。
背景技术
随着通信技术的发展,需要支持速率更高的视频流媒体业务,可采用广播的模式进行视频流媒体业务的传输,即无需用户设备反馈信息,即可接收视频流媒体业务。单频网(single frequency network,SFN)技术能够有效提升业务传输效率。SFN技术虽然能够提高业务的传输速率和用户覆盖率,但需要扩展循环前缀(Extend Cyclic Prefix,ECP)的支持,当数据传输的时隙为ECP时隙时,需要通知用户设备,以使用户设备按照ECP的相关参数进行数据的接收。
在LTE系统中,同步信号块(Synchronous signaling block,SSB)的传输位置是固定不变的,包含初始接入信号的时隙以及做单播调度的时隙默认为普通循环前缀(Normal Cyclic Prefix,NCP),通过指示信息指示除包含初始接入信号的时隙以及做单播调度的时隙之外的其他时隙是否为ECP时隙。
在新空口(New radio,NR)系统中,一个无线帧包含有多个候选位置,可通过任一/任多候选位置传输SSB,上述确定ECP时隙的方式并不适用于NR系统。
发明内容
本申请提供一种ECP时隙确定方法、用户设备以及网络侧设备,用以解决NR系统中确定ECP时隙的问题。
第一方面,本申请实施例提供一种ECP时隙确定方法,应用于用户设备(User Equipment,UE)中,该方法包括:
根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;
根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的 时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,且所述预设单位长度的ECP时隙指示信息中子指示信息的总数,大于所述预设单位长度内的第一时隙的总数,则所述方法还包括:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙;
其中,所述剩余子指示信息为所述预设单位长度的ECP时隙指示信息中没有对应的第一时隙的子指示信息。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在将含有SSB的时隙确定为ECP时隙后,还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的物理下行控制信道(Physical Downlink Control Channel,PDCCH)的位置符号,确定为属于NCP 的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙之前,还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
第二方面,本申请实施例提供一种ECP时隙确定方法,应用于网络侧设备,该方法包括:
根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,还包括:
向所述UE发送包含配置信息的高层信令;
其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,还包括:
向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的 时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息,包括:
基于所述预设单位长度内各第一时隙对应的子指示信息,以及下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息;和/或
基于所述预设单位长度内各第一时隙对应的子指示信息,以及部分或全部第二时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息,其中,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在确定含有SSB的时隙为ECP时隙后,还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息之前,还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
第三方面,本申请实施例提供一种UE,包括:处理器以及存储器;
所述存储器,用于存储计算机指令;
所述处理器,用于读取所述计算机指令,执行以下操作:
根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;
根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示 信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,且所述预设单位长度的ECP时隙指示信息中子指示信息的总数,大于所述预 设单位长度内的第一时隙的总数,则所述操作还包括:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙;
其中,所述剩余子指示信息为所述预设单位长度的ECP时隙指示信息中没有对应的第一时隙的子指示信息。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在将含有SSB的时隙确定为ECP时隙后,所述操作还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,所述操作还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预 设单位长度内的ECP时隙之前,所述操作还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
第四方面,本申请实施例提供一种网络侧设备,包括:处理器以及存储器;
所述存储器,用于存储计算机指令;
所述处理器,用于读取所述计算机指令,执行以下操作:
根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,所述操作还包括:
向所述UE发送包含配置信息的高层信令;
其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述操作还包括:
向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息,包括:
基于所述预设单位长度内各第一时隙对应的子指示信息,以及下一预设 单位长度内部分或全部第一时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息;和/或
基于所述预设单位长度内各第一时隙对应的子指示信息,以及部分或全部第二时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息,其中,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在确定含有SSB的时隙为ECP时隙后,所述操作还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,所述操作还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息之前,所述操作还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
第五方面,本申请实施例提供一种UE,包括:
指示确定模块,用于根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;和/或
ECP时隙确定模块,用于根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
第六方面,本申请实施例提供一种网络侧设备,包括:
发送模块,用于根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
第七方面,本申请实施例提供一种存储介质,所述存储介质存储有计算机可执行指令,所述计算机可执行指令用于使计算机执行如第一方面或者第二方面任一项所述的方法。
本申请的上述实施例提供的一种方案中,ECP时隙指示信息可以指示含有SSB的时隙,也可以不指示含有SSB的时隙,UE根据网络侧设备的指示,灵活地确定ECP时隙指示信息是否指示含有SSB的时隙;进而根据上述确定结果以及ECP时隙指示信息,准确地确定网络侧设备发送的预设单位长度内的ECP时隙,能够兼容现有设计的灵活性,保障网络侧设备灵活部署。
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LTE系统ECP时隙指示示意图;
图2A为本申请实施例提供的NR系统中无线帧示意图;
图2B为本申请实施例提供的NR系统中时隙内发送SSB的候选位置示意图;
图2C为本申请实施例提供的一种SSB结构示意图;
图3为本申请实施例提供的第一种ECP时隙确定方法的交互流程图;
图4为本申请实施例提供的第二种ECP时隙确定方法的交互流程图;
图5为本申请实施例提供的第三种ECP时隙确定方法的交互流程图;
图6为本申请实施例提供的第四种ECP时隙确定方法的交互流程图;
图7为本申请实施例提供的第五种ECP时隙确定方法的交互流程图;
图8为本申请实施例提供的第六种ECP时隙确定方法的交互流程图;
图9为本申请实施例提供的第七种ECP时隙确定方法的交互流程图;
图10A为本申请实施例提供的NCP时隙的示意图;
图10B为本申请实施例提供的ECP时隙的示意图;
图11为本申请实施例提供的第八种ECP时隙确定方法的交互流程图;
图12为本申请实施例提供的第一种SSB发送位置的指示示意图;
图13A为本申请实施例提供的第二种SSB发送位置的指示示意图;
图13B为本申请实施例提供的第一种NR系统中ECP时隙指示示意图;
图13C为本申请实施例提供的第二种NR系统中ECP时隙指示示意图;
图13D为本申请实施例提供的第一种含有SSB的时隙内位置符号示意图;
图13E为本申请实施例提供的第二种含有SSB的时隙内位置符号示意图;
图14A为本申请实施例提供的第三种SSB发送位置的指示示意图;
图14B为本申请实施例提供的第三种NR系统中ECP时隙指示示意图;
图14C为本申请实施例提供的第四种NR系统中ECP时隙指示示意图;
图14D为本申请实施例提供的第三种含有SSB的时隙内位置符号示意图;
图14E为本申请实施例提供的第四种含有SSB的时隙内位置符号示意图;
图15A为本申请实施例提供的第四种SSB发送位置的指示示意图;
图15B为本申请实施例提供的第五种NR系统中ECP时隙指示示意图;
图15C为本申请实施例提供的第六种NR系统中ECP时隙指示示意图;
图15D为本申请实施例提供的第五种含有SSB的时隙内位置符号示意图;
图15E为本申请实施例提供的第六种含有SSB的时隙内位置符号示意图;
图16为本申请实施例提供的一种ECP时隙确定方法的流程示意图;
图17为本申请实施例提供的一种UE的结构图;
图18为本申请实施例提供的一种网络侧设备的结构图;
图19为本申请实施例提供的另一种UE的结构图;
图20为本申请实施例提供的另一种网络侧设备的结构图。
具体实施方式
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分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
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)本申请实施例中术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。
(4)本申请实施例中“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。
(5)本申请实施例涉及的UE,可以是指向用户提供语音和/或数据连通 性的设备,具有无线连接功能的手持式设备、或连接到无线调制解调器的其他处理设备等。在不同的系统中,UE的名称可能也不相同。无线UE可以经无线接入网(Radio Access Network,RAN)与一个或多个核心网(Core Network,CN)进行通信,无线UE可以是移动终端设备,如移动电话(或称为“蜂窝”电话)和具有移动终端设备的计算机,例如,可以是便携式、袖珍式、手持式、计算机内置的或者车载的移动装置,它们与无线接入网交换语言和/或数据。例如,个人通信业务(Personal Communication Service,PCS)电话、无绳电话、会话发起协议(Session Initiated Protocol,SIP)话机、无线本地环路(Wireless Local Loop,WLL)站、个人数字助理(Personal Digital Assistant,PDA)等设备。无线UE也可以称为系统、订户单元(subscriber unit)、订户站(subscriber station),移动站(mobile station)、移动台(mobile)、远程站(remote station)、接入点(access point)、远程终端设备(remote terminal)、接入终端设备(access terminal)、用户终端设备(user terminal)、用户代理(user agent)、用户装置(user device),本申请实施例中并不限定。
(6)本申请实施例涉及的网络侧设备,可以是基站,该基站可以包括多个为UE提供服务的小区。根据具体应用场合不同,基站又可以称为接入点,或者可以是接入网中在空中接口上通过一个或多个扇区与无线终端设备通信的设备,或者其它名称。网络侧设备可用于将收到的空中帧与网际协议(Internet Protocol,IP)分组进行相互更换,作为无线终端设备与接入网的其余部分之间的路由器,其中接入网的其余部分可包括IP通信网络。网络侧设备还可协调对空中接口的属性管理。例如,本申请实施例涉及的网络侧设备可以是全球移动通信系统(Global System for Mobile communications,GSM)或码分多址接入(Code Division Multiple Access,CDMA)中的网络侧设备(Base Transceiver Station,BTS),也可以是带宽码分多址接入(Wide-band Code Division Multiple Access,WCDMA)中的网络侧设备(NodeB),还可以是长期演进(long term evolution,LTE)系统中的演进型网络侧设备(evolutional Node B,eNB或e-NodeB)、5G网络架构(next generation system)中的5G 基站(gNB),也可以是家庭演进基站(Home evolved Node B,HeNB)、中继节点(relay node)、家庭基站(femto)、微微基站(pico)等,本申请实施例中并不限定。在一些网络结构中,网络侧设备可以包括集中单元(centralized unit,CU)节点和分布单元(distributed unit,DU)节点,集中单元和分布单元也可以地理上分开布置。
网络侧设备与UE之间可以各自使用一或多根天线进行多输入多输出(Multi Input Multi Output,MIMO)传输,MIMO传输可以是单用户MIMO(Single User MIMO,SU-MIMO)或多用户MIMO(Multiple User MIMO,MU-MIMO)。根据根天线组合的形态和数量,MIMO传输可以是2D-MIMO、3D-MIMO、FD-MIMO或massive-MIMO,也可以是分集传输或预编码传输或波束赋形传输等。
本申请实施例提供的技术方案可以适用于多种系统,尤其是5G系统。例如适用的系统可以是全球移动通讯(global system of mobile communication,GSM)系统、码分多址(code division multiple access,CDMA)系统、宽带码分多址(Wideband Code Division Multiple Access,WCDMA)通用分组无线业务(general packet radio service,GPRS)系统、长期演进(long term evolution,LTE)系统、高级长期演进(long term evolution advanced,LTE-A)系统、通用移动系统(universal mobile telecommunication system,UMTS)、全球互联微波接入(worldwide interoperability for microwave access,WiMAX)系统、5G NR系统等。这多种系统中均包括UE和网络侧设备。系统中还可以包括核心网部分,例如演进的分组系统(Evloved Packet System,EPS)、5G系统(5GS)等。
在LTE系统中,SSB的传输位置是固定不变的。图1以子载波间隔(subcarrier spacing,SCS)=15KHz的情况,一个无线帧为例进行说明,在该无线帧中,SSB的传输位置是在时隙#0和时隙#5,时隙#4和时隙#9用于做单播调度,时隙#0、时隙#4、时隙#5以及时隙#9默认为NCP。通过6比特的ECP时隙指示信息分别指示除包含初始接入信号的时隙以及做单播调度的时 隙之外的其他时隙是否为ECP时隙。参阅图1所示,ECP时隙指示信息中b0指示时隙#1是否为ECP时隙,b1指示时隙#2是否为ECP时隙,b2指示时隙#3是否为ECP时隙,b3指示时隙#6是否为ECP时隙,b4指示时隙#7是否为ECP时隙,b5指示时隙#8是否为ECP时隙。
在NR系统中,一个无线帧包含有多个候选位置。图2A以SCS=15KHz的情况,一个无线帧为例进行说明,该无线帧内有时隙#0~时隙#9,其中时隙#0~时隙#3这4个时隙都可以发送SSB;另外,时隙#0~时隙#3各有2各候选位置可以发送SSB,图2B以时隙#0为例,时隙#0包含14个位置符号,记作位置符号#0~位置符号#13,位置符号#2~位置符号#5为一个可以发送SSB的候选位置,位置符号#8~位置符号#11为另一个可以发送SSB的候选位置。其中,在位置符号#8~位置符号#11中的SSB结构可参阅图2C所示,SSB包括主同步信号(Primary Synchronous Signal,PSS)、次同步信号(Second Synchronous Signal,SSS)以及物理广播信道(Physical Broadcast Channel,PBCH),除了在PSS和SSS后面的符号是PBCH的数据之外,SSS的两端也有PBCH的数据;UE在小区搜索时,根据PSS/SSS进行同步搜索,完成同步搜索后,接收PBCH。根据上述图2A~图2C可知,一个无线帧中最多有8个可以发送SSB的候选位置,即可以通过任一/任多候选位置传输SSB,发送SSB的时隙的个数以及位置符号都是不固定的。因此,上述LTE系统中确定ECP时隙的方式并不适用于NR系统。
本申请实施例为了解决NR系统中确定ECP时隙的问题,提供一种ECP时隙确定方法、用户设备以及网络侧设备,本实施例中ECP时隙指示信息可以指示含有SSB的时隙,也可以不指示含有SSB的时隙,UE根据网络侧设备的指示,灵活地确定ECP时隙指示信息是否指示含有SSB的时隙;进而根据上述确定结果以及ECP时隙指示信息,确定网络侧设备发送的预设单位长度内的ECP时隙,能够兼容现有设计的灵活性,保障网络侧设备灵活部署。
本申请实施例可以应用于5G系统,也可应用于其他系统。
下面结合附图对本申请实施例进行详细说明。
在说明过程中,将分别从UE与网络侧设备的实施,以及二者配合实施进行说明。这样的说明方式并不意味着二者必须配合实施、或者必须单独实施,实际上,当UE与网络侧设备分开实施时,其也各自解决UE、网络侧设备的问题,而二者结合使用时,会获得更好的技术效果。
图3为本申请实施例提供的第一种ECP时隙确定方法的交互流程图,如图3所示,可以包括:
步骤S301:网络侧设备根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
在NR系统,发送SSB的时隙较为灵活,可以通过任一/任多候选位置传输SSB,因此发送SSB的时隙的个数以及位置符号都是不固定的,ECP时隙指示信息是否指示含有SSB的时隙也是可以灵活设置的。示例性的,网络侧设备根据业务需求,确定ECP时隙指示信息是否指示含有SSB的时隙。
实施中,网络侧设备根据ECP时隙指示信息是指示含有SSB的时隙,还是不指示含有SSB的时隙,来确定向UE发送的预设单位长度的ECP时隙指示信息。即针对一个预设单位长度,在指示含有SSB的时隙,以及不指示含有SSB的时隙时,所对应的ECP时隙指示信息是不同的。
本实施例,上述ECP时隙指示信息包含多个子指示信息,各子指示信息用于指示对应时隙是否为ECP时隙。也就是说,如果ECP时隙指示信息指示含有SSB的时隙,ECP时隙指示信息中有用于指示含有SSB的时隙是否为ECP时隙的子指示信息;如果ECP时隙指示信息不指示含有SSB的时隙,ECP时隙指示信息中没有用于指示含有SSB的时隙是否为ECP时隙的子指示信息。
步骤S302:UE根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙。
如上所述,针对一个预设单位长度,在指示含有SSB的时隙,以及不指示含有SSB的时隙时,所对应的ECP时隙指示信息是不同的。因此,UE需要根据网络侧设备的指示,来确定ECP时隙指示信息是否指示含有SSB的时隙;进而UE在收到预设单位长度的时隙后,才能准确地确定该预设单位长度 内的ECP时隙。
步骤S303:UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
上述方案,ECP时隙指示信息可以指示含有SSB的时隙,也可以不指示含有SSB的时隙,UE根据网络侧设备的指示,灵活地确定ECP时隙指示信息是否指示含有SSB的时隙;进而根据上述确定结果以及ECP时隙指示信息,准确地确定网络侧设备发送的预设单位长度内的ECP时隙,能够兼容现有设计的灵活性,保障网络侧设备灵活部署。
图4为本申请实施例提供的第二种ECP时隙确定方法的交互流程图,如图4所示,可以包括:
步骤S401:网络侧设备根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
该步骤S401的具体实现方式可参阅上述实施例,此处不再赘述。
步骤S402:网络侧设备向UE发送包含配置信息的高层信令。
上述高层信令,可以是通过广播控制信道传输的系统广播消息,也可以是组播控制信道传输的广播组播配置消息,还可以是基于UE的无线链路控制消息,或者基于媒体接入层的控制消息,本实施例对此不做具体限定。
实施中,可以在上述高层信令中增加一个配置信息,记作isSSBslotinlcuded。示例性的,当isSSBslotinlcuded配置为1时,表征ECP时隙指示信息指示含有SSB的时隙,即ECP时隙指示信息中有用于指示含有SSB的时隙是否为ECP时隙的子指示信息;当配置为0时,表征ECP时隙指示信息不指示含有SSB的时隙,即ECP时隙指示信息中没有用于指示含有SSB的时隙是否为ECP时隙的子指示信息。
可以理解,上述isSSBslotinlcuded的配置只是示例性说明,当isSSBslotinlcuded配置为1时,也可表征ECP时隙指示信息不指示含有SSB的时隙;当isSSBslotinlcuded配置为0时,也可表征ECP时隙指示信息指示 含有SSB的时隙;或者isSSBslotinlcuded也可配置为其他值,本申请对此不做具体限定,可以根据实际应用场景进行配置。
步骤S403:UE根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
如上所述,配置信息的配置值表征了ECP时隙指示信息是否指示含有SSB的时隙,对应的,UE根据该配置信息,就能确定ECP时隙指示信息是否指示含有SSB的时隙,配置信息的具体配置可参照上述步骤,此处不再赘述。
步骤S404:UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
该步骤S404的具体实现方式可参阅上述实施例,此处不再赘述。
上述方案,网络侧设备在高层信令中增加配置信息,进行显性指示,该配置信息表征ECP时隙指示信息是否指示含有SSB的时隙,UE根据该配置信息可以直接确定ECP时隙指示信息是否指示含有SSB的时隙。
图5为本申请实施例提供的第三种ECP时隙确定方法的交互流程图,如图5所示,可以包括:
步骤S501:网络侧设备根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
该步骤S501的具体实现方式可参阅上述实施例,此处不再赘述。
步骤S502:网络侧设备向UE发送不包含配置信息的高层信令。
其中,高层信令的具体实现方式可参照上述实施例,此处不再赘述。
实施中,如果基于默认规则表征ECP时隙指示信息是否指示含有SSB的时隙,网络侧设备可以向UE发送不包含配置信息的高层信令。UE与网络侧设备采用相同的默认规则,默认规则可以根据实际应用场景进行设置,一些可选的实施例中,默认规则为ECP时隙指示信息指示含有SSB的时隙;另外一些可选的实施例中,默认规则为ECP时隙指示信息不指示含有SSB的时隙。
步骤S503:UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙。
当网络侧设备发送不包含配置信息的高层信令,说明要基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙。例如:默认规则为ECP时隙指示信息指示含有SSB的时隙,UE收到不包含配置信息的高层信令后,确定ECP时隙指示信息指示含有SSB的时隙;或者,默认规则为ECP时隙指示信息不指示含有SSB的时隙,UE收到不包含配置信息的高层信令后,确定ECP时隙指示信息不指示含有SSB的时隙。
步骤S504:UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
该步骤S504的具体实现方式可参阅上述实施例,此处不再赘述。
上述方案,UE与网络侧设备采用相同的默认规则,这样网络侧设备向UE发送不包含配置信息的高层信令,UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙,能够更加便捷地进行显性指示,满足不同应用场景的需求。
可以理解,上述图4实施例与图5实施例可以结合,即,如果可以基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙时,网络侧设备向UE发送不包含配置信息的高层信令;否则向UE发送包含配置信息的高层信令。具体实现方式可参照上述图4实施例与图5实施例,此处不再赘述。
图6为本申请实施例提供的第四种ECP时隙确定方法的交互流程图,如图6所示,可以包括:
步骤S601:网络侧设备若确定ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息。
如上所述,所述子指示信息用于指示对应时隙是否为ECP时隙。
一些可选的实施方式中,所述第一预设数量为所述预设单位长度内的时 隙总数与时隙调整量之间的差值。即第一预设数量N1=slotduration-K,其中,slotduration为预设单位长度内的时隙总数,K为时隙调整量。
以SCS=15KHz,预设单位长度为一个无线帧为例,预设单位长度内的时隙总数为10,即SCS=15KHz时,一个无线帧内有10个时隙。
上述时隙调整量可以为0、1、4等,本实施例对上述时隙调整量的确定方式不做具体限定,例如:
1)可以是协议预定的数值;
2)还可以是网络侧设备配置给UE的数值;
3)也可以是根据系统消息计算出来数值,如:根据系统消息,将网络侧设备发送的SSB所占时隙的个数作为K值;或者,将预设单位长度内包含SSB的最大时隙个数作为K值。
上述几种确定时隙调整量的方式只是示例性说明,实施中,只要UE采用与网络侧设备相同的方式确定时隙调整量即可,此处不再一一举例说明。
步骤S602:UE针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
本实施例,UE可采用上述任一方式确定时隙调整量(只要UE采用与网络侧设备相同的方式确定时隙调整量即可),进而确定第一预设数量;通过将预设单位长度的ECP时隙指示信息中子指示信息的总数(也就是该ECP时隙指示信息一共可以指示多少个时隙)与该第一预设数量进行比对;如果该预设单位长度的ECP时隙指示信息中子指示信息的总数大于第一预设数量,确定ECP时隙指示信息指示含有SSB的时隙;如果该预设单位长度的ECP时隙指示信息中子指示信息的总数不大于第一预设数量,确定ECP时隙指示信息不指示含有SSB的时隙。
步骤S603:UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度 内的ECP时隙。
该步骤S603的具体实现方式可参阅上述实施例,此处不再赘述。
上述方案,网络侧设备根据ECP时隙指示信息是否指示含有SSB的时隙,配置ECP时隙指示信息中子指示信息的总数与第一预设数量的大小关系;对应的,UE基于ECP时隙指示信息中子指示信息的总数与第一预设数量的大小关系,即可准确确定ECP时隙指示信息是否指示含有SSB的时隙,能够更加灵活地进行隐性指示,满足不同应用场景的需求。
图7为本申请实施例提供的第五种ECP时隙确定方法的交互流程图,如图7所示,可以包括:
步骤S701:网络侧设备若确定ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;若确定ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
实施中,针对任一预设单位长度,可以配置两套ECP时隙指示信息,第一ECP时隙指示信息包含第二预设数量子指示信息,不指示含有SSB的时隙;第二ECP时隙指示信息包含第三预设数量子指示信息,指示含有SSB的时隙,一些实施例中,第二ECP时隙指示信息还指示第一ECP时隙指示信息中没有被指示的不含有SSB的时隙。
本实施例,为了使UE区分上述第一ECP时隙指示信息以及第二ECP时隙指示信息,网络侧设备需要先向UE发送第一ECP时隙指示信息,再向UE发送第二ECP时隙指示信息。
一些可选的实施方式中,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数。即预设单位长度内的时隙总数N0=N2+N3,其中,N2为第一ECP时隙指示信息中子指示信息的总数(即上述第二预设数量), N3为第二ECP时隙指示信息中子指示信息的总数(即上述第三预设数量)。
还是以SCS=15KHz,预设单位长度为一个无线帧为例,预设单位长度内的时隙总数为10,即SCS=15KHz时,一个无线帧内有10个时隙;如果第一ECP时隙指示信息中子指示信息的总数为6,则第二ECP时隙指示信息中子指示信息的总数为4。
步骤S702:UE针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
本实施例,UE如果只收到预设单位长度对应的一个ECP时隙指示信息,就确定这个ECP时隙指示信息不指示含有SSB的时隙;
UE如果收到预设单位长度对应的两个ECP时隙指示信息,确定先收到的第一ECP时隙指示信息不指示含有SSB的时隙,后收到的第二ECP时隙指示信息指示含有SSB的时隙。
步骤S703:UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
该步骤S703的具体实现方式可参阅上述实施例,此处不再赘述。
上述方案,网络侧设备根据ECP时隙指示信息是否指示含有SSB的时隙,配置预设单位长度对应的ECP时隙指示信息的数量;UE基于预设单位长度对应的ECP时隙指示信息的数量,即可准确确定ECP时隙指示信息是否指示含有SSB的时隙,能够更加灵活地进行隐性指示,满足不同应用场景的需求。
针对ECP时隙指示信息不指示含有SSB的时隙的场景,图8为本申请实施例提供的第六种ECP时隙确定方法的交互流程图,如图8所示,可以包括:
步骤S801:网络侧设备针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序 以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;并确定所述预设单位长度内各第一时隙对应的子指示信息。
本实施例,上述预设的指示规则为预先设定的指示规则,如包括:需要指示预设单位长度内第几个时隙,具体的指示规则可以根据实际应用场景设定。
示例性的,网络侧设备基于预设的指示规则可以确定第几个时隙可以被指示,根据预设单位长度内不含有SSB的时隙的次序,确定该预设单位长度内可以被指示的第一时隙;进而根据第一时隙是否是ECP时隙,来确定各第一时隙对应的子指示信息(指示对应时隙是ECP时隙,或者指示对应时隙不是ECP时隙)。
步骤S802:网络侧设备基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
实施中,可以将预设单位长度内各第一时隙对应的子指示信息组合得到对应的ECP时隙指示信息。
一些具体的实施方式中,ECP时隙指示信息所包含的子指示信息的数量是固定的;然而,在ECP时隙指示信息不指示含有SSB的时隙时,是从不含有SSB的时隙中确定的第一时隙,可能会出现预设单位长度的ECP时隙指示信息中子指示信息的总数,大于该预设单位长度内的第一时隙的总数。例如:预设单位长度的ECP时隙指示信息包含8个子指示信息,该预设单位长度内有6个第一时隙,这样就有两个没有对应的第一时隙的剩余子指示信息。
基于此,在一些可选的实施方式中,如果预设单位长度的ECP时隙指示信息中子指示信息的总数,大于该预设单位长度内的第一时隙的总数,还包括以下步骤:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙 对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。以SCS=15KHz,预设单位长度为一个无线帧为例:
预设单位长度内有10个时隙,分别记作时隙#0~时隙#9,其中,时隙#1以及时隙#2为含有SSB的时隙,时隙#3、时隙#4、时隙#5、时隙#8以及时隙#9为第一时隙,那么时隙#0、时隙#6以及时隙#7就是第二时隙。
还是以上述两个剩余子指示信息为例:
这两个剩余子指示信息可以指示下一预设单位长度内前两个第一时隙;
这两个剩余子指示信息也可以指示该预设单位长度内前两个第二时隙,如上述时隙#0以及时隙#6;
还可以一个剩余子指示信息指示下一预设单位长度内前一个第一时隙,另一个剩余子指示信息指示该预设单位长度内前一个第二时隙的次序,如上述时隙#0。
实施中,可以将预设单位长度内各第一时隙对应的子指示信息,以及剩余子指示信息,组合得到对应的ECP时隙指示信息。
步骤S803:UE根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙。
该步骤S803的具体实现方式可参阅上述实施例,此处不再赘述。
步骤S804:UE针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙。
UE确定预设单位长度内可以被指示的第一时隙,与上述网络侧设备确定所述预设单位长度内可以被指示的第一时隙类似,此处不再赘述。
步骤S805:UE根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息。
实施中,各第一时隙对应有子指示信息,来指示对应的第一时隙是ECP 时隙,或者不是ECP时隙。基于此,UE需要根据预设单位长度内各第一时隙的次序以及预设单位长度的ECP时隙指示信息,确定预设单位长度内各第一时隙对应的子指示信息。
如上所述,可能会出现预设单位长度的ECP时隙指示信息中子指示信息的总数,大于该预设单位长度内的第一时隙的总数,这时,该预设单位长度的ECP时隙指示信息中除了指示该预设单位长度内第一时隙的子指示信息,还可能包括指示下一预设单位长度内第一时隙的剩余子指示信息,和/或指示该预设单位长度内第二时隙的子指示信息。
基于此,在一些可选的实施方式中,如果预设单位长度的ECP时隙指示信息中子指示信息的总数,大于预设单位长度内的第一时隙的总数,还包括以下步骤:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。
还是以上述两个剩余子指示信息为例:
如果两个剩余子指示信息指示下一预设单位长度内前两个第一时隙,就确定下一预设单位长度内前两个第一时隙对应的剩余子指示信息;
如果两个剩余子指示信息指示该预设单位长度内前两个第二时隙的次序,就确定该预设单位长度内前两个第二时隙对应的剩余子指示信息,如上述时隙#0以及时隙#6;
如果一个剩余子指示信息指示下一预设单位长度内前一个第一时隙,另一个剩余子指示信息指示该预设单位长度内前一个第二时隙的次序,就确定下一预设单位长度内前一个第一时隙对应的剩余子指示信息,以及该预设单位长度内前一个第二时隙对应的剩余子指示信息,如上述时隙#0对应的剩余子指示信息。
步骤S806:UE针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
如上所述,子指示信息用于指示对应的第一时隙是ECP时隙,或者不是ECP时隙,针对预设单位长度内的任一第一时隙,如果子指示信息指示对应时隙为ECP时隙,可以准确地将该第一时隙确定为ECP时隙。
另外,在上述一些可选的实施例中,可能会有剩余子指示信息指示该预设单位长度内的第二时隙,对应的,还需要基于这些第二时隙对应的剩余子指示信息,确定这些第二时隙是否为ECP时隙。
一些可选的实施方式中,上述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的。
即上述步骤S801可通过如下方式实现:
网络侧设备针对任一预设单位长度,根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,顺序确定所述预设单位长度内可以被指示的第一时隙;并顺序确定所述预设单位长度内各第一时隙对应的子指示信息。
上述步骤S802可通过如下方式实现:
网络侧设备基于所述预设单位长度内各第一时隙对应的子指示信息,顺序确定预设单位长度的ECP时隙指示信息。
上述步骤S804可通过如下方式实现:
UE针对任一预设单位长度,根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,顺序确定所述预设单位长度内可以被指示的第一时隙。
上述步骤S805可通过如下方式实现:
UE根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,顺序确定所述预设单位长度内各第一时隙对应的子指示信息。
下面以一个具体的示例进行说明:
以SCS=15KHz,预设单位长度为一个无线帧为例,预设单位长度内有10个时隙,分别记作时隙#0~时隙#9,时隙#1以及时隙#2为含有SSB的时隙,预设的指示规则为需要指示预设单位长度内第2、3、4、7、8、9个时隙,网络侧设备顺序确定,预设单位长度内第2、3、4、7、8个不含有SSB的时隙分别为时隙#3、时隙#4、时隙#5、时隙#8以及时隙#9,预设单位长度内没有第9个不含有SSB的时隙;网络侧设备分别顺序确定时隙#3、时隙#4、时隙#5、时隙#8以及时隙#9各自对应的子指示信息;并基于时隙#3对应的子指示信息、时隙#4对应的子指示信息、时隙#5对应的子指示信息、时隙#8对应的子指示信息以及时隙#9对应的子指示信息,这个次序确定该无线帧的ECP时隙指示信息。UE顺序确定预设单位长度内第2、3、4、7、8个不含有SSB的时隙分别为时隙#3、时隙#4、时隙#5、时隙#8以及时隙#9;并分别确定时隙#3、时隙#4、时隙#5、时隙#8以及时隙#9各自对应的子指示信息。
上述示例只是为了说明如何通过顺序方式确定预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息,本申请并不以此为限。
另外一些可选的实施方式中,上述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
即上述步骤S801可通过如下方式实现:
网络侧设备针对任一预设单位长度,根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,逆序确定所述预设单位长度内可以被指示的第一时隙;并逆序确定所述预设单位长度内各第一时隙对应的子指示信息。
上述步骤S802可通过如下方式实现:
网络侧设备基于所述预设单位长度内各第一时隙对应的子指示信息,逆序确定预设单位长度的ECP时隙指示信息。
上述步骤S804可通过如下方式实现:
UE针对任一预设单位长度,根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中, 逆序确定所述预设单位长度内可以被指示的第一时隙。
上述步骤S805可通过如下方式实现:
UE根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,逆序确定所述预设单位长度内各第一时隙对应的子指示信息。
下面以一个具体的示例进行说明:
以SCS=15KHz,预设单位长度为一个无线帧为例,预设单位长度内有10个时隙,分别记作时隙#0~时隙#9,时隙#1以及时隙#2为含有SSB的时隙,预设的指示规则为需要指示预设单位长度内第1~8个时隙,网络侧设备逆序确定,预设单位长度内第1~8个不含有SSB的时隙分别为时隙#9、时隙#8、时隙#7、时隙#6、时隙#5、时隙#4、时隙#3以及时隙#0;网络侧设备分别顺序确定时隙#9、时隙#8、时隙#7、时隙#6、时隙#5、时隙#4、时隙#3以及时隙#0各自对应的子指示信息;时隙#9对应的子指示信息、时隙#8对应的子指示信息、时隙#7对应的子指示信息、时隙#6对应的子指示信息、时隙#5对应的子指示信息、时隙#4对应的子指示信息、时隙#3对应的子指示信息以及时隙#0对应的子指示信息,这个次序确定该无线帧的ECP时隙指示信息。UE逆序确定预设单位长度内第1~8个不含有SSB的时隙分别为时隙#9、时隙#8、时隙#7、时隙#6、时隙#5、时隙#4、时隙#3以及时隙#0;并分别确定时隙#9、时隙#8、时隙#7、时隙#6、时隙#5、时隙#4、时隙#3以及时隙#0各自对应的子指示信息。
上述示例只是为了说明如何通过逆序方式确定预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息,本申请并不以此为限。
通过逆序方式确定预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息,网络侧设备可以将SSB的发送位置集中配置在预设单位长度的前几个时隙,这样减少网络侧设备部署SSB对ECP时隙指示的影响。
针对ECP时隙指示信息指示含有SSB的时隙的场景,图9为本申请实施例提供的第七种ECP时隙确定方法的交互流程图,如图9所示,可以包括:
步骤S901:网络侧设备针对任一预设单位长度,若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;并确定所述预设单位长度内各第一时隙对应的子指示信息。
其中,预设的指示规则可参阅上述实施例。
示例性的,网络侧设备基于预设的指示规则可以确定第几个时隙可以被指示,根据预设单位长度内所有时隙的次序,确定该预设单位长度内可以被指示的第一时隙;进而根据第一时隙是否是ECP时隙,来确定各第一时隙对应的子指示信息(指示对应时隙是ECP时隙,或者指示对应时隙不是ECP时隙)。
步骤S902:网络侧设备基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
步骤S903:UE根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙。
该步骤S902~S903的具体实现方式可参阅上述实施例,此处不再赘述。
步骤S904:UE针对任一预设单位长度,若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙。
UE确定预设单位长度内可以被指示的第一时隙,与上述网络侧设备确定所述预设单位长度内可以被指示的第一时隙类似,此处不再赘述。
步骤S905:UE根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息。
步骤S906:UE针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
该步骤S905~S906的具体实现方式可参阅上述实施例,此处不再赘述。
针对ECP时隙指示信息指示含有SSB的时隙的场景,上述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均也可通过顺序方式或者逆序方式确定,具体实现方式可参照上述实施例,此处不再赘述。
实施中,针对ECP时隙指示信息指示含有SSB的时隙的场景,含有SSB的时隙可能被指示为ECP时隙,由于需要使用NCP发送SSB,因此,含有SSB的时隙被指示为ECP时隙时,只能有部分位置符号是属于ECP的位置符号。
基于此,在一些可选的实施方式中,若ECP时隙指示信息指示含有SSB的时隙,且确定含有SSB的时隙为ECP时隙,则在步骤S902之后,还包括:
网络侧设备基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
对应的,在步骤S906之后,还包括:
UE基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
参阅图10A所示,一个NCP时隙中包含14个NCP位置符号;
参阅图10B所示,一个ECP时隙中包含12个ECP位置符号。
上述基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,可通过但不限于如下方式实现:
1)将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号。例如:
含有SSB的时隙中的SSB位置符号为位置符号#8~位置符号#11,将位置符号#8~位置符号#11确定为属于NCP的位置符号;
2)将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。例如:
含有SSB的时隙中的SSB位置符号为位置符号#8~位置符号#11,一个时隙中有14个NCP的位置符号,或者12个ECP的位置符号,将后7个位置符号确定为属于NCP的位置符号;将前6个位置符号确定为属于ECP的位置符 号。
上述两种方式只是示例性说明,实施中也可采用其他方式确定属于NCP的位置符号。
此外,除了需要使用NCP发送SSB,还需要使用NCP发送系统广播消息的PDCCH,因此,含有SSB的时隙被指示为ECP时隙时,还有部分位置符号是用于发送系统广播消息的PDCCH的属于NCP的位置符号。
一些可选的实施方式中,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
通过使用ECP符号调度PDSCH或者传输PDCCH,能够更好地兼容NR的单播设计。
图11为本申请实施例提供的第八种ECP时隙确定方法的交互流程图,如图11所示,可以包括:
步骤S1101:网络侧设备确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
如上所述,在一些场景中ECP时隙指示信息不指示含有SSB的时隙,需要从预设单位长度内不含有SSB的时隙中确定第一时隙;在一些场景中ECP时隙指示信息指示含有SSB的时隙,且含有SSB的时隙为ECP时隙,需要确定含有SSB的时隙中属于NCP的位置符号。基于此,网络侧设备以及UE需要确定预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
还是以SCS=15KHz,预设单位长度为一个无线帧为例,根据上述图2A~图2C可知,一个无线帧中最多有8个可以发送SSB的候选位置,网络侧设备可通过SSB位置参数ssb-PositionsInBurst中的一组数值(inOneGroup),指示各候选位置是否发送SSB。参阅图12所示,网络侧设备使用inOneGroup的8比特指示(B0~B8),inOneGroup数值为0表示对应候选位置没有发送SSB,inOneGroup数值为1表示对应候选位置发送了SSB。
可以理解,上述inOneGroup数值只是示例性说明,当inOneGroup数值为1时,也可表示对应候选位置没有发送SSB;当inOneGroup数值为0时,也可表示对应候选位置发送了SSB;或者inOneGroup也可配置为其他数值,本申请对此不做具体限定,可以根据实际应用场景进行配置。
另外,网络侧设备还可以通过服务小区的SSB周期参数(ssb-PeriodicityServingCell)指示SSB突发块的发送周期,发送周期可以为5ms、10ms、20ms、40ms、80ms或者160ms等。
步骤S1102:网络侧设备根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
步骤S1103:UE根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙。
该步骤S1102~S1103的具体实现方式可参阅上述实施例,此处不再赘述。
步骤S1104:UE确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
如上所述,网络侧设备可通过SSB位置参数ssb-PositionsInBurst中的inOneGroup数值,指示各候选位置是否发送SSB;对应的,UE基于SSB位置参数ssb-PositionsInBurst中的inOneGroup数值,确定各候选位置是否发送SSB。
步骤S1105:UE根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
该步骤S1105的具体实现方式可参阅上述实施例,此处不再赘述。
下面将结合3个具体实例对来进行详细说明。
实施例1
网络侧设备向UE发送高层信令,如通过广播控制信道传输的系统广播消息,组播控制信道传输的广播组播配置消息,基于UE的无线链路控制消息或者基于媒体接入层的控制消息等。参阅上述图4、图5所示,高层信令中包含 配置信息,UE根据该配置信息确定ECP时隙指示信息是否指示含有SSB的时隙;或者高层信息中不包含配置信息,UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙。该步骤的具体实现方式可参照上述图4以及图5实施例,此处不再赘述。
UE基于系统广播消息,获取网络侧设备发送的SSB位置参数ssb-PositionsInBurst中的inOneGroup数值,基于inOneGroup数值确定对应的候选位置是否发送SSB。本实施例中SCS=15KHz,预设单位长度为一个无线帧。参阅图12所示,网络侧设备使用inOneGroup的8比特指示(B0~B8),inOneGroup数值为0表示对应候选位置没有发送SSB,inOneGroup数值为1表示对应候选位置发送了SSB。参阅图13A所示,本实施例中,候选位置#3以及候选位置#4对应的inOneGroup数值为1,其余候选位置对应的inOneGroup数值为0,候选位置#3以及候选位置#4发送了SSB,因此时隙#1以及时隙#2为包含SSB的时隙;时隙#0、时隙#3、时隙#4、时隙#5、时隙#6、时隙#7、时隙#8以及时隙#9为不包含SSB的时隙。
本实施例中,预设的指示规则为需要指示预设单位长度内第2、3、4、7、8、9个时隙,预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的。
假如ECP时隙指示信息不指示含有SSB的时隙,需要跳过包含SSB的时隙(即跳过时隙#1以及时隙#2),跳过时隙#1以及时隙#2后,第2、3、4、7、8个不含有SSB的时隙分别为时隙#3、时隙#4、时隙#5、时隙#8以及时隙#9,即这五个时隙为可以被指示的第一时隙,预设单位长度内没有第9个不含有SSB的时隙;另外,时隙#0、时隙#6、时隙#7是除第一时隙之外不含有SSB的第二时隙。参阅图13B所示,ECP时隙指示信息中b0指示时隙#3是否为ECP时隙,b1指示时隙#4是否为ECP时隙,b2指示时隙#5是否为ECP时隙,b3指示时隙#8是否为ECP时隙,b4指示时隙#9是否为ECP时隙,b5没有对应的第一时隙。
一些场景中,b5可以指示上述无线帧中第一个第二时隙,即时隙#0;另 外一些场景中,b5可以指示下一个无线帧中第一个第一时隙。
假如ECP时隙指示信息指示含有SSB的时隙,不需要跳过包含SSB的时隙,该无线帧内所有时隙中,第2、3、4、7、8、9个时隙分别为时隙#1、时隙#2、时隙#3、时隙#6、时隙#7以及时隙#8,即这六个时隙为可以被指示的第一时隙。参阅图13C所示,ECP时隙指示信息中b0指示时隙#1是否为ECP时隙,b1指示时隙#2是否为ECP时隙,b2指示时隙#3是否为ECP时隙,b3指示时隙#6是否为ECP时隙,b4指示时隙#7是否为ECP时隙,b5指示时隙#8是否为ECP时隙。
由于SSB仍然需要使用NCP进行发送,因此在上述时隙#1以及时隙#2为ECP时隙时,只能有部分位置符号是属于ECP的位置符号。参阅图13D所示,在时隙#1中,SSB位置符号为NCP位置符号#8~位置符号#11,至少这几个位置符号所在时域位置不能为ECP,将后7个位置符号(NCP位置符号#7~NCP位置符号#13)确定为属于NCP的位置符号;另外,ECP时隙的ECP位置符号#0~ECP位置符号#5可使用ECP符号调度PDSCH。参阅图13E所示,在时隙#2中,SSB位置符号为NCP位置符号#2~位置符号#5,至少这几个位置符号所在时域位置不能为ECP,将前7个位置符号(NCP位置符号#0~NCP位置符号#6)确定为属于NCP的位置符号;另外,ECP时隙的ECP位置符号#6~ECP位置符号#11可使用ECP符号调度PDSCH。
实施例1以预设单位长度为一个无线帧为例,实际应用中预设单位长度也可以为其它长度,如5ms(SCS=15KHz时为5个时隙),或者20ms(SCS=15KHz时为20个时隙),或者4ms(SCS=15KHz时为4个时隙);实施例1以ECP时隙指示信息包含6个子指示信息为例,实际应用中ECP时隙指示信息包含的子指示信息可以更多或更少,如5个、10个或者8个等;实施例1中针对含有SSB的ECP时隙中属于ECP的位置符号只是示例性说明,本申请并不以此为限。
实施例2
网络侧设备若确定ECP时隙指示信息指示含有SSB的时隙,则配置子指 示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息。该步骤的具体实现方式可参照上述图6实施例,此处不再赘述。
UE基于系统广播消息,获取网络侧设备发送的SSB位置参数ssb-PositionsInBurst中的inOneGroup数值,基于inOneGroup数值确定对应的候选位置是否发送SSB。本实施例中SCS=15KHz,预设单位长度为一个无线帧。参阅图12所示,网络侧设备使用inOneGroup的8比特指示(B0~B8),inOneGroup数值为0表示对应候选位置没有发送SSB,inOneGroup数值为1表示对应候选位置发送了SSB。参阅图14A所示,本实施例中,候选位置#2以及候选位置#5对应的inOneGroup数值为1,其余候选位置对应的inOneGroup数值为0,候选位置#2以及候选位置#5发送了SSB,因此时隙#1以及时隙#2为包含SSB的时隙;时隙#0、时隙#3、时隙#4、时隙#5、时隙#6、时隙#7、时隙#8以及时隙#9为不包含SSB的时隙。
本实施例中,预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的;第一预设数量为8,ECP时隙指示信息中子指示信息总数大于8,ECP时隙指示信息指示含有SSB的时隙;ECP时隙指示信息中子指示信息总数小于等于8,ECP时隙指示信息不指示含有SSB的时隙。
假如预设的指示规则为需要指示预设单位长度内第1~8个时隙,ECP时隙指示信息中子指示信息总数等于8,ECP时隙指示信息不指示含有SSB的时隙,需要跳过包含SSB的时隙(即跳过时隙#1以及时隙#2),跳过时隙#1以及时隙#2后,第1~8个不含有SSB的时隙分别为时隙#9、时隙#8、时隙#7、时隙#6、时隙#5、时隙#4、时隙#3以及时隙#0。参阅图14B所示,ECP时隙指示信息中b0指示时隙#9是否为ECP时隙,b1指示时隙#8是否为ECP时隙,b2指示时隙#7是否为ECP时隙,b3指示时隙#6是否为ECP时隙,b4指示时隙#5是否为ECP时隙,b5指示时隙#4是否为ECP时隙,b6指示时隙#3是否为ECP时隙,b7指示时隙#0是否为ECP时隙。
假如预设的指示规则为需要指示预设单位长度内第1~10个时隙,ECP时隙指示信息中子指示信息总数大于8,ECP时隙指示信息指示含有SSB的时隙,不需要跳过包含SSB的时隙,该无线帧内所有时隙中,第1~10个时隙分别为时隙#9、时隙#8、时隙#7、时隙#6、时隙#5、时隙#4、时隙#3、时隙#2、时隙#1以及时隙#0。参阅图14C所示,ECP时隙指示信息中b0指示时隙#9是否为ECP时隙,b1指示时隙#8是否为ECP时隙,b2指示时隙#7是否为ECP时隙,b3指示时隙#6是否为ECP时隙,b4指示时隙#5是否为ECP时隙,b5指示时隙#4是否为ECP时隙,b6指示时隙#3是否为ECP时隙,b7指示时隙#2是否为ECP时隙,b8指示时隙#1是否为ECP时隙,b9指示时隙#0是否为ECP时隙。
由于SSB仍然需要使用NCP进行发送,因此在上述时隙#1以及时隙#2为ECP时隙时,只能有部分位置符号是属于ECP的位置符号。参阅图14D所示,在时隙#1中,SSB位置符号为NCP位置符号#2~位置符号#5,并且需要发送系统广播消息的PDCCH的位置符号为NCP位置符号#6以及位置符号#7,将NCP位置符号#0~NCP位置符号#7确定为属于NCP的位置符号;另外ECP时隙的ECP位置符号#7~ECP位置符号#11可使用ECP符号调度PDSCH。参阅图14E所示,在时隙#2中,SSB位置符号为NCP位置符号#8~位置符号#11,并且需要发送系统广播消息的PDCCH的位置符号为NCP位置符号#6以及位置符号#7,将NCP位置符号#6~NCP位置符号#13确定为属于NCP的位置符号;另外ECP时隙的ECP位置符号#0~ECP位置符号#4可使用ECP符号调度PDSCH。
实施例2以预设单位长度为一个无线帧为例,实际应用中预设单位长度也可以为其它长度,如5ms(SCS=15KHz时为5个时隙),或者20ms(SCS=15KHz时为20个时隙),或者4ms(SCS=15KHz时为4个时隙);实施例2以ECP时隙指示信息包含8个子指示信息、或者10个子指示信息为例,实际应用中ECP时隙指示信息包含的子指示信息可以更多或更少,如5个、6个或者7个等;实施例2中针对含有SSB的ECP时隙中属于ECP的位置符 号只是示例性说明,本申请并不以此为限。
实施例3
网络侧设备若确定ECP时隙指示信息指示含有SSB的时隙,则配置预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向UE发送第一ECP时隙指示信息之后,再向UE发送第二ECP时隙指示信息;若确定ECP时隙指示信息不指示含有SSB的时隙,则配置该预设单位长度对应的一个ECP时隙指示信息。该步骤的具体实现方式可参照上述图7实施例,此处不再赘述。
UE基于系统广播消息,获取网络侧设备发送的SSB位置参数ssb-PositionsInBurst中的inOneGroup数值,基于inOneGroup数值确定对应的候选位置是否发送SSB。本实施例中SCS=15KHz,预设单位长度为一个无线帧。参阅图12所示,网络侧设备使用inOneGroup的8比特指示(B0~B8),inOneGroup数值为0表示对应候选位置没有发送SSB,inOneGroup数值为1表示对应候选位置发送了SSB。参阅图15A所示,本实施例中,候选位置#0、候选位置#1、候选位置#3以及候选位置#4对应的inOneGroup数值为1,其余候选位置对应的inOneGroup数值为0,候选位置#0、候选位置#1、候选位置#3以及候选位置#4发送了SSB,因此时隙#0、时隙#1以及时隙#2为包含SSB的时隙;时隙#3、时隙#4、时隙#5、时隙#6、时隙#7、时隙#8以及时隙#9为不包含SSB的时隙。
本实施例中,预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;网络侧设备配置了预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息,其中,第一ECP时隙指示信息包含6个子指示信息,第二ECP时隙指示信息包含4个子指示信息。
假如第一ECP时隙指示信息对应的指示规则为需要指示预设单位长度内第1~6个时隙,第一ECP时隙指示信息不指示含有SSB的时隙,需要跳过包含SSB的时隙(即跳过时隙#0、时隙#1以及时隙#2),跳过时隙#0、时隙#1 以及时隙#2后,第1~6个不含有SSB的时隙分别为时隙#3~时隙#8。参阅图15B所示,ECP时隙指示信息中b0指示时隙#3是否为ECP时隙,b1指示时隙#4是否为ECP时隙,b2指示时隙#5是否为ECP时隙,b3指示时隙#6是否为ECP时隙,b4指示时隙#7是否为ECP时隙,b5指示时隙#8是否为ECP时隙。
假如第二ECP时隙指示信息对应的指示规则为需要指示预设单位长度内第1~4个时隙,第二ECP时隙指示信息指示含有SSB的时隙,不需要跳过包含SSB的时隙,该无线帧内所有时隙中,除上述第一ECP时隙指示信息指示的时隙(时隙#3~时隙#8)之外的第1~4个时隙分别为时隙#0、时隙#1、时隙#2以及时隙#9。参阅图15C所示,ECP时隙指示信息中b0指示时隙#0是否为ECP时隙,b1指示时隙#1是否为ECP时隙,b2指示时隙#2是否为ECP时隙,b3指示时隙#9是否为ECP时隙。
由于SSB仍然需要使用NCP进行发送,因此上述时隙#0只能是NCP时隙,且在上述时隙#1以及时隙#2为ECP时隙时,只能有部分位置符号是属于ECP的位置符号。参阅图15D所示,在时隙#1中,SSB位置符号为NCP位置符号#8~位置符号#11,并且需要发送系统广播消息的PDCCH的位置符号为NCP位置符号#6以及位置符号#7,将NCP位置符号#6~NCP位置符号#13确定为属于NCP的位置符号;另外ECP时隙的ECP位置符号#0~ECP位置符号#4可使用ECP符号调度PDSCH。参阅图15E所示,在时隙#2中,SSB位置符号为NCP位置符号#2~位置符号#5,并且需要发送系统广播消息的PDCCH的位置符号为NCP位置符号#6以及位置符号#7,将NCP位置符号#0~NCP位置符号#7确定为属于NCP的位置符号;另外ECP时隙的ECP位置符号#7~ECP位置符号#11可使用ECP符号调度PDSCH。
实施例3以预设单位长度为一个无线帧为例,实际应用中预设单位长度也可以为其它长度,如5ms(SCS=15KHz时为5个时隙),或者20ms(SCS=15KHz时为20个时隙),或者4ms(SCS=15KHz时为4个时隙);实施例3以ECP时隙指示信息包含6个子指示信息以及4个子指示信息为例, 实际应用中ECP时隙指示信息包含的子指示信息可以更多或更少;实施例3中针对含有SSB的ECP时隙中属于ECP的位置符号只是示例性说明,本申请并不以此为限。
上述实施例1~3支持包含NCP位置符号的ECP时隙,提高了ECP时隙传输效率,可原来的60%提升到97.5%(20ms的20个时隙中,只有0.5个时隙不传输广播数据)。
基于同一发明构思,本申请实施例中还提供了一种ECP时隙确定方法,应用于上述UE,参阅图16所示,该方法包括:
步骤S1601:根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;
步骤S1602:根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示 对应时隙是否为ECP时隙;
若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息; 其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,且所述预设单位长度的ECP时隙指示信息中子指示信息的总数,大于所述预设单位长度内的第一时隙的总数,则所述方法还包括:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙;
其中,所述剩余子指示信息为所述预设单位长度的ECP时隙指示信息中没有对应的第一时隙的子指示信息。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在将含有SSB的时隙确定为ECP时隙后,还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙之前,还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
由于该方法是上述UE对应的方法,该方法的具体实现方式可以参见上述实施例,重复之处不再赘述。
基于同一发明构思,本申请实施例中还提供了另一种ECP时隙确定方法,应用于上述网络侧设备,该方法包括:
根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,还包括:
向所述UE发送包含配置信息的高层信令;
其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,还包括:
向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预 设数量的ECP时隙指示信息;
其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息,包括:
基于所述预设单位长度内各第一时隙对应的子指示信息,以及下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息;和/或
基于所述预设单位长度内各第一时隙对应的子指示信息,以及部分或全部第二时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息,其中,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在确定含有SSB的时隙为ECP时隙后,还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息之前,还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
由于该方法是上述网络侧设备对应的方法,该方法的具体实现方式可以参见上述实施例,重复之处不再赘述。
如图17所示,为本申请实施例提供的一种UE,包括:处理器1701、存储器1702、收发器1703以及总线接口1704。
处理器1701负责管理总线架构和通常的处理,存储器1702可以存储处理器1701在执行操作时所使用的数据。收发器1703用于在处理器1701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1701代表的一个或多个处理器和存储器1702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1701负责管理总线架构和通常的处理,存储器1702可以存储处理器1701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1701中,或者由处理器1701实现。在实现过程中,ECP时隙确定方法的各步骤可以通过处理器1701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1701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1702,处理器1701读取存储器1702中的信息,结合其硬件完成ECP时隙确定方法的步骤。
具体地,处理器1701,用于读取存储器1702中的计算机指令,并执行以下操作:
根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;
根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的 时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,且所述预设单位长度的ECP时隙指示信息中子指示信息的总数,大于所述预设单位长度内的第一时隙的总数,则所述操作还包括:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙;
其中,所述剩余子指示信息为所述预设单位长度的ECP时隙指示信息中没有对应的第一时隙的子指示信息。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在将含有SSB的时隙确定为ECP时隙后,所述操作还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,所述操作还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙之前,所述操作还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
如图18所示,为本申请实施例提供的一种网络侧设备,包括:处理器1801、存储器1802、收发器1803以及总线接口1804。
处理器1801负责管理总线架构和通常的处理,存储器1802可以存储处理器1801在执行操作时所使用的数据。收发器1803用于在处理器1801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1801代表的一个或多个处理器和存储器1802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1801负责管理总线架构和通常的处理,存储器1802可以存储处理器1801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1801中,或者由处理器1801实现。在实现过程中,ECP时隙确定方法的各步骤可以通过处理器1801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1801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1802,处理器1801读取存储器1802中的信息,结合其硬件完成ECP时隙确定方法的步骤。
具体地,处理器1801,用于读取存储器1802中的计算机指令,并执行以下操作:
根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,所述操作还包括:
向所述UE发送包含配置信息的高层信令;
其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述操作还包括:
向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息,包括:
基于所述预设单位长度内各第一时隙对应的子指示信息,以及下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息;和/或
基于所述预设单位长度内各第一时隙对应的子指示信息,以及部分或全部第二时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示 信息,其中,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则在确定含有SSB的时隙为ECP时隙后,所述操作还包括:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,所述操作还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息之前,所述操作还包括:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
如图19所示,为本申请实施例提供的一种UE1900,包括:
指示确定模块1901,用于根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙;和/或
ECP时隙确定模块1902,用于根据ECP时隙指示信息是否指示含有SSB 的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
作为一种可选的实施方式,指示确定模块1901根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
作为一种可选的实施方式,指示确定模块1901根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,指示确定模块1901根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,指示确定模块1901根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含 有SSB的时隙。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,ECP时隙确定模块1902根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,且所述预设单位长度的ECP时隙指示信息中子指示信息的总数,大于所述预设单位长度内的第一时隙的总数,则ECP时隙确定模块1902还用于:
根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时 隙之外不含有SSB的时隙;
其中,所述剩余子指示信息为所述预设单位长度的ECP时隙指示信息中没有对应的第一时隙的子指示信息。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则ECP时隙确定模块1902在将含有SSB的时隙确定为ECP时隙后,还用于:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,ECP时隙确定模块1902基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,ECP时隙确定模块1902基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,ECP时隙确定模块1902在ECP根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙之前,还用于:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
如图20所示,为本申请实施例提供的一种网络侧设备2000,包括:
发送模块2001,用于根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,发送模块2001还用于:
向所述UE发送包含配置信息的高层信令;
其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,发送模块2001还用于:
向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
作为一种可选的实施方式,发送模块2001根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若确定ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
作为一种可选的实施方式,发送模块2001根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
若确定ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
若确定ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
作为一种可选的实施方式,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预 设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
作为一种可选的实施方式,发送模块2001根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
基于所述预设单位长度内各第一时隙是否为ECP时隙的确定结果,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
作为一种可选的实施方式,若ECP时隙指示信息不指示含有SSB的时隙,发送模块2001基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息,包括:
基于所述预设单位长度内各第一时隙对应的子指示信息,以及下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息;和/或
基于所述预设单位长度内各第一时隙对应的子指示信息,以及部分或全部第二时隙对应的剩余子指示信息,确定所述预设单位长度的ECP时隙指示信息,其中,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙。
作为一种可选的实施方式,所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过顺序方式确定的;或者
所述预设单位长度内的第一时隙,以及ECP时隙指示信息均是通过逆序方式确定的。
作为一种可选的实施方式,若ECP时隙指示信息指示含有SSB的时隙,则发送模块2001在确定含有SSB的时隙为ECP时隙后,还用于:
基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号。
作为一种可选的实施方式,发送模块2001基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,发送模块2001基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
将含有SSB的时隙中需要发送系统广播消息的PDCCH的位置符号,确定为属于NCP的位置符号。
作为一种可选的实施方式,发送模块2001根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息之前,还用于:
确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
本申请实施例提供一种存储介质,存储有计算机可执行指令,所述计算机可执行指令用于使计算机执行如上述UE所执行的ECP时隙确定方法。
本申请实施例提供一种存储介质,存储有计算机可执行指令,所述计算机可执行指令用于使计算机执行如上述网络侧设备所执行的ECP时隙确定方法。
上述存储介质可以是计算机能够存取的任何可用介质或数据存储设备,包括但不限于磁性存储器(例如软盘、硬盘、磁带、磁光盘(MO)等)、光学存储器(例如CD、DVD、BD、HVD等)、以及半导体存储器(例如ROM、 EPROM、EEPROM、非易失性存储器(NAND FLASH)、固态硬盘(SSD))等。
上述任一方案,除了应用于确定ECP时隙,也可以应用于确定其它类型的时隙,具体实现方式类似,此处不再赘述。
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 (50)

  1. 一种ECP时隙确定方法,其特征在于,应用于用户设备UE,该方法包括:
    根据网络侧设备的指示,确定扩展循环前缀ECP时隙指示信息是否指示含有同步信号块SSB的时隙;
    根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
  2. 如权利要求1所述的方法,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
  3. 如权利要求1所述的方法,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
    其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
  4. 如权利要求1所述的方法,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
    若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
  5. 如权利要求4所述的方法,其特征在于,所述第一预设数量为所述预设单位长度内的时隙总数与时隙调整量之间的差值。
  6. 如权利要求1所述的方法,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
    若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
  7. 如权利要求6所述的方法,其特征在于,所述第一ECP时隙指示信息中子指示信息的总数,以及所述第二ECP时隙指示信息中子指示信息的总数之和,为所述预设单位长度内的时隙总数;其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
  8. 如权利要求1所述的方法,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
    针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
    根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
    针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
  9. 如权利要求8所述的方法,其特征在于,若ECP时隙指示信息不指示 含有SSB的时隙,且所述预设单位长度的ECP时隙指示信息中子指示信息的总数,大于所述预设单位长度内的第一时隙的总数,则所述方法还包括:
    根据下一预设单位长度内各第一时隙的次序,确定下一预设单位长度内部分或全部第一时隙对应的剩余子指示信息;和/或
    根据所述预设单位长度内各第二时隙的次序,确定部分或全部第二时隙对应的剩余子指示信息,所述第二时隙为所述预设单位长度内除所述第一时隙之外不含有SSB的时隙;
    其中,所述剩余子指示信息为所述预设单位长度的ECP时隙指示信息中没有对应的第一时隙的子指示信息。
  10. 如权利要求8所述的方法,其特征在于,所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过顺序方式确定的;或者所述预设单位长度内的第一时隙,以及各第一时隙对应的子指示信息均是通过逆序方式确定的。
  11. 如权利要求8所述的方法,其特征在于,若ECP时隙指示信息指示含有SSB的时隙,则在将含有SSB的时隙确定为ECP时隙后,还包括:
    基于含有SSB的时隙中的SSB位置符号,确定属于普通循环前缀NCP的位置符号。
  12. 如权利要求11所述的方法,其特征在于,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,包括:
    将含有SSB的时隙中的SSB位置符号,确定为属于NCP的位置符号;或者
    将含有SSB的时隙中的SSB位置符号所在的半个时隙中所有位置符号,确定为属于NCP的位置符号。
  13. 如权利要求12所述的方法,其特征在于,基于含有SSB的时隙中的SSB位置符号,确定属于NCP的位置符号,还包括:
    将含有SSB的时隙中需要发送系统广播消息的物理下行控制信道PDCCH的位置符号,确定为属于NCP的位置符号。
  14. 如权利要求1~13任一所述的方法,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙之前,还包括:
    确定所述预设单位长度内含有SSB的时隙,和/或不含有SSB的时隙。
  15. 一种ECP时隙确定方法,其特征在于,应用于网络侧设备,该方法包括:
    根据扩展循环前缀ECP时隙指示信息是否指示含有同步信号块SSB的时隙,向用户设备UE发送的预设单位长度的ECP时隙指示信息。
  16. 如权利要求15所述的方法,其特征在于,还包括:
    向所述UE发送包含配置信息的高层信令;
    其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
  17. 如权利要求15所述的方法,其特征在于,还包括:
    向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
  18. 如权利要求15所述的方法,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙,向用户设备UE发送的预设单位长度的ECP时隙指示信息,包括:
    若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
    其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
  19. 如权利要求15所述的方法,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙,向用户设备UE发送的预设单位长度的ECP时隙指示信息,包括:
    若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
    若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
  20. 如权利要求15所述的方法,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙,向用户设备UE发送的预设单位长度的ECP时隙指示信息,包括:
    针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
    基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
    基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
  21. 如权利要求20所述的方法,其特征在于,若ECP时隙指示信息指示含有SSB的时隙,则在确定含有SSB的时隙为ECP时隙后,还包括:
    基于含有SSB的时隙中的SSB位置符号,确定属于普通循环前缀NCP的位置符号。
  22. 一种用户设备UE,其特征在于,包括:处理器以及存储器;
    所述存储器,用于存储计算机指令;
    所述处理器,用于读取所述计算机指令,执行以下操作:
    根据网络侧设备的指示,确定扩展循环前缀ECP时隙指示信息是否指示含有同步信号块SSB的时隙;
    根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
  23. 如权利要求22所述的UE,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
  24. 如权利要求22所述的UE,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
    其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
  25. 如权利要求22所述的UE,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
    若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
  26. 如权利要求22所述的UE,其特征在于,根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
    若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含 有SSB的时隙。
  27. 如权利要求22所述的UE,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
    针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
    根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
    针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
  28. 如权利要求27所述的UE,其特征在于,若ECP时隙指示信息指示含有SSB的时隙,则在将含有SSB的时隙确定为ECP时隙后,所述操作还包括:
    基于含有SSB的时隙中的SSB位置符号,确定属于普通循环前缀NCP的位置符号。
  29. 一种网络侧设备,其特征在于,包括:处理器以及存储器;
    所述存储器,存储计算机指令;
    所述处理器,用于读取所述计算机指令,执行以下操作:
    根据扩展循环前缀ECP时隙指示信息是否指示含有同步信号块SSB的时隙,向用户设备UE发送的预设单位长度的ECP时隙指示信息。
  30. 如权利要求29所述的网络侧设备,其特征在于,所述操作还包括:
    向所述UE发送包含配置信息的高层信令;
    其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
  31. 如权利要求29所述的网络侧设备,其特征在于,所述操作还包括:
    向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
  32. 如权利要求29所述的网络侧设备,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
    若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
    其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
  33. 如权利要求29所述的网络侧设备,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
    若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
    若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
  34. 如权利要求29所述的网络侧设备,其特征在于,根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
    针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
    基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
    基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
  35. 如权利要求34所述的网络侧设备,其特征在于,若ECP时隙指示信息指示含有SSB的时隙,则在确定含有SSB的时隙为ECP时隙后,所述操作还包括:
    基于含有SSB的时隙中的SSB位置符号,确定属于普通循环前缀NCP的位置符号。
  36. 一种用户设备UE,其特征在于,该UE包括:
    指示确定模块,用于根据网络侧设备的指示,确定扩展循环前缀ECP时隙指示信息是否指示含有同步信号块SSB的时隙;和/或
    ECP时隙确定模块,用于根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙。
  37. 如权利要求36所述的UE,其特征在于,所述指示确定模块根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    若收到所述网络侧设备发送的包含配置信息的高层信令,则根据所述配置信息确定ECP时隙指示信息是否指示含有SSB的时隙。
  38. 如权利要求36所述的UE,其特征在于,所述指示确定模块根据网 络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    若收到所述网络侧设备发送的不包含配置信息的高层信令,则基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;
    其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
  39. 如权利要求36所述的UE,其特征在于,所述指示确定模块根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    针对任一预设单位长度,确定所述预设单位长度的ECP时隙指示信息中子指示信息的总数是否大于第一预设数量;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
    若是,则确定ECP时隙指示信息指示含有SSB的时隙;否则确定ECP时隙指示信息不指示含有SSB的时隙。
  40. 如权利要求36所述的UE,其特征在于,所述指示确定模块根据网络侧设备的指示,确定ECP时隙指示信息是否指示含有SSB的时隙,包括:
    针对任一预设单位长度,若收到所述预设单位长度对应的一个ECP时隙指示信息,则确定所述ECP时隙指示信息不指示含有SSB的时隙;
    若收到所述预设单位长度对应的两个ECP时隙指示信息,则确定第一ECP时隙指示信息不指示含有SSB的时隙,且第二ECP时隙指示信息指示含有SSB的时隙。
  41. 如权利要求36所述的UE,其特征在于,所述ECP时隙确定模块根据ECP时隙指示信息是否指示含有SSB的时隙的确定结果以及所述ECP时隙指示信息,确定所述网络侧设备发送的预设单位长度内的ECP时隙,包括:
    针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度 内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
    根据所述预设单位长度内各第一时隙的次序以及所述预设单位长度的ECP时隙指示信息,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述ECP时隙指示信息包含多个子指示信息,所述子指示信息用于指示对应时隙是否为ECP时隙;
    针对所述预设单位长度内的任一第一时隙,若子指示信息指示对应时隙为ECP时隙,则将所述第一时隙确定为ECP时隙。
  42. 如权利要求41所述的UE,其特征在于,若ECP时隙指示信息指示含有SSB的时隙,则所述ECP时隙确定模块在将含有SSB的时隙确定为ECP时隙后,还用于:
    基于含有SSB的时隙中的SSB位置符号,确定属于普通循环前缀NCP的位置符号。
  43. 一种网络侧设备,其特征在于,该网络侧设备包括:
    发送模块,用于根据扩展循环前缀ECP时隙指示信息是否指示含有同步信号块SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息。
  44. 如权利要求43所述的网络侧设备,其特征在于,所述发送模块还用于:
    向所述UE发送包含配置信息的高层信令;
    其中,所述配置信息表征ECP时隙指示信息指示含有SSB的时隙;或者所述配置信息表征ECP时隙指示信息不指示含有SSB的时隙。
  45. 如权利要求43所述的网络侧设备,其特征在于,所述发送模块还用于:
    向所述UE发送不包含配置信息的高层信令,不包含配置信息的高层信令用于指示所述UE基于默认规则确定ECP时隙指示信息是否指示含有SSB的时隙;其中,所述默认规则为ECP时隙指示信息指示含有SSB的时隙,或者ECP时隙指示信息不指示含有SSB的时隙。
  46. 如权利要求43所述的网络侧设备,其特征在于,所述发送模块根据 ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
    若ECP时隙指示信息指示含有SSB的时隙,则配置子指示信息总数大于第一预设数量的ECP时隙指示信息;否则配置子指示信息总数不大于第一预设数量的ECP时隙指示信息;
    其中,所述子指示信息用于指示对应时隙是否为ECP时隙。
  47. 如权利要求43所述的网络侧设备,其特征在于,所述发送模块根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
    若ECP时隙指示信息指示含有SSB的时隙,则配置所述预设单位长度对应的不指示含有SSB的时隙的第一ECP时隙指示信息,以及指示含有SSB的时隙的第二ECP时隙指示信息;并在向所述UE发送所述第一ECP时隙指示信息后,向所述UE发送所述第二ECP时隙指示信息;
    若ECP时隙指示信息不指示含有SSB的时隙,则配置所述预设单位长度对应的一个ECP时隙指示信息。
  48. 如权利要求43所述的网络侧设备,其特征在于,所述发送模块根据ECP时隙指示信息是否指示含有SSB的时隙,向UE发送的预设单位长度的ECP时隙指示信息,包括:
    针对任一预设单位长度,若ECP时隙指示信息不指示含有SSB的时隙,则根据所述预设单位长度内不含有SSB的时隙的次序以及预设的指示规则,从所述预设单位长度内不含有SSB的时隙中,确定所述预设单位长度内可以被指示的第一时隙;若ECP时隙指示信息指示含有SSB的时隙,则根据所述预设单位长度内所有时隙的次序以及预设的指示规则,从所述预设单位长度内所有时隙中,确定所述预设单位长度内可以被指示的第一时隙;
    基于所述预设单位长度内各第一时隙是否为ECP时隙,确定所述预设单位长度内各第一时隙对应的子指示信息;其中,所述子指示信息用于指示对应时隙是否为ECP时隙;
    基于所述预设单位长度内各第一时隙对应的子指示信息,确定所述预设单位长度的ECP时隙指示信息。
  49. 如权利要求48所述的网络侧设备,其特征在于,若ECP时隙指示信息指示含有SSB的时隙,则所述发送模块在确定含有SSB的时隙为ECP时隙后,还用于:
    基于含有SSB的时隙中的SSB位置符号,确定属于普通循环前缀NCP的位置符号。
  50. 一种存储介质,其特征在于,所述存储介质存储有计算机可执行指令,所述计算机可执行指令用于使计算机执行如权利要求1~21任一项所述的方法。
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