WO2024016240A1 - Pdsch传输方法、装置 - Google Patents

Pdsch传输方法、装置 Download PDF

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Publication number
WO2024016240A1
WO2024016240A1 PCT/CN2022/106893 CN2022106893W WO2024016240A1 WO 2024016240 A1 WO2024016240 A1 WO 2024016240A1 CN 2022106893 W CN2022106893 W CN 2022106893W WO 2024016240 A1 WO2024016240 A1 WO 2024016240A1
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Prior art keywords
pdsch
unicast
broadcast
terminal device
unicast pdsch
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PCT/CN2022/106893
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English (en)
French (fr)
Inventor
牟勤
Original Assignee
北京小米移动软件有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 北京小米移动软件有限公司 filed Critical 北京小米移动软件有限公司
Priority to CN202280002407.0A priority Critical patent/CN117751562A/zh
Priority to PCT/CN2022/106893 priority patent/WO2024016240A1/zh
Publication of WO2024016240A1 publication Critical patent/WO2024016240A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L27/00Modulated-carrier systems

Definitions

  • the present disclosure relates to the field of communication technology, and in particular to a physical downlink shared channel (PDSCH) transmission method, device, equipment and storage medium.
  • PDSCH physical downlink shared channel
  • the present disclosure proposes a PDSCH transmission method, device, equipment and storage medium to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • An embodiment of the present disclosure proposes a physical downlink shared channel PDSCH transmission method.
  • the method is executed by a network side device.
  • the method includes:
  • the terminal device In response to the transmission opportunity of the broadcast PDSCH, it is determined whether to send the unicast PDSCH to the terminal device at the transmission opportunity and/or the resources occupied by the unicast PDSCH allocated to the terminal device are determined.
  • the determining whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device include:
  • the resources of the broadcast PDSCH and the unicast PDSCH allocated to the terminal device are within the processing capabilities of the terminal device.
  • the determining whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device include:
  • the resources allocated to the broadcast PDSCH and the unicast PDSCH do not exceed the first preset threshold, wherein the first preset threshold is not less than The processing capabilities of the terminal device.
  • the determining whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device include:
  • the frequency resources occupied by the broadcast PDSCH and the unicast PDSCH include at least one of the following:
  • the determining whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device include:
  • the preset priority determine whether to send the unicast PDSCH to the terminal device at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device.
  • the resources occupied by unicast PDSCH include:
  • the resources occupied by unicast PDSCH include:
  • the resources occupied by the broadcast PDSCH and the unicast PDSCH allocated to the terminal device do not exceed a third preset threshold, wherein, The third preset threshold is not less than the processing capability of the terminal device.
  • Another aspect of the present disclosure provides a PDSCH transmission method, which is characterized in that the method is executed by a terminal device, and the method includes:
  • the reception behavior of the broadcast PDSCH and/or unicast PDSCH is determined.
  • determining the reception behavior of the broadcast PDSCH and/or unicast PDSCH includes:
  • the unicast PDSCH sent by the network side device is received.
  • determining the reception behavior of the broadcast PDSCH and/or unicast PDSCH includes:
  • the first preset threshold is not less than the processing capability of the terminal equipment ability.
  • the method further includes:
  • the PDSCH that exceeds the processing capability of the terminal comes from the same PDSCH.
  • the PDSCH that exceeds the processing capability of the terminal comes from at least two PDSCHs.
  • the method further includes:
  • the preset threshold is determined in response to the configuration information sent by the network side device.
  • determining the reception behavior of the broadcast PDSCH and/or unicast PDSCH includes:
  • the receiving behavior of the broadcast PDSCH and/or the unicast PDSCH is determined according to the preset priority.
  • determining the reception behavior of the broadcast PDSCH and/or the unicast PDSCH according to a preset priority includes:
  • the method further includes:
  • determining the reception behavior of the broadcast PDSCH and/or the unicast PDSCH according to a preset priority includes:
  • An embodiment of the present disclosure provides a PDSCH transmission device.
  • the device is provided on the network side.
  • the device includes:
  • a sending module configured to respond to the sending opportunity of broadcast PDSCH, determine whether to send unicast PDSCH to the terminal equipment at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal equipment.
  • the device is provided on the terminal side.
  • the device includes:
  • a receiving module configured to determine the receiving behavior of the broadcast PDSCH and/or unicast PDSCH in response to the reception opportunity of the broadcast PDSCH.
  • An embodiment of the present disclosure provides a network side device.
  • the device includes a processor and a memory.
  • a computer program is stored in the memory.
  • the processor executes the computer program stored in the memory so that the The device performs the method proposed in the embodiment of the above aspect.
  • the device includes a processor and a memory.
  • a computer program is stored in the memory.
  • the processor executes the computer program stored in the memory so that the The device performs the method proposed in the above embodiment.
  • a communication device provided by an embodiment of the present disclosure includes: a processor and an interface circuit
  • the interface circuit is used to receive code instructions and transmit them to the processor
  • the processor is configured to run the code instructions to perform the method proposed in the embodiment of one aspect.
  • a communication device provided by another embodiment of the present disclosure includes: a processor and an interface circuit
  • the interface circuit is used to receive code instructions and transmit them to the processor
  • the processor is configured to run the code instructions to perform the method proposed in another embodiment.
  • the computer-readable storage medium provided by an embodiment of the present disclosure is used to store instructions. When the instructions are executed, the method proposed by the embodiment of the present disclosure is implemented.
  • a computer-readable storage medium provided by an embodiment of another aspect of the present disclosure is used to store instructions. When the instructions are executed, the method proposed by the embodiment of another aspect is implemented.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 1 is a schematic flow chart of a PDSCH transmission method provided by an embodiment of the present disclosure
  • Figure 2 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure
  • Figure 3 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 4 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 5 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 6 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 7 is a schematic flow chart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 8 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 9 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 10 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 11 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 12 is a schematic flow chart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 13 is a schematic flowchart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 14 is a schematic flow chart of a PDSCH transmission method provided by yet another embodiment of the present disclosure.
  • Figure 15 is a schematic structural diagram of a PDSCH transmission device provided by another embodiment of the present disclosure.
  • Figure 16 is a schematic structural diagram of a PDSCH transmission device provided by another embodiment of the present disclosure.
  • Figure 17 is a block diagram of a terminal device provided by an embodiment of the present disclosure.
  • Figure 18 is a block diagram of a network side device provided by an embodiment of the present disclosure.
  • first, second, third, etc. may be used to describe various information in the embodiments of the present disclosure, the information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other.
  • first information may also be called second information, and similarly, the second information may also be called first information.
  • the words "if” and “if” as used herein may be interpreted as “when” or “when” or “in response to determining.”
  • the network elements or network functions involved in the embodiments of the present disclosure can be implemented by independent hardware devices or by software in the hardware devices. This is not limited in the embodiments of the present disclosure.
  • MTC and NB-IoT are proposed to support IoT services. These two technologies are mainly targeted at low-speed, high-latency and other scenarios. This scenario may include, for example, meter reading, environmental monitoring and other scenarios. Among them, NB-IoT can currently only support a maximum rate of several hundred kbits, and MTC can currently only support a maximum rate of a few Mbits.
  • IoT services usually require rates of tens to 100M, and also have relatively high latency requirements. Require.
  • enhanced low-capability terminals (Enhanced RedCap, eRedCap) will be introduced, where eRedCap may include, for example, further reducing terminal bandwidth.
  • eRedCap may include, for example, further reducing terminal bandwidth.
  • the bandwidth reduction solution may include a solution that simultaneously reduces the processing bandwidth of RF and baseband.
  • it may also include a solution that does not reduce the RF bandwidth and only reduces the baseband processing bandwidth of data.
  • it may also include a solution that limits the physical resources allocated to the data channel. Number of PRB blocks.
  • a possible implementation method is that the RF bandwidth of the terminal equipment is still 20 MHz, but the transmission of the data channel PDSCH is restricted.
  • the frequency range occupied by the PDSCH cannot exceed 5 MHz, or the total number of PRBs occupied by the PDSCH cannot exceed the number of PRBs corresponding to 5 MHz.
  • the SCS sub-carrier space
  • the number of PRBs occupied by all PDSCHs cannot exceed 25 PRBs.
  • the SCS is 30kHz
  • the number of PRBs occupied by all PDSCHs cannot exceed 11 PRBs.
  • Figure 1 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 1, the method may include the following steps:
  • Step 101 In response to the sending timing of the broadcast PDSCH, determine whether to send unicast PDSCH to the terminal device at the sending timing and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device.
  • the terminal device may be a device that provides voice and/or data connectivity to the user.
  • Terminal devices can communicate with one or more core networks via RAN (Radio Access Network).
  • Terminal devices can be IoT terminals, such as sensor devices, mobile phones (or "cellular" phones) and devices with The computer of the Internet of Things terminal, for example, can be a fixed, portable, pocket-sized, handheld, computer-built-in or vehicle-mounted device.
  • station STA
  • subscriber unit subscriber unit
  • subscriber station subscriber station
  • mobile station mobile station
  • remote station remote station
  • access terminal access terminal
  • user device user terminal
  • user agent useragent
  • the terminal device may also be a device of an unmanned aerial vehicle.
  • the terminal device may also be a vehicle-mounted device, for example, it may be a driving computer with wireless communication function, or a wireless terminal connected to an external driving computer.
  • the terminal device may also be a roadside device, for example, it may be a street light, a signal light or other roadside device with wireless communication function.
  • PDSCH is used to carry data from the transmission channel DSCH.
  • the network side device sends unicast PDSCH to the terminal device, for example, transmitting information to the terminal device on the unicast PDSCH.
  • the resources occupied by the unicast PDSCH allocated to the terminal device may be, for example, the resources occupied by the unicast PDSCH sent to the terminal device.
  • the broadcast PDSCH may be monitored by the terminal device, for example.
  • the broadcast PDSCH may be a broadcast PDSCH sent by the network side device to the terminal device and needs to be monitored by the terminal device.
  • the terminal device may be an enhanced low-capability terminal (Enhanced RedCap, eRedCap).
  • Enhanced RedCap eRedCap
  • the eRedCap can, for example, further reduce the bandwidth of the terminal device. For example, it can be reduced from 20MHz to 5MHz in Frequency range 1 (FR1).
  • determining whether to send unicast PDSCH to the terminal device at the transmission opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device includes:
  • the resources allocated to the terminal device for broadcast PDSCH and unicast PDSCH are within the processing capabilities of the terminal device.
  • determining whether to send unicast PDSCH to the terminal device at the transmission opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device includes:
  • the resources allocated to the broadcast PDSCH and the unicast PDSCH do not exceed the first preset threshold, where the first preset threshold is not less than the processing capability of the terminal device.
  • determining whether to send unicast PDSCH to the terminal device at the transmission opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device includes:
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH include at least one of the following:
  • the first preset threshold may be configured by a network side device, or may be preset based on a protocol.
  • different terminal devices may correspond to different first preset thresholds.
  • the first preset threshold may be determined based on channel quality, for example.
  • the preset threshold corresponding to the terminal device whose channel quality is greater than the quality threshold is greater than the preset threshold corresponding to the terminal device whose channel quality is less than the quality threshold.
  • the first preset threshold refers to the threshold corresponding to the resources occupied by broadcast PDSCH and unicast PDSCH when broadcast PDSCH and unicast PDSCH are transmitted simultaneously. The first of the first preset thresholds is only used to distinguish from the remaining preset thresholds.
  • determining whether to send unicast PDSCH to the terminal device at the transmission opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device includes:
  • the preset priority determine whether to send unicast PDSCH to the terminal equipment at the transmission opportunity and/or determine the resources occupied by unicast PDSCH allocated to the terminal equipment.
  • determining whether to send unicast PDSCH to the terminal equipment at the transmission opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal equipment includes:
  • determining whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determining the resources occupied by the unicast PDSCH allocated to the terminal device includes:
  • the resources occupied by the broadcast PDSCH and the unicast PDSCH allocated to the terminal equipment do not exceed a third preset threshold, wherein the third preset threshold is not less than the terminal equipment. processing power.
  • the third preset threshold is used to indicate the corresponding threshold when determining the resources occupied by the broadcast PDSCH and unicast PDSCH allocated to the terminal device according to the preset priority.
  • the first preset threshold, the second preset threshold and the third preset threshold may be equal preset thresholds or may be different preset thresholds.
  • the first preset threshold, the second preset threshold and the third preset threshold may be the same preset threshold, and the first preset threshold, the second preset threshold and the third preset threshold may also be different from each other.
  • the first preset threshold, the second preset threshold and the third preset threshold can also be equal to the first preset threshold and the second preset threshold, but the first preset threshold and the third preset threshold can be not equal.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • FIG. 2 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 2, the method may include the following steps:
  • Step 201 In response to the fact that the frequency resources occupied by broadcast PDSCH and unicast PDSCH do not exceed the processing capabilities of the terminal equipment, send unicast PDSCH;
  • the resources allocated to the terminal device for broadcast PDSCH and unicast PDSCH are within the processing capabilities of the terminal device.
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH include at least one of the following:
  • the lowest frequency point and the highest frequency point in the broadcast PDSCH and unicast PDSCH may, for example, exist in different PDSCHs or may exist in the same PDSCH.
  • the lowest frequency point in the broadcast PDSCH and the unicast PDSCH may be, for example, the smaller value of the lowest frequency point in the broadcast PDSCH and the lowest frequency point in the unicast PDSCH.
  • the lowest frequency point in broadcast PDSCH and unicast PDSCH may be, for example, the lowest frequency point in broadcast PDSCH.
  • the highest frequency point in the broadcast PDSCH and the unicast PDSCH may be the larger value of the highest frequency point in the broadcast PDSCH and the highest frequency point in the unicast PDSCH.
  • the highest frequency point in the broadcast PDSCH and the unicast PDSCH may be, for example, the highest frequency point in the unicast PDSCH.
  • the terminal device may, for example, send the processing capabilities of the terminal device to the network side device.
  • the processing capability of the terminal equipment refers to the ability of the terminal equipment to process PDSCH.
  • unicast PDSCH in response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH not exceeding the processing capability of the terminal device, unicast PDSCH is sent.
  • the network side device may send broadcast PDSCH and unicast at the same time. PDSCH to the terminal device.
  • the resources of broadcast PDSCH and unicast PDSCH allocated by the network side device to the terminal device are within the processing capability of the terminal device.
  • the terminal device can receive unicast PDSCH.
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH may be, for example, the number of physical resource blocks (PRBs) occupied by broadcast PDSCH and unicast PDSCH.
  • PRBs physical resource blocks
  • the number of PRBs occupied by broadcast PDSCH and Unicast PDSCH cannot exceed 25.
  • the frequency resources occupied by the broadcast PDSCH and the unicast PDSCH may be, for example, the difference between the lowest frequency point and the highest frequency point in the broadcast PDSCH and the unicast PDSCH.
  • the difference between the lowest frequency point and the highest frequency point in broadcast PDSCH and Unicast PDSCH cannot exceed 5MHz.
  • unicast PDSCH in response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH not exceeding the processing capability of the terminal equipment, unicast PDSCH is sent; or in response to sending broadcast PDSCH and unicast PDSCH at the same time, allocated to The broadcast PDSCH and unicast PDSCH resources of the terminal equipment are within the processing capabilities of the terminal equipment.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the embodiments of this disclosure are specific solutions for transmitting unicast PDSCH and resource solutions allocated to broadcast PDSCH and unicast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • FIG 3 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 3, the method may include the following steps:
  • Step 301 In response to the fact that the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceed the processing capability of the terminal equipment and do not exceed the first preset threshold, send unicast PDSCH;
  • the resources allocated to the broadcast PDSCH and the unicast PDSCH do not exceed the first preset threshold, where the first preset threshold is not less than the processing capability of the terminal device.
  • the first preset threshold refers to a threshold that is not less than the processing capability of the terminal device.
  • the preset threshold does not specifically refer to a fixed threshold.
  • the first preset threshold is used to indicate the threshold corresponding to the resources occupied by broadcast PDSCH and unicast PDSCH determined by the network side device when broadcast PDSCH and unicast PDSCH are sent simultaneously.
  • the first of the first preset thresholds is only used to distinguish from the remaining preset thresholds.
  • the processing capability of the terminal device may be, for example, 30 PRBs
  • the first preset threshold may be, for example, 30 PRBs
  • the broadcast PDSCH and The total number of PRBs occupied by Unicast PDSCH can exceed 25, but cannot exceed 30.
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH include at least one of the following:
  • unicast PDSCH in response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceeding the processing capabilities of the terminal equipment and not exceeding the first preset threshold, unicast PDSCH is sent; or in response to simultaneous transmission Broadcast PDSCH and unicast PDSCH, the resources allocated to broadcast PDSCH and unicast PDSCH do not exceed the first preset threshold, where the first preset threshold is not less than the processing capability of the terminal equipment.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the embodiments of this disclosure are specific solutions for transmitting unicast PDSCH and resource solutions allocated to broadcast PDSCH and unicast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 4 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 4, the method may include the following steps:
  • Step 401 In response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceeding the first preset threshold, give up sending unicast PDSCH.
  • the first preset threshold refers to a threshold that is not less than the processing capability of the terminal device.
  • the preset threshold does not specifically refer to a fixed threshold.
  • the first preset threshold is used to indicate the threshold corresponding to the resources occupied by broadcast PDSCH and unicast PDSCH determined by the network side device when broadcast PDSCH and unicast PDSCH are sent simultaneously.
  • the first of the first preset thresholds is only used to distinguish from the remaining preset thresholds.
  • the processing capability of the terminal device may be, for example, 30 PRBs
  • the first preset threshold may be, for example, 30 PRBs
  • the broadcast PDSCH When the total number of PRBs occupied by Unicast PDSCH exceeds 30, the network side device can give up sending unicast PDSCH.
  • unicast PDSCH and broadcast PDSCH can be transmitted based on the frequency resources occupied by broadcast PDSCH and unicast PDSCH, and the transmission mechanism of unicast PDSCH and broadcast PDSCH can be provided, which can improve the convenience of multiple PDSCH transmissions.
  • the disclosed embodiment is a specific solution to give up sending unicast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 5 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 5, the method may include the following steps:
  • Step 501 In response to the broadcast PDSCH transmission timing, determine whether to send unicast PDSCH to the terminal equipment at the transmission timing and/or determine the resources occupied by the unicast PDSCH allocated to the terminal equipment according to the preset priority.
  • the preset priority may, for example, indicate the priorities of various PDSCHs.
  • the preset priority may be, for example: the priority of broadcast PDSCH is lower than the priority of unicast PDSCH, and the priority of unicast PDSCH is lower than the priority of system information block SIB PDSCH.
  • the preset priority may be, for example: the priority of broadcast PDSCH is greater than the priority of unicast PDSCH.
  • the network side device determines whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determines the resources occupied by the unicast PDSCH allocated to the terminal device according to the preset priority, For example, in response to the priority of the unicast PDSCH being higher than the priority of the broadcast PDSCH, sending the unicast PDSCH to the terminal device and/or determining that the resources occupied by the unicast PDSCH allocated to the terminal device do not exceed a second preset threshold, wherein the th 2.
  • the preset threshold is not less than the processing capability of the terminal device.
  • the network side device may send unicast PDSCH to the terminal device.
  • the network side device determines that the resources occupied by the unicast PDSCH allocated to the terminal device do not exceed the second A preset threshold, wherein the second preset threshold is not less than the processing capability of the terminal device.
  • the network side device when the network side device sends unicast PDSCH and/or determines the resources occupied by unicast PDSCH allocated to the terminal device according to the preset priority, the network side device can respond to unicast PDSCH
  • the priority of unicast PDSCH is lower than the priority of broadcast PDSCH, giving up sending unicast PDSCH to the terminal device; or in response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH, determine the resources occupied by broadcast PDSCH and unicast PDSCH allocated to the terminal device does not exceed the second preset threshold, wherein the second preset threshold is not less than the processing capability of the terminal device.
  • the network side device may give up sending unicast PDSCH to the terminal device.
  • the network side device in response to the priority of the system information block SIB PDSCH being higher than the priority of unicast PDSCH, if the network side device simultaneously sends SIB PDSCH and unicast PDSCH to the terminal device, determine SIB PDSCH The resources occupied by unicast PDSCH do not exceed the second preset threshold, where the second preset threshold is not less than the processing capability of the terminal device.
  • the priority of the system information block SIB PDSCH is higher than the priority of the unicast PDSCH. If the network side device simultaneously sends SIB PDSCH and unicast PDSCH to the terminal device, and the resources occupied by the SIB PDSCH and unicast PDSCH in response exceed the second preset threshold, where the second preset threshold is not less than the processing capability of the terminal device, then The network side device gives up sending unicast PDSCH.
  • the present disclosure in response to the sending timing of the broadcast PDSCH, it is determined according to the preset priority whether to send the unicast PDSCH to the terminal device at the sending timing and/or the unicast PDSCH allocated to the terminal device is determined. resources occupied.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the disclosed embodiment specifically discloses a solution for sending unicast PDSCH according to the preset priority.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 6 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 6, the method may include the following steps:
  • Step 601 in response to the priority of the unicast PDSCH being higher than the priority of the broadcast PDSCH, sending the unicast PDSCH to the terminal equipment and/or determining that the resources occupied by the unicast PDSCH allocated to the terminal equipment do not exceed the second preset threshold, wherein the 2.
  • the preset threshold is not less than the processing capability of the terminal device.
  • the second preset threshold is used to indicate the corresponding threshold when determining the resources occupied by the unicast PDSCH allocated to the terminal device according to the preset priority.
  • the network side device may, for example, determine whether to send the unicast PDSCH to the terminal device at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device based on the preset priority.
  • the preset priority may, for example, indicate the priorities of various PDSCHs.
  • the preset priority may be, for example: the priority of broadcast PDSCH is lower than the priority of unicast PDSCH, and the priority of unicast PDSCH is lower than the priority of system information block SIB PDSCH.
  • the preset priority may be, for example: the priority of broadcast PDSCH is greater than the priority of unicast PDSCH.
  • the preset priority may be, for example, that the priority of unicast PDSCH is higher than the priority of broadcast PDSCH, and the network side device may send unicast PDSCH to the terminal device.
  • the preset priority may be, for example, that the priority of unicast PDSCH is higher than the priority of broadcast PDSCH, and the network side device determines that the resources occupied by unicast PDSCH allocated to the terminal device do not exceed the Two preset thresholds, wherein the second preset threshold is not less than the processing capability of the terminal device.
  • the unicast PDSCH in response to the priority of the broadcast PDSCH and the unicast PDSCH being higher than the priority of the broadcast PDSCH, the unicast PDSCH is sent to the terminal device and/or the unicast PDSCH allocated to the terminal device is determined to occupy The resources do not exceed the second preset threshold, wherein the second preset threshold is not less than the processing capability of the terminal device.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the disclosed embodiments specifically disclose a solution for PDSCH transmission when the resources occupied by unicast PDSCH for terminal equipment are determined according to the preset priority, and the priority of unicast PDSCH is higher than the priority of broadcast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 7 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a network side device. As shown in Figure 7, the method may include the following steps:
  • Step 701 In response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH, give up sending unicast PDSCH to the terminal device;
  • the resources occupied by the broadcast PDSCH and the unicast PDSCH allocated to the terminal equipment do not exceed a third preset threshold, wherein the third preset threshold is not less than the terminal equipment. processing power.
  • the third preset threshold is used to indicate the corresponding threshold when determining the resources occupied by the broadcast PDSCH and unicast PDSCH allocated to the terminal device according to the preset priority.
  • the third of the third preset thresholds is only used to distinguish from other preset thresholds.
  • the network side device may, for example, determine whether to send the unicast PDSCH to the terminal device at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device based on the preset priority.
  • the preset priority may, for example, indicate the priorities of various PDSCHs.
  • the preset priority may be, for example: the priority of broadcast PDSCH is lower than the priority of unicast PDSCH, and the priority of unicast PDSCH is lower than the priority of system information block SIB PDSCH.
  • the preset priority may be, for example: the priority of broadcast PDSCH is greater than the priority of unicast PDSCH.
  • the preset priority may be, for example, that the priority of unicast PDSCH is lower than the priority of broadcast PDSCH, and the network side device may give up sending unicast PDSCH to the terminal device.
  • the preset priority may be, for example, that the priority of unicast PDSCH is higher than the priority of broadcast PDSCH, and the network side device determines the resources occupied by the broadcast PDSCH and unicast PDSCH allocated to the terminal device.
  • the resource does not exceed a third preset threshold, where the third preset threshold is not less than the processing capability of the terminal device.
  • unicast PDSCH and broadcast PDSCH in response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH, giving up sending unicast PDSCH to the terminal device; or in response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH level, and determine that the resources occupied by the broadcast PDSCH and unicast PDSCH allocated to the terminal equipment do not exceed a third preset threshold, where the third preset threshold is not less than the processing capability of the terminal equipment.
  • unicast PDSCH and broadcast PDSCH can be transmitted, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the disclosed embodiment specifically discloses a solution for PDSCH transmission when the priority of unicast PDSCH is lower than the priority of broadcast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • FIG 8 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 8, the method may include the following steps:
  • Step 801 In response to the reception timing of the broadcast PDSCH, determine the reception behavior of the broadcast PDSCH and/or unicast PDSCH.
  • determining the reception behavior of broadcast PDSCH and/or unicast PDSCH includes:
  • the unicast PDSCH sent by the network side device is received.
  • determining the reception behavior of broadcast PDSCH and/or unicast PDSCH includes:
  • the first preset threshold is not less than the processing capability of the terminal equipment ability.
  • the method further includes:
  • the PDSCHs that exceed the processing capability of the terminal come from the same PDSCH.
  • the PDSCHs that exceed the processing capability of the terminal come from at least two PDSCHs.
  • the method further includes:
  • the preset threshold is determined.
  • determining the reception behavior of broadcast PDSCH and/or unicast PDSCH includes:
  • the reception behavior of broadcast PDSCH and/or unicast PDSCH is determined according to the preset priority, including:
  • the method further includes:
  • the reception behavior of broadcast PDSCH and/or unicast PDSCH is determined according to the preset priority, including:
  • the reception behavior of the broadcast PDSCH and/or unicast PDSCH is determined.
  • the reception behavior of broadcast PDSCH and/or unicast PDSCH is determined, unicast PDSCH and broadcast PDSCH can be transmitted, and the transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmissions.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 9 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 9, the method may include the following steps:
  • Step 901 In response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceeding the processing capability of the terminal equipment and not exceeding a first preset threshold, determine to receive at least part of the broadcast PDSCH and unicast PDSCH, wherein the first preset threshold is not less than the terminal The processing power of the device.
  • the processing capability of the terminal device is used to indicate the terminal device's ability to receive PDSCH, which may specifically be a frequency resource in the terminal device that supports receiving PDSCH.
  • the terminal equipment in response to the terminal equipment determining that the frequency resources occupied by broadcast PDSCH and unicast PDSCH do not exceed the processing capability of the terminal equipment and do not exceed the first preset threshold, the terminal equipment may receive at least part of the broadcast PDSCH and unicast PDSCH.
  • the present disclosure in response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceeding the processing capability of the terminal equipment and not exceeding the first preset threshold, it is determined to receive at least part of the broadcast PDSCH and unicast PDSCH, Wherein, the first preset threshold is not less than the processing capability of the terminal device.
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceed the processing capability of the terminal equipment and do not exceed the first preset threshold.
  • the terminal equipment can determine to receive at least part of the broadcast PDSCH and unicast PDSCH, and can provide unicast PDSCH and broadcast PDSCH reception mechanism, which can improve the convenience of multiple PDSCH transmissions.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 10 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 10, the method may include the following steps:
  • Step 1001. In response to the frequency resources occupied by the broadcast PDSCH and unicast PDSCH exceeding the processing capabilities of the terminal equipment and not exceeding the first preset threshold, determine to receive at least part of the broadcast PDSCH and unicast PDSCH, and give up receiving PDSCH that exceeds the terminal's processing capabilities, where , the first preset threshold is not less than the processing capability of the terminal device.
  • the terminal device in response to the frequency resources occupied by the broadcast PDSCH and unicast PDSCH exceeding the processing capabilities of the terminal equipment and not exceeding the first preset threshold, it is determined to receive at least part of the broadcast PDSCH and unicast PDSCH, and give up Receive PDSCH that exceeds the terminal's processing capabilities.
  • the terminal device may not receive all broadcast PDSCH and unicast PDSCH.
  • the first preset threshold is not less than the processing capability of the terminal device.
  • the processing capability of the terminal device may be, for example, 30 PRBs
  • the first preset threshold may be, for example, 30 PRBs
  • the broadcast PDSCH and
  • the total number of PRBs occupied by Unicast PDSCH can be, for example, 35.
  • the terminal equipment gives up receiving more than 30 PDSCHs.
  • PDSCHs that exceed the processing capability of the terminal come from the same PDSCH.
  • the PDSCH that exceeds the terminal processing capability comes from the same PDSCH, and the same PDSCH may be, for example, unicast PDSCH.
  • the same PDSCH may be, for example, unicast PDSCH.
  • PDSCH that exceeds the terminal's processing capabilities comes from unicast PDSCH.
  • the terminal device in response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceeding the processing capability of the terminal device and not exceeding the first preset threshold, the terminal device may receive the broadcast PDSCH and give up receiving more than PDSCH of terminal processing capability, among which, PDSCH that exceeds terminal processing capability belongs to unicast PDSCH.
  • the PDSCH that exceeds the terminal processing capability comes from at least two PDSCHs.
  • the terminal equipment may give up receiving part of the broadcast PDSCH and give up receiving part of the unicast PDSCH.
  • the terminal equipment may give up receiving at least one first PDSCH and at least one second PDSCH, wherein at least one first PDSCH comes from unicast PDSCH and at least one second PDSCH comes from broadcast PDSCH.
  • At least one first PDSCH refers to a PDSCH from unicast PDSCH and giving up reception.
  • At least one second PDSCH refers to the PDSCH from the broadcast PDSCH and the reception is abandoned.
  • the first of the first PDSCHs is only used to distinguish it from the second PDSCH, and the first PDSCH does not specifically refer to a fixed PDSCH.
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH in response to the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceeding the processing capability of the terminal equipment and not exceeding the first preset threshold, it is determined to receive at least part of the broadcast PDSCH and unicast PDSCH, Give up receiving PDSCH that exceeds the processing capability of the terminal, where the first preset threshold is not less than the processing capability of the terminal device.
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH exceed the processing capabilities of the terminal equipment and do not exceed the first preset threshold.
  • the terminal equipment can determine to receive at least part of the broadcast PDSCH and unicast PDSCH, and give up receiving more than the terminal equipment.
  • PDSCH with processing capabilities can provide unicast PDSCH and broadcast PDSCH reception mechanisms, which can improve the convenience of multiple PDSCH transmissions.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • FIG 11 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 11, the method may include the following steps:
  • Step 1101 Determine a preset threshold in response to the configuration information sent by the network side device.
  • the terminal device may determine the preset threshold according to the configuration information sent by the network side device.
  • the terminal device may also determine a preset threshold based on a protocol preset.
  • the preset threshold is determined in response to the configuration information sent by the network side device.
  • the preset threshold can be determined based on the configuration information, which can improve the accuracy of the preset threshold determination, reduce the mismatch between the preset threshold and the signal quality, and improve the convenience of multiple PDSCH transmissions.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a preset threshold determination mechanism, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmission.
  • Figure 12 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 12, the method may include the following steps:
  • Step 1201 In response to the reception timing of the broadcast PDSCH, determine the reception behavior of the broadcast PDSCH and/or unicast PDSCH according to the preset priority.
  • the preset priority may, for example, indicate the priorities of various PDSCHs.
  • the preset priority does not specify a fixed priority.
  • the preset priority may be, for example: the priority of broadcast PDSCH is lower than the priority of unicast PDSCH, and the priority of unicast PDSCH is lower than the priority of system information block SIB PDSCH.
  • the preset priority may also be: the priority of broadcast PDSCH is greater than the priority of unicast PDSCH.
  • the terminal equipment when the terminal equipment determines the reception behavior of broadcast PDSCH and/or unicast PDSCH according to the preset priority, for example, it may be in response to the priority of unicast PDSCH being higher than the priority of broadcast PDSCH. , receiving unicast PDSCH sent by the network side device, where the resources occupied by unicast PDSCH do not exceed the processing capabilities of the terminal device.
  • the method further includes the terminal device giving up receiving the broadcast PDSCH or the terminal device receiving part of the broadcast PDSCH.
  • the terminal device may give up receiving the broadcast PDSCH in response to the priority of the unicast PDSCH being higher than the priority of the broadcast PDSCH.
  • the terminal device when the terminal device determines the reception behavior of broadcast PDSCH and/or unicast PDSCH according to the preset priority, for example, it may be in response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH. , receiving unicast PDSCH sent by the network side device, where the resources occupied by broadcast PDSCH and unicast PDSCH do not exceed the processing capabilities of the terminal device.
  • the terminal equipment when the terminal equipment determines the reception behavior of broadcast PDSCH and/or unicast PDSCH according to the preset priority, for example, it may be in response to the system information block SIB PDSCH having a higher priority than unicast PDSCH Priority, receive SIB PDSCH and unicast PDSCH sent by the network side device, where the resources occupied by SIB PDSCH and unicast PDSCH do not exceed the processing capabilities of the terminal device.
  • the network side device sends SIB PDSCH and unicast PDSCH at the same time, and the terminal device determines the receiving behavior of PDSCH according to the preset priority, for example, it may be in response to SIB PDSCH and unicast PDSCH. If the occupied resources exceed the processing capability of the terminal device, the terminal device will give up receiving the unicast PDSCH sent by the network side device.
  • the reception behavior of the broadcast PDSCH and/or unicast PDSCH is determined according to the preset priority.
  • receiving unicast PDSCH sent by the network side device according to the preset priority can provide a receiving mechanism for unicast PDSCH and broadcast PDSCH, which can improve the convenience of multiple PDSCH transmissions.
  • the embodiments of the present disclosure specifically disclose a solution for giving up receiving PDSCHs that exceed a preset threshold and belong to different PDSCHs.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 13 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 13, the method may include the following steps:
  • Step 1301 In response to the priority of unicast PDSCH being higher than the priority of broadcast PDSCH, receive the unicast PDSCH sent by the network side device, where the resources occupied by unicast PDSCH do not exceed the processing capability of the terminal device.
  • the terminal equipment when the terminal equipment determines the reception behavior of broadcast PDSCH and/or unicast PDSCH according to the preset priority, for example, it may be in response to the priority of unicast PDSCH being higher than the priority of broadcast PDSCH. , receiving unicast PDSCH sent by the network side device, where the resources occupied by unicast PDSCH do not exceed the processing capabilities of the terminal device.
  • the method further includes: the terminal device gives up receiving the broadcast PDSCH or the terminal device receives part of the broadcast PDSCH.
  • the terminal device may give up receiving the broadcast PDSCH in response to the priority of the unicast PDSCH being higher than the priority of the broadcast PDSCH.
  • the unicast PDSCH sent by the network side device in response to the priority of unicast PDSCH being higher than the priority of broadcast PDSCH, the unicast PDSCH sent by the network side device is received, wherein the resources occupied by unicast PDSCH do not exceed the resource of the terminal device. processing power.
  • receiving unicast PDSCH sent by the network side device according to the preset priority can provide a receiving mechanism for unicast PDSCH and broadcast PDSCH, which can improve the convenience of multiple PDSCH transmissions.
  • the disclosed embodiment specifically discloses a PDSCH receiving scheme when the priority of unicast PDSCH is higher than the priority of broadcast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 14 is a schematic flowchart of a PDSCH transmission method provided by an embodiment of the present disclosure. The method is executed by a terminal device. As shown in Figure 14, the method may include the following steps:
  • Step 1401 In response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH, receive the unicast PDSCH sent by the network side device, where the resources occupied by broadcast PDSCH and unicast PDSCH do not exceed the processing capabilities of the terminal device.
  • the unicast PDSCH sent by the network side device in response to the priority of unicast PDSCH being lower than the priority of broadcast PDSCH, the unicast PDSCH sent by the network side device is received, wherein the resources occupied by broadcast PDSCH and unicast PDSCH do not exceed The processing power of the terminal device.
  • receiving unicast PDSCH sent by the network side device according to the preset priority can provide a receiving mechanism for unicast PDSCH and broadcast PDSCH, which can improve the convenience of multiple PDSCH transmissions.
  • the disclosed embodiment specifically discloses a PDSCH receiving scheme when the priority of unicast PDSCH is lower than the priority of broadcast PDSCH.
  • the present disclosure provides a processing method for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • Figure 15 is a schematic structural diagram of a PDSCH transmission device provided by an embodiment of the present disclosure. As shown in Figure 15, the device 1500 can be provided on the network side, and the device 1500 can include:
  • the sending module 150 in response to the sending timing of the broadcast PDSCH, determines whether to send the unicast PDSCH to the terminal device at the sending timing and/or determines the resources occupied by the unicast PDSCH allocated to the terminal device.
  • the sending module responds to the sending timing of the broadcast PDSCH, determines whether to send the unicast PDSCH to the terminal equipment at the sending timing and/or determines the number allocated to the terminal equipment.
  • unicast The resources occupied by PDSCH.
  • it can be determined whether to transmit unicast PDSCH and broadcast PDSCH, and a transmission mechanism of unicast PDSCH and broadcast PDSCH is provided, which can improve the convenience of multiple PDSCH transmission.
  • the present disclosure provides a processing device for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • the sending module 1501 is used to determine whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device, Specifically used for:
  • the resources allocated to the terminal device for broadcast PDSCH and unicast PDSCH are within the processing capabilities of the terminal device.
  • the sending module 1501 is used to determine whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device, Specifically used for:
  • the resources allocated to the broadcast PDSCH and the unicast PDSCH do not exceed the first preset threshold, and the first preset threshold is not less than the processing capability of the terminal device.
  • the sending module 1501 is used to determine whether to send the unicast PDSCH to the terminal device at the sending opportunity and/or to determine the resources occupied by the unicast PDSCH allocated to the terminal device. Specifically, use At:
  • the frequency resources occupied by broadcast PDSCH and unicast PDSCH include at least one of the following:
  • the sending module 1501 is used to determine whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determine the resources occupied by the unicast PDSCH allocated to the terminal device, Specifically used for:
  • the preset priority determine whether to send unicast PDSCH to the terminal equipment at the transmission time and/or determine the resources occupied by unicast PDSCH allocated to the terminal equipment.
  • the sending module 1501 is configured to determine whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determine the unicast PDSCH allocated to the terminal device according to the preset priority.
  • resources are specifically used for:
  • the sending module 1501 is configured to determine whether to send unicast PDSCH to the terminal device at the sending opportunity and/or determine the unicast PDSCH allocated to the terminal device according to the preset priority.
  • resources are specifically used for:
  • the unicast PDSCH In response to the priority of the unicast PDSCH being lower than the priority of the broadcast PDSCH, it is determined that the resources occupied by the broadcast PDSCH and the unicast PDSCH allocated to the terminal equipment do not exceed a second preset threshold, wherein the second preset threshold is not less than the terminal equipment. processing power.
  • Figure 16 is a schematic structural diagram of a PDSCH transmission device provided by an embodiment of the present disclosure. As shown in Figure 16, the device 1600 can be provided on the terminal side, and the device 1600 can include:
  • the receiving module 1601 is configured to determine the receiving behavior of the broadcast PDSCH and/or unicast PDSCH in response to the reception timing of the broadcast PDSCH.
  • the reception module determines the reception behavior of the broadcast PDSCH and/or unicast PDSCH in response to the reception timing of the broadcast PDSCH.
  • unicast PDSCH and broadcast PDSCH can be received, and transmission mechanisms of unicast PDSCH and broadcast PDSCH are provided, which can improve the convenience of multiple PDSCH transmissions.
  • the present disclosure provides a processing device for a "PDSCH transmission" situation to provide a transmission mechanism for unicast PDSCH and broadcast PDSCH, which can transmit broadcast PDSCH and unicast PDSCH and improve the convenience of multiple PDSCH transmissions.
  • the receiving module 1601 is used to determine the receiving behavior of broadcast PDSCH and/or unicast PDSCH, specifically for:
  • the unicast PDSCH sent by the network side device is received.
  • the receiving module 1601 is used to determine the receiving behavior of broadcast PDSCH and/or unicast PDSCH, specifically for:
  • the first preset threshold is not less than the processing capability of the terminal equipment ability.
  • the receiving module 1601 is also used to:
  • PDSCHs that exceed the processing capability of the terminal come from the same PDSCH.
  • the PDSCH that exceeds the processing capability of the terminal comes from at least two PDSCHs.
  • the receiving module 1601 is also used to:
  • the preset threshold is determined.
  • the receiving module 1601 is used to determine the receiving behavior of broadcast PDSCH and/or unicast PDSCH, specifically for:
  • the receiving module 1601 is used to determine the receiving behavior of broadcast PDSCH and/or unicast PDSCH according to the preset priority, specifically for:
  • the receiving module 1601 is also used to:
  • the receiving module 1601 when determining the receiving behavior of broadcast PDSCH and/or unicast PDSCH according to the preset priority, is specifically used to:
  • Figure 17 is a block diagram of a terminal device UE1700 provided by an embodiment of the present disclosure.
  • the UE1700 can be a mobile phone, a computer, a digital broadcast terminal device, a messaging device, a game console, a tablet device, a medical device, a fitness device, a personal digital assistant, etc.
  • the UE 1700 may include at least one of the following components: a processing component 1702 , a memory 1704 , a power component 1706 , a multimedia component 1708 , an audio component 1710 , an input/output (I/O) interface 1712 , a sensor component 1714 , and a communication component. 1716.
  • Processing component 1702 generally controls the overall operations of UE 1700, such as operations associated with display, phone calls, data communications, camera operations, and recording operations.
  • the processing component 1702 may include at least one processor 1720 to execute instructions to complete all or part of the steps of the above method. Additionally, processing component 1702 may include at least one module that facilitates interaction between processing component 1702 and other components. For example, processing component 1702 may include a multimedia module to facilitate interaction between multimedia component 1708 and processing component 1702.
  • Memory 1704 is configured to store various types of data to support operations at UE 1700 . Examples of this data include instructions for any application or method operating on the UE1700, contact data, phonebook data, messages, pictures, videos, etc.
  • Memory 1704 may be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EEPROM), Programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic or optical disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read-only memory
  • EEPROM erasable programmable read-only memory
  • EPROM Programmable read-only memory
  • PROM programmable read-only memory
  • ROM read-only memory
  • magnetic memory flash memory, magnetic or optical disk.
  • Power supply component 1706 provides power to various components of UE 1700.
  • Power component 1706 may include a power management system, at least one power supply, and other components associated with generating, managing, and distributing power to UE 1700 .
  • Multimedia component 1708 includes a screen that provides an output interface between the UE 1700 and the user.
  • the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive input signals from the user.
  • the touch panel includes at least one touch sensor to sense touches, slides, and gestures on the touch panel. The touch sensor may not only sense the boundary of the touch or sliding operation, but also detect the wake-up time and pressure related to the touch or sliding operation.
  • multimedia component 1708 includes a front-facing camera and/or a rear-facing camera. When the UE1700 is in an operating mode, such as shooting mode or video mode, the front camera and/or rear camera can receive external multimedia data.
  • Each front-facing camera and rear-facing camera can be a fixed optical lens system or have a focal length and optical zoom capabilities.
  • Audio component 1710 is configured to output and/or input audio signals.
  • audio component 1710 includes a microphone (MIC) configured to receive external audio signals when UE 1700 is in operating modes, such as call mode, recording mode, and voice recognition mode. The received audio signals may be further stored in memory 1704 or sent via communication component 1716 .
  • audio component 1710 also includes a speaker for outputting audio signals.
  • the I/O interface 1712 provides an interface between the processing component 1702 and a peripheral interface module.
  • the peripheral interface module may be a keyboard, a click wheel, a button, etc. These buttons may include, but are not limited to: Home button, Volume buttons, Start button, and Lock button.
  • Sensor component 1714 includes at least one sensor for providing various aspects of status assessment for UE 1700 .
  • the sensor component 1714 can detect the on/off state of the device 1700, the relative positioning of components, such as the display and keypad of the UE 1700, the sensor component 1714 can also detect the position change of the UE 1700 or a component of the UE 1700, the user The presence or absence of contact with the UE1700, the orientation or acceleration/deceleration of the UE1700 and the temperature change of the UE1700.
  • Sensor component 1714 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact.
  • Sensor assembly 1714 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications.
  • the sensor component 1714 may also include an acceleration sensor, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.
  • Communication component 1716 is configured to facilitate wired or wireless communication between UE 1700 and other devices.
  • UE1700 can access wireless networks based on communication standards, such as WiFi, 2G or 3G, or a combination thereof.
  • communication component 1716 receives broadcast signals or broadcast-related information from an external broadcast management system via a broadcast channel.
  • the communications component 1716 also includes a near field communications (NFC) module to facilitate short-range communications.
  • NFC near field communications
  • the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology and other technologies.
  • RFID radio frequency identification
  • IrDA infrared data association
  • UWB ultra-wideband
  • Bluetooth Bluetooth
  • UE 1700 may be configured by at least one application specific integrated circuit (ASIC), digital signal processor (DSP), digital signal processing device (DSPD), programmable logic device (PLD), field programmable gate array ( FPGA), controller, microcontroller, microprocessor or other electronic component implementation for executing the above method.
  • ASIC application specific integrated circuit
  • DSP digital signal processor
  • DSPD digital signal processing device
  • PLD programmable logic device
  • FPGA field programmable gate array
  • controller microcontroller, microprocessor or other electronic component implementation for executing the above method.
  • Figure 18 is a block diagram of a network side device 1800 provided by an embodiment of the present disclosure.
  • the network side device 1800 may be provided as a network side device.
  • the network side device 1800 includes a processing component 1822 , which further includes at least one processor, and a memory resource represented by a memory 1832 for storing instructions, such as application programs, that can be executed by the processing component 1822 .
  • the application program stored in memory 1832 may include one or more modules, each corresponding to a set of instructions.
  • the processing component 1822 is configured to execute instructions to perform any of the foregoing methods applied to the network side device, for example, the method shown in FIG. 1 .
  • the network side device 1800 may also include a power supply component 1826 configured to perform power management of the network side device 1800, a wired or wireless network interface 1850 configured to connect the network side device 1800 to the network, and an input/output (I/O). O)Interface 1858.
  • the network side device 1800 may operate based on an operating system stored in the memory 1832, such as Windows Server TM, Mac OS X TM, Unix TM, Linux TM, Free BSD TM or similar.
  • the methods provided by the embodiments of the present disclosure are introduced from the perspectives of network side equipment and UE respectively.
  • the network side device and the UE may include a hardware structure and a software module to implement the above functions in the form of a hardware structure, a software module, or a hardware structure plus a software module.
  • a certain function among the above functions can be executed by a hardware structure, a software module, or a hardware structure plus a software module.
  • the methods provided by the embodiments of the present disclosure are introduced from the perspectives of network side equipment and UE respectively.
  • the network side device and the UE may include a hardware structure and a software module to implement the above functions in the form of a hardware structure, a software module, or a hardware structure plus a software module.
  • a certain function among the above functions can be executed by a hardware structure, a software module, or a hardware structure plus a software module.
  • the communication device may include a transceiver module and a processing module.
  • the transceiver module may include a sending module and/or a receiving module.
  • the sending module is used to implement the sending function
  • the receiving module is used to implement the receiving function.
  • the transceiving module may implement the sending function and/or the receiving function.
  • the communication device may be a terminal device (such as the terminal device in the foregoing method embodiment), a device in the terminal device, or a device that can be used in conjunction with the terminal device.
  • the communication device may be a network device, a device in a network device, or a device that can be used in conjunction with the network device.
  • the communication device may be a network device, or may be a terminal device (such as the terminal device in the foregoing method embodiment), or may be a chip, chip system, or processor that supports the network device to implement the above method, or may be a terminal device that supports A chip, chip system, or processor that implements the above method.
  • the device can be used to implement the method described in the above method embodiment. For details, please refer to the description in the above method embodiment.
  • a communications device may include one or more processors.
  • the processor may be a general-purpose processor or a special-purpose processor, etc.
  • it can be a baseband processor or a central processing unit.
  • the baseband processor can be used to process communication protocols and communication data
  • the central processor can be used to control and execute communication devices (such as network side equipment, baseband chips, terminal equipment, terminal equipment chips, DU or CU, etc.)
  • a computer program processes data for a computer program.
  • the communication device may also include one or more memories, on which a computer program may be stored, and the processor executes the computer program, so that the communication device performs the method described in the above method embodiment.
  • data may also be stored in the memory.
  • the communication device and the memory can be provided separately or integrated together.
  • the communication device may also include a transceiver and an antenna.
  • the transceiver can be called a transceiver unit, a transceiver, or a transceiver circuit, etc., and is used to implement transceiver functions.
  • the transceiver can include a receiver and a transmitter.
  • the receiver can be called a receiver or a receiving circuit, etc., and is used to implement the receiving function;
  • the transmitter can be called a transmitter or a transmitting circuit, etc., and is used to implement the transmitting function.
  • one or more interface circuits may also be included in the communication device.
  • Interface circuitry is used to receive code instructions and transmit them to the processor.
  • the processor executes the code instructions to cause the communication device to perform the method described in the above method embodiment.
  • the communication device is a network-side device: the processor is used to execute the method shown in any one of Figures 1-7.
  • the communication device is a terminal device (such as the terminal device in the foregoing method embodiment): the processor is configured to execute the method shown in any one of Figures 8 to 14.
  • a transceiver for implementing receiving and transmitting functions may be included in the processor.
  • the transceiver may be a transceiver circuit, an interface, or an interface circuit.
  • the transceiver circuits, interfaces or interface circuits used to implement the receiving and transmitting functions can be separate or integrated together.
  • the above-mentioned transceiver circuit, interface or interface circuit can be used for reading and writing codes/data, or the above-mentioned transceiver circuit, interface or interface circuit can be used for signal transmission or transfer.
  • the processor may store a computer program, and the computer program runs on the processor, causing the communication device to perform the method described in the above method embodiment.
  • the computer program may be embedded in the processor, in which case the processor may be implemented in hardware.
  • the communication device may include a circuit, and the circuit may implement the functions of sending or receiving or communicating in the foregoing method embodiments.
  • the processors and transceivers described in this disclosure may be implemented on integrated circuits (ICs), analog ICs, radio frequency integrated circuits (RFICs), mixed signal ICs, application specific integrated circuits (ASICs), printed circuit boards ( printed circuit board (PCB), electronic equipment, etc.
  • the processor and transceiver can also be manufactured using various IC process technologies, such as complementary metal oxide semiconductor (CMOS), n-type metal oxide-semiconductor (NMOS), P-type Metal oxide semiconductor (positive channel metal oxide semiconductor, PMOS), bipolar junction transistor (BJT), bipolar CMOS (BiCMOS), silicon germanium (SiGe), gallium arsenide (GaAs), etc.
  • CMOS complementary metal oxide semiconductor
  • NMOS n-type metal oxide-semiconductor
  • PMOS P-type Metal oxide semiconductor
  • BJT bipolar junction transistor
  • BiCMOS bipolar CMOS
  • SiGe silicon germanium
  • GaAs gallium arsenide
  • the communication device described in the above embodiments may be a network device or a terminal device (such as the terminal device in the foregoing method embodiment), but the scope of the communication device described in the present disclosure is not limited thereto, and the structure of the communication device may not be limited to limits.
  • the communication device may be a stand-alone device or may be part of a larger device.
  • the communication device may be:
  • the IC collection may also include storage components for storing data and computer programs;
  • the communication device may be a chip or a system on a chip
  • the chip includes a processor and an interface.
  • the number of processors may be one or more, and the number of interfaces may be multiple.
  • the chip also includes a memory for storing necessary computer programs and data.
  • the present disclosure also provides a readable storage medium on which instructions are stored, and when the instructions are executed by a computer, the functions of any of the above method embodiments are implemented.
  • the present disclosure also provides a computer program product, which, when executed by a computer, implements the functions of any of the above method embodiments.
  • the above embodiments it may be implemented in whole or in part by software, hardware, firmware, or any combination thereof.
  • software it may be implemented in whole or in part in the form of a computer program product.
  • the computer program product includes one or more computer programs.
  • the computer program When the computer program is loaded and executed on a computer, the processes or functions described in accordance with the embodiments of the present disclosure are generated in whole or in part.
  • the computer may be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device.
  • the computer program may be stored in or transferred from one computer-readable storage medium to another, for example, the computer program may be transferred from a website, computer, server, or data center Transmission to another website, computer, server or data center through wired (such as coaxial cable, optical fiber, digital subscriber line (DSL)) or wireless (such as infrared, wireless, microwave, etc.) means.
  • the computer-readable storage medium may be any available medium that can be accessed by a computer or a data storage device such as a server, data center, etc. that contains one or more available media integrated therein.
  • the available media may be magnetic media (e.g., floppy disks, hard disks, magnetic tapes), optical media (e.g., high-density digital video discs (DVD)), or semiconductor media (e.g., solid state disks, SSD)) etc.
  • magnetic media e.g., floppy disks, hard disks, magnetic tapes
  • optical media e.g., high-density digital video discs (DVD)
  • DVD digital video discs
  • semiconductor media e.g., solid state disks, SSD
  • At least one in the present disclosure can also be described as one or more, and the plurality can be two, three, four or more, and the present disclosure is not limited.
  • the technical feature is distinguished by “first”, “second”, “third”, “A”, “B”, “C” and “D” etc.
  • the technical features described in “first”, “second”, “third”, “A”, “B”, “C” and “D” are in no particular order or order.

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Abstract

本公开提出一种PDSCH传输方法、装置、设备及存储介质,属于通信技术领域。该方法包括响应于广播PDSCH的发送时机,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。本公开针对一种"PDSCH传输"这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。

Description

PDSCH传输方法、装置 技术领域
本公开涉及通信技术领域,尤其涉及一种物理下行共享信道(physical downlink shared channel,PDSCH)传输方法、装置、设备及存储介质。
背景技术
在通信系统中,长期演进技术(Long Term Evolution,LTE)第四代移动通信技术(the 4th generation mobile communication technology,4G)中,为了支持物联网业务,提出了机器型通信(machine-type communication,MTC),窄带物联网(Narrow Band Internet of Things,NB-IoT)两大技术。随着物联网业务的不断发展,对于速率和时延有了更高的要求。低能力终端(Reduced capability UE)的出现用以覆盖中端物联网设备的要求。但是,在相关技术中,对数据信道PDSCH的传输进行了限制,并未涉及多个PDSCH的传输机制,使得unicast PDSCH和广播PDSCH的传输的便利性较差。
发明内容
本公开提出的一种PDSCH传输方法、装置、设备及存储介质,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
本公开一方面实施例提出的一种物理下行共享信道PDSCH传输方法,所述方法由网络侧设备执行,所述方法包括:
响应于广播PDSCH的发送时机,确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源。
可选地,在本公开的一个实施例之中,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送所述unicast PDSCH;
响应于同时发送广播PDSCH和所述unicast PDSCH,分配给所述终端设备的所述广播PDSCH和所述unicast PDSCH的资源在终端设备的处理能力之内。
可选地,在本公开的一个实施例之中,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
响应于广播PDSCH与所述unicast PDSCH所占用的频率资源超过所述终端设备的处理能力,且不超过第一预设阈值,发送所述unicast PDSCH;
响应于同时发送所述广播PDSCH与所述unicast PDSCH,分配给所述广播PDSCH和所述unicast PDSCH所占用的资源不超过所述第一预设阈值,其中,所述第一预设阈值不小于所述终端设备的处理能力。
可选地,在本公开的一个实施例之中,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源超过第一预设阈值,放弃发送所述unicast PDSCH。
可选地,在本公开的一个实施例之中,所述广播PDSCH与所述unicast PDSCH所占用的频率资源,包括以下至少一种:
所述广播PDSCH与所述unicast PDSCH所占用的物理资源块(Physical resource block,PRB)个数;
所述广播PDSCH与所述unicast PDSCH中的最低频点和最高频点的差值。
可选地,在本公开的一个实施例之中,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终 端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
根据预设优先级,确定是否在所述发送时机发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源。
可选地,在本公开的一个实施例之中,所述根据预设优先级,确定是否在所述发送时机发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
响应于所述unicast PDSCH的优先级高于所述广播PDSCH的优先级,发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,所述第二预设阈值不小于所述终端设备的处理能力。
可选地,在本公开的一个实施例之中,所述根据预设优先级,确定是否在所述发送时机发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
响应于所述unicast PDSCH的优先级低于所述广播PDSCH的优先级,放弃发送所述unicast PDSCH至所述终端设备;
响应于所述unicast PDSCH的优先级低于所述广播PDSCH的优先级,确定分配给所述终端设备的所述广播PDSCH和所述unicast PDSCH所占用的资源不超过第三预设阈值,其中,所述第三预设阈值不小于所述终端设备的处理能力。
本公开另一方面实施例提出的一种PDSCH传输方法,其特征在于,所述方法由终端设备执行,所述方法包括:
响应于广播PDSCH的接收时机,确定所述广播PDSCH和/或unicast PDSCH的接收行为。
可选地,在本公开的一个实施例之中,确定所述广播PDSCH和/或unicast PDSCH的接收行为,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,接收网络侧设备发送的unicast PDSCH。
可选地,在本公开的一个实施例之中,确定所述广播PDSCH和/或unicast PDSCH的接收行为,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力但不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,其中,第一预设阈值不小于终端设备的处理能力。
可选地,在本公开的一个实施例之中,所述方法还包括:
放弃接收超过所述终端处理能力的PDSCH。
可选地,在本公开的一个实施例之中,其中,所述超过所述终端处理能力的PDSCH来自于同一个PDSCH。
可选地,在本公开的一个实施例之中,其中,所述超过所述终端处理能力的PDSCH至少来自于两个PDSCH。
可选地,在本公开的一个实施例之中,所述方法还包括:
响应于所述网络侧设备发送的配置信息,确定所述预设阈值。
可选地,在本公开的一个实施例之中,所述确定所述广播PDSCH和/或unicast PDSCH的接收行为,包括:
根据预设优先级,确定所述广播PDSCH和/或所述unicast PDSCH的接收行为。
可选地,在本公开的一个实施例之中,所述根据预设优先级,确定所述广播PDSCH和/或所述unicast PDSCH的接收行为,包括:
响应于所述unicast PDSCH的优先级高于所述广播PDSCH的优先级,接收所述网络侧设备发送的所述unicast PDSCH,其中,所述unicast PDSCH所占用的资源不超过所述终端设备的处理能力。
可选地,在本公开的一个实施例之中,所述方法还包括:
放弃接收所述广播PDSCH;
接收部分所述广播PDSCH。
可选地,在本公开的一个实施例之中,所述根据预设优先级,确定所述广播PDSCH和/或所述unicast  PDSCH的接收行为,包括:
响应于所述unicast PDSCH的优先级低于所述广播PDSCH的优先级,接收所述网络侧设备发送的所述unicast PDSCH,其中,所述广播PDSCH和所述unicast PDSCH所占用的资源不超过所述终端设备的处理能力。
本公开一方面实施例提出的一种PDSCH传输装置,所述装置设置于网络侧,所述装置包括:
发送模块,用于响应于广播PDSCH的发送时机,确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源。
本公开又一方面实施例提出的一种PDSCH传输装置,所述装置设置于终端侧,所述装置包括:
接收模块,用于响应于广播PDSCH的接收时机,确定所述广播PDSCH和/或unicast PDSCH的接收行为。
本公开一方面实施例提出的一种网络侧设备,所述设备包括处理器和存储器,所述存储器中存储有计算机程序,所述处理器执行所述存储器中存储的计算机程序,以使所述装置执行如上一方面实施例提出的方法。
本公开又一方面实施例提出的一种终端设备,所述设备包括处理器和存储器,所述存储器中存储有计算机程序,所述处理器执行所述存储器中存储的计算机程序,以使所述装置执行如上另一方面实施例提出的方法。
本公开一方面实施例提出的通信装置,包括:处理器和接口电路;
所述接口电路,用于接收代码指令并传输至所述处理器;
所述处理器,用于运行所述代码指令以执行如一方面实施例提出的方法。
本公开又一方面实施例提出的通信装置,包括:处理器和接口电路;
所述接口电路,用于接收代码指令并传输至所述处理器;
所述处理器,用于运行所述代码指令以执行如另一方面实施例提出的方法。
本公开一方面实施例提出的计算机可读存储介质,用于存储有指令,当所述指令被执行时,使如一方面实施例提出的方法被实现。
本公开又一方面实施例提出的计算机可读存储介质,用于存储有指令,当所述指令被执行时,使如另一方面实施例提出的方法被实现。
综上所述,在本公开实施例之中,响应于广播PDSCH的发送时机,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
附图说明
本公开上述的和/或附加的方面和优点从下面结合附图对实施例的描述中将变得明显和容易理解,其中:
图1为本公开一个实施例所提供的一种PDSCH传输方法的流程示意图;
图2为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图3为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图4为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图5为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图6为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图7为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图8为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图9为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图10为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图11为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图12为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图13为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图14为本公开又一个实施例所提供的一种PDSCH传输方法的流程示意图;
图15为本公开另一个实施例所提供的一种PDSCH传输装置的结构示意图;
图16为本公开另一个实施例所提供的一种PDSCH传输装置的结构示意图;
图17为本公开一个实施例所提供的一种终端设备的框图
图18为本公开一个实施例所提供的一种网络侧设备的框图。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开实施例相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开实施例的一些方面相一致的装置和方法的例子。
在本公开实施例使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本公开实施例。在本公开实施例和所附权利要求书中所使用的单数形式的“一种”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。还应当理解,本文中使用的术语“和/或”是指并包含一个或多个相关联的列出项目的任何或所有可能组合。
应当理解,尽管在本公开实施例可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如,在不脱离本公开实施例范围的情况下,第一信息也可以被称为第二信息,类似地,第二信息也可以被称为第一信息。取决于语境,如在此所使用的词语“如果”及“若”可以被解释成为“在……时”或“当……时”或“响应于确定”。
在本公开实施例中涉及的网元或是网络功能,其既可以是独立的硬件设备实现,也可以通过硬件设备中的软件实现,本公开实施例中并不对此做出限定。
在LTE 4G系统中,为了支持物联网业务提出了MTC和NB-IoT两大技术。这两大技术主要针对的是低速率,高时延等场景。该场景例如可以包括抄表,环境监测等场景。其中,NB-IoT目前最大只能支持几百k的速率,MTC目前最大只能支持几M的速率。但随着物联网业务的不断发展,比如视频监控,智能家居,可穿戴设备和工业传感监测等业务的普及,物联网业务通常要求几十到100M的速率,同时对时延也有相对较高的要求。因此LTE中的MTC和NB-IoT技术很难满足要求。基于这种情况,用户提出在第五代移动通信技术(5th Generation Mobile Communication Technology,简称5G)新空口(New Radio,NR)中再设计一种新的用户设备用以来覆盖这种中端物联网设备的要求。在3GPP标准化中,这种新的用户设备例如可以叫做低能力终端设备(Reduced capability UE)。
以及,在本公开的一个实施例之中,在R18中,将引入增强型低能力终端(Enhanced RedCap,eRedCap),其中,eRedCap例如可以包括进一步缩减终端带宽。例如在FR1下进一步从20MHz缩减到5MHz。对于带宽缩减方案例如可以包括同时缩减射频RF和基带的处理带宽的方案,例如还可以包括不缩减RF带宽,只缩减数据的基带处理带宽的方案,例如还可以包括限制分配给数据信道的物理资源块PRB个数。
在相关技术中,一种可能的实现方式是终端设备的RF带宽仍然为20MHz,但是对于数据信道PDSCH的传输进行了限制。例如限制PDSCH所占用的频率范围不能超过5MHz,或者限制PDSCH所占用的总的PRB的个数不能超过5MHz对应的PRB个数。例如在子载波间隔(sub-carrierspace,SCS)为15k Hz下,所有PDSCH所占用的PRB个数不能超过25个PRB。在SCS为30kHz下,所有PDSCH所占用的PRB个数不能超过11个PRB。
下面参考附图对本公开实施例所提供的一种PDSCH传输方法、装置、设备及存储介质进行详细描述。
图1为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图1所示,该方法可以包括以下步骤:
步骤101、响应于广播PDSCH的发送时机,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。
需要说明的是,在本公开的一个实施例之中,终端设备可以是指向用户提供语音和/或数据连通性的设备。终端设备可以经RAN(Radio Access Network,无线接入网)与一个或多个核心网进行通信,终端设备可以是物联网终端,如传感器设备、移动电话(或称为“蜂窝”电话)和具有物联网终端的计算机,例如,可以是固定式、便携式、袖珍式、手持式、计算机内置的或者车载的装置。例如,站(Station,STA)、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、远程终端(remoteterminal)、接入终端(access terminal)、用户装置(user terminal)或用户代理(useragent)。或者,终端设备也可以是无人飞行器的设备。或者,终端设备也可以是车载设备,比如,可以是具有无线通信功能的行车电脑,或者是外接行车电脑的无线终端。或者,终端设备也可以是路边设备,比如,可以是具有无线通信功能的路灯、信号灯或者其它路边设备等。
其中,在本公开的一个实施例之中,PDSCH用于承载来自传输信道DSCH的数据,网络侧设备发送单播unicast PDSCH至终端设备例如可以是在unicast PDSCH上传输信息至终端设备。其中,分配给终端设备的unicast PDSCH所占用的资源例如可以是给终端设备发送的unicast PDSCH所占用的资源。
以及,在本公开的一个实施例之中,广播PDSCH例如可以是终端设备监测的,该广播PDSCH例如可以是网络侧设备给终端设备发送的且需要终端设备监测的广播PDSCH。
示例地,在本公开的一个实施例之中,终端设备例如可以是增强型低能力终端(Enhanced RedCap,eRedCap)。在R18中,该eRedCap例如可以进一步缩减终端设备的带宽。例如,可以在Frequency range 1(FR1)中从20MHz缩减到5MHz。
其中,在本公开的一个实施例之中,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送unicast PDSCH;
响应于同时发送广播PDSCH和unicast PDSCH,分配给终端设备的广播PDSCH和unicast PDSCH的资源在终端设备的处理能力之内。
以及,在本公开的一个实施例之中,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力,且不超过预设阈值,发送unicast PDSCH;
响应于同时发送广播PDSCH与unicast PDSCH,分配给广播PDSCH和unicast PDSCH所占用的资源不超过第一预设阈值,其中,第一预设阈值不小于终端设备的处理能力。
以及,在本公开的一个实施例之中,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源超过第一预设阈值,放弃发送unicast PDSCH。
以及,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源,包括以下至少一种:
广播PDSCH与unicast PDSCH所占用的物理资源块PRB个数;
广播PDSCH与unicast PDSCH中的最低频点和最高频点的差值。
其中,在本公开的一个实施例之中,第一预设阈值例如可以是网络侧设备配置的,还可以是基于协议 预设的。其中,不同的终端设备例如可以对应不同的第一预设阈值。该第一预设阈值例如可以基于信道质量确定。例如,信道质量大于质量阈值的终端设备对应的预设阈值大于信道质量小于质量阈值的终端设备对应的预设阈值。第一预设阈值是指在同时发送广播PDSCH与unicast PDSCH时,与广播PDSCH和unicast PDSCH所占用的资源对应的阈值。该第一预设阈值中的第一仅用于与其余预设阈值进行区分。
示例地,在本公开的一个实施例之中,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源,包括:
根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。
以及,在本公开的一个实施例之中,根据预设优先级,确定是否发送在发送时机unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源,包括:
响应于unicast PDSCH的优先级高于广播PDSCH的优先级,发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
示例地,在本公开的一个实施例之中,根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源,包括:
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,放弃发送unicast PDSCH至终端设备;
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源不超过第三预设阈值,其中,第三预设阈值不小于终端设备的处理能力。
其中,在本公开的一个实施例之中,第三预设阈值用于指示根据预设优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源时所对应的阈值。
示例地,在本公开的一个实施例之中,第一预设阈值、第二预设阈值和第三预设阈值可以是相等的预设阈值,也可以是不同的预设阈值。例如,第一预设阈值、第二预设阈值和第三预设阈值例如可以是同一预设阈值,第一预设阈值、第二预设阈值和第三预设阈值例如还可以互不相等的预设阈值,第一预设阈值、第二预设阈值和第三预设阈值例如还可以第一预设阈值与第二预设阈值相等,但是第一预设阈值和第三预设阈值不相等。
综上所述,在本公开实施例之中,响应于广播PDSCH的发送时机,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图2为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图2所示,该方法可以包括以下步骤:
步骤201、响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送unicast PDSCH;
响应于同时发送广播PDSCH和unicast PDSCH,分配给终端设备的广播PDSCH和unicast PDSCH的资源在终端设备的处理能力之内。
其中,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源,包括以下至少一种:
广播PDSCH与unicast PDSCH所占用的物理资源块PRB个数;
广播PDSCH与unicast PDSCH中的最低频点和最高频点的差值。
其中,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH中的最低频点和最高频点例如可以 存在于不同的PDSCH中,也可以存在于同一PDSCH中。
示例地,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH中的最低频点例如可以是广播PDSCH中的最低频点与unicast PDSCH中的最低频点的较小值。例如,广播PDSCH中的最低频点小于unicast PDSCH中的最低频点时,广播PDSCH与unicast PDSCH中的最低频点例如可以是广播PDSCH中的最低频点。
示例地,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH中的最高频点例如可以是广播PDSCH中的最高频点与unicast PDSCH中的最高频点的较大值。例如,广播PDSCH中的最高频点小于unicast PDSCH中的最高频点时,广播PDSCH与unicast PDSCH中的最高频点例如可以是unicast PDSCH中的最高频点。
以及,在本公开的一个实施例之中,终端设备例如可以发送终端设备的处理能力至网络侧设备。其中,终端设备的处理能力是指终端设备可以处理PDSCH的能力。
示例地,在本公开的一个实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送unicast PDSCH,例如可以是,网络侧设备同时发送广播PDSCH和unicast PDSCH至终端设备。
以及,在本公开的一个实施例之中,响应于同时发送广播PDSCH和unicast PDSCH,网络侧设备分配给终端设备的广播PDSCH和unicast PDSCH的资源在终端设备的处理能力之内。终端设备可以接收unicast PDSCH。
示例地,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源例如可以是广播PDSCH与unicast PDSCH所占用的物理资源块PRB个数。例如,在SCS为15k Hz的情况下,广播PDSCH与Unicast PDSCH共占用的PRB个数不能超过25个。
示例地,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源例如可以是广播PDSCH与unicast PDSCH中的最低频点和最高频点的差值。例如,广播PDSCH与Unicast PDSCH中的最低频点与最高频点之间的差值不能超过5MHz。
综上所述,在本公开实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送unicast PDSCH;或响应于同时发送广播PDSCH和unicast PDSCH,分配给终端设备的广播PDSCH和unicast PDSCH的资源在终端设备的处理能力之内。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开实施例为发送unicast PDSCH的具体方案和分配给广播PDSCH和unicast PDSCH的资源方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图3为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图3所示,该方法可以包括以下步骤:
步骤301、响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力,且不超过第一预设阈值,发送unicast PDSCH;
响应于同时发送广播PDSCH与unicast PDSCH,分配给广播PDSCH和unicast PDSCH所占用的资源不超过第一预设阈值,其中,第一预设阈值不小于终端设备的处理能力。
其中,在本公开的一个实施例之中,第一预设阈值是指不小于终端设备的处理能力的阈值。该预设阈值并不特指某一固定阈值。第一预设阈值用于指示在同时发送广播PDSCH与unicast PDSCH时,网络侧设备确定的与广播PDSCH和unicast PDSCH所占用的资源对应的阈值。该第一预设阈值中的第一仅用于与其余预设阈值进行区分。
示例地,在本公开的一个实施例之中,在SCS为15k Hz的情况下,终端设备的处理能力例如可以是例如30个PRB,第一预设阈值例如可以是30个PRB,广播PDSCH与Unicast PDSCH共占用的PRB个数 可以超过25个,但是不能超过30个。
其中,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源,包括以下至少一种:
广播PDSCH与unicast PDSCH所占用的物理资源块PRB个数;
广播PDSCH与unicast PDSCH中的最低频点和最高频点的差值。
综上所述,在本公开实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力,且不超过第一预设阈值,发送unicast PDSCH;或响应于同时发送广播PDSCH与unicast PDSCH,分配给广播PDSCH和unicast PDSCH所占用的资源不超过第一预设阈值,其中,第一预设阈值不小于终端设备的处理能力。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开实施例为发送unicast PDSCH的具体方案和分配给广播PDSCH和unicast PDSCH的资源方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图4为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图4所示,该方法可以包括以下步骤:
步骤401,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过第一预设阈值,放弃发送unicast PDSCH。
其中,在本公开的一个实施例之中,第一预设阈值是指不小于终端设备的处理能力的阈值。该预设阈值并不特指某一固定阈值。第一预设阈值用于指示在同时发送广播PDSCH与unicast PDSCH时,网络侧设备确定的与广播PDSCH和unicast PDSCH所占用的资源对应的阈值。该第一预设阈值中的第一仅用于与其余预设阈值进行区分。
示例地,在本公开的一个实施例之中,在SCS为15k Hz的情况下,终端设备的处理能力例如可以是例如30个PRB,第一预设阈值例如可以是30个PRB,广播PDSCH与Unicast PDSCH共占用的PRB个数超过30个时,网络侧设备可以放弃发送unicast PDSCH。
综上所述,在本公开实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过第一预设阈值,放弃发送unicast PDSCH。在本公开实施例之中,可以基于广播PDSCH与unicastPDSCH所占用的频率资源,对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开实施例为放弃发送unicast PDSCH的具体方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图5为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图5所示,该方法可以包括以下步骤:
步骤501,响应于广播PDSCH的发送时机,根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。
其中,在本公开的一个实施例之中,该预设优先级例如可以指示各种PDSCH的优先级。该预设优先级例如可以是:广播PDSCH的优先级小于单播unicast PDSCH的优先级,unicast PDSCH的优先级小于系统信息块SIB PDSCH的优先级。该预设优先级例如可以是:广播PDSCH的优先级大于单播unicast PDSCH的优先级。
进一步地,在本公开的一个实施例之中,网络侧设备根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源时,例如可以是响应于unicast PDSCH的优先级高于广播PDSCH的优先级,发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
示例地,在本公开的一个实施例之中,例如当unicast PDSCH的接收优先级高于广播PDSCH的接收优先级时,网络侧设备可以发送unicast PDSCH至终端设备。
示例地,在本公开的一个实施例之中,例如当unicast PDSCH的接收优先级高于广播PDSCH的接收优先级时,网络侧设备确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
进一步地,在本公开的一个实施例之中,网络侧设备根据预设优先级,发送unicast PDSCH和/或确定分配给终端设备的unicast PDSCH所占用的资源时,网络侧设备可以响应于unicast PDSCH的优先级低于广播PDSCH的优先级,放弃发送unicast PDSCH至终端设备;或响应于unicast PDSCH的优先级低于广播PDSCH的优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
示例地,在本公开的一个实施例之中,例如当unicast PDSCH的优先级低于广播PDSCH的优先级时,网络侧设备可以放弃发送unicast PDSCH至终端设备。
示例地,在本公开的一个实施例之中,响应于系统信息块SIB PDSCH的优先级高于unicast PDSCH的优先级,如果网络侧设备同时发送SIB PDSCH和unicast PDSCH至终端设备时,确定SIB PDSCH和unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
示例地,在本公开的一个实施例之中,系统信息块SIB PDSCH的优先级高于unicast PDSCH的优先级。如果网络侧设备同时发送SIB PDSCH和unicast PDSCH至终端设备时,响应于SIB PDSCH和unicast PDSCH所占用的资源超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力,则网络侧设备放弃发送unicast PDSCH。
综上所述,在本公开实施例之中,响应于广播PDSCH的发送时机,根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开实施例具体公开了根据预设优先级发送unicast PDSCH的方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图6为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图6所示,该方法可以包括以下步骤:
步骤601,响应于unicast PDSCH的优先级高于广播PDSCH的优先级,发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
其中,在本公开的一个实施例之中,第二预设阈值用于指示根据预设优先级,确定分配给终端设备的unicast PDSCH所占用的资源时所对应的阈值。
其中,在本公开的一个实施例之中,网络侧设备例如可以根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。该预设优先级例如可以指示各种PDSCH的优先级。该预设优先级例如可以是:广播PDSCH的优先级小于单播unicast PDSCH的优先级,unicast PDSCH的优先级小于系统信息块SIB PDSCH的优先级。该预设优先级例如可以是:广播PDSCH的优先级大于单播unicast PDSCH的优先级。
以及,在本公开的一个实施例之中,预设优先级例如可以是unicast PDSCH的优先级高于广播PDSCH的优先级,网络侧设备可以发送unicast PDSCH至终端设备。
以及,在本公开的一个实施例之中,预设优先级例如可以是unicast PDSCH的优先级高于广播PDSCH的优先级,网络侧设备确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
综上所述,在本公开实施例之中,响应于广播PDSCH和unicast PDSCH的优先级高于广播PDSCH的优先级,发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH 传输的便利性。本公开实施例具体公开了根据预设优先级确定给终端设备的unicast PDSCH所占用的资源,且unicast PDSCH的优先级高于广播PDSCH的优先级时进行PDSCH传输的方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图7为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由网络侧设备执行,如图7所示,该方法可以包括以下步骤:
步骤701、响应于unicast PDSCH的优先级低于广播PDSCH的优先级,放弃发送unicast PDSCH至终端设备;
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源不超过第三预设阈值,其中,第三预设阈值不小于终端设备的处理能力。
其中,在本公开的一个实施例之中,第三预设阈值用于指示根据预设优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源时所对应的阈值。其中,第三预设阈值中的第三仅用于与其他预设阈值进行区分。
其中,在本公开的一个实施例之中,网络侧设备例如可以根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。该预设优先级例如可以指示各种PDSCH的优先级。该预设优先级例如可以是:广播PDSCH的优先级小于单播unicast PDSCH的优先级,unicast PDSCH的优先级小于系统信息块SIB PDSCH的优先级。该预设优先级例如可以是:广播PDSCH的优先级大于单播unicast PDSCH的优先级。
以及,在本公开的一个实施例之中,预设优先级例如可以是unicast PDSCH的优先级低于广播PDSCH的优先级,网络侧设备可以放弃发送unicast PDSCH至终端设备。
以及,在本公开的一个实施例之中,预设优先级例如可以是unicast PDSCH的优先级高于广播PDSCH的优先级,网络侧设备确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源不超过资源不超过第三预设阈值,其中,第三预设阈值不小于终端设备的处理能力。
综上所述,在本公开实施例之中,响应于unicast PDSCH的优先级低于广播PDSCH的优先级,放弃发送unicast PDSCH至终端设备;或响应于unicast PDSCH的优先级低于广播PDSCH的优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源资源不超过第三预设阈值,其中,第三预设阈值不小于终端设备的处理能力。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开实施例具体公开了unicast PDSCH的优先级低于广播PDSCH的优先级时进行PDSCH传输的方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图8为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图8所示,该方法可以包括以下步骤:
步骤801、响应于广播PDSCH的接收时机,确定广播PDSCH和/或unicast PDSCH的接收行为。
进一步地,在本公开的一个实施例之中,确定广播PDSCH和/或unicast PDSCH的接收行为,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,接收网络侧设备发送的unicast PDSCH。
其中,在本公开的一个实施例之中,确定广播PDSCH和/或unicast PDSCH的接收行为,包括:
响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,其中,第一预设阈值不小于终端设备的处理能力。
其中,在本公开的一个实施例之中,该方法还包括:
放弃接收超过终端处理能力的PDSCH。
示例地,在本公开的一个实施例之中,其中,超过终端处理能力的PDSCH来自于同一个PDSCH。
示例地,在本公开的一个实施例之中,其中,超过终端处理能力的PDSCH至少来自于两个PDSCH。
示例地,在本公开的一个实施例之中,该方法还包括:
响应于网络侧设备发送的配置信息,确定预设阈值。
进一步地,在本公开的一个实施例之中,确定广播PDSCH和/或unicast PDSCH的接收行为,包括:
根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为。
进一步地,在本公开的一个实施例之中,根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为,包括:
响应于unicast PDSCH的优先级高于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,unicast PDSCH所占用的资源不超过终端设备的处理能力。
进一步地,在本公开的一个实施例之中,该方法还包括:
放弃接收广播PDSCH;
接收部分广播PDSCH。
进一步地,在本公开的一个实施例之中,根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为,包括:
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,广播PDSCH和unicast PDSCH所占用的资源不超过终端设备的处理能力。
综上所述,在本公开实施例之中,响应于广播PDSCH的接收时机,确定广播PDSCH和/或unicast PDSCH的接收行为。在本公开实施例之中,确定广播PDSCH和/或unicast PDSCH的接收行为,可以对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图9为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图9所示,该方法可以包括以下步骤:
步骤901、响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,其中,第一预设阈值不小于终端设备的处理能力。
其中,在本公开的一个实施例之中,终端设备的处理能力用于指示终端设备接收PDSCH的能力,具体可以是终端设备中支持接收PDSCH的频率资源。
以及,在本公开的一个实施例之中,响应于终端设备确定广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力且不超过第一预设阈值,终端设备可以接收至少部分广播PDSCH和unicast PDSCH。
综上所述,在本公开实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,其中,第一预设阈值不小于终端设备的处理能力。在本公开实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,终端设备可以确定接收至少部分广播PDSCH和unicast PDSCH,可以提供unicast PDSCH和广播PDSCH的接收机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图10为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图10所示,该方法可以包括以下步骤:
步骤1001、响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,放弃接收超过终端处理能力的PDSCH, 其中,第一预设阈值不小于终端设备的处理能力。
以及,在本公开的一个实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,放弃接收超过终端处理能力的PDSCH。例如可以是终端设备不会接收全部的广播PDSCH与unicast PDSCH。其中,第一预设阈值不小于终端设备的处理能力。
示例地,在本公开的一个实施例之中,在scs为15k Hz的情况下,终端设备的处理能力例如可以是例如30个PRB,第一预设阈值例如可以是30个PRB,广播PDSCH与Unicast PDSCH共占用的PRB个数例如可以是35个。终端设备放弃接收超过30个的PDSCH。
其中,在本公开的一个实施例之中,超过终端处理能力的PDSCH来自于同一个PDSCH。
其中,在本公开的一个实施例之中,超过终端处理能力的PDSCH来自于同一个PDSCH,该同一个PDSCH例如可以是unicast PDSCH。例如,超过终端处理能力的PDSCH来自于unicast PDSCH。
示例地,在本公开的一个实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,终端设备可以接收广播PDSCH,放弃接收超过终端处理能力的PDSCH,其中,超过终端处理能力的PDSCH属于unicast PDSCH。
其中,在本公开的一个实施例之中,超过终端处理能力的PDSCH至少来自于两个PDSCH。例如,响应于广播PDSCH与unicast PDSCH所占用的频率资源终端设备的处理能力且不超过第一预设阈值,终端设备可以放弃接收部分广播PDSCH和放弃接收部分unicast PDSCH。例如,终端设备可以放弃接收至少一个第一PDSCH和至少一个第二PDSCH,其中,至少一个第一PDSCH来自于unicast PDSCH,至少一个第二PDSCH来自于广播PDSCH。
以及,在本公开的一个实施例之中,至少一个第一PDSCH是指来自于unicast PDSCH且放弃接收的PDSCH。至少一个第二PDSCH是指来自于广播PDSCH且放弃接收的PDSCH。第一PDSCH中的第一仅用于与第二PDSCH进行区分,该第一PDSCH并不特指某一固定PDSCH。
综上所述,在本公开实施例之中,响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,放弃接收超过终端处理能力的PDSCH,其中,第一预设阈值不小于终端设备的处理能力。在本公开实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力且不超过第一预设阈值,终端设备可以确定接收至少部分广播PDSCH和unicast PDSCH,放弃接收超过终端处理能力的PDSCH,可以提供unicast PDSCH和广播PDSCH的接收机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图11为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图11所示,该方法可以包括以下步骤:
步骤1101、响应于网络侧设备发送的配置信息,确定预设阈值。
其中,在本公开的一个实施例之中,终端设备可以根据网络侧设备发送的配置信息,确定预设阈值。
示例地,在本公开的一个实施例之中,终端设备还可以基于协议预设确定预设阈值。
综上所述,在本公开实施例之中,响应于网络侧设备发送的配置信息,确定预设阈值。在本公开实施例之中,可以基于配置信息确定预设阈值,可以提高预设阈值确定的准确性,减少预设阈值与信号质量不匹配的情况,以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供预设阈值的确定机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图12为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图12所示,该方法可以包括以下步骤:
步骤1201、响应于广播PDSCH的接收时机,根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为。
其中,在本公开的一个实施例之中,该预设优先级例如可以指示各种PDSCH的优先级。该预设优先级并不特指某一固定优先级。该预设优先级例如可以是:广播PDSCH的优先级小于单播unicast PDSCH的优先级,unicast PDSCH的优先级小于系统信息块SIB PDSCH的优先级。该预设优先级例如还可以是:广播PDSCH的优先级大于单播unicast PDSCH的优先级。
以及,在本公开的一个实施例之中,终端设备根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为时,例如可以是响应于unicast PDSCH的优先级高于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,unicast PDSCH所占用的资源不超过终端设备的处理能力。
示例地,在本公开的一个实施例之中,该方法还包括,终端设备放弃接收广播PDSCH或者终端设备接收部分广播PDSCH。例如,响应于unicast PDSCH的优先级高于广播PDSCH的优先级,终端设备可以放弃接收广播PDSCH。
以及,在本公开的一个实施例之中,终端设备根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为时,例如可以是响应于unicast PDSCH的优先级低于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,广播PDSCH和unicast PDSCH所占用的资源不超过终端设备的处理能力。
以及,在本公开的一个实施例之中,终端设备根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为时,例如可以是响应于系统信息块SIB PDSCH的优先级高于unicast PDSCH的优先级,接收网络侧设备发送的SIB PDSCH和unicast PDSCH,其中,SIB PDSCH和unicast PDSCH所占用的资源不超过终端设备的处理能力。
以及,在本公开的一个实施例之中,网络侧设备同时发送SIB PDSCH和unicast PDSCH,且终端设备根据预设优先级,确定PDSCH的接收行为时,例如可以是响应于SIB PDSCH和unicast PDSCH所占用的资源超过终端设备的处理能力,则终端设备放弃接收网络侧设备发送的unicast PDSCH。
综上所述,在本公开实施例之中,响应于广播PDSCH的接收时机,根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为。在本公开实施例之中,根据预设优先级,接收网络侧设备发送的unicast PDSCH,可以提供unicast PDSCH和广播PDSCH的接收机制,可以提高多个PDSCH传输的便利性。本公开实施例具体公开了放弃接收超过预设阈值的PDSCH属于不同的PDSCH的方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图13为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图13所示,该方法可以包括以下步骤:
步骤1301、响应于unicast PDSCH的优先级高于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,unicast PDSCH所占用的资源不超过终端设备的处理能力。
以及,在本公开的一个实施例之中,终端设备根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为时,例如可以是响应于unicast PDSCH的优先级高于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,unicast PDSCH所占用的资源不超过终端设备的处理能力。
示例地,在本公开的一个实施例之中,该方法还包括:终端设备放弃接收广播PDSCH或者终端设备接收部分广播PDSCH。例如,响应于unicast PDSCH的优先级高于广播PDSCH的优先级,终端设备可以放弃接收广播PDSCH。
综上所述,在本公开实施例之中,响应于unicast PDSCH的优先级高于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,unicast PDSCH所占用的资源不超过终端设备的处理能力。在本公开实施例之中,根据预设优先级,接收网络侧设备发送的unicast PDSCH,可以提供unicast PDSCH和广播PDSCH的接收机制,可以提高多个PDSCH传输的便利性。本公开实施例具体公开了unicast PDSCH的优先级高于广播PDSCH的优先级时PDSCH的接收方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图14为本公开实施例所提供的一种PDSCH传输方法的流程示意图,该方法由终端设备执行,如图14 所示,该方法可以包括以下步骤:
步骤1401、响应于unicast PDSCH的优先级低于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,广播PDSCH和unicast PDSCH所占用的资源不超过终端设备的处理能力。
综上所述,在本公开实施例之中,响应于unicast PDSCH的优先级低于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,广播PDSCH和unicast PDSCH所占用的资源不超过终端设备的处理能力。在本公开实施例之中,根据预设优先级,接收网络侧设备发送的unicast PDSCH,可以提供unicast PDSCH和广播PDSCH的接收机制,可以提高多个PDSCH传输的便利性。本公开实施例具体公开了unicast PDSCH的优先级低于广播PDSCH的优先级时PDSCH的接收方案。本公开针对一种“PDSCH传输”这一情形提供了一种处理方法,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
图15为本公开实施例所提供的一种PDSCH传输装置的结构示意图,如图15所示,该装置1500可以设置于网络侧,该装置1500可以包括:
发送模块1501,响应于广播PDSCH的发送时机,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。
综上所述,在本公开实施例的PDSCH传输装置之中,通过发送模块响应于广播PDSCH的发送时机,确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源。在本公开实施例之中,可以确定是否对单播unicast PDSCH和广播PDSCH进行传输,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理装置,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
可选地,在本公开的一个实施例之中,发送模块1501,用于确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源时,具体用于:
响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送unicast PDSCH;
响应于同时发送广播PDSCH和unicast PDSCH,分配给终端设备的广播PDSCH和unicast PDSCH的资源在终端设备的处理能力之内。
可选地,在本公开的一个实施例之中,发送模块1501,用于确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源时,具体用于:
响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力,且不超过第一预设阈值,发送unicast PDSCH;
响应于同时发送广播PDSCH与unicast PDSCH,分配给广播PDSCH和unicast PDSCH所占用的资源不超过第一预设阈值,第一预设阈值不小于终端设备的处理能力。
可选地,在本公开的一个实施例之中,发送模块1501,用于确定是否在发送时机发送单播unicastPDSCH至终端设备和/或确定分配给终端设备的unicastPDSCH所占用的资源时,具体用于:
响应于广播PDSCH与unicastPDSCH所占用的频率资源超过第一预设阈值,放弃发送unicastPDSCH。
可选地,在本公开的一个实施例之中,广播PDSCH与unicast PDSCH所占用的频率资源,包括以下至少一种:
广播PDSCH与unicast PDSCH所占用的物理资源块PRB个数;
广播PDSCH与unicast PDSCH中的最低频点和最高频点的差值。
可选地,在本公开的一个实施例之中,发送模块1501,用于确定是否在发送时机发送单播unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源时,具体用于:
根据预设优先级,确定是否发送在发送时机unicast PDSCH至终端设备和/或确定分配给终端设备的 unicast PDSCH所占用的资源。
可选地,在本公开的一个实施例之中,发送模块1501,用于根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源时,具体用于:
响应于unicast PDSCH的优先级高于广播PDSCH的优先级,发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
可选地,在本公开的一个实施例之中,发送模块1501,用于根据预设优先级,确定是否在发送时机发送unicast PDSCH至终端设备和/或确定分配给终端设备的unicast PDSCH所占用的资源时,具体用于:
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,放弃发送unicast PDSCH至终端设备;
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,确定分配给终端设备的广播PDSCH和unicast PDSCH所占用的资源不超过第二预设阈值,其中,第二预设阈值不小于终端设备的处理能力。
图16为本公开实施例所提供的一种PDSCH传输装置的结构示意图,如图16所示,该装置1600可以设置于终端侧,该装置1600可以包括:
接收模块1601,用于响应于广播PDSCH的接收时机,确定广播PDSCH和/或unicast PDSCH的接收行为。
综上所述,在本公开实施例的PDSCH传输装置之中,通过接收模块响应于广播PDSCH的接收时机,确定广播PDSCH和/或unicast PDSCH的接收行为。在本公开实施例之中,可以对单播unicast PDSCH和广播PDSCH进行接收,提供unicast PDSCH和广播PDSCH的传输机制,可以提高多个PDSCH传输的便利性。本公开针对一种“PDSCH传输”这一情形提供了一种处理装置,以提供unicast PDSCH和广播PDSCH的传输机制,可以对广播PDSCH和unicast PDSCH进行传输,提高多个PDSCH传输的便利性。
可选地,在本公开的一个实施例之中,接收模块1601,用于确定广播PDSCH和/或unicast PDSCH的接收行为时,具体用于:
响应于广播PDSCH与unicast PDSCH所占用的频率资源不超过终端设备的处理能力,接收网络侧设备发送的unicast PDSCH。
可选地,在本公开的一个实施例之中,接收模块1601,用于确定广播PDSCH和/或unicast PDSCH的接收行为时,具体用于:
响应于广播PDSCH与unicast PDSCH所占用的频率资源超过终端设备的处理能力但不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,其中,第一预设阈值不小于终端设备的处理能力。
可选地,在本公开的一个实施例之中,接收模块1601,还用于:
放弃接收超过终端处理能力的PDSCH。
可选地,在本公开的一个实施例之中,超过终端处理能力的PDSCH来自于同一个PDSCH。
可选地,在本公开的一个实施例之中,其中,超过终端处理能力的PDSCH至少来自于两个PDSCH。
可选地,在本公开的一个实施例之中,接收模块1601,还用于:
响应于网络侧设备发送的配置信息,确定预设阈值。
可选地,在本公开的一个实施例之中,接收模块1601,用于确定广播PDSCH和/或unicast PDSCH的接收行为时,具体用于:
根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为。
可选地,在本公开的一个实施例之中,接收模块1601,用于根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为时,具体用于:
响应于unicast PDSCH的优先级高于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,unicast PDSCH所占用的资源不超过终端设备的处理能力。
可选地,在本公开的一个实施例之中,接收模块1601,还用于:
放弃接收广播PDSCH;
接收部分广播PDSCH。
可选地,在本公开的一个实施例之中,接收模块1601,根据预设优先级,确定广播PDSCH和/或unicast PDSCH的接收行为时,具体用于:
响应于unicast PDSCH的优先级低于广播PDSCH的优先级,接收网络侧设备发送的unicast PDSCH,其中,广播PDSCH和unicast PDSCH所占用的资源不超过终端设备的处理能力。
图17是本公开一个实施例所提供的一种终端设备UE1700的框图。例如,UE1700可以是移动电话,计算机,数字广播终端设备,消息收发设备,游戏控制台,平板设备,医疗设备,健身设备,个人数字助理等。
参照图17,UE1700可以包括以下至少一个组件:处理组件1702,存储器1704,电源组件1706,多媒体组件1708,音频组件1710,输入/输出(I/O)的接口1712,传感器组件1714,以及通信组件1716。
处理组件1702通常控制UE1700的整体操作,诸如与显示,电话呼叫,数据通信,相机操作和记录操作相关联的操作。处理组件1702可以包括至少一个处理器1720来执行指令,以完成上述的方法的全部或部分步骤。此外,处理组件1702可以包括至少一个模块,便于处理组件1702和其他组件之间的交互。例如,处理组件1702可以包括多媒体模块,以方便多媒体组件1708和处理组件1702之间的交互。
存储器1704被配置为存储各种类型的数据以支持在UE1700的操作。这些数据的示例包括用于在UE1700上操作的任何应用程序或方法的指令,联系人数据,电话簿数据,消息,图片,视频等。存储器1704可以由任何类型的易失性或非易失性存储设备或者它们的组合实现,如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。
电源组件1706为UE1700的各种组件提供电力。电源组件1706可以包括电源管理系统,至少一个电源,及其他与为UE1700生成、管理和分配电力相关联的组件。
多媒体组件1708包括在所述UE1700和用户之间的提供一个输出接口的屏幕。在一些实施例中,屏幕可以包括液晶显示器(LCD)和触摸面板(TP)。如果屏幕包括触摸面板,屏幕可以被实现为触摸屏,以接收来自用户的输入信号。触摸面板包括至少一个触摸传感器以感测触摸、滑动和触摸面板上的手势。所述触摸传感器可以不仅感测触摸或滑动动作的边界,而且还检测与所述触摸或滑动操作相关的唤醒时间和压力。在一些实施例中,多媒体组件1708包括一个前置摄像头和/或后置摄像头。当UE1700处于操作模式,如拍摄模式或视频模式时,前置摄像头和/或后置摄像头可以接收外部的多媒体数据。每个前置摄像头和后置摄像头可以是一个固定的光学透镜系统或具有焦距和光学变焦能力。
音频组件1710被配置为输出和/或输入音频信号。例如,音频组件1710包括一个麦克风(MIC),当UE1700处于操作模式,如呼叫模式、记录模式和语音识别模式时,麦克风被配置为接收外部音频信号。所接收的音频信号可以被进一步存储在存储器1704或经由通信组件1716发送。在一些实施例中,音频组件1710还包括一个扬声器,用于输出音频信号。
I/O接口1712为处理组件1702和外围接口模块之间提供接口,上述外围接口模块可以是键盘,点击轮,按钮等。这些按钮可包括但不限于:主页按钮、音量按钮、启动按钮和锁定按钮。
传感器组件1714包括至少一个传感器,用于为UE1700提供各个方面的状态评估。例如,传感器组件1714可以检测到设备1700的打开/关闭状态,组件的相对定位,例如所述组件为UE1700的显示器和小键盘,传感器组件1714还可以检测UE1700或UE1700的一个组件的位置改变,用户与UE1700接触的存在或不存在,UE1700方位或加速/减速和UE1700的温度变化。传感器组件1714可以包括接近传感器,被配置用来在没有任何的物理接触时检测附近物体的存在。传感器组件1714还可以包括光传感器,如CMOS或CCD图像传感器,用于在成像应用中使用。在一些实施例中,该传感器组件1714还可以包括加速度传感器,陀螺仪传感器,磁传感器,压力传感器或温度传感器。
通信组件1716被配置为便于UE1700和其他设备之间有线或无线方式的通信。UE1700可以接入基于通信标准的无线网络,如WiFi,2G或3G,或它们的组合。在一个示例性实施例中,通信组件1716经由广 播信道接收来自外部广播管理系统的广播信号或广播相关信息。在一个示例性实施例中,所述通信组件1716还包括近场通信(NFC)模块,以促进短程通信。例如,在NFC模块可基于射频识别(RFID)技术,红外数据协会(IrDA)技术,超宽带(UWB)技术,蓝牙(BT)技术和其他技术来实现。
在示例性实施例中,UE1700可以被至少一个应用专用集成电路(ASIC)、数字信号处理器(DSP)、数字信号处理设备(DSPD)、可编程逻辑器件(PLD)、现场可编程门阵列(FPGA)、控制器、微控制器、微处理器或其他电子元件实现,用于执行上述方法。
图18是本公开实施例所提供的一种网络侧设备1800的框图。例如,网络侧设备1800可以被提供为一网络侧设备。参照图18,网络侧设备1800包括处理组件1822,其进一步包括至少一个处理器,以及由存储器1832所代表的存储器资源,用于存储可由处理组件1822的执行的指令,例如应用程序。存储器1832中存储的应用程序可以包括一个或一个以上的每一个对应于一组指令的模块。此外,处理组件1822被配置为执行指令,以执行上述方法前述应用在所述网络侧设备的任意方法,例如,如图1所示方法。
网络侧设备1800还可以包括一个电源组件1826被配置为执行网络侧设备1800的电源管理,一个有线或无线网络接口1850被配置为将网络侧设备1800连接到网络,和一个输入/输出(I/O)接口1858。网络侧设备1800可以操作基于存储在存储器1832的操作系统,例如Windows Server TM,Mac OS XTM,Unix TM,Linux TM,Free BSDTM或类似。
上述本公开提供的实施例中,分别从网络侧设备、UE的角度对本公开实施例提供的方法进行了介绍。为了实现上述本公开实施例提供的方法中的各功能,网络侧设备和UE可以包括硬件结构、软件模块,以硬件结构、软件模块、或硬件结构加软件模块的形式来实现上述各功能。上述各功能中的某个功能可以以硬件结构、软件模块、或者硬件结构加软件模块的方式来执行。
上述本公开提供的实施例中,分别从网络侧设备、UE的角度对本公开实施例提供的方法进行了介绍。为了实现上述本公开实施例提供的方法中的各功能,网络侧设备和UE可以包括硬件结构、软件模块,以硬件结构、软件模块、或硬件结构加软件模块的形式来实现上述各功能。上述各功能中的某个功能可以以硬件结构、软件模块、或者硬件结构加软件模块的方式来执行。
本公开实施例提供的一种通信装置。通信装置可包括收发模块和处理模块。收发模块可包括发送模块和/或接收模块,发送模块用于实现发送功能,接收模块用于实现接收功能,收发模块可以实现发送功能和/或接收功能。
通信装置可以是终端设备(如前述方法实施例中的终端设备),也可以是终端设备中的装置,还可以是能够与终端设备匹配使用的装置。或者,通信装置可以是网络设备,也可以是网络设备中的装置,还可以是能够与网络设备匹配使用的装置。
本公开实施例提供的另一种通信装置。通信装置可以是网络设备,也可以是终端设备(如前述方法实施例中的终端设备),也可以是支持网络设备实现上述方法的芯片、芯片系统、或处理器等,还可以是支持终端设备实现上述方法的芯片、芯片系统、或处理器等。该装置可用于实现上述方法实施例中描述的方法,具体可以参见上述方法实施例中的说明。
通信装置可以包括一个或多个处理器。处理器可以是通用处理器或者专用处理器等。例如可以是基带处理器或中央处理器。基带处理器可以用于对通信协议以及通信数据进行处理,中央处理器可以用于对通信装置(如,网络侧设备、基带芯片,终端设备、终端设备芯片,DU或CU等)进行控制,执行计算机程序,处理计算机程序的数据。
可选地,通信装置中还可以包括一个或多个存储器,其上可以存有计算机程序,处理器执行所述计算机程序,以使得通信装置执行上述方法实施例中描述的方法。可选地,所述存储器中还可以存储有数据。通信装置和存储器可以单独设置,也可以集成在一起。
可选地,通信装置还可以包括收发器、天线。收发器可以称为收发单元、收发机、或收发电路等,用于实现收发功能。收发器可以包括接收器和发送器,接收器可以称为接收机或接收电路等,用于实现接收功能;发送器可以称为发送机或发送电路等,用于实现发送功能。
可选地,通信装置中还可以包括一个或多个接口电路。接口电路用于接收代码指令并传输至处理器。 处理器运行所述代码指令以使通信装置执行上述方法实施例中描述的方法。
通信装置为网络侧设备:处理器用于执行图1-图7任一所示的方法。
通信装置为终端设备(如前述方法实施例中的终端设备):处理器用于执行图8-图14任一所示的方法。
在一种实现方式中,处理器中可以包括用于实现接收和发送功能的收发器。例如该收发器可以是收发电路,或者是接口,或者是接口电路。用于实现接收和发送功能的收发电路、接口或接口电路可以是分开的,也可以集成在一起。上述收发电路、接口或接口电路可以用于代码/数据的读写,或者,上述收发电路、接口或接口电路可以用于信号的传输或传递。
在一种实现方式中,处理器可以存有计算机程序,计算机程序在处理器上运行,可使得通信装置执行上述方法实施例中描述的方法。计算机程序可能固化在处理器中,该种情况下,处理器可能由硬件实现。
在一种实现方式中,通信装置可以包括电路,所述电路可以实现前述方法实施例中发送或接收或者通信的功能。本公开中描述的处理器和收发器可实现在集成电路(integrated circuit,IC)、模拟IC、射频集成电路RFIC、混合信号IC、专用集成电路(application specific integrated circuit,ASIC)、印刷电路板(printed circuit board,PCB)、电子设备等上。该处理器和收发器也可以用各种IC工艺技术来制造,例如互补金属氧化物半导体(complementary metal oxide semiconductor,CMOS)、N型金属氧化物半导体(nMetal-oxide-semiconductor,NMOS)、P型金属氧化物半导体(positive channel metal oxide semiconductor,PMOS)、双极结型晶体管(bipolar junction transistor,BJT)、双极CMOS(BiCMOS)、硅锗(SiGe)、砷化镓(GaAs)等。
以上实施例描述中的通信装置可以是网络设备或者终端设备(如前述方法实施例中的终端设备),但本公开中描述的通信装置的范围并不限于此,而且通信装置的结构可以不受的限制。通信装置可以是独立的设备或者可以是较大设备的一部分。例如所述通信装置可以是:
(1)独立的集成电路IC,或芯片,或,芯片系统或子系统;
(2)具有一个或多个IC的集合,可选地,该IC集合也可以包括用于存储数据,计算机程序的存储部件;
(3)ASIC,例如调制解调器(Modem);
(4)可嵌入在其他设备内的模块;
(5)接收机、终端设备、智能终端设备、蜂窝电话、无线设备、手持机、移动单元、车载设备、网络设备、云设备、人工智能设备等等;
(6)其他等等。
对于通信装置可以是芯片或芯片系统的情况,芯片包括处理器和接口。其中,处理器的数量可以是一个或多个,接口的数量可以是多个。
可选地,芯片还包括存储器,存储器用于存储必要的计算机程序和数据。
本领域技术人员还可以了解到本公开实施例列出的各种说明性逻辑块(illustrative logical block)和步骤(step)可以通过电子硬件、电脑软件,或两者的结合进行实现。这样的功能是通过硬件还是软件来实现取决于特定的应用和整个系统的设计要求。本领域技术人员可以对于每种特定的应用,可以使用各种方法实现所述的功能,但这种实现不应被理解为超出本公开实施例保护的范围。
本公开还提供一种可读存储介质,其上存储有指令,该指令被计算机执行时实现上述任一方法实施例的功能。
本公开还提供一种计算机程序产品,该计算机程序产品被计算机执行时实现上述任一方法实施例的功能。
在上述实施例中,可以全部或部分地通过软件、硬件、固件或者其任意组合来实现。当使用软件实现时,可以全部或部分地以计算机程序产品的形式实现。所述计算机程序产品包括一个或多个计算机程序。在计算机上加载和执行所述计算机程序时,全部或部分地产生按照本公开实施例所述的流程或功能。所述计算机可以是通用计算机、专用计算机、计算机网络、或者其他可编程装置。所述计算机程序可以存储在计算机可读存储介质中,或者从一个计算机可读存储介质向另一个计算机可读存储介质传输,例如,所述 计算机程序可以从一个网站站点、计算机、服务器或数据中心通过有线(例如同轴电缆、光纤、数字用户线(digital subscriber line,DSL))或无线(例如红外、无线、微波等)方式向另一个网站站点、计算机、服务器或数据中心进行传输。所述计算机可读存储介质可以是计算机能够存取的任何可用介质或者是包含一个或多个可用介质集成的服务器、数据中心等数据存储设备。所述可用介质可以是磁性介质(例如,软盘、硬盘、磁带)、光介质(例如,高密度数字视频光盘(digital video disc,DVD))、或者半导体介质(例如,固态硬盘(solid state disk,SSD))等。
本领域普通技术人员可以理解:本公开中涉及的第一、第二等各种数字编号仅为描述方便进行的区分,并不用来限制本公开实施例的范围,也表示先后顺序。
本公开中的至少一个还可以描述为一个或多个,多个可以是两个、三个、四个或者更多个,本公开不做限制。在本公开实施例中,对于一种技术特征,通过“第一”、“第二”、“第三”、“A”、“B”、“C”和“D”等区分该种技术特征中的技术特征,该“第一”、“第二”、“第三”、“A”、“B”、“C”和“D”描述的技术特征间无先后顺序或者大小顺序。
本领域技术人员在考虑说明书及实践这里公开的发明后,将容易想到本公开的其它实施方案。本公开旨在涵盖本公开的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本公开的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本公开的真正范围和精神由下面的权利要求指出。
应当理解的是,本公开并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本公开的范围仅由所附的权利要求来限制。

Claims (27)

  1. 一种物理下行共享信道PDSCH传输方法,其特征在于,所述方法由网络侧设备执行,所述方法包括:
    响应于广播PDSCH的发送时机,确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源。
  2. 根据权利要求1所述的方法,其特征在于,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
    响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源不超过终端设备的处理能力,发送所述unicast PDSCH;
    响应于同时发送广播PDSCH和所述unicast PDSCH,分配给所述终端设备的所述广播PDSCH和所述unicast PDSCH的资源在终端设备的处理能力之内。
  3. 根据权利要求1所述的方法,其特征在于,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
    响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源超过所述终端设备的处理能力,且不超过第一预设阈值,发送所述unicast PDSCH;
    响应于同时发送所述广播PDSCH与所述unicast PDSCH,分配给所述广播PDSCH和所述unicast PDSCH所占用的资源不超过所述第一预设阈值,其中,所述第一预设阈值不小于所述终端设备的处理能力。
  4. 根据权利要求1所述的方法,其特征在于,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
    响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源超过第一预设阈值,放弃发送所述unicast PDSCH。
  5. 根据权利要求2-4中任一项所述的方法,其特征在于,所述广播PDSCH与所述unicast PDSCH所占用的频率资源,包括以下至少一种:
    所述广播PDSCH与所述unicast PDSCH所占用的物理资源块PRB个数;
    所述广播PDSCH与所述unicast PDSCH中的最低频点和最高频点的差值。
  6. 根据权利要求1所述的方法,其特征在于,所述确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
    根据预设优先级,确定是否在所述发送时机发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源。
  7. 根据权利要求6所述的方法,其特征在于,所述根据预设优先级,确定是否在所述发送时机发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
    响应于所述unicast PDSCH的优先级高于所述广播PDSCH的优先级,发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源不超过第二预设阈值,其中,所述第二预设阈值不小于所述终端设备的处理能力。
  8. 根据权利要求6所述的方法,其特征在于,所述根据预设优先级,确定是否在所述发送时机发送所述unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源,包括:
    响应于所述unicast PDSCH的优先级低于所述广播PDSCH的优先级,放弃发送所述unicast PDSCH至所述终端设备;
    响应于所述unicast PDSCH的优先级低于所述广播PDSCH的优先级,确定分配给所述终端设备的所述广播PDSCH和所述unicast PDSCH所占用的资源不超过第三预设阈值,其中,所述第三预设阈值不小于所 述终端设备的处理能力。
  9. 一种PDSCH传输方法,其特征在于,所述方法由终端设备执行,所述方法包括:
    响应于广播PDSCH的接收时机,确定所述广播PDSCH和/或unicast PDSCH的接收行为。
  10. 根据权利要求9所述的方法,其特征在于,所述确定所述广播PDSCH和/或unicast PDSCH的接收行为,包括:
    响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源不超过终端设备的处理能力,接收所述网络侧设备发送的所述unicast PDSCH。
  11. 根据权利要求9所述的方法,其特征在于,所述确定所述广播PDSCH和/或unicast PDSCH的接收行为,包括:
    响应于所述广播PDSCH与所述unicast PDSCH所占用的频率资源超过所述终端设备的处理能力且不超过第一预设阈值,确定接收至少部分广播PDSCH和unicast PDSCH,其中,所述第一预设阈值不小于所述终端设备的处理能力。
  12. 根据权利要求11所述的方法,其特征在于,所述方法还包括:
    放弃接收超过所述终端处理能力的PDSCH。
  13. 根据权利要求12所述的方法,其特征在于,其中,所述超过所述终端处理能力的PDSCH来自于同一个PDSCH。
  14. 根据权利要求12所述的方法,其特征在于,其中,所述超过所述终端处理能力的PDSCH至少来自于两个PDSCH。
  15. 根据权利要求9所述的方法,其特征在于,所述方法还包括:
    响应于所述网络侧设备发送的配置信息,确定所述预设阈值。
  16. 根据权利要求9所述的方法,其特征在于,所述确定所述广播PDSCH和/或unicast PDSCH的接收行为,包括:
    根据预设优先级,确定所述广播PDSCH和/或所述unicast PDSCH的接收行为。
  17. 根据权利要求16所述的方法,其特征在于,所述根据预设优先级,确定所述广播PDSCH和/或所述unicast PDSCH的接收行为,包括:
    响应于所述unicast PDSCH的优先级高于所述广播PDSCH的优先级,接收所述网络侧设备发送的所述unicast PDSCH,其中,所述unicast PDSCH所占用的资源小于所述终端设备的处理能力。
  18. 根据权利要求17所述的方法,其特征在于,所述方法还包括:
    放弃接收所述广播PDSCH;
    接收部分所述广播PDSCH。
  19. 根据权利要求16所述的方法,其特征在于,所述根据预设优先级,确定所述广播PDSCH和/或所述unicast PDSCH的接收行为,包括:
    响应于所述unicast PDSCH的优先级低于所述广播PDSCH的优先级,接收所述网络侧设备发送的所述unicast PDSCH,其中,所述广播PDSCH和所述unicast PDSCH所占用的资源不超过所述终端设备的处理能力。
  20. 一种PDSCH传输装置,其特征在于,所述装置设置于网络侧,所述装置包括:
    发送模块,用于响应于广播PDSCH的发送时机,确定是否在所述发送时机发送单播unicast PDSCH至所述终端设备和/或确定分配给所述终端设备的unicast PDSCH所占用的资源。
  21. 一种PDSCH传输装置,其特征在于,所述装置设置于终端侧,所述装置包括:
    接收模块,用于响应于广播PDSCH的接收时机,确定广播PDSCH和/或unicast PDSCH的接收行为。
  22. 一种网络侧设备,其特征在于,所述设备包括处理器和存储器,其中,所述存储器中存储有计算机程序,所述处理器执行所述存储器中存储的计算机程序,以使所述装置执行如权利要求1至8中任一项所述的方法。
  23. 一种终端设备,其特征在于,所述设备包括处理器和存储器,其中,所述存储器中存储有计算机程序,所述处理器执行所述存储器中存储的计算机程序,以使所述装置执行如权利要求9至19中任一项所述的方法。
  24. 一种通信装置,其特征在于,包括:处理器和接口电路,其中
    所述接口电路,用于接收代码指令并传输至所述处理器;
    所述处理器,用于运行所述代码指令以执行如权利要求1至8中任一项所述的方法。
  25. 一种通信装置,其特征在于,包括:处理器和接口电路,其中
    所述接口电路,用于接收代码指令并传输至所述处理器;
    所述处理器,用于运行所述代码指令以执行如权利要求9至19中任一项所述的方法。
  26. 一种计算机可读存储介质,其特征在于,用于存储有指令,当所述指令被执行时,使如权利要求1至8中任一项所述的方法被实现。
  27. 一种计算机可读存储介质,其特征在于,用于存储有指令,当所述指令被执行时,使如权利要求9至19中任一项所述的方法被实现。
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