WO2022135439A1 - 资源分配方法和设备 - Google Patents
资源分配方法和设备 Download PDFInfo
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- uplink retransmission
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- 238000013468 resource allocation Methods 0.000 title claims abstract description 78
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- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
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Definitions
- the present application belongs to the field of communication technologies, and specifically relates to a resource allocation method and device (the device may include a resource allocation apparatus and a terminal).
- the terminal For uplink transmission, the terminal obtains the allocated uplink resources by receiving the uplink scheduling sent by the network side device. After that, the terminal also needs to use the Logical Channel Prioritization (LCP) process to determine which logical channel data can be used. transmitted on the allocated uplink resources.
- LCP Logical Channel Prioritization
- the Medium Access Control (MAC) multiplexing function means that the MAC layer multiplexes data from multiple different logical channels onto the same transmission channel, that is, the radio link control service data from multiple logical channels.
- Units Radio Link Control Service Data Unit, RLC SDU
- RLC SDU Radio Link Control Service Data Unit
- MAC PDU Media Access Control Protocol Data Unit
- the network side device may disable the Hybrid Automatic Repeat Request (HARQ) uplink retransmission.
- HARQ Hybrid Automatic Repeat Request
- the embodiments of the present application provide a resource allocation method and device, which can solve the problem that the resource allocation method in the related art may affect the service quality of the data flow.
- a resource allocation method comprising: obtaining a first uplink scheduling for new transmission by a terminal; and performing resource allocation on resources specified by the first uplink scheduling based on at least one of the following: HARQ Uplink retransmission indication; HARQ process enabling/disabling HARQ uplink retransmission configuration; logical channel enabling/disabling HARQ uplink retransmission configuration; association between logical channels and HARQ processes.
- a resource allocation device comprising: an acquisition module for acquiring a first uplink schedule for new transmission; a resource allocation module for specifying the first uplink schedule based on at least one of the following resource allocation: HARQ uplink retransmission indication; HARQ process enabling/disabling HARQ uplink retransmission configuration; logical channel enabling/disabling HARQ uplink retransmission configuration; association between logical channels and HARQ processes.
- a terminal in a third aspect, includes a processor, a memory, and a program or instruction stored on the memory and executable on the processor, when the program or instruction is executed by the processor A method as described in the first aspect is implemented.
- a readable storage medium is provided, and a program or an instruction is stored on the readable storage medium, and when the program or instruction is executed by a processor, the method according to the first aspect is implemented.
- a computer program product is provided, the computer program product is stored in a non-transitory storage medium, and when the computer program product is executed by a processor, the method according to the first aspect is implemented.
- a chip in a sixth aspect, includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is configured to run a program or an instruction to implement the method according to the first aspect .
- the terminal may perform resource allocation to the resources specified by the first uplink scheduling based on at least one of the following: HARQ uplink retransmission indication; HARQ process enable/disable HARQ uplink retransmission configuration; logical channel on enable/disable Configuration of HARQ uplink retransmission; association between logical channels and HARQ processes.
- the embodiments of the present application provide an effective solution for resource allocation in the case of enabling/disabling HARQ uplink retransmission, thereby improving communication effectiveness.
- FIG. 1 is a schematic diagram of a wireless communication system according to an embodiment of the present application.
- FIG. 2 is a schematic flowchart of a resource allocation method according to an embodiment of the present application.
- FIG. 3 is a schematic structural diagram of a resource allocation apparatus according to an embodiment of the present application.
- FIG. 4 is a schematic structural diagram of a communication device according to an embodiment of the present application.
- FIG. 5 is a schematic structural diagram of a terminal according to an embodiment of the present application.
- first, second and the like in the description and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It is to be understood that the data so used are interchangeable under appropriate circumstances so that the embodiments of the present application can be practiced in sequences other than those illustrated or described herein, and "first”, “second” distinguishes Usually it is a class, and the number of objects is not limited.
- the first object may be one or multiple.
- “and/or” in the description and claims indicates at least one of the connected objects, and the character “/" generally indicates that the associated objects are in an "or” relationship.
- LTE Long Term Evolution
- LTE-Advanced LTE-Advanced
- LTE-A Long Term Evolution-Advanced
- CDMA Code Division Multiple Access
- TDMA Time Division Multiple Access
- FDMA Frequency Division Multiple Access
- OFDMA Orthogonal Frequency Division Multiple Access
- SC-FDMA Single-carrier Frequency-Division Multiple Access
- system and “network” in the embodiments of the present application are often used interchangeably, and the described technology can be used not only for the above-mentioned systems and radio technologies, but also for other systems and radio technologies.
- NR New Radio
- the following description describes a New Radio (NR) system for example purposes, and uses NR terminology in most of the description below, but these techniques can also be applied to applications other than NR system applications, such as 6th Generation , 6G) communication system.
- NR New Radio
- FIG. 1 shows a schematic diagram of a wireless communication system to which an embodiment of the present application can be applied.
- the wireless communication system includes a terminal 11 and a network-side device 12 .
- the terminal 11 may also be called a terminal device or a user terminal (User Equipment, UE), and the terminal 11 may be a mobile phone, a tablet computer (Tablet Personal Computer), a laptop computer (Laptop Computer) or a notebook computer, a personal digital computer Assistant (Personal Digital Assistant, PDA), handheld computer, netbook, ultra-mobile personal computer (ultra-mobile personal computer, UMPC), mobile Internet device (Mobile Internet Device, MID), wearable device (Wearable Device) or vehicle-mounted device (VUE), pedestrian terminal (PUE) and other terminal-side devices, wearable devices include: bracelets, headphones, glasses, etc.
- PDA Personal Digital Assistant
- the network side device 12 may be a base station or a core network, wherein the base station may be referred to as a Node B, an evolved Node B, an access point, a Base Transceiver Station (BTS), a radio base station, a radio transceiver, a basic service Set (Basic Service Set, BSS), Extended Service Set (Extended Service Set, ESS), Node B, Evolved Node B (eNB), Next Generation Node B (gNB), Home Node B, Home Evolved Node B, WLAN Access point, WiFi node, Transmitting Receiving Point (TRP) or some other suitable term in the field, as long as the same technical effect is achieved, the base station is not limited to specific technical vocabulary. In the application embodiments, only the base station in the NR system is used as an example, but the specific type of the base station is not limited.
- an embodiment of the present application provides a resource allocation method 200, which can be executed by a terminal, in other words, the method can be executed by software or hardware installed in the terminal, and the method includes the following steps.
- S202 The terminal acquires the first uplink schedule (UL grant) for new transmission.
- the network-side device may allocate uplink transmission resources to the terminal by means of Configured Grants.
- the terminal can obtain the first uplink scheduling based on the configuration of the network side device, and the first uplink scheduling can be used for scheduling newly transmitted data, that is, the first uplink scheduling is not used for scheduling retransmitted data.
- the network side device may configure a HARQ uplink retransmission indication associated with the first uplink scheduling, and the HARQ uplink retransmission indication may be used to indicate that the first uplink scheduling is used to schedule transmissions that disable HARQ uplink retransmission, or indicate that the HARQ uplink retransmission is disabled.
- the first uplink scheduling is for scheduling transmissions that enable HARQ uplink retransmission.
- the network side device may further configure an association relationship between the first uplink scheduling and the HARQ process, where the HARQ process is identified by the HARQ process ID, and the first uplink scheduling may be associated with one HARQ process.
- the network side device may also configure the HARQ process to enable HARQ uplink retransmission or the HARQ process to disable HARQ uplink retransmission.
- the network side may also configure an association relationship between the logical channel and the HARQ process, and the logical channel may be associated with one or more HARQ processes, where the HARQ process is identified by the HARQ process ID.
- the network-side device may also allocate uplink transmission resources to the terminal in a dynamically allocated manner.
- the terminal may receive the scheduling signaling for indicating the first uplink scheduling, and the scheduling signaling may is downlink control information (Downlink Control Information, DCI), and the first uplink scheduling can be used to schedule newly transmitted data, that is, the first uplink scheduling is not used to schedule retransmitted data.
- DCI Downlink Control Information
- the above-mentioned scheduling signaling may also include a hybrid automatic repeat request (Hybrid Automatic Repeat Request, HARQ) uplink retransmission indication associated with the first uplink scheduling, and the HARQ uplink retransmission indication may be used to indicate the first uplink scheduling. Used for scheduling transmissions with HARQ uplink retransmission disabled, or indicating the first uplink scheduling for scheduling transmissions with HARQ uplink retransmission enabled.
- Hybrid Automatic Repeat Request Hybrid Automatic Repeat Request
- the above-mentioned scheduling signaling may also include the identification (ID) of the target HARQ process, and the target HARQ process is associated with an enabling/disabling HARQ uplink retransmission configuration, and the target HARQ process enabling/disabling uplink retransmission configuration may be the network side.
- ID the identification
- the HARQ process (including the target HARQ process here) is identified by the HARQ process ID, and the HARQ process ID may identify a unique HARQ process.
- S204 Perform resource allocation on the resources specified by the first uplink scheduling based on at least one of the following: HARQ uplink retransmission indication; HARQ process enabling/disabling HARQ uplink retransmission configuration; logical channel enabling/disabling HARQ uplink retransmission configuration ; The relationship between the logical channel and the HARQ process.
- the disabling of HARQ uplink retransmission mentioned in various embodiments of this specification may include: the network side device does not need to schedule retransmission based on the decoding status of uplink data of the terminal. For example, regardless of whether the decoding of the uplink data fails or the decoding succeeds, the network-side device does not schedule and retransmit the uplink data.
- Enabling HARQ uplink retransmission mentioned in various embodiments of this specification may include: the network side device needs to perform scheduling retransmission based on the decoding status of uplink data of the terminal. For example, in the case that decoding of a certain uplink data fails, the network side device needs to schedule and retransmit the uplink data for which the decoding fails.
- this step may be based on the configuration of the logical channel for enabling/disabling HARQ uplink retransmission, and the feature of enabling/disabling HARQ uplink retransmission indicated by the HARQ uplink retransmission indication, to schedule the designated resources for the first uplink Make resource allocation. For example, based on whether the above two match or are the same, resource allocation is performed on the resources designated by the first uplink scheduling.
- the data of the logical channel corresponding to the former can be multiplexed into the Media Access Control Protocol Data Unit (MAC PDU) corresponding to the first uplink scheduling , that is, the data of the logical channel corresponding to the former is allowed to be transmitted on the resources designated by the first uplink scheduling, and the "former" mentioned here refers to the configuration of the logical channel for enabling/disabling HARQ uplink retransmission.
- MAC PDU Media Access Control Protocol Data Unit
- the above-mentioned HARQ uplink retransmission indication may be configured by the network side device; in the scenario of Dynamically allocated (Dynamicly allocated), the above-mentioned HARQ uplink retransmission indication may be configured by Indicated by scheduling signaling.
- the “feature of enabling/disabling HARQ uplink retransmission indicated by the HARQ uplink retransmission indication” mentioned in this example may refer to: the HARQ uplink retransmission indication is used to indicate that the first uplink scheduling is used to schedule and disable HARQ uplink A retransmitted transmission, or HARQ uplink retransmission indicates that the first uplink scheduling is for scheduling a transmission that enables HARQ uplink retransmission.
- the "configuration of the logical channel on enabling/disabling HARQ uplink retransmission" mentioned in this example may refer to: the logical channel is configured to enable uplink retransmission or is configured to disable uplink retransmission.
- the HARQ uplink retransmission indication is used to indicate that the first uplink scheduling is used to schedule transmission for which HARQ uplink retransmission is disabled, only the data of the logical channel configured to disable HARQ uplink retransmission can be multiplexed into the first uplink retransmission.
- the MAC PDU corresponding to the uplink scheduling that is, only the data of the logical channel configured to disable HARQ uplink retransmission is allowed to be transmitted on the resources specified by the first uplink scheduling; if the HARQ uplink retransmission indication is used to indicate the first uplink scheduling It is used to schedule the transmission of enabling HARQ uplink retransmission, then only the data of the logical channel configured to enable HARQ uplink retransmission can be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, only the data configured to enable HARQ uplink retransmission can be multiplexed into the MAC PDU corresponding to the first uplink scheduling. The data of the logical channel is allowed to be transmitted on the resources designated by the first uplink schedule.
- this step may perform resource allocation to the resources designated by the first uplink schedule based on the configuration of the logical channel for enabling/disabling HARQ uplink retransmission, and the configuration of the HARQ process enabling/disabling HARQ uplink retransmission. For example, based on whether the above two match or are the same, resource allocation is performed on the resources designated by the first uplink scheduling.
- the data of the logical channel corresponding to the former can be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, the data of the logical channel corresponding to the former is allowed to be stored in the first
- the transmission is performed on the resources specified by the uplink scheduling, and the "former" mentioned here refers to the configuration of the logical channel regarding enabling/disabling HARQ uplink retransmission.
- the HARQ process mentioned in this example may refer to the HARQ process associated with the first uplink scheduling.
- the HARQ process in the scenario of Configured Grants, is associated with the first uplink scheduling; in the dynamic scheduling (Dynamically allocated) scenario, the HARQ process can be scheduled by the first uplink scheduling.
- the "configuration of the logical channel on enabling/disabling HARQ uplink retransmission" mentioned in this example may refer to: the logical channel is configured to enable uplink retransmission or is configured to disable uplink retransmission.
- the "configuration of HARQ process enabling/disabling HARQ uplink retransmission" mentioned in this example may refer to: the HARQ process is configured to enable uplink retransmission or is configured to disable uplink retransmission.
- the target HARQ process scheduled by the first uplink scheduling is configured to disable HARQ uplink retransmission
- only the logical channel configured to disable HARQ uplink retransmission is allowed to be multiplexed to the corresponding HARQ uplink scheduling.
- the MAC PDU that is, only the data of the logical channel configured to disable HARQ uplink retransmission is allowed to be transmitted on the resources specified by the first uplink scheduling; if the target HARQ process scheduled by the first uplink scheduling is configured to enable HARQ uplink retransmission, only the logical channel configured to enable HARQ uplink retransmission is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, only the data of the logical channel configured to enable HARQ uplink retransmission is allowed to be transmit on the resources specified by the first uplink scheduling.
- this step may perform resource allocation for the first uplink scheduling based on the association relationship between the logical channel and the HARQ process. For example, when the logical channel is associated with the HARQ process indicated by the scheduling signaling, the data of the logical channel can be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, the data of the logical channel is allowed to be specified in the first uplink scheduling. transmitted on the resource.
- the HARQ process mentioned in this example may refer to the HARQ process associated with the first uplink scheduling.
- the HARQ process in the scenario of configured scheduling (Configured Grants), the HARQ process is associated with the first uplink scheduling; in the scenario of dynamic scheduling (Dynamically allocated), the HARQ process can be scheduled by the first uplink scheduling.
- the association relationship between the logical channel and the HARQ process mentioned in this example for example, in the case that the logical channel is configured with the HARQ process ID list, the logical channel is associated with the HARQ process identified by the HARQ process ID list configured in the logical channel, One of the HARQ process IDs identifies a HARQ process.
- the logical channel is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, the logical channel
- the data is allowed to be transmitted on the resources designated by the first uplink scheduling; wherein, the target HARQ process is the HARQ process associated with the first uplink scheduling.
- the configuration of enabling/disabling HARQ uplink retransmission in the HARQ process; the configuration of enabling/disabling HARQ uplink retransmission in the logical channel; the association between the logical channel and the HARQ process, at least one of the three can be determined by Protocol agreement, network-side device configuration/pre-configuration.
- the above three examples can also be used in any combination to realize the resource allocation for the first uplink scheduling.
- the combination of the first example and the third example that is, the configuration of enabling/disabling HARQ uplink retransmission based on the logical channel, the configuration of enabling/disabling HARQ uplink retransmission based on the HARQ process, and the logical channel and HARQ process to perform resource allocation on the resources specified by the first uplink scheduling.
- the configuration of enabling/disabling HARQ uplink retransmission on the target logical channel matches the characteristic of enabling/disabling HARQ uplink retransmission indicated by the HARQ uplink retransmission indication, and the target logical channel is associated with the target HARQ process
- the data of the target logical channel is allowed to be transmitted on the resources designated by the first uplink scheduling.
- certain selection rules may be used to select the data of those logical channels to allow transmission on the resources designated by the first uplink scheduling.
- the above selection rule may be: the logical channel data for enabling HARQ uplink retransmission and the logical channel data for disabling HARQ uplink retransmission will not be multiplexed into the first uplink scheduling corresponding MAC PDU at the same time, that is, either enable HARQ
- the logical channel data for uplink retransmission is multiplexed into the MAC PDU corresponding to the first uplink scheduling; or the logical channel data for which HARQ uplink retransmission is disabled is multiplexed into the MAC PDU corresponding to the first uplink scheduling.
- the terminal can perform resource allocation on the resources specified by the first uplink scheduling based on at least one of the following: HARQ uplink retransmission indication; HARQ process enabling/disabling HARQ uplink retransmission configuration; The configuration of enabling/disabling HARQ uplink retransmission; the association between logical channels and HARQ processes.
- the embodiments of the present application provide an effective solution for resource allocation in the case of enabling/disabling HARQ uplink retransmission, thereby improving communication effectiveness.
- the embodiment of the present application considers the situation of enabling/disabling HARQ uplink retransmission, it is possible to try to make the logical channel data for enabling HARQ uplink retransmission and the logical channel data for disabling HARQ uplink retransmission not multiplexed into the first uplink scheduler at the same time. Corresponding to the MAC PDU, thereby improving the quality of service of the data flow.
- the resource allocation to the resources designated by the first uplink scheduling based on at least one of the following mentioned in S204 includes: if the configuration of the target logical channel for enabling/disabling HARQ uplink retransmission is the same as the HARQ uplink retransmission indication. If the indicated characteristics of enabling/disabling HARQ uplink retransmission match, the data of the target logical channel is allowed to be transmitted on the resources designated by the first uplink scheduling; wherein, the HARQ uplink retransmission indication is used to indicate the first uplink retransmission indication An uplink schedule is used to schedule transmissions that disable HARQ uplink retransmission or enable HARQ uplink retransmission.
- the target logical channel mentioned in this example may be one or more of the logical channels used by the terminal.
- the above-mentioned configuration of the target logical channel on enabling/disabling HARQ uplink retransmission matches the feature of enabling/disabling HARQ uplink retransmission indicated by the HARQ uplink retransmission indication, and may include at least one of the following: the configuration of the target logical channel In order to enable HARQ uplink retransmission, and the HARQ uplink retransmission indication is used to instruct scheduling to enable transmission of HARQ uplink retransmission; the configuration of the target logical channel is to disable HARQ uplink retransmission, and the HARQ uplink retransmission indication is used To instruct scheduling to disable transmission of HARQ uplink retransmissions.
- the terminal can also obtain the configuration of enabling/disabling HARQ uplink retransmission of the target logical channel in at least one of the following ways: pre-defined (such as protocol agreement), network-side device configuration, network-side device pre-configuration configuration.
- pre-defined such as protocol agreement
- network-side device configuration such as network-side device pre-configuration configuration
- a protocol agreement or a network side device configures logical channel 1 and logical channel 2 to disable HARQ uplink retransmission, and logical channel 3 and logical channel 4 to enable HARQ uplink retransmission.
- the resource allocation for the resources designated by the first uplink scheduling based on at least one of the following mentioned in S204 includes: if the configuration of the target logical channel on enabling/disabling HARQ uplink retransmission and the target HARQ process enabling/disabling HARQ uplink If the retransmission configurations match, the data of the target logical channel is allowed to be transmitted on the resources specified by the first uplink scheduling; wherein, the target HARQ process is the HARQ process associated with the first uplink scheduling.
- the above-mentioned configuration of the target logical channel on enabling/disabling HARQ uplink retransmission matches the configuration of enabling/disabling HARQ uplink retransmission in the target HARQ process, including at least one of the following: the configuration of the target logical channel is to enable HARQ uplink retransmission. , and the configuration of the target HARQ process is to enable HARQ uplink retransmission; the configuration of the target logical channel is to disable HARQ uplink retransmission, and the configuration of the target HARQ process is to disable HARQ uplink retransmission.
- the terminal can also obtain the configuration of enabling/disabling HARQ uplink retransmission of the target logical channel in at least one of the following manners: pre-defined (such as a protocol agreement), network-side device configuration, network-side device pre-configuration configuration.
- pre-defined such as a protocol agreement
- network-side device configuration such as a protocol agreement
- network-side device pre-configuration configuration For example, a protocol agreement or a network side device configures logical channel 1 and logical channel 2 to disable HARQ uplink retransmission, and logical channel 3 and logical channel 4 to enable HARQ uplink retransmission.
- the terminal can also obtain the configuration of enabling/disabling HARQ uplink retransmission of the target HARQ process by at least one of the following methods: pre-defined (such as a protocol agreement), network-side device configuration, network-side device pre-configuration .
- pre-defined such as a protocol agreement
- HARQ process 1 and HARQ process 2 are configured to disable HARQ uplink retransmission as agreed in the protocol or configured by the network side device
- HARQ process 3 and HARQ process 4 are configured to enable HARQ uplink retransmission.
- the resource allocation for the resources designated by the first uplink scheduling based on at least one of the following mentioned in S204 includes: when the target logical channel is associated with the target HARQ process, the data of the target logical channel is allowed to be stored in all
- the target HARQ process is the HARQ process associated with the first uplink scheduling.
- the above-mentioned target logical channel includes a list of HARQ process IDs; wherein, associating the target logical channel with the target HARQ process includes: the ID of the target HARQ process is located in the HARQ process ID list.
- the HARQ process (including the target HARQ process here) is identified by the HARQ process ID, and the HARQ process ID may identify a unique HARQ process.
- the terminal may also obtain the HARQ process ID list configured by the target logical channel in at least one of the following manners: pre-defined (as agreed in a protocol), network-side device configuration, and network-side device pre-configuration.
- pre-defined as agreed in a protocol
- network-side device configuration for example, the HARQ process ID list maintained by the protocol agreement or the configuration of the network side device on logical channel 1 is: HARQ process ID 1, HARQ process ID 2; the HARQ process ID list maintained by logical channel 2 is: HARQ process ID 3, HARQ process ID 4 .
- the terminal judges based on the HARQ uplink retransmission indication associated with the first uplink scheduling in the scheduling signaling (such as DCI) and the configuration of enabling/disabling HARQ uplink retransmission for each logical channel of the terminal. It can be multiplexed to the logical channel of the MAC PDU corresponding to the first uplink scheduling, that is, to determine which logical channel data is allowed to be transmitted on the resources specified by the first uplink scheduling.
- This embodiment includes the following steps:
- Step 1 The UE obtains the following information:
- the HARQ uplink retransmission indication associated with the first uplink scheduling is used for one of the following: indicating that the first uplink scheduling is for scheduling the transmission for which HARQ uplink retransmission is disabled, or indicating that the first uplink Scheduling is used to schedule transmissions that enable HARQ uplink retransmission.
- step 1 the UE monitors the downlink control channel to obtain scheduling signaling (such as DCI), and the scheduling signaling includes at least the above two contents, and this example is applicable to the dynamic scheduling (Dynamically allocated) scenario.
- scheduling signaling such as DCI
- step 1 the UE obtains the above two contents based on the configuration information, and this example is applicable to the scenario of Configured Grants.
- the size of the HARQ uplink retransmission indication can be 1 bit, and its value can be 0 or 1, which can include one of the following situations:
- the HARQ uplink retransmission indication associated with the first uplink scheduling is 1, it means that the first uplink scheduling is used for scheduling the transmission of disabling HARQ uplink retransmission; the HARQ uplink retransmission indication associated with the first uplink scheduling When the value is 0, it indicates that the first uplink scheduling is used to schedule transmissions with HARQ uplink retransmission enabled.
- the HARQ uplink retransmission indication associated with the first uplink scheduling When the value of the HARQ uplink retransmission indication associated with the first uplink scheduling is 1, it indicates that the first uplink scheduling is used for scheduling the transmission that enables HARQ uplink retransmission; the HARQ uplink retransmission indication associated with the first uplink scheduling When the value is 0, it indicates that the first uplink scheduling is used to schedule the transmission for which HARQ uplink retransmission is disabled.
- Step 2 In the case where the first uplink scheduling is used to schedule newly transmitted data, according to the received DCI, the UE must first determine the logical channel that can be transmitted on the uplink transmission resources specified by the first uplink scheduling, that is, the UE needs to select a multiplexer.
- the UE When using the logical channel in the MAC PDU corresponding to the first uplink scheduling, at least the following judgment principles should be included:
- the data of the corresponding logical channel is allowed to be multiplexed to In the MAC PDU corresponding to the first uplink scheduling, that is, the data of the corresponding logical channel is allowed to be transmitted on the resources specified by the first uplink scheduling.
- the configuration of enabling/disabling HARQ uplink retransmission for each logical channel can be one of the following:
- Network side device configuration/pre-configuration For example, if the network-side device configures/pre-configures logical channel 1 to enable HARQ uplink retransmission, logical channel 1 can only transmit data for which HARQ uplink retransmission is enabled; if the network-side device configures/pre-configures logical channel 1 If configured to disable HARQ uplink retransmission, logical channel 1 can only transmit data for which HARQ uplink retransmission is disabled.
- step 2 is: if the HARQ retransmission indication indicates that the first uplink scheduling is used for scheduling the transmission of disabling HARQ uplink retransmission, when the logical channel enables/disables the HARQ uplink retransmission configuration and the HARQ retransmission indication indicates that the HARQ uplink is enabled/disabled.
- the corresponding logical channel is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, the data of the corresponding logical channel is allowed to be transmitted on the resources specified by the first uplink scheduling.
- the data of logical channel 1 and logical channel 2 are allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, logical channel 1.
- the data of logical channel 2 and logical channel 2 are not allowed to be transmitted on the resources specified by the first uplink scheduling; if logical channel 3 and logical channel 4 are configured to enable HARQ uplink retransmission, logical channel 3 and logical channel 4 are not allowed to be repeated. It is used in the MAC PDU corresponding to the first uplink scheduling, that is, the data of logical channel 3 and logical channel 4 are not allowed to be transmitted on the resources designated by the first uplink scheduling.
- the HARQ retransmission indication is used to instruct the first uplink scheduling to be used to schedule the HARQ uplink retransmission-enabled transmission, when the logical channel enables/disables the HARQ uplink retransmission configuration and the HARQ uplink retransmission configuration indicated by the HARQ retransmission instruction enables/disables the HARQ uplink retransmission configuration
- the corresponding logical channel is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, the logical channel configured to enable HARQ uplink retransmission is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling.
- logical channel 1 and logical channel 2 are configured to disable HARQ uplink retransmission, logical channel 1 and logical channel 2 are not allowed to be multiplexed into the MAC PDUs corresponding to the first uplink scheduling, that is, logical channel 1 and logical channel 2 are not allowed to be multiplexed into the MAC PDUs corresponding to the first uplink scheduling.
- the data of logical channel 2 is not allowed to be transmitted on the resources specified by the first uplink scheduling; if logical channel 3 and logical channel 4 are configured to enable HARQ uplink retransmission, logical channel 3 and logical channel 4 are allowed to be multiplexed to
- the data in the MAC PDUs corresponding to the first uplink scheduling, that is, logical channel 1 and logical channel 2 are allowed to be transmitted on the resources designated by the first uplink scheduling.
- the UE determines that it can be multiplexed to the first HARQ process ID based on the HARQ uplink retransmission configuration for each HARQ process, the HARQ uplink retransmission configuration for each logical channel, and the HARQ process ID indicated by the scheduling signaling.
- the logical channel of the MAC PDU corresponding to the uplink scheduling is to judge the logical channel data that is allowed to be transmitted on the resources specified by the first uplink scheduling, and this embodiment includes the following steps:
- Step 1 The UE obtains the following information:
- the first HARQ process scheduled by the first uplink scheduling, the first HARQ process is identified by the first HARQ process ID, and the first HARQ process corresponds to the target HARQ process in the foregoing embodiment.
- step 1 the UE monitors the downlink control channel to obtain scheduling signaling (such as DCI), and the scheduling signaling includes at least the above two contents, and this example is applicable to the dynamic scheduling (Dynamically allocated) scenario.
- scheduling signaling such as DCI
- step 1 the UE obtains the above two contents based on the configuration information, and this example is applicable to the scenario of Configured Grants.
- Step 2 When the first uplink scheduling is used to schedule newly transmitted data, the UE must first determine the logical channel that can be transmitted on the uplink transmission resources designated by the first uplink scheduling according to the received scheduling signaling, that is, the UE needs to select the logical channel. Multiplexed into the MAC PDU corresponding to the first uplink scheduling. At least the following judgment principle should be included: only when the enable/disable HARQ uplink retransmission configuration of the logical channel is the same as the enable/disable HARQ uplink retransmission configuration associated with the first HARQ process, the corresponding logical channel is allowed to be multiplexed to the first HARQ uplink retransmission configuration. In the MAC PDU corresponding to an uplink scheduling, that is, the data of the corresponding logical channel is allowed to be transmitted on the resources designated by the first uplink scheduling.
- the enable/disable HARQ uplink retransmission configuration of the logical channel may be one of the following:
- Network side configuration/pre-configuration For example, if the network side device configures/pre-configures the configuration of logical channel 1 to enable HARQ uplink retransmission, then logical channel 1 can only transmit data for which HARQ uplink retransmission is enabled; if the network side device configures/pre-configures the configuration of logical channel 1 To disable HARQ uplink retransmission, logical channel 1 can only transmit data for which HARQ uplink retransmission is disabled.
- the configuration of enabling/disabling HARQ uplink retransmission for each HARQ process may be one of the following:
- Network side configuration/pre-configuration For example, if the network side device configures/preconfigures HARQ process 1 to enable HARQ uplink retransmission, then HARQ process 1 can only transmit data for which HARQ uplink retransmission is enabled; if the network side configures/preconfigures HARQ process 1 to disable HARQ uplink retransmission , then HARQ process 1 can only transmit data for which HARQ uplink retransmission is disabled.
- Step 2 the first HARQ process is identified by HARQ process ID1, if the HARQ process identified by HARQ process ID1 is configured to disable HARQ uplink retransmission, only if the logical channel enable/disable HARQ uplink retransmission configuration is related to the first HARQ process
- the corresponding logical channel is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, only the logical channel configured to disable HARQ uplink retransmission is allowed to be multiplexed. to the MAC PDU corresponding to the first uplink scheduling.
- logical channel 1 and logical channel 2 are configured to disable HARQ uplink retransmission, only logical channel 1 and logical channel 2 are allowed to be multiplexed into the MAC PDUs corresponding to the first uplink scheduling; If logical channel 4 is configured to enable HARQ uplink retransmission, logical channel 3 and logical channel 4 are not allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling.
- the HARQ process identified by HARQ process ID1 is configured to enable HARQ uplink retransmission, only if the enable/disable HARQ uplink retransmission configuration of the logical channel is related to the enable/disable HARQ uplink retransmission configuration associated with the first HARQ process.
- the corresponding logical channel is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling, that is, the logical channel configured to enable HARQ uplink retransmission is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling.
- Logical channel 4 is configured to disable HARQ uplink retransmission, then logical channel 3 and logical channel 4 are allowed to be multiplexed into the MAC PDUs corresponding to the first uplink scheduling.
- the UE determines the logical channel that can be multiplexed into the MAC PDU corresponding to the first uplink scheduling based on the association relationship (or mapping relationship) between the logical channel and the HARQ process ID, and the HARQ process ID indicated by the UE scheduling signaling , this embodiment includes the following steps:
- Step 1 The UE obtains the following information:
- the first HARQ process scheduled by the first uplink scheduling, the first HARQ process is identified by the first HARQ process ID, and the first HARQ process corresponds to the target HARQ process in the foregoing embodiment.
- step 1 the UE monitors the downlink control channel to obtain scheduling signaling (such as DCI), and the scheduling signaling includes at least the above two contents, and this example is applicable to the dynamic scheduling (Dynamically allocated) scenario.
- scheduling signaling such as DCI
- step 1 the UE obtains the above two contents based on the configuration information, and this example is applicable to the scenario of Configured Grants.
- Step 2 When the first uplink scheduling is used to schedule newly transmitted data, the UE must first determine the logical channel that can be transmitted on the uplink transmission resources specified by the first uplink scheduling, that is, the UE needs to select the logical channel to be multiplexed to the corresponding first uplink scheduling.
- the MAC PDU of at least the following judgment principle should be included: only when the logical channel and the HARQ process are related, the corresponding logical channel is allowed to be multiplexed into the MAC PDU corresponding to the first uplink scheduling.
- the logical signal may be associated with one or more HARQ processes.
- the HARQ process is identified by a HARQ process ID, and the HARQ process ID may identify a unique HARQ process.
- the logical channel may be configured with a HARQ process ID list, and the relationship between the logical channel and the HARQ process is that the HARQ process ID list includes the HARQ process ID corresponding to the first HARQ process.
- the HARQ process ID list configured by the logical channel may be one of the following:
- the HARQ process ID list configured on logical channel 1 is: HARQ process ID 1, HARQ process ID 2; the HARQ process ID list configured on logical channel 2 is: HARQ process ID 3, HARQ process ID 4; HARQ process ID configured on logical channel 3
- the process ID list is: HARQ process ID 1, HARQ process ID 2, and HARQ process ID 4.
- one HARQ process ID uniquely identifies one HARQ process.
- the corresponding logical channel is allowed to be multiplexed to In the MAC PDU corresponding to the first uplink scheduling. In this example, that is, only logical channel 1 and logical channel 3 are allowed to be multiplexed into the MAC PDUs corresponding to the first uplink scheduling.
- the execution subject may be a resource allocation apparatus, or a control module in the resource allocation apparatus for executing the resource allocation method.
- the resource allocation device provided by the embodiment of the present application is described by taking the resource allocation method performed by the resource allocation device as an example.
- FIG. 3 is a schematic structural diagram of a resource allocation apparatus according to an embodiment of the present application, and the apparatus may correspond to terminals in other embodiments. As shown in FIG. 3 , the apparatus 300 includes the following modules.
- the obtaining module 302 may be configured to obtain the first uplink schedule for new transmission.
- the resource allocation module 304 can be configured to perform resource allocation on the resources designated by the first uplink scheduling based on at least one of the following: HARQ uplink retransmission indication; HARQ process enable/disable HARQ uplink retransmission configuration; /Disable the configuration of HARQ uplink retransmission; the association between logical channels and HARQ processes.
- the resource allocation apparatus can perform resource allocation on the resources designated by the first uplink scheduling based on at least one of the following: HARQ uplink retransmission indication; HARQ process enable/disable HARQ uplink retransmission configuration; /Disable the configuration of HARQ uplink retransmission; the association between logical channels and HARQ processes.
- the embodiments of the present application provide an effective solution for resource allocation in the case of enabling/disabling HARQ uplink retransmission, thereby improving communication effectiveness.
- the embodiment of the present application considers the situation of enabling/disabling HARQ uplink retransmission, it is possible to try to make the logical channel data for enabling HARQ uplink retransmission and the logical channel data for disabling HARQ uplink retransmission not multiplexed into the first uplink scheduler at the same time. Corresponding to the MAC PDU, thereby improving the quality of service of the data flow.
- the resource allocation module 304 is configured to enable/disable HARQ uplink retransmission if the configuration of the target logical channel on enabling/disabling HARQ uplink retransmission and the HARQ uplink retransmission indication indicating If the characteristics of the target logical channel match, the data of the target logical channel is allowed to be transmitted on the resources specified by the first uplink scheduling; wherein, the HARQ uplink retransmission indication is used to indicate that the first uplink scheduling is used for scheduling disabled HARQ Transmission of uplink retransmission or transmission of HARQ uplink retransmission enabled.
- the configuration of the target logical channel on enabling/disabling HARQ uplink retransmission matches the feature of enabling/disabling HARQ uplink retransmission indicated by the HARQ uplink retransmission indication, including at least one of the following:
- the configuration of the target logical channel is to enable HARQ uplink retransmission, and the HARQ uplink retransmission indication is used to instruct scheduling to enable transmission of HARQ uplink retransmission;
- the configuration of the target logical channel is to disable HARQ uplink retransmission, and the HARQ uplink retransmission is disabled.
- the HARQ uplink retransmission indication is used to instruct the scheduling to disable the transmission of the HARQ uplink retransmission.
- the resource allocation module 304 is configured to, if the configuration of enabling/disabling HARQ uplink retransmission of the target logical channel matches the configuration of enabling/disabling HARQ uplink retransmission of the target HARQ process, then The data of the target logical channel is allowed to be transmitted on the resources designated by the first uplink scheduling; wherein, the target HARQ process is the HARQ process associated with the first uplink scheduling.
- the matching of the configuration of enabling/disabling HARQ uplink retransmission of the target logical channel with the configuration of enabling/disabling HARQ uplink retransmission of the target HARQ process includes at least one of the following: is configured to enable HARQ uplink retransmission, and the configuration of the target HARQ process is to enable HARQ uplink retransmission; the configuration of the target logical channel is to disable HARQ uplink retransmission, and the configuration of the target HARQ process is to disable HARQ uplink retransmission pass.
- the resource allocation module 304 is configured to, if the target logical channel is associated with the target HARQ process, allow the data of the target logical channel to be transmitted on the resources designated by the first uplink scheduling; wherein , the target HARQ process is the HARQ process associated with the first uplink scheduling.
- the target logical channel is configured with a HARQ process ID list; wherein, associating the target logical channel with the target HARQ process includes: the ID of the target HARQ process is located in the HARQ process ID in the list.
- the apparatus 300 further includes an obtaining module, configured to at least one of the following: to obtain the information about enabling/disabling HARQ uplink retransmission of the target logical channel through at least one of the following manners configuration: pre-defined, network-side device configuration, network-side device pre-configuration; for obtaining the configuration for enabling/disabling HARQ uplink retransmission for the target HARQ process by at least one of the following methods: pre-definition, network-side device configuration, Network-side device pre-configuration; used for obtaining the HARQ process ID list configured by the target logical channel by at least one of the following methods: pre-defined, network-side device configuration, network-side device pre-configuration.
- the HARQ uplink retransmission indication is indicated by scheduling signaling; or the HARQ uplink retransmission indication is configured by a network side device.
- the resource allocation apparatus in this embodiment of the present application may be an apparatus, or may be a component, an integrated circuit, or a chip in a terminal.
- the device may be a mobile terminal or a non-mobile terminal.
- the mobile terminal may include, but is not limited to, the types of terminals 11 listed above, and the non-mobile terminal may be a server, a network attached storage (NAS), a personal computer (personal computer, PC), a television ( television, TV), teller machine, or self-service machine, etc., which are not specifically limited in the embodiments of the present application.
- the resource allocation apparatus in this embodiment of the present application may be an apparatus with an operating system.
- the operating system may be an Android (Android) operating system, an ios operating system, or other possible operating systems, which are not specifically limited in the embodiments of the present application.
- the resource allocation apparatus provided in the embodiment of the present application can implement each process implemented by the method embodiment in FIG. 2 , and achieve the same technical effect. To avoid repetition, details are not repeated here.
- an embodiment of the present application further provides a communication device 400, including a processor 401, a memory 402, a program or instruction stored in the memory 402 and executable on the processor 401,
- a communication device 400 including a processor 401, a memory 402, a program or instruction stored in the memory 402 and executable on the processor 401,
- the communication device 400 is a terminal
- the program or instruction is executed by the processor 401
- each process of the foregoing resource allocation method embodiments can be implemented, and the same technical effect can be achieved.
- FIG. 5 is a schematic diagram of a hardware structure of a terminal implementing an embodiment of the present application.
- the terminal 500 includes but is not limited to: a radio frequency unit 501, a network module 502, an audio output unit 503, an input unit 504, a sensor 505, a display unit 506, a user input unit 507, an interface unit 508, a memory 509, and a processor 510 and other components .
- the terminal 500 may further include a power supply (such as a battery) for supplying power to various components, and the power supply may be logically connected to the processor 510 through a power management system, so as to manage charging, discharging, and power consumption through the power management system management and other functions.
- a power supply such as a battery
- the terminal structure shown in FIG. 5 does not constitute a limitation to the terminal, and the terminal may include more or less components than shown, or combine some components, or arrange different components, which will not be repeated here.
- the input unit 504 may include a graphics processor (Graphics Processing Unit, GPU) 5041 and a microphone 5042. Such as camera) to obtain still pictures or video image data for processing.
- the display unit 506 may include a display panel 5061, which may be configured in the form of a liquid crystal display, an organic light emitting diode, or the like.
- the user input unit 507 includes a touch panel 5071 and other input devices 5072 .
- the touch panel 5071 is also called a touch screen.
- the touch panel 5071 may include two parts, a touch detection device and a touch controller.
- Other input devices 5072 may include, but are not limited to, physical keyboards, function keys (such as volume control keys, switch keys, etc.), trackballs, mice, and joysticks, which are not described herein again.
- the radio frequency unit 501 receives the downlink data from the network side device, and then processes it to the processor 510; in addition, sends the uplink data to the network side device.
- the radio frequency unit 501 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like.
- Memory 509 may be used to store software programs or instructions as well as various data.
- the memory 509 may mainly include a storage program or instruction area and a storage data area, wherein the stored program or instruction area may store an operating system, an application program or instruction required for at least one function (such as a sound playback function, an image playback function, etc.) and the like.
- the memory 509 may include a high-speed random access memory, and may also include a non-volatile memory, wherein the non-volatile memory may be a read-only memory (Read-Only Memory, ROM), a programmable read-only memory (Programmable ROM, PROM) ), erasable programmable read-only memory (ErasablePROM, EPROM), electrically erasable programmable read-only memory (Electrically EPROM, EEPROM) or flash memory.
- ROM Read-Only Memory
- PROM programmable read-only memory
- ErasablePROM ErasablePROM
- EPROM electrically erasable programmable read-only memory
- EEPROM electrically erasable programmable read-only memory
- flash memory for example at least one magnetic disk storage device, flash memory device, or other non-volatile solid state storage device.
- the processor 510 may include one or more processing units; optionally, the processor 510 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface, application programs or instructions, etc., Modem processors mainly deal with wireless communications, such as baseband processors. It can be understood that, the above-mentioned modulation and demodulation processor may not be integrated into the processor 510.
- the radio frequency unit 501 is configured to acquire the first uplink schedule for new transmission; the processor 510 is configured to perform resource allocation on the resources designated by the first uplink schedule based on at least one of the following: HARQ uplink retransmission indication; HARQ uplink retransmission indication; The configuration of process enabling/disabling HARQ uplink retransmission; the configuration of logical channel enabling/disabling HARQ uplink retransmission; the association between logical channels and HARQ processes.
- the terminal may perform resource allocation for the resources specified by the first uplink scheduling based on at least one of the following: HARQ uplink retransmission indication; HARQ process enabling/disabling HARQ uplink retransmission configuration; logical channel enabling/disabling HARQ Configuration of uplink retransmission; association between logical channels and HARQ processes.
- the embodiments of the present application provide an effective solution for resource allocation in the case of enabling/disabling HARQ uplink retransmission, thereby improving communication effectiveness.
- the embodiment of the present application considers the situation of enabling/disabling HARQ uplink retransmission, it is possible to try to make the logical channel data for enabling HARQ uplink retransmission and the logical channel data for disabling HARQ uplink retransmission not multiplexed into the first uplink scheduler at the same time. Corresponding to the MAC PDU, thereby improving the quality of service of the data flow.
- the terminal 500 provided in this embodiment of the present application can also implement each process of the foregoing resource allocation method embodiments, and can achieve the same technical effect. To avoid repetition, details are not described here.
- the embodiments of the present application further provide a readable storage medium, the readable storage medium may be volatile or non-volatile, and a program or an instruction is stored on the readable storage medium, the program or When the instruction is executed by the processor, each process of the foregoing resource allocation method embodiment is implemented, and the same technical effect can be achieved. To avoid repetition, details are not described here.
- the processor may be the processor in the terminal described in the foregoing embodiment.
- the readable storage medium includes a computer-readable storage medium, such as a computer read-only memory (Read-Only Memory, ROM), a random access memory (Random Access Memory, RAM), a magnetic disk or an optical disk, and the like.
- An embodiment of the present application further provides a chip, where the chip includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is configured to run a program or an instruction to implement the above resource allocation method embodiments.
- the chip includes a processor and a communication interface
- the communication interface is coupled to the processor
- the processor is configured to run a program or an instruction to implement the above resource allocation method embodiments.
- the chip mentioned in the embodiments of the present application may also be referred to as a system-on-chip, a system-on-chip, a system-on-chip, or a system-on-a-chip, or the like.
- An embodiment of the present application further provides a computer program product, where the computer program product is stored in a non-transitory storage medium, and the computer program product is executed by at least one processor to implement each process of the foregoing resource allocation method embodiments, And can achieve the same technical effect, in order to avoid repetition, it is not repeated here.
- An embodiment of the present application further provides a communication device, which is configured to perform each process of the foregoing resource allocation method embodiment, and can achieve the same technical effect. To avoid repetition, details are not described here.
- the method of the above embodiment can be implemented by means of software plus a necessary general hardware platform, and of course can also be implemented by hardware, but in many cases the former is better implementation.
- the technical solution of the present application can be embodied in the form of a software product in essence or in a part that contributes to the prior art, and the computer software product is stored in a storage medium (such as ROM/RAM, magnetic disk, CD-ROM), including several instructions to make a terminal (which may be a mobile phone, a computer, a server, an air conditioner, or a network side device, etc.) execute the methods described in the various embodiments of this application.
- a storage medium such as ROM/RAM, magnetic disk, CD-ROM
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Abstract
Description
Claims (22)
- 一种资源分配方法,所述方法包括:终端获取用于新传的第一上行调度;基于如下至少之一,对所述第一上行调度指定的资源进行资源分配:混合自动重传请求HARQ上行重传指示;HARQ进程启用/禁用HARQ上行重传的配置;逻辑信道关于启用/禁用HARQ上行重传的配置;逻辑信道与HARQ进程的关联关系。
- 根据权利要求1所述的方法,其中,所述基于如下至少之一,对所述第一上行调度指定的资源进行资源分配包括:若目标逻辑信道关于启用/禁用HARQ上行重传的配置与所述HARQ上行重传指示所指示的启用/禁用HARQ上行重传的特性匹配,则所述目标逻辑信道的数据允许在所述第一上行调度指定的资源上传输;其中,所述HARQ上行重传指示用于指示所述第一上行调度是用于调度禁用HARQ上行重传的传输或启用HARQ上行重传的传输。
- 根据权利要求2所述的方法,其中,所述目标逻辑信道关于启用/禁用HARQ上行重传的配置与HARQ上行重传指示所指示的启用/禁用HARQ上行重传的特性匹配包括如下至少之一:所述目标逻辑信道的配置为启用HARQ上行重传,且所述HARQ上行重传指示用于指示调度启用HARQ上行重传的传输;所述目标逻辑信道的配置为禁用HARQ上行重传,且所述HARQ上行重传指示用于指示调度禁用HARQ上行重传的传输。
- 根据权利要求1所述的方法,其中,所述基于如下至少之一,对所述第一上行调度指定的资源进行资源分配包括:若目标逻辑信道关于启用/禁用HARQ上行重传的配置与目标HARQ进程启用/禁用HARQ上行重传的配置匹配,则所述目标逻辑信道的数据允许在所述第一上行调度指定的资源上传输;其中,所述目标HARQ进程为与所述第一上行调度相关联的HARQ进 程。
- 根据权利要求4所述的方法,其中,所述目标逻辑信道关于启用/禁用HARQ上行重传的配置与目标HARQ进程启用/禁用HARQ上行重传的配置匹配包括如下至少之一:所述目标逻辑信道的配置为启用HARQ上行重传,且所述目标HARQ进程的配置为启用HARQ上行重传;所述目标逻辑信道的配置为禁用HARQ上行重传,且所述目标HARQ进程的配置为禁用HARQ上行重传。
- 根据权利要求1所述的方法,其中,所述基于如下至少之一,对所述第一上行调度指定的资源进行资源分配包括:若目标逻辑信道与目标HARQ进程关联,则所述目标逻辑信道的数据允许在所述第一上行调度指定的资源上传输;其中,所述目标HARQ进程为与所述第一上行调度相关联的HARQ进程。
- 根据权利要求6所述的方法,其中,所述目标逻辑信道配置有HARQ进程标识ID列表;其中,所述目标逻辑信道与所述目标HARQ进程关联包括:所述目标HARQ进程的ID位于所述HARQ进程ID列表内。
- 根据权利要求2,4或6所述的方法,其中,所述方法还包括如下至少之一:通过如下方式的至少之一,得到所述目标逻辑信道关于启用/禁用HARQ上行重传的配置:预定义,网络侧设备配置,网络侧设备预配置;通过如下方式的至少之一,得到所述目标HARQ进程启用/禁用HARQ上行重传的配置:预定义,网络侧设备配置,网络侧设备预配置;通过如下方式的至少之一,得到所述目标逻辑信道配置的HARQ进程ID列表:预定义,网络侧设备配置,网络侧设备预配置。
- 根据权利要求1所述的方法,其中,所述HARQ上行重传指示由调 度信令指示或由网络侧设备配置。
- 一种资源分配装置,包括:获取模块,用于获取用于新传的第一上行调度;资源分配模块,用于基于如下至少之一,对所述第一上行调度指定的资源进行资源分配:HARQ上行重传指示;HARQ进程启用/禁用HARQ上行重传的配置;逻辑信道关于启用/禁用HARQ上行重传的配置;逻辑信道与HARQ进程的关联关系。
- 根据权利要求10所述的装置,其中,所述资源分配模块,用于若目标逻辑信道关于启用/禁用HARQ上行重传的配置与所述HARQ上行重传指示所指示的启用/禁用HARQ上行重传的特性匹配,则所述目标逻辑信道的数据允许在所述第一上行调度指定的资源上传输;其中,所述HARQ上行重传指示用于指示所述第一上行调度是用于调度禁用HARQ上行重传的传输或启用HARQ上行重传的传输。
- 根据权利要求11所述的装置,其中,所述目标逻辑信道关于启用/禁用HARQ上行重传的配置与HARQ上行重传指示所指示的启用/禁用HARQ上行重传的特性匹配包括如下至少之一:所述目标逻辑信道的配置为启用HARQ上行重传,且所述HARQ上行重传指示用于指示调度启用HARQ上行重传的传输;所述目标逻辑信道的配置为禁用HARQ上行重传,且所述HARQ上行重传指示用于指示调度禁用HARQ上行重传的传输。
- 根据权利要求10所述的装置,其中,所述资源分配模块,用于若目标逻辑信道关于启用/禁用HARQ上行重传的配置与目标HARQ进程启用/禁用HARQ上行重传的配置匹配,则所述目标逻辑信道的数据允许在所述第一上行调度指定的资源上传输;其中,所述目标HARQ进程为与所述第一上行调度相关联的HARQ进程。
- 根据权利要求13所述的装置,其中,所述目标逻辑信道关于启用/禁用HARQ上行重传的配置与目标HARQ进程启用/禁用HARQ上行重传的配置匹配包括如下至少之一:所述目标逻辑信道的配置为启用HARQ上行重传,且所述目标HARQ进程的配置为启用HARQ上行重传;所述目标逻辑信道的配置为禁用HARQ上行重传,且所述目标HARQ进程的配置为禁用HARQ上行重传。
- 根据权利要求10所述的装置,其中,所述资源分配模块,用于若目标逻辑信道与目标HARQ进程关联,则所述目标逻辑信道的数据允许在所述第一上行调度指定的资源上传输;其中,所述目标HARQ进程为与所述第一上行调度相关联的HARQ进程。
- 根据权利要求15所述的装置,其中,所述目标逻辑信道配置有HARQ进程ID列表;其中,所述目标逻辑信道与所述目标HARQ进程关联包括:所述目标HARQ进程的ID位于所述HARQ进程ID列表内。
- 根据权利要求11,13或15所述的装置,其中,还包括获取模块,用于如下至少之一:通过如下方式的至少之一,得到所述目标逻辑信道关于启用/禁用HARQ上行重传的配置:预定义,网络侧设备配置,网络侧设备预配置;通过如下方式的至少之一,得到所述目标HARQ进程启用/禁用HARQ上行重传的配置:预定义,网络侧设备配置,网络侧设备预配置;通过如下方式的至少之一,得到所述目标逻辑信道配置的HARQ进程ID列表:预定义,网络侧设备配置,网络侧设备预配置。
- 根据权利要求10所述的装置,其中,所述HARQ上行重传指示由调度信令指示或由网络侧设备配置。
- 一种终端,包括处理器,存储器及存储在所述存储器上并可在所述 处理器上运行的程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至9任一项所述的资源分配方法。
- 一种可读存储介质,所述可读存储介质上存储程序或指令,所述程序或指令被所述处理器执行时实现如权利要求1至9任一项所述的资源分配方法。
- 一种芯片,所述芯片包括处理器和通信接口,所述通信接口和所述处理器耦合,所述处理器用于运行程序或指令,实现如权利要求1至9任一项所述的资源分配方法。
- 一种计算机程序产品,所述计算机程序产品存储于非瞬态的存储介质,所述计算机程序产品被至少一个处理器执行以实现如权利要求1至9任一项所述的资源分配方法。
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