WO2017177438A1 - 一种控制信息的传输方法及装置 - Google Patents
一种控制信息的传输方法及装置 Download PDFInfo
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- WO2017177438A1 WO2017177438A1 PCT/CN2016/079420 CN2016079420W WO2017177438A1 WO 2017177438 A1 WO2017177438 A1 WO 2017177438A1 CN 2016079420 W CN2016079420 W CN 2016079420W WO 2017177438 A1 WO2017177438 A1 WO 2017177438A1
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B17/00—Monitoring; Testing
- H04B17/30—Monitoring; Testing of propagation channels
- H04B17/309—Measuring or estimating channel quality parameters
- H04B17/364—Delay profiles
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W48/00—Access restriction; Network selection; Access point selection
- H04W48/18—Selecting a network or a communication service
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/04—Wireless resource allocation
- H04W72/044—Wireless resource allocation based on the type of the allocated resource
- H04W72/0453—Resources in frequency domain, e.g. a carrier in FDMA
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/21—Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/50—Allocation or scheduling criteria for wireless resources
- H04W72/54—Allocation or scheduling criteria for wireless resources based on quality criteria
- H04W72/542—Allocation or scheduling criteria for wireless resources based on quality criteria using measured or perceived quality
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W80/00—Wireless network protocols or protocol adaptations to wireless operation
- H04W80/08—Upper layer protocols
Definitions
- the present invention relates to the field of communications, and in particular, to a method and an apparatus for transmitting control information.
- Carrier Aggregation (CA) technology aggregates two or more carriers for data transmission and can support larger bandwidth. These aggregated carriers can simultaneously serve one user terminal for data transmission and reception. .
- CA Carrier Aggregation
- LTE Long Term Evolution
- DC Dual Connectivity
- the downlink service data may be separately transmitted on one of the carriers, or may be split in the Packet Data Convergence Protocol (PDCP) layer, so that the downlink service data bearer is sent on different carriers.
- the uplink service data can only be transmitted on one of the carriers, that is, the uplink service data sent by the user terminal can only be transmitted through one of the carriers.
- Each protocol layer generates control information corresponding to the protocol layer, and the control information includes status information generated by the protocol layer and/or feedback information generated by the protocol layer after receiving the downlink service data.
- each protocol layer carries the generated control information on the carrier configured by the protocol layer.
- the carrier carrying the downlink service data in the entire communication system needs to send the control information, which results in a large air interface overhead of the communication system, and the transmission performance is degraded.
- Embodiments of the present invention provide a method and an apparatus for transmitting control information, which can reduce the air interface overhead of the communication system and improve the transmission performance of the communication system.
- an embodiment of the present invention provides a method for transmitting control information, where the transmission method is applied to a first communications device that includes a first functional entity and a second functional entity, where the first functional entity is configured with a first carrier, The second functional entity is configured with the second carrier, and after the second functional entity acquires the first control information of the first functional entity that includes the first identifier, the second functional entity sends the second communication device to the second communication device to obtain the second control device.
- the first control information that is obtained, the first identifier is used to indicate the first carrier.
- the first functional entity in the first communications device is configured with a first carrier
- the second functional entity is configured with a second carrier
- the second functional entity includes the first
- the first control information of the first functional entity is identified
- the first control information is sent by using the second carrier, so that the first control information is no longer sent via the first carrier, and the control information sent by the communication device only occupies the resources of the second carrier.
- the air interface overhead of the communication system is saved, and the transmission performance of the communication system is improved.
- the load of the first carrier is reduced, and the overhead of the first carrier is reduced.
- the method for the second function entity to obtain the first control information of the first function entity is: the second function entity receives the first information sent by the first function entity, and adds the first information to the first information.
- the first control information is generated, where the first information is feedback information, or is status information, or is feedback information and status information, where the feedback information is that the first functional entity receives the first service data by using the first carrier,
- the function entity generates information corresponding to the first service data
- the state information is information generated by the first function entity according to the preset mechanism.
- the method for the second function entity to obtain the first control information of the first function entity is: the second function entity receives the first control information sent by the first function entity, where the first control information includes: The first identifier and the first information, the first information is feedback information, or is status information, or is feedback information and status information, where the feedback information is that after the first functional entity receives the first service data by using the first carrier, The function entity generates information corresponding to the first service data, and the state information is information generated by the first function entity according to the preset mechanism.
- the second function entity may first obtain the first information, and then add the first identifier to the first information to generate the first control information, or directly receive the first control information sent by the first function entity. Regardless of the manner in which the first control information is obtained, the second functional entity may learn that the first control information corresponds to the first carrier according to the first identifier.
- the second functional entity before acquiring the first control information of the first functional entity, the second functional entity further acquires a control information transmission rule, where the control information transmission rule is used to indicate that the second functional entity passes the The second carrier transmits the first control information.
- the second function entity obtains the control information transmission rule in advance, and the second function entity can determine, according to the control information transmission rule, that the first control information that is acquired is obtained after the first control information is acquired. Two carrier transmission.
- the base station device further includes a third functional entity.
- the third function entity determines a control information transmission rule that is determined when the attribute value of the first carrier and the attribute value of the second carrier satisfy the preset condition, and sends the determined control information transmission rule to the second function entity. In this way, the second functional entity can obtain the control information transmission rule.
- the method for the second function entity to obtain the control information transmission rule is: the second function entity receives And a control information transmission rule that is sent by the base station device, where the control information transmission rule is determined by the base station device when determining that an attribute value of the first carrier and an attribute value of the second carrier satisfy a preset condition.
- the device determining the control information transmission rule in the embodiment of the present invention is a base station device, and the base station device is in the attribute value of the first carrier and the second, whether the communication device is a base station device or a user terminal.
- the control information transmission rule is determined when the attribute values of the carrier all satisfy the preset condition.
- the preset condition includes at least one of the first condition, the second condition, and the third condition;
- the first condition is that the transmission time interval TTI of the first carrier is greater than the first preset threshold a value, the TTI of the second carrier is less than or equal to the second preset threshold, and the first preset threshold is greater than or equal to the second preset threshold;
- the second condition is that the signal quality of the first carrier is less than the third preset threshold, and the second The signal quality of the carrier is greater than the fourth preset threshold, and the fourth preset threshold is greater than the third preset threshold;
- the third condition is that the load of the first carrier is greater than the fifth preset threshold, and the load of the second carrier is less than the sixth preset. a threshold, and the fifth preset threshold is greater than the sixth preset threshold.
- the base station apparatus determines the control information transmission rule only when the performance of the second carrier is better than the performance of the first carrier, such that even if the first control information is transmitted via the second carrier, the second carrier is not caused. Serious impact.
- the second function entity further acquires second control information of the second function entity, and sends the second control information by using the second carrier.
- the second control information is the second information, or the second control information is the second information and the second identifier.
- the second function entity After the second function entity receives the second service data by using the second carrier, the second function entity generates and The information corresponding to the second service data, or the second information is information generated by the second function entity according to the preset mechanism, and the second identifier is used to indicate the second carrier.
- the second functional entity may only acquire the first control information at a certain time, or may only acquire the second control information, and may also acquire the first control information and the second control information at the same time. After acquiring the first control information and/or the second control information, the second functional entity in the embodiment of the present invention sends the acquired information via the second carrier.
- the transmission method provided by the embodiment of the present invention further includes: first, the second function entity receives the third control information sent by the second communication device by using the second carrier, where the third control information includes the first identifier; and then, the second function The entity sends the third control information to the first functional entity according to the first identifier.
- the first communications device in the embodiment of the present invention may be a control signal.
- the sender device of the information may also be the receiver device of the control information.
- the second functional entity in the first communications device may receive the third control information that is sent by the second communications device and includes the first identifier by using the second carrier.
- the second function entity learns that the destination function entity of the third control information should be the first function entity according to the first identifier, and the second function entity sends the third control information to the first function entity.
- another embodiment of the present invention provides a communication device, where the communication device includes a first functional entity and a second functional entity, where the first functional entity is configured with a first carrier, and the second functional entity is configured with a second carrier.
- the functions of the first functional entity and the second functional entity are implemented in particular by corresponding software programs and/or application modules.
- the first functional entity includes a generating module and a second sending module
- the second functional entity includes an obtaining module, a first sending module, and a processing module.
- an acquiring module configured to acquire first control information of the first functional entity, where the first control information includes a first identifier, where the first identifier is used to indicate the first carrier.
- the first sending module is configured to send, by using the second carrier, the first control information acquired by the acquiring module to the other communications device.
- the technical effects of the communication device provided by the embodiment of the present invention can be referred to the technical effects of the first communication device described in the method for transmitting control information performed by the first communication device in the foregoing embodiment of the present invention, and details are not described herein again.
- the generating module is configured to generate first information, where the first information is feedback information, or is status information, or is feedback information and status information, where the feedback information is generated after receiving the first service data by using the first carrier.
- the information corresponding to the first service data, and the status information is information generated according to a preset mechanism.
- the second sending module is configured to send, to the second functional entity, the first information generated by the generating module.
- the acquiring module is specifically configured to receive the first information sent by the second sending module of the first functional entity.
- the processing module is configured to add a first identifier to the first information received by the acquiring module, and generate first control information.
- the generating module is configured to generate first control information, where the first control information includes the first identifier and the first information, the first information is feedback information, or is status information, or is feedback information and status information, and the feedback information is After the first function entity receives the first service data, the first function entity generates information corresponding to the first service data, and the state information is information generated by the first function entity according to the preset mechanism.
- the second sending module is configured to send, to the second functional entity, the first control information generated by the generating module.
- the acquiring module is specifically configured to receive the first control information sent by the second sending module of the first functional entity.
- the obtaining module is further configured to: before acquiring the first control information, acquire a control information transmission rule, where the control information transmission rule is used to indicate that the first sending module of the second functional entity sends the first control information by using the second carrier.
- the first communication device is a base station device, and the base station device further includes a third functional entity, where the third functional entity includes a determining module and a third sending module.
- a third sending module configured to send, to the second functional entity, a control information transmission rule determined by the determining module.
- the acquiring module of the second functional entity is specifically configured to receive a control information transmission rule sent by the third sending module of the third functional entity.
- the first communication device is a user terminal, the user terminal communicates with the base station device, and the base station device is configured with the first carrier and the second carrier;
- the acquiring module of the second functional entity is specifically configured to receive a control information transmission rule sent by the base station device, where the control information transmission rule is determined by the base station device when determining that the attribute value of the first carrier and the attribute value of the second carrier satisfy the preset condition of.
- the acquiring module is further configured to receive, by using the second carrier, third control information that is sent by another communications device, where the third control information includes the first identifier.
- another embodiment of the present invention provides a communication device including a memory, a processor, a communication interface, and a system bus; the memory, the processor, and the communication interface are connected through a system bus, and the memory is used to store computer instructions and process The computer is operative to execute computer instructions stored in the memory to cause the communication device to perform the transmission method of the control information as in the above embodiment.
- the first functional entity is a radio link control RLC entity
- the first information includes an RLC control protocol data unit.
- PDU the second functional entity is an RLC entity or a first medium access control MAC entity;
- the first functional entity is a MAC entity, and the first information includes a MAC Control Protocol Data Unit PDU, and the second functional entity is a MAC entity; or
- the first functional entity is a physical PHY entity
- the first information includes control information of the PHY
- the second functional entity is a PHY entity.
- the first functional entity is a radio link control RLC entity
- the first information includes an RLC control protocol data unit.
- PDU the second functional entity is an RLC entity
- the first functional entity is a MAC entity, and the first information includes MAC control protocol data.
- Unit PDU then the second functional entity is a MAC entity; or,
- the first functional entity is a physical PHY entity
- the first information includes control information of the PHY
- the second functional entity is a PHY entity.
- the communications device provided by the embodiment of the present invention may be a user terminal, or may be a base station device, where the base station device may include at least one base station.
- 1 is a protocol stack used in an existing wireless communication system
- FIG. 2 is a schematic diagram of a transmission process of downlink service data in an existing wireless communication system
- FIG. 3 is a schematic diagram of a transmission process of downlink service data and control information in an existing wireless communication system
- FIG. 4 is a schematic structural diagram of a communication system according to an embodiment of the present invention.
- FIG. 5 is a schematic flowchart 1 of a method for transmitting control information according to an embodiment of the present disclosure
- FIG. 6 is a second schematic flowchart of a method for transmitting control information according to an embodiment of the present disclosure
- FIG. 7 is a schematic diagram of a transmission process of downlink service data and control information according to an embodiment of the present invention.
- FIG. 8 is a schematic structural diagram 1 of a communication device according to an embodiment of the present disclosure.
- FIG. 9 is a schematic structural diagram 2 of a communication device according to an embodiment of the present disclosure.
- FIG. 10 is a schematic structural diagram 3 of a communication device according to an embodiment of the present invention.
- a wireless communication system is constructed by dividing tasks to be performed between a plurality of protocol layers, each node or entity in the system being configured to process data at each protocol layer in the protocol stack, wherein Conceptually, the corresponding protocol layers can communicate with each other.
- FIG. 1 shows a protocol stack composed of a layer 1 protocol and a layer 2 protocol among two nodes of an LTE communication system. These two nodes are user terminals and base stations.
- the Layer 1 protocol is a Physical Layer (PHY Layer) protocol
- the main role of the PHY layer is to map service data to physical channels.
- Layer 2 protocols include media access control Protocol (Media Access Control, MAC) layer, Radio Link Control Layer (RLC) layer and PDCP layer.
- the main function of the MAC layer is to manage the Hybrid Automatic Repeat reQuest (HARQ) function and the scheduling of service data.
- the main role of the RLC layer is to divide/concatenate, retransmit, and deliver the service data.
- the main function of the PDCP layer is to compress, decompress, and transmit service data to the Internet Protocol (IP) headers of the network of service data.
- IP Internet Protocol
- the downlink service data may be separately transmitted on one of the carriers (the following service data a is carried on one of the carriers of the base station 1 and the downlink service data d is transmitted on one of the carriers of the base station 2), or may be in the PDCP layer.
- the downlink traffic is transmitted such that the downlink service data bearer is transmitted on different carriers (the following service data b is transmitted on different carriers of the base station 1 and the downlink service data c is transmitted on the carriers of the base station 1 and the base station 2).
- the different carriers carrying the same downlink service data may belong to the same base station (for example, two carriers carrying the downlink service data b belong to the base station 1), or may belong to different base stations (such as two carriers carrying the downlink service data c). One of them belongs to base station 1, and the other belongs to base station 2).
- X2 in Fig. 2 refers to the X2 interface between the base station 1 and the base station 2.
- each protocol layer of the base station is only one example of a process for the base station to use the DC technology to send downlink service data, and does not represent that the base station needs to be in the actual application process. All the above processes are used to send downlink service data.
- each protocol layer generates control information corresponding to the protocol layer, and the generated control information is carried on the carrier configured by the protocol layer, so that the entire communication system carries downlink service data.
- the carrier needs to send control information, resulting in a large air interface overhead of the communication system and a decrease in transmission performance.
- FIG. 3 is a schematic diagram of a transmission process of downlink service data and control information in a protocol layer structure in the prior art.
- the downlink service data (including the first downlink service data and the second downlink service data) in the base station is offloaded to the first carrier in the PDCP layer of the second carrier, first
- the downlink service data is transmitted to the user terminal via the RLC layer, the MAC layer, and the PHY layer of the first carrier, and the second downlink service data is sent to the user terminal via the RLC layer, the MAC layer, and the PHY layer of the second carrier.
- the RLC layer, the MAC layer, and the PHY layer of the first carrier in the user equipment generate corresponding control information, and send the information to the base station via the first carrier.
- the RLC layer, the MAC layer, and the PHY layer of the second carrier in the user terminal also generate corresponding control information, and send the information to the base station via the second carrier.
- both the first carrier and the second carrier in the communication system need to transmit control information, so that the air interface overhead of the communication system is large, and the transmission performance is degraded.
- the embodiments of the present invention provide a method and an apparatus for transmitting control information, which are required to transmit control information sent through multiple different carriers via one of the carriers, thereby saving air interface overhead of the communication system and improving transmission of the communication system. performance.
- control information corresponding to the carrier may be sent through other carriers, thereby reducing the carrier.
- the load For a carrier carrying a small amount of uplink service data (or not carrying uplink service data) and carrying a large amount of downlink service data, control information corresponding to the carrier may be sent through other carriers, thereby reducing the carrier. The load.
- the technology described in the embodiments of the present invention can be used in various communication systems, such as an LTE communication system, a 5th Generation Mobile Communication Technology (5G) communication system, and a Radio Access Technology (RAT).
- LTE communication system such as an LTE communication system, a 5th Generation Mobile Communication Technology (5G) communication system, and a Radio Access Technology (RAT).
- 5G 5th Generation Mobile Communication Technology
- RAT Radio Access Technology
- the method for transmitting control information provided by the embodiments of the present invention is applicable to a multi-connection technology for ideal backhaul connection between different base stations, wherein a multi-connection technology for ideal backhaul connection between different base stations includes an ideal between different base stations. Return the connected DC technology.
- FIG. 4 is a schematic structural diagram of a communication system according to an embodiment of the present invention.
- the communication system includes a user terminal 100, one or more base stations 101 connected to the user terminal 100.
- the user terminal 100 and the base station 101 are connected by a network.
- the first communication device in the embodiment of the present invention may be a user terminal.
- 100 may also be a base station device composed of at least one base station 101.
- the user terminal 100 includes a first functional entity and a second functional entity, where the first functional entity is configured with a first carrier, and the second functional entity is configured with a second carrier.
- the first functional entity of the user terminal 100 is an RLC entity configured with a first carrier, or a MAC entity configured with a first carrier, or a PHY entity configured with a first carrier.
- the second functional entity of the user terminal 100 is an RLC entity configured with a second carrier, or a MAC entity configured with a second carrier, or a PHY entity configured with a second carrier.
- the second functional entity of the user terminal 100 After acquiring the first control information of the first functional entity of the user terminal 100, the second functional entity of the user terminal 100 transmits the first control information to the base station 101 that communicates with the user terminal 100 via the second carrier.
- the first control information includes a first identifier indicating the first carrier, and the second function entity of the user terminal 100 can identify the first control information according to the first identifier, and after receiving the first control information sent by the user terminal 100, the base station 101 And determining, by the first identifier included in the first control information, the destination functional entity of the first control information.
- the first identifier may be a logical channel identifier (LCH ID) of the first carrier, or may be a name of the first carrier, or may be other information used to represent the first carrier.
- LCH ID logical channel identifier
- the second function entity of the user terminal 100 may further acquire second control information of the second function entity, and send the second control information to the base station 101 that communicates with the user terminal 100 via the second carrier.
- the second function entity of the user terminal 100 may further receive the third control information that is sent by the base station 101 and includes the first identifier, and send the third control information to the first function entity of the user terminal 100 according to the first identifier, that is, if the user terminal 100 To control the receiving device of the information, the second functional entity of the user terminal 100 may further determine the destination functional entity of the first control information according to the first identifier.
- the base station device also includes a A functional entity and a second functional entity, the first functional entity is configured with a first carrier, and the second functional entity is configured with a second carrier.
- the first functional entity of the base station device is an RLC entity configured with a first carrier, or a MAC entity configured with a first carrier, or a PHY entity configured with a first carrier.
- the second functional entity of the base station device is an RLC entity configured with a second carrier, or a MAC entity configured with a second carrier, or a PHY entity configured with a second carrier.
- the first functional entity of the base station device is similar to the function performed by the first functional entity of the user terminal 100
- the second functional entity of the base station device is similar to the function performed by the second functional entity of the user terminal 100.
- the first functional entity of the base station device and the second functional entity of the base station device may belong to the same base station 101 or may belong to different base stations 101.
- the user terminal to which the embodiment of the present invention relates is a wireless terminal
- the wireless terminal may be a device that provides voice and/or data connectivity to the user, a handheld device with a wireless connection function, or other processing device connected to the wireless modem.
- the wireless terminal can communicate with one or more core networks via a Radio Access Network (RAN).
- RAN Radio Access Network
- the wireless terminal can be a mobile terminal, such as a mobile phone (or "cellular" phone) or a computer with a mobile terminal, or can be a portable, pocket, handheld, computer built-in or in-vehicle mobile device that is connected to the wireless device.
- the wireless terminal may also be referred to as a system, a Subscriber Unit, a Subscriber Station, a Mobile Station, a Mobile, a Remote Station, an Access Point, Remote Terminal, Access Terminal, User Agent, User Device, or User Equipment.
- the user terminal includes the first functional entity and the second functional entity, and the first functional entity of the user terminal is configured with the first carrier, and the user terminal is configured.
- the second functional entity is configured with the second carrier, and the base station device also includes the first functional entity and the second functional entity.
- the first functional entity of the base station device is also configured with the first carrier, and the second functional entity of the base station device is also configured with the second carrier.
- the user terminal completes communication with the base station device, and the base station device sends the first downlink service data to the user terminal by using the first carrier, and sends the second downlink service data to the user terminal by using the second carrier, and the user terminal sends the second downlink service data to the base station device.
- the transmission control information is described as an example.
- the user terminal in the embodiment of the present invention is the first communication device, and the base station device is the second communication device.
- the method for transmitting control information provided by the embodiment of the present invention includes:
- the second function entity of the user terminal acquires first control information of the first functional entity of the user terminal, where the first control information includes the first identifier.
- the first identifier is used to indicate the first carrier.
- the second functional entity of the user terminal sends the first control information to the second functional entity of the base station device via the second carrier.
- the second functional entity of the base station device acquires the first control information by using the second carrier.
- the second functional entity of the base station device sends the first control information to the first functional entity of the base station device according to the first identifier included in the first control information.
- the method for acquiring the first control information by the second function entity of the user terminal in the embodiment of the present invention may be: the second function entity of the user terminal receives the first information sent by the first function entity of the user terminal, and receives The first information obtained adds a first identifier for indicating the first carrier.
- the first information is feedback information, or is status information, or is feedback information and status information.
- the feedback information is that after the first functional entity of the user terminal receives the first downlink service data sent by the base station by using the first carrier, the first function entity of the user terminal generates information corresponding to the first downlink service data.
- the status information is information generated by the first functional entity of the user terminal according to a preset mechanism.
- the RLC entity sends the base station by using the first carrier.
- the feedback information corresponding to the first downlink service data is generated, where the feedback information is an RLC Control PDU, and the RLC control PDU is used to feed back whether the RLC entity correctly receives the RLC.
- the serial number corresponding to the PDU is generated, where the feedback information is an RLC Control PDU, and the RLC control PDU is used to feed back whether the RLC entity correctly receives the RLC.
- the preset mechanism in the embodiment of the present invention is determined according to the protocol and the actual application that the first functional entity of the user terminal meets, which is not specifically limited in this embodiment of the present invention.
- the MAC entity if the first functional entity of the user terminal is a MAC entity, the MAC entity generates status information when the high-level data needs to be sent, and the status information is a Buffer Status Report (BSR).
- BSR Buffer Status Report
- the BSR is used to feedback how much data of the user terminal needs to be sent on the carrier configured by the MAC entity.
- the first information in the embodiment of the present invention is a data packet, and the data packet is named as the first information in the embodiment of the present invention for convenience of understanding and description. In the actual use, the naming of the first information is different according to the change of the first functional entity, which is not specifically limited in the embodiment of the present invention.
- the first identifier may be the LCH ID of the first carrier, or may be the name of the first carrier, and may also be other information used to represent the first carrier, which is not illustrated by the embodiment of the present invention.
- the first identifier added by the second function entity of the user terminal for the first information may be placed in the header of the first information, or may be placed in the payload of the first information, in the embodiment of the present invention. This is not specifically limited.
- the method for acquiring the first control information by the second function entity of the user terminal in the embodiment of the present invention may be: the second function entity of the user terminal receives the first control information sent by the first function entity of the user terminal.
- the first control information includes a first identifier and first information for indicating the first carrier.
- the definition of the first information is the same as the definition of the first information, and details are not described herein again.
- the first information is generated by the first functional entity of the user terminal. Therefore, the first control information sent by the first functional entity of the user terminal is that the first functional entity of the user terminal adds the first identifier to the first information generated by the first functional entity after the first information is generated, and then the first function of the user terminal The entity transmits first control information including the first identifier and the first information to the second functional entity of the user terminal.
- the first identifier added by the first function entity of the user terminal is the same as the first identifier added by the second function entity of the user terminal for the first information, and details are not described herein again.
- the first identifier added by the first function entity of the user terminal to the first information may be placed in the header of the first information, or may be placed in the payload of the first information, and the implementation of the present invention is implemented. This example does not specifically limit this.
- the second functional entity of the user terminal may further acquire second control information of the second functional entity of the user terminal.
- the second control information may be that after the second function entity of the user terminal receives the second service data sent by the base station by using the second carrier, the second function entity of the user terminal generates the second information corresponding to the second service data, where
- the second control information may also be second information generated by the second functional entity according to the preset mechanism, and the second control information may further include second information and a second identifier for indicating the second carrier.
- the first control information already includes a first identifier for indicating the first carrier, the second functional entity of the user terminal, whether the second control information includes the second identifier for indicating the second carrier,
- the first control information and the second control information may be distinguished according to the first identifier.
- the second function entity of the user terminal may obtain the second control information before acquiring the first control information, or obtain the second control information after acquiring the first control information, and may also acquire the first control at the same time.
- the information and the second control information are not specifically limited in the embodiment of the present invention.
- the first functional entity of the user terminal is an RLC entity
- the first information in the embodiment of the present invention includes an RLC control PDU
- the second functional entity of the user terminal is an RLC entity or a MAC entity.
- any RLC entity performs data processing according to the existing RLC protocol
- the foregoing MAC entity performs data processing according to the existing MAC protocol.
- the first functional entity of the user terminal is an RLC entity and the second functional entity of the user terminal is an RLC entity
- the first functional entity of the user terminal sends the generated RLC control PDU to the second functional entity of the user terminal.
- This scenario is the interaction between peer-to-peer protocol layers, which is the same as the prior art, and will not be explained in detail here.
- the first functional entity of the user terminal may also send the generated RLC control PDU to the second functional entity of the user terminal. .
- the existing MAC function entity is responsible for scheduling data of the RLC function entity. Therefore, if the first function entity of the user terminal is an RLC entity and the second function entity of the user terminal is a MAC entity, the MAC is used.
- the entity may schedule control information to the first functional entity of the user terminal, and after generating the RLC control PDU, the first functional entity of the user terminal sends the generated RLC control PDU to the second functional entity of the user terminal.
- the first functional entity of the user terminal is a MAC entity
- the first information includes a MAC Control PDU
- the second functional entity of the user terminal is a MAC entity.
- the first functional entity of the user terminal is a PHY entity
- the first information includes control information of the PHY
- the second functional entity of the user terminal is a PHY entity.
- the RLC entity is a 3rd Generation Partnership Project (3GPP) network terminology, and functional entities with similar functions may exist in other non-3GPP networks, but are not named as RLC entities.
- 3GPP 3rd Generation Partnership Project
- a Logical Link Control (LLC) layer in a Wireless-Fidelity (Wi-Fi) system has similar functionality to an RLC entity in a 3GPP network. Therefore, the RLC entity in the embodiment of the present invention is used to represent a functional entity having a similar function.
- the MAC entity in the embodiment of the present invention is used to indicate that the functional entity is similar to the function of the MAC functional entity in the 3GPP network
- the PHY entity is used to indicate that the functional entity is similar to the function of the PHY functional entity in the 3GPP network.
- the second function entity of the user terminal acquires the first control information
- the second function entity of the user terminal carries the acquired first control information in the second carrier, and sends the first control information to the base station device. That is, the second functional entity of the user terminal sends the first control information to the base station device via the second carrier, that is, S102 is performed.
- the second function entity of the user terminal after the second function entity of the user terminal acquires the second control information, the second function entity of the user terminal also carries the second control information in the second carrier, and sends the second control information to the base station.
- the order in which the second control entity of the user terminal sends the first control information and the second control information is not limited. If the second function entity of the user terminal first obtains the first control information, the second function entity of the user terminal first sends the first control information. If the second function entity of the user terminal first obtains the second control information, the second function entity of the user terminal first sends the second control information. If the second function entity of the user terminal acquires the first control information and the second control information at the same time, the second function entity of the user terminal simultaneously sends the first control information and the second control information.
- the PHY entity simultaneously acquires control information of the first PHY and control information of the second PHY, the PHY entity simultaneously sends the second base station to the base station apparatus. Control information of a PHY and control information of the second PHY.
- the PHY entity when the PHY entity sends the control information of the first PHY and the control information of the second PHY to the base station by using the second carrier in the previous example, the PHY entity first performs the first PHY according to a preset encoding manner.
- the control information and the control information of the second PHY are encoded, and then the encoded information is transmitted.
- the PHY entity encodes the control information of the first PHY and the control information of the second PHY according to a preset bit sequence, and then the PHY entity is in a certain/some transmission time interval of the second carrier (Transmission Time) Interval, TTI) simultaneously transmits control information of the first PHY and control information of the second PHY.
- TTI Transmission Time
- the first control information does not need to be sent through the first carrier, the load of the first carrier is reduced, and the overhead of the first carrier is reduced, and the first control information and the second control information are both sent via the second carrier, so that Saves the air interface of the communication system Pinning also improves the transmission performance of the communication system.
- the communication system may include at least two carriers, such that the first carrier and the second carrier are any two carriers in the communication system, and for the communication system including at least two carriers, the transmission method provided by the embodiment of the present invention is adopted. It can save the air interface overhead of the communication system and improve the transmission performance of the communication system.
- the transmission method provided by the embodiment of the present invention is used.
- the first control information corresponding to the first carrier is sent via the second carrier, which can reduce the overhead of the first carrier and reduce the load of the first carrier.
- the second function entity of the base station device is configured with the second carrier, and therefore, the second function entity of the base station device acquires the first control information by using the second carrier, that is, performs S103.
- the base station device can learn that the destination function entity of the first control information is the first functional entity of the base station device, according to the first identifier included in the first control information, and therefore, the base station device The second function entity sends the first control information to the first functional entity of the base station device according to the first identifier, that is, performs S104.
- the first control information in the embodiment of the present invention is transmitted via the second carrier, which reduces the load of the first carrier and reduces the overhead of the first carrier.
- the method for transmitting control information may be applicable to any functional entity in the user terminal and the base station device, and may also be applied to all functional entities in the user terminal and the base station device.
- the first carrier and the second carrier in the embodiment of the present invention may belong to the same RAT technology, or may belong to different RAT technologies.
- the base station apparatus of the embodiment of the present invention includes at least one base station, and the first functional entity of the base station apparatus and the second functional entity of the base station apparatus may belong to the same base station, or may belong to different base stations.
- the base station apparatus is only a solution for convenience of description and understanding in the embodiment of the present invention. It is to be noted that, in actual use, the device composed of at least one base station may be named otherwise, which is not specifically limited in the embodiment of the present invention.
- the scenario in which the first functional entity of the base station device and the second functional entity of the base station device belong to different base stations may be a Coordinated Multiple Points Transmission/Reception (CoMP) scenario, or may be a scenario of a base station networking (such as macro base station and micro base station networking).
- CoMP Coordinated Multiple Points Transmission/Reception
- the second function entity of the user terminal acquires the first control information of the first function entity of the user terminal
- the second function entity of the user terminal in the method for transmitting control information provided by the embodiment of the present invention is further configured to indicate The second functional entity of the user terminal transmits the control information transmission rule of the first control information via the second carrier.
- the method for transmitting control information provided by the embodiment of the present invention further includes:
- the second functional entity of the user terminal acquires a control information transmission rule.
- the control information transmission rule is used to indicate that the second functional entity of the user terminal sends the first control information via the second carrier.
- the method for acquiring the control information transmission rule by the second function entity of the user terminal is: the second function entity of the user terminal acquires a control information transmission rule sent by the base station device, where the control information transmission rule is that the base station device determines the first carrier The value of the attribute and the attribute value of the second carrier are determined when the preset condition is met.
- the base station apparatus may send the control information transmission rule to the user equipment by using a Radio Resource Control (RRC) message, a MAC control information, or a control information of the PHY.
- RRC Radio Resource Control
- the preset condition in the embodiment of the present invention may be any one of the following conditions:
- the TTI of the first carrier is greater than the first preset threshold
- the TTI of the second carrier is less than or equal to the second preset threshold
- the first preset threshold is greater than or equal to the second preset threshold
- the control information in the embodiment of the present invention is Channel State Information (CSI)
- the TTI of the first carrier is greater than a first preset threshold
- the TTI of the second carrier is less than or equal to the second pre-
- the second carrier The feedback period of the CSI may be set to be much smaller than the feedback period of the CSI of the first carrier. If the user terminal transmits the CSI of the first carrier to the base station apparatus via the second carrier, the base station apparatus can densely receive the CSI of the first carrier through the second carrier, so that the base station apparatus can more accurately learn to transmit through the first carrier. Channel condition at the time of data.
- the base station apparatus can also pass the The two carriers densely receive the CSI of the first carrier, and the base station apparatus can also more accurately know the channel condition when the data is transmitted through the first carrier. After learning the channel condition when the data is transmitted through the first carrier, the base station apparatus can transmit the downlink service data to the user equipment according to the channel condition, thereby improving the scheduling performance of transmitting the downlink service data by using the first carrier.
- the base station device can receive the RLC control PDU of the first carrier faster by the second carrier.
- the base station apparatus can determine, according to the received RLC control PDU of the first carrier, whether the user terminal correctly receives the service data that is sent by the first carrier, so that the base station apparatus accelerates the transmission of the service to the user terminal via the first carrier.
- the rate of data increases the throughput of the first carrier.
- the signal quality of the first carrier is smaller than the third preset threshold, the signal quality of the second carrier is greater than the fourth preset threshold, and the fourth preset threshold is greater than the third preset threshold.
- the user terminal sends the first control information via the second carrier, which helps improve the signal to noise ratio of the first control information acquired by the base station.
- the load of the first carrier is greater than the fifth preset threshold, the load of the second carrier is less than the sixth preset threshold, and the fifth preset threshold is greater than the sixth preset threshold.
- the user terminal sends the first control information via the second carrier, which can effectively utilize the resources of the carrier and reduce the probability of the first carrier being overloaded.
- the user terminal may send the first control information by using the second carrier to improve the signal to noise ratio of transmitting the first control information, and ensure the first control information. Reliability, while improving the utilization of carrier resources.
- the base station apparatus determines the control information transmission rule according to the attribute values of different carriers in the actual application.
- the attribute values of the carriers are generally different for different user terminals. Therefore, the control information transmission rules determined by the base station apparatus are different for different user terminals.
- the base station apparatus in the embodiment of the present invention includes only one base station, the first functional entity of the base station apparatus and the second functional entity of the base station apparatus belong to the same base station.
- the transmission method of the control information provided by the embodiment of the present invention is used, and the transmission process of the downlink service data, the first control information, and the second control information in the protocol layer structure of the user terminal and the base station is as shown in FIG. 7.
- Each protocol layer in the user terminal and base station can be considered to reside in a functional entity that can be separated from other protocol layers.
- the downlink service data sent by the base station is offloaded to the first carrier in the PDCP layer of the second carrier, and the first downlink service data is sent to the user terminal via the RLC layer, the MAC layer, and the PHY layer of the first carrier, and the second downlink service data is sent to the user terminal.
- the RLC layer, the MAC layer, and the PHY layer of the two carriers are transmitted to the user terminal.
- the RLC layer of the second carrier in the user terminal acquires first control information corresponding to the RLC layer of the first carrier, and sends the first control information that is acquired by using the second carrier.
- the MAC layer of the second carrier and the PHY layer of the second carrier in the user terminal also acquire corresponding first control information, and send the acquired first control information via the second carrier.
- the RLC layer, the MAC layer and the PHY layer of the second carrier in the user terminal also generate corresponding second control information, and send the second control information generated by the second carrier.
- the PHY layer of the second carrier in the base station receives the first control information by using the second carrier, and sends the received first control information to the PHY layer of the first carrier in the base station.
- the MAC layer of the second carrier in the base station receives the corresponding first control information by using the second carrier, and sends the received first control information to the MAC layer of the first carrier in the base station.
- the RLC layer of the second carrier in the base station receives the corresponding first control information by using the second carrier, and sends the received first control information to the RLC layer of the first carrier in the base station.
- the first control information and the second control information between the base station and the user terminal are both sent via the second carrier, which reduces the air interface overhead of the communication system and improves the transmission performance of the communication system. Further, the first carrier no longer transmits control information, reducing the load of the first carrier.
- the transmission of the control information is similar to the above description, and details are not described herein again.
- the transmission method provided by the embodiment of the present invention is also applicable to a scenario in which the first carrier and the second carrier belong to different RAT technologies, and the first carrier and the second carrier perform carrier aggregation.
- the embodiment of the present invention is applicable to the PHY entity of the carrier aggregation technology.
- the method for processing the control information by the PHY entity in the carrier aggregation technology is the same as the method for processing the control information by the PHY entity, and details are not described herein again.
- the PHY entity in the carrier aggregation technology uses the transmission method provided by the embodiment of the present invention to transmit the CSI of the first carrier via the second carrier, which can shorten the feedback period of the first carrier CSI and improve the scheduling performance of transmitting the service data by using the first carrier.
- the embodiment of the present invention provides a method for transmitting control information.
- the first functional entity in the first communication device (which may be a user terminal or a base station device) is configured with a first carrier, and the second functional entity is configured with a second carrier.
- the second function entity After acquiring the first control information of the first functional entity, the second function entity sends the first control information by using the second carrier, where the first control information is no longer sent via the first carrier, and the control information sent by the communication device only occupies the first
- the two-carrier resource saves the air interface overhead of the communication system and improves the transmission performance of the communication system.
- the control information corresponding to the carrier may be sent through other carriers, which may reduce the overhead of the carrier and reduce the carrier. Carrier load.
- the embodiment of the present invention provides a communication device 1.
- the communication device 1 in the embodiment of the present invention is a first communication device.
- the communication device 1 may be a user terminal, or may be a base station device including at least one base station, and the communication device 1 is configured to perform the steps performed by the user terminal or the base station device in the above method.
- the communication device 1 may comprise modules corresponding to respective steps.
- the communication device 1 includes a first functional entity 80 and a second functional entity 81, the first functional entity 80 is configured with a first carrier, and the second functional entity 81 is configured with a second carrier.
- the functions of the first functional entity 80 and the second functional entity 81 are implemented in particular by corresponding software programs and/or application modules.
- the first functional entity 80 includes a generating module 80a and a second transmitting module 80b
- the second functional entity 81 includes an obtaining module 81a, a first transmitting module 81b, and a processing module 81c.
- the acquiring module 81a is configured to acquire first control information of the first functional entity, where the first control information includes a first identifier, where the first identifier is used to indicate the first carrier.
- the first sending module 81b is configured to send, by using the second carrier, the first control information acquired by the acquiring module 81a to another communication device.
- the other communication device is a device that communicates with the communication device provided by the embodiment of the present invention, and the other communication device is also configured with the first carrier and the second carrier.
- the generating module 80a is configured to generate first information, where the first information is feedback information, or is status information, or is the feedback information and the status information, where the feedback information is After the first carrier receives the first service data, the generated information corresponding to the first service data, where the status information is information generated according to a preset mechanism.
- the second sending module 80b is configured to send the identifier to the second functional entity 81.
- the first information generated by the module 80a is generated.
- the obtaining module 81a is specifically configured to receive the first information sent by the second sending module 80b of the first functional entity 80.
- processing module 81c is configured to add the first identifier to the first identifier received by the acquiring module 81a, and generate the first control information.
- the generating module 80a is further configured to generate first control information, where the first control information includes the first identifier and the first information, where the first information is feedback information, or is status information, or For the feedback information and the status information, the feedback information is generated by the first functional entity and the first service data after the first functional entity receives the first service data by using the first carrier.
- the status information is information generated by the first functional entity according to a preset mechanism.
- the second sending module 80b is configured to send, to the second functional entity 81, the first control information generated by the generating module 80a.
- the obtaining module 81a is further configured to receive the first control information sent by the second sending module 80b of the first functional entity 80.
- the obtaining module 81a is further configured to: before acquiring the first control information, acquire a control information transmission rule, where the control information transmission rule is used to indicate that the first sending module 81b sends the second carrier The first control information.
- the base station device further includes a third functional entity 82, where the third functional entity 82 includes a determining module 82a and a third sending module 82b. .
- the determining module 82a is configured to determine the control information transmission rule when determining that the attribute value of the first carrier and the attribute value of the second carrier satisfy a preset condition.
- the third sending module 82b is configured to send, to the second functional entity 81, the control information transmission rule determined by the determining module 82a.
- the acquiring module 81a of the second functional entity 81 is specifically configured to receive a control information transmission rule sent by the third sending module 82b of the third functional entity 82.
- the user terminal communicates with a base station device, where the base station device is configured with the first carrier and the second carrier,
- the acquiring module 81a of the second functional entity 81 is specifically configured to receive a control information transmission rule sent by the base station apparatus, where the control information transmission rule is that the base station apparatus determines an attribute value of the first carrier And determining when the attribute values of the second carrier satisfy the preset condition.
- the preset condition includes at least one of a first condition, a second condition, and a third condition; the first condition that the transmission time interval TTI of the first carrier is greater than a first preset threshold, where The TTI of the second carrier is less than or equal to the second preset threshold, and the first preset threshold is greater than or equal to the second preset threshold; the second condition is that the signal quality of the first carrier is less than the third pre- Setting a threshold, the signal quality of the second carrier is greater than a fourth preset threshold, and the fourth preset threshold is greater than the third preset threshold; the third condition is that the load of the first carrier is greater than And a fifth predetermined threshold, the load of the second carrier is less than a sixth preset threshold, and the fifth preset threshold is greater than the sixth preset threshold.
- the acquiring module 81a of the second functional entity 81 is further configured to receive, by using the second carrier, third control information that is sent by another communications device, where the third control information includes the first identifier.
- the first sending module 81b of the second functional entity 81 is further configured to: according to the first identifier included in the third control information received by the acquiring module 81a, to the first The functional entity 80 transmits the third control information.
- the communication device 1 receives the third control information sent by the other communication device through the second carrier, the communication device 1 provided by the embodiment of the present invention is used in the application scenario.
- the communication device 1 can learn that the destination function entity of the third control information is the first functional entity 80 configured with the first carrier, according to the first identifier included in the third control information, and therefore, the first The transmitting module 81b transmits third control information to the first functional entity 80.
- the communication device 1 is a base station. Device.
- the communication device 1 provided by the embodiment of the present invention can be either a transmitting end device of control information or a receiving end device of control information.
- the first functional entity is a radio link control RLC entity
- the first information includes an RLC control PDU
- the second functional entity is an RLC entity or Media access control MAC entity
- the first functional entity is a media access control MAC entity, the first information includes a MAC Control PDU, and the second functional entity is a MAC entity; or
- the first functional entity is a physical PHY entity
- the first information includes control information of a PHY
- the second functional entity is a PHY entity.
- the first functional entity is a radio link control RLC entity
- the first information includes an RLC control PDU
- the second functional entity is an RLC entity
- the first functional entity is a media access control MAC entity, the first information includes a MAC Control PDU, and the second functional entity is a MAC entity; or
- the first functional entity is a physical PHY entity
- the first information includes control information of a PHY
- the second functional entity is a PHY entity.
- the RLC entity performs data processing according to the existing RLC protocol
- the MAC entity performs data processing according to the existing MAC protocol
- the PHY entity performs data processing according to the existing PHY protocol.
- the communication device 1 of the present embodiment is only logically divided according to the functions implemented by the communication device 1. In practical applications, the communication device 1 can perform superposition or splitting of the above units. And the function implemented by the communication device 1 provided by the embodiment is in one-to-one correspondence with the user terminal or the base station device in the method for transmitting control information provided by the foregoing embodiment, and a more detailed processing flow implemented by the communication device 1 is It has been described in detail in the above method embodiments, and will not be described in detail herein.
- FIG. 10 Another embodiment of the present invention provides a communication device, as shown in FIG. 10, the communication device
- the interface circuit 100, the processor 101, the memory 102, and the system bus 103 are included.
- the interface circuit 100, the processor 101 and the memory 102 are connected by the system bus 103, and complete communication with each other.
- FIG. 10 is not a limitation on the communication device, and may include more or less components than those illustrated, or some components may be combined, or different component arrangements.
- the communication device when the communication device is in operation, the communication device performs the transmission method of the control information described in the foregoing embodiments.
- the communication device For the method for transmitting the specific control information, refer to the related description in the embodiment shown in FIG. 5 or FIG. 6 , and details are not described herein again.
- the interface circuit 100 is configured to implement a communication connection between the communication device and other communication devices.
- the memory 102 can be used to store software programs and applications.
- the memory 102 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function (such as generating first control information and second control information), and the like; and the storage data area may be The first control information is stored.
- the memory 102 may include a volatile memory, such as a high-speed random access memory (RAM), and the memory 102 may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, Or other volatile solid-state storage devices.
- a volatile memory such as a high-speed random access memory (RAM)
- the memory 102 may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, Or other volatile solid-state storage devices.
- the processor 101 executes various functional applications and data processing of the communication device by running software programs stored in the memory 102 and application modules.
- the processor 101 is a control center of a communication device that connects various parts of the entire communication device by using various interfaces and lines, by running or executing software programs and/or application modules stored in the memory 102, and calling storage.
- the data within the memory 102 performs various functions and processing data of the communication device to provide overall monitoring of the communication device.
- processor 101 runs software programs and/or application modules stored in memory 102.
- the software program and/or application module may implement the functions of the first functional entity 80 and the second functional entity 81.
- the first function entity 80 is configured to generate first information or generate first control information, and send the first information or the first control information generated by the first function entity 81 to the second function entity 81.
- the processor 101 can be a central processing unit (CPU).
- the processor 101 can also be other general purpose processors, digital signal processing (DSP) or other programmable logic devices or transistor logic devices, discrete hardware components, and the like.
- DSP digital signal processing
- the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
- the system bus 103 can include a data bus, a power bus, a control bus, and a signal status bus. For the sake of clarity in the present embodiment, various buses are illustrated as the system bus 103 in FIG.
- the embodiment of the present invention provides a communication device, where the communication device includes a first functional entity and a second functional entity, where the first functional entity is configured with a first carrier, the second functional entity is configured with a second carrier, and the second functional entity is After the first control information of the first function entity is obtained, the first control information is sent by using the second carrier, and the first control information is no longer sent by the first carrier, and the control information sent by the communication device only occupies the resources of the second carrier, saving The air interface overhead of the communication system improves the transmission performance of the communication system.
- control information corresponding to the carrier may be sent through other carriers, which may be reduced.
- the overhead of the carrier reduces the load on the carrier.
- the disclosed system, mobile device and method may be implemented in other manners.
- the mobile device embodiments described above are merely illustrative.
- the division of the modules or units is only one logical function division.
- the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, mobile device or unit, and may be in electrical, mechanical or other form.
- the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
- each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
- the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
- the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
- the technical solution of the present invention which is essential or contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
- a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the methods described in various embodiments of the present invention.
- the foregoing storage medium includes: a U disk, a mobile hard disk, and a read-only memory.
- a medium that can store program code such as a ROM (Read-Only Memory), a random access memory (RAM), a magnetic disk, or an optical disk.
Abstract
Description
Claims (16)
- 一种控制信息的传输方法,其特征在于,所述传输方法应用于第一通信设备,所述第一通信设备包括第一功能实体和第二功能实体,所述第一功能实体配置有第一载波,所述第二功能实体配置有第二载波,所述传输方法包括:所述第二功能实体获取所述第一功能实体的第一控制信息,所述第一控制信息包括第一标识,所述第一标识用于指示所述第一载波;所述第二功能实体经由所述第二载波向第二通信设备发送所述第一控制信息。
- 根据权利要求1所述的传输方法,其特征在于,所述第二功能实体获取所述第一功能实体的第一控制信息,包括:所述第二功能实体接收所述第一功能实体发送的第一信息,所述第一信息为反馈信息,或者为状态信息,或者为所述反馈信息和所述状态信息,所述反馈信息为所述第一功能实体通过所述第一载波接收第一业务数据后,所述第一功能实体生成的与所述第一业务数据对应的信息,所述状态信息为所述第一功能实体根据预设机制生成的信息;所述第二功能实体为所述第一信息添加所述第一标识,生成所述第一控制信息。
- 根据权利要求1所述的传输方法,其特征在于,所述第二功能实体获取所述第一功能实体的第一控制信息,包括:所述第二功能实体接收所述第一功能实体发送的所述第一控制信息,所述第一控制信息包括所述第一标识和第一信息,所述第一信息为反馈信息,或者为状态信息,或者为所述反馈信息和所述状态信息,所述反馈信息为所述第一功能实体通过所述第一载波接收第一业务数据后,所述第一功能实体生成的与所述第一业务数据对应的信息,所述状态信息为所述第一功能实体根据预设机制生成的信息。
- 根据权利要求1-3中任意一项所述的传输方法,其特征在于,所述第二功能实体获取所述第一功能实体的第一控制信息之前,所述 传输方法还包括:所述第二功能实体获取控制信息传输规则,所述控制信息传输规则用于指示所述第二功能实体经由所述第二载波发送所述第一控制信息。
- 根据权利要求4所述的传输方法,其特征在于,所述第一通信设备为基站装置,所述基站装置还包括第三功能实体;所述第二功能实体获取控制信息传输规则,具体包括:所述第二功能实体接收所述第三功能实体发送的所述控制信息传输规则,所述控制信息传输规则为所述第三功能实体在确定所述第一载波的属性值和所述第二载波的属性值均满足预设条件时确定的。
- 根据权利要求4所述的传输方法,其特征在于,所述第一通信设备为用户终端,所述用户终端与基站装置进行通信,所述基站装置配置有所述第一载波和所述第二载波;所述第二功能实体获取控制信息传输规则,具体包括:所述第二功能实体接收所述基站装置发送的所述控制信息传输规则,所述控制信息传输规则为所述基站装置在确定所述第一载波的属性值和所述第二载波的属性值均满足预设条件时确定的。
- 根据权利要求5或6所述的传输方法,其特征在于,所述预设条件包括第一条件、第二条件和第三条件中的至少一个;所述第一条件为所述第一载波的传输时间间隔TTI大于第一预设阈值,所述第二载波的TTI小于或等于第二预设阈值,且所述第一预设阈值大于或等于所述第二预设阈值;所述第二条件为所述第一载波的信号质量小于第三预设阈值,所述第二载波的信号质量大于第四预设阈值,且所述第四预设阈值大于所述第三预设阈值;所述第三条件为所述第一载波的负荷大于第五预设阈值,所述第二载波的负荷小于第六预设阈值,且所述第五预设阈值大于所述第六预设阈值。
- 根据权利要求1-7中任意一项所述的传输方法,其特征在于,所述传输方法还包括:所述第二功能实体通过所述第二载波接收所述第二通信设备发 送的第三控制信息,所述第三控制信息包括所述第一标识;所述第二功能实体根据所述第一标识,向所述第一功能实体发送所述第三控制信息。
- 一种通信设备,其特征在于,所述通信设备包括第一功能实体和第二功能实体,所述第一功能实体配置有第一载波,所述第二功能实体配置有第二载波;所述第二功能实体包括获取模块和第一发送模块;所述获取模块,用于获取所述第一功能实体的第一控制信息,所述第一控制信息包括第一标识,所述第一标识用于指示所述第一载波;所述第一发送模块,用于经由所述第二载波向其他通信设备发送所述获取模块获取到的所述第一控制信息。
- 根据权利要求9所述的通信设备,其特征在于,所述第一功能实体包括生成模块和第二发送模块;所述生成模块,用于生成第一信息,所述第一信息为反馈信息,或者为状态信息,或者为所述反馈信息和所述状态信息,所述反馈信息为通过所述第一载波接收第一业务数据后,生成的与所述第一业务数据对应的信息,所述状态信息为根据预设机制生成的信息;所述第二发送模块,用于向所述第二功能实体发送所述生成模块生成的所述第一信息;所述获取模块,具体用于接收所述第一功能实体的所述第二发送模块发送的第一信息;所述第二功能实体还包括处理模块,所述处理模块,用于为所述获取模块接收到的所述第一信息添加第一标识,生成所述第一控制信息。
- 根据权利要求9所述的通信设备,其特征在于,所述第一功能实体包括生成模块和第二发送模块;所述生成模块,用于生成第一控制信息,所述第一控制信息包括所述第一标识和第一信息,所述第一信息为反馈信息,或者为状态信 息,或者为所述反馈信息和所述状态信息,所述反馈信息为所述第一功能实体通过所述第一载波接收第一业务数据后,所述第一功能实体生成的与所述第一业务数据对应的信息,所述状态信息为所述第一功能实体根据预设机制生成的信息;所述第二发送模块,用于向所述第二功能实体发送所述生成模块生成的所述第一控制信息;所述获取模块,具体用于接收所述第一功能实体的所述第二发送模块发送的所述第一控制信息。
- 根据权利要求9-11中任意一项所述的通信设备,其特征在于,所述获取模块,还用于在获取第一控制信息之前,获取控制信息传输规则,所述控制信息传输规则用于指示所述第二功能实体的所述第一发送模块经由所述第二载波发送所述第一控制信息。
- 根据权利要求12所述的通信设备,其特征在于,所述第一通信设备为基站装置,则所述基站装置还包括第三功能实体;所述第三功能实体包括确定模块和第三发送模块,所述确定模块,用于在确定所述第一载波的属性值和所述第二载波的属性值均满足预设条件时,确定所述控制信息传输规则;所述第三发送模块,用于向所述第二功能实体发送所述确定模块确定的所述控制信息传输规则;所述获取模块,具体用于接收所述第三功能实体的所述第三发送模块发送的所述控制信息传输规则。
- 根据权利要求12所述的通信设备,其特征在于,所述第一通信设备为用户终端,所述用户终端与基站装置进行通信,所述基站装置配置有所述第一载波和所述第二载波;则所述获取模块,具体用于接收所述基站装置发送的控制信息传输规则,所述控制信息传输规则为所述基站装置在确定所述第一载波的属性值和所述第二载波的属性值均满足预设条件时确定的。
- 根据权利要求13或14所述的通信设备,其特征在于,所述预设条件包括第一条件、第二条件和第三条件中的至少一个;所述第一条件为所述第一载波的传输时间间隔TTI大于第一预设阈值,所述第二载波的TTI小于或等于第二预设阈值,且所述第一预设阈值大于或等于所述第二预设阈值;所述第二条件为所述第一载波的信号质量小于第三预设阈值,所述第二载波的信号质量大于第四预设阈值,且所述第四预设阈值大于所述第三预设阈值;所述第三条件为所述第一载波的负荷大于第五预设阈值,所述第二载波的负荷小于第六预设阈值,且所述第五预设阈值大于所述第六预设阈值。
- 根据权利要求9-15中任意一项所述的通信设备,其特征在于,所述获取模块,还用于通过所述第二载波接收其他通信设备发送的第三控制信息,所述第三控制信息包括所述第一标识;所述第一发送模块,还用于根据所述获取模块接收到的所述第三控制信息包括的所述第一标识,向所述第一功能实体发送所述第三控制信息。
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