WO2018006242A1 - 一种信息处理方法及设备 - Google Patents

一种信息处理方法及设备 Download PDF

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Publication number
WO2018006242A1
WO2018006242A1 PCT/CN2016/088403 CN2016088403W WO2018006242A1 WO 2018006242 A1 WO2018006242 A1 WO 2018006242A1 CN 2016088403 W CN2016088403 W CN 2016088403W WO 2018006242 A1 WO2018006242 A1 WO 2018006242A1
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WO
WIPO (PCT)
Prior art keywords
network side
side device
information
terminal device
protocol stack
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PCT/CN2016/088403
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English (en)
French (fr)
Inventor
苗金华
张戬
权威
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2016/088403 priority Critical patent/WO2018006242A1/zh
Publication of WO2018006242A1 publication Critical patent/WO2018006242A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/02Resource partitioning among network components, e.g. reuse partitioning
    • H04W16/10Dynamic resource partitioning

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to an information processing method and device.
  • a terminal device can be connected to two evolved base stations (eNBs), which is called dual connectivity (DC, Dual Connectivity).
  • the one of the two eNBs is a primary evolved base station (MeNB, Master eNB), and the other is a secondary evolved base station (SeNB, Secondary eNB).
  • the primary cell group (MCG) covered by the MeNB and the secondary cell group (SCG) covered by the SeNB can provide services to the terminal device while retaining the bearer; in addition, the bearer of the MCG It can be split into two parts in the Packet Data Convergence Protocol (PDCP) layer.
  • PDCP Packet Data Convergence Protocol
  • One part of the data is sent to the Radio Link Controller (RLC) layer of the MeNB, and the other part of the data is sent to the RLC of the SeNB through the X2 interface.
  • the layer transmits data by scheduling by the SeNB.
  • RLC Radio Link Controller
  • terminal devices may need to be connected to at least two base stations.
  • the protocol stack is relatively fixed, so that the flexibility of protocol stack configuration is reduced.
  • the embodiment of the invention discloses an information processing method and device for improving the flexibility of protocol stack configuration.
  • the first aspect discloses an information processing method, which is applied to a terminal device, receives configuration information sent by a first network side device, configures a third protocol stack according to information of a third protocol stack included in the configuration information, and uses the The third protocol stack communicates with the first network side device.
  • the first network side device and the terminal device both support the first protocol stack and the second protocol stack, the first protocol stack may include a first protocol layer, the second protocol stack may include a second protocol layer, and the third protocol stack may include The first protocol layer and the second protocol layer.
  • the third protocol stack used for communication between the terminal device and the first network side device is according to the A network side device is configured from a protocol layer selected by different supported protocol stacks, and the selected protocol layers are different, and the information of the configured third protocol stack may be different, and the established third protocol stack may be different. Therefore, the protocol stack may be improved. Configuration flexibility.
  • the first protocol layer in the third protocol stack is a protocol layer selected by the first network side device from the protocol layer included in the first protocol stack according to the feature information of the terminal device, and the third protocol stack
  • the second protocol layer is a protocol layer selected by the first network side device from the protocol layer included in the second protocol stack according to the feature information of the terminal device, and the feature information of the terminal device may be different, and the selected protocol layer may be different.
  • the characteristic information of the terminal device flexibly configures the information of the third protocol stack for the terminal device, thereby improving the flexibility of the configuration of the protocol stack.
  • the information of the third protocol stack includes information of the first protocol layer and/or information of a second protocol layer.
  • the feature information of the terminal device may include at least one of capability information of the terminal device configuration protocol stack, a service feature of the terminal device, and a bearer type of the terminal device, where the terminal device is different, and the feature information of the terminal device is The information on the terminal device may be different, and the feature information of the terminal device may be different. Therefore, the terminal device may use the information of the protocol stack configured by the network device according to the feature information of the terminal device and the protocol stack supported by the network device. Flexibility to configure the protocol stack, thus increasing the flexibility of the protocol stack configuration.
  • the configuration information may further include a configuration manner of the feedback information
  • the terminal device may generate a feedback information group including the first feedback information and the second feedback information according to the configuration manner, and send the feedback information group to the first a network side device, so that the first network side device determines, according to the identifier or index included in the first feedback information, that the first feedback information is information that is sent to the first network side device, and the identifier or index that is included according to the second feedback information
  • the second feedback information is sent to the second network side device. Since the identifier or index of the network side device is added to the feedback information, the network side device can identify which feedback information is sent to itself, and which feedback information is sent to other network side devices, thereby implementing the terminal device to the network. Feedback of side device information.
  • the second network side device is a network side device other than the first network side device among the network side devices that establish a connection with the terminal device.
  • the first feedback information and the second feedback information may be feedback information of a Hybrid Automatic Repeat ReQuest (HARQ) layer, or may be an RLC layer status report, or may be a PDCP status report.
  • HARQ Hybrid Automatic Repeat ReQuest
  • a second aspect discloses a terminal device comprising means for performing the information processing method provided by the first aspect or any of the possible implementations of the first aspect.
  • a third aspect discloses a terminal device comprising a processor, a memory and a transceiver, the memory for storing a group program code, the processor for executing the program code, and the transceiver for communicating with the network side device.
  • the processor executes the program code stored in the memory, the processor is caused to perform the information processing method disclosed in any of the possible implementations of the first aspect or the first aspect.
  • a fourth aspect discloses a readable storage medium storing program code for a terminal device to perform the information processing method disclosed in the first aspect or any of the possible implementations of the first aspect.
  • the fifth aspect discloses an information processing method, which is applied to a network side device, where the network side device supports a first protocol stack and a second protocol stack, where the first protocol stack may include a first protocol layer, and the second protocol stack may Include a second protocol layer, select a first protocol layer from the first protocol stack, select a second protocol layer from the second protocol stack, configure configuration information including information of the third protocol stack for the terminal device, and send the configured configuration information Providing the terminal device, so that the terminal device configures the third protocol stack according to the information of the third protocol stack, and communicates with the network side device by using the third protocol stack, and the third protocol for communication between the terminal device and the network side device is visible.
  • the stack is configured according to a protocol layer selected from network-side devices from different supported protocol stacks, and the selected protocol layers are different, and the information of the configured third protocol stack may be different, and the established third protocol stack may be different, therefore, Improve the flexibility of the protocol stack configuration.
  • the terminal device is any terminal device that establishes a connection with the network side device, and the third protocol stack may include a first protocol layer and a second protocol layer.
  • the feature information of the terminal device may be acquired first, and then the first protocol is obtained according to the feature information of the terminal device.
  • the stack selects the first protocol layer and selects the second protocol layer from the second protocol stack. It can be seen that the feature information of the terminal device is different, the selected protocol layer may be different, and the information of the configured third protocol stack may be different, and the third established The protocol stack may be different, so the flexibility of the protocol stack configuration can be increased.
  • the feature information of the terminal device may include at least one of capability information of the terminal device configuration protocol stack, a service feature of the terminal device, and a bearer type of the terminal device, where the terminal device is different, and the feature information of the terminal device is The information on the terminal device may be different, and the feature information of the terminal device may be different. Therefore, the network side device may flexibly configure the third protocol stack information for the terminal device according to the feature information of the terminal device and the protocol stack supported by the network side device. For terminal design The protocol stack for communication is configured according to the information of the third protocol stack, so the flexibility of the protocol stack configuration can be improved.
  • the configuration information may further include a configuration manner of the feedback information, where the configuration information may further indicate that the terminal device generates the feedback information group according to the configuration manner of the feedback information, where the receiving terminal device includes the first feedback information and the second feedback.
  • a feedback information group of the information and determining, according to the identifier or index included in the first feedback information, the first feedback information is information sent to the network side device, and sending the second feedback information to the first information according to the identifier or index included in the second feedback information
  • the second network side device adds the identifier or index of the network side device to the feedback information. Therefore, the network side device can identify which feedback information is sent to itself, and which feedback information is sent to other network side devices, so that the network information can be implemented. Feedback from the terminal device to the network side device information.
  • the second network side device is a network side device other than the network side device in the network side device that establishes a connection with the terminal device.
  • the first feedback information and the second feedback information may be feedback information of the HARQ layer, may also be an RLC layer status report, and may also be a PDCP status report.
  • the sixth aspect discloses a network side device, the network side device comprising means for performing the information processing method provided by any of the possible implementations of the fifth aspect or the fifth aspect.
  • a seventh aspect discloses a network side device comprising a processor, a memory and a transceiver, the memory for storing a group program code, the processor for executing the program code, and the transceiver for communicating with the terminal device.
  • the processor executes the program code stored in the memory, the processor is caused to perform the information processing method disclosed in any of the possible implementations of the fifth aspect or the fifth aspect.
  • the eighth aspect discloses a readable storage medium storing program code for the network side device to execute the information processing method disclosed in any of the possible implementations of the fifth aspect or the fifth aspect.
  • the ninth aspect discloses an information processing method, which is applied to a terminal device, receives configuration information sent by a first network side device, and at least measures physical layer channel state information between the first network side device and the terminal device (
  • the channel status information (CSI) is reported to the first network side device by using a format for reporting the physical layer CSI.
  • the first network side device is any network side device that establishes a connection with the terminal device, and the configuration information may be used for reporting the physical Information about the format of the layer CSI, which may be a Media Access Control (MAC) Protocol Data Unit (PDU) format or a Radio Resource Control (RRC) signaling format.
  • MAC Media Access Control
  • PDU Protocol Data Unit
  • RRC Radio Resource Control
  • the configuration information is information that the first network side device is configured for the terminal device under the specific condition
  • the specific condition may be that the downlink measurement signals of the first network side device and the second network side device are different, or may be
  • the length of the transmission time interval (TTI) used by the first network side device and the second network side device may be different, and the frequency band measurement range of the first network side device and the second network side device may be different.
  • the frequency measurement widths of the first network side device and the second network side device are different, and the network type used by the first network side device and the second network side device may be different, and the first network side device and the terminal device may also be measured.
  • the measurement mode of the second network side device is different.
  • the terminal device can send the physical layer CSI to the network side device through the high layer signaling layer according to the configuration information configured by the network side device under certain conditions, thereby improving the flexibility of information reporting.
  • the second network side device is a network side device other than the first network side device among the network side devices that establish a connection with the terminal device.
  • the physical layer CSI may include an identifier of the first network side device, an index of the first network side device, and a TTI length of the terminal device used to measure the physical layer downlink channel, The physical cell indication of the first network side device or the uplink coding format used by the terminal device to measure the downlink channel of the physical layer.
  • a tenth aspect discloses a terminal device, the terminal device comprising means for performing the information processing method provided by any of the possible implementations of the ninth aspect or the ninth aspect.
  • An eleventh aspect discloses a terminal device comprising a processor, a memory and a transceiver, the memory for storing a group program code, the processor for executing the program code, and the transceiver for communicating with the network side device.
  • the processor executes the program code stored in the memory, the processor is caused to perform the information processing method disclosed in any of the possible implementations of the ninth aspect or the ninth aspect.
  • a twelfth aspect discloses a readable storage medium storing program code for a terminal device for performing the information processing method disclosed in any of the possible aspects of the ninth aspect or the ninth aspect.
  • a thirteenth aspect discloses an information processing method, which is applied to a network side device, and configures configuration information for a terminal device under a specific condition, and sends the configuration information to the terminal device, so that the terminal device reports at least the network side according to the configuration information.
  • the physical layer CSI between the device and the terminal device receives the physical layer CSI sent by the terminal device, and the configuration information is information for reporting the format of the physical layer CSI, and the format may be a MAC PDU format or an RRC format. It can be seen that the network side device is in specific conditions.
  • the configuration information can be configured for the terminal device, so that the terminal device sends the measured physical layer CSI to the network side device through the high layer signaling format configured by the network side device, which can improve the flexibility of information reporting.
  • the terminal device is any terminal device that establishes a connection with the network side device.
  • the specific condition may be that the downlink measurement signals of the first network side device and the second network side device are different, and the TTI lengths used by the first network side device and the second network side device may be different, and The frequency band measurement range of the first network side device and the second network side device may be different, and the frequency measurement widths of the first network side device and the second network side device may be different, and may also be the first network side device and the second The measurement mode of the first network side device and the second network side device is different for the terminal device.
  • the network device can configure the configuration information for the terminal device under specific conditions.
  • the terminal device can send the physical layer CSI to the network side device through the high layer signaling layer according to the configuration information, thereby improving the flexibility of information reporting.
  • the physical layer CSI may include an identifier of the network side device, an index of the network side device, a TTI length used by the terminal device to measure the downlink channel of the physical layer, and a physicality of the network side device.
  • a fourteenth aspect discloses a network side device, the network side device comprising means for performing the information processing method provided by the thirteenth aspect or any one of the possible implementations of the thirteenth aspect.
  • a fifteenth aspect discloses a network side device comprising a processor, a memory and a transceiver, the memory for storing a group program code, the processor for executing the program code, and the transceiver for communicating with the terminal device.
  • the processor executes the program code stored in the memory, the processor is caused to perform the information processing method disclosed in any one of the thirteenth aspect or the thirteenth aspect.
  • a sixteenth aspect discloses a readable storage medium storing program code of a network processing device for performing the information processing method disclosed in any one of the thirteenth aspect or the thirteenth aspect .
  • the information of the third protocol stack includes information of the first protocol layer and/or information of a second protocol layer.
  • FIG. 1 is a schematic diagram of a network architecture disclosed in an embodiment of the present invention.
  • FIG. 2 is a schematic flowchart of an information processing method according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart diagram of another information processing method according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a terminal device according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of another terminal device according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of a network side device according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic structural diagram of another network side device according to an embodiment of the present disclosure.
  • FIG. 8 is a schematic structural diagram of still another terminal device according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of still another terminal device according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic structural diagram of still another network side device according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram of still another network side device according to an embodiment of the present invention.
  • the embodiment of the invention discloses an information processing method and device for improving the flexibility of protocol stack configuration. The details are described below separately.
  • FIG. 1 is a schematic diagram of a network architecture disclosed in an embodiment of the present invention.
  • the network architecture may include a terminal device 101 and at least two network side devices 102.
  • the terminal device 101 may communicate with the at least two network side devices 102, and the at least two network side devices 102 may also be configured. Communicate.
  • Each of the at least two network side devices 102 supports at least two protocol stacks, that is, the first protocol in the following embodiments.
  • the protocol stack and the second protocol stack, the protocol stacks supported by each of the at least two network side devices 102 may be identical, partially identical, or all different, where the protocol stack is the network. Types, such as Long Term Evolution (LTE), 2G, 3G, 4G, 5G, Universal Mobile Telecommunications System (UMTS), and the like.
  • LTE Long Term Evolution
  • UMTS Universal Mobile Telecommunications System
  • the protocol stack configured by the terminal device 101 that is, the third protocol stack in the following embodiment, is a combination of protocol layers selected according to multiple network types supported by the network side device 102.
  • the network side device 102 may be a base station, for example, an eNB in an LTE network, or may be a control device on the core network side, for example, a Mobility Management Entity (MME) in an LTE network, or may be a cell.
  • the connection between the terminal device 101 and the at least two network side devices 102 may be an RRC connection or a core network MME connection.
  • the information of the third protocol stack includes information of the first protocol layer and/or information of a second protocol layer.
  • FIG. 2 is a schematic flowchart of an information processing method according to an embodiment of the present invention.
  • the information processing method is described from the perspective of the terminal device 101 and the network side device 102.
  • the network side device 102 supports at least a first protocol stack and a second protocol stack.
  • the first protocol stack includes a first protocol layer, and a second protocol stack.
  • the protocol stack includes a second protocol layer.
  • the information processing method may include the following steps.
  • the first network side device selects a first protocol layer from the first protocol stack, and selects a second protocol layer from the second protocol stack.
  • the first network side device may select the first protocol layer from the first protocol stack, and select the second protocol layer from the second protocol stack, that is, obtain the first protocol layer.
  • the feature information of the terminal device, and then selecting the first protocol layer from the first protocol stack according to the feature information of the terminal device, and selecting the second protocol layer from the second protocol stack, that is, the first network side device first acquires the characteristics of the terminal device And selecting, according to the feature information of the terminal device, a partial protocol stack or all protocol stacks from all protocol stacks supported by the first network side device, and then selecting, according to the feature information of the terminal device, each protocol stack in the selected protocol stack. At least one protocol layer.
  • the feature information of the terminal device may be obtained by the first network side device according to the historical information of the terminal device, or may be reported by the terminal device to the first network side device, or may be the first network side device according to the terminal device and The service characteristics of the current transmission service between the first network side devices are obtained.
  • the first network side device is a terminal The device establishes any network side device connected.
  • the feature information of the terminal device may be at least one of the capability information of the terminal device configuration protocol stack, the service feature of the terminal device, and the bearer type of the terminal device.
  • the capability information of the terminal device configuration protocol stack may be that the terminal device is only configured by the protocol architecture.
  • the service feature of the terminal device may be a flexible protocol architecture, and the bearer type of the terminal device may be a network. Voice over Internet Protocol (VoIP) service, Hyper Text Hransfer Protocol (HTTP) service, etc.
  • VoIP Voice over Internet Protocol
  • HTTP Hyper Text Hransfer Protocol
  • the first network side device configures configuration information of the information including the third protocol stack for the terminal device according to the selected first protocol layer and the second protocol layer.
  • the first network side device selects the first protocol layer from the first protocol stack, and selects the second protocol layer from the second protocol stack, the first protocol layer and the second protocol layer are selected as the terminal device.
  • the configuration information including the information of the third protocol stack may be configured, and the information of the third protocol stack may be a connection relationship between protocol layers in the third protocol stack.
  • the first network side device sends the configuration information to the terminal device.
  • the terminal device configures a third protocol stack according to information of the third protocol stack.
  • the terminal device after receiving the configuration information sent by the first network side device, the terminal device configures the third protocol stack according to the information of the third protocol stack included in the configuration information. After the third protocol stack is configured, the terminal device may feed back the successfully configured message to the first network side device, so that the first network side device and the terminal device use the third protocol stack to communicate.
  • the terminal device When the configuration information further includes a configuration manner of the feedback information, the terminal device generates a feedback information group including the first feedback information and the second feedback information according to the configuration manner.
  • the terminal device when the terminal device needs to feed back information to a certain network side device, the terminal device may directly send the feedback information to the network side device.
  • the terminal device may send the feedback information of the network side device to another network side device connected to the terminal device, and then send the feedback information to the network side device by another network side device.
  • the terminal device when the configuration information further includes a configuration manner of the feedback information, when the terminal device needs to feed back information to the first network side device and the second network side device, the terminal device generates the information according to the configuration manner.
  • the first feedback information and the feedback information group of the second feedback information the first feedback information may include an identifier or an index of the first network side device
  • the second feedback information may include an identifier or an index of the second network side device, where the second network side
  • the device is a network side device other than the first network side device among the network side devices that establish a connection with the terminal device.
  • the configuration method can be to add an identifier or an index of the network side device.
  • the first feedback information and the second feedback information may be an acknowledgement or negative acknowledge feedback information of the HARQ layer, or may be an RLC layer status report, or may be a PDCP status report.
  • the terminal device sends the feedback information group that includes the first feedback information and the second feedback information to the first network side device.
  • the first network side device determines, according to the identifier or index included in the first feedback information, that the first feedback information is information that is sent to the first network side device, and sends the second feedback information according to the identifier or index that is included in the second feedback information. Give the second network side device.
  • the first network side device after receiving the feedback information group sent by the terminal device, the first network side device first determines the number of feedback information included in the feedback information group, and then obtains the identifier of the network side device included in each feedback information.
  • An index when the identifier or index included in the first feedback information is an identifier or an index of the first network side device, determining that the first feedback information is information sent to the first network side device, and the identifier or index included in the second feedback information
  • the second feedback information is determined to be information sent to the second network side device, and the second feedback information is sent to the second network side device.
  • the information of the protocol stack between the network side device and the terminal device is configured by the network side device according to a protocol layer selected from a plurality of protocol stacks supported by the network side device, and the selected protocol is selected.
  • Different layers may have different protocol stacks, so the flexibility of the protocol stack configuration can be improved.
  • FIG. 3 is a schematic flowchart diagram of another information processing method according to an embodiment of the present invention.
  • the information processing method is described from the perspective of the terminal device 101 and the network side device 102.
  • the information processing method may include the following steps.
  • the first network side device is configured to report the physical layer CSI for the terminal device under specific conditions. Configuration information for the format.
  • the terminal device needs to continuously measure the physical layer CSI (ie, channel quality) of the downlink channel of the network side device and the terminal device, and report it to the network side device, so that the network side device performs downlink scheduling.
  • the physical layer CSI ie, channel quality
  • the signal processing mechanism of the physical layer changes, such as the TTI length and the protocol stack type
  • the type of the physical layer CSI that the terminal device needs to report is also Will change.
  • the terminal device needs to report the physical layer CSI according to the specific channel of the physical layer, the specific coding format, and the like.
  • the mechanism of the physical layer changes the physical layer CSI that the terminal device needs to report needs to be modified, so that the flexibility of the terminal device to report the downlink channel measurement result of the physical layer through the physical layer is reduced.
  • the first network side device may determine whether the current condition is a specific condition in real time or periodically, when the current condition is not a specific condition.
  • the terminal device may report the physical layer CSI of the downlink channel to the first network side device by using a physical layer format, where the first network side device does not need to configure configuration information for the terminal device; when the current condition is a specific condition, the first network side The device configures configuration information for the terminal device to report the format of the physical layer CSI.
  • the downlink measurement signals of the first network side device and the second network side device are different, or the TTI lengths used by the first network side device and the second network side device are different, or the first network side device and the first The frequency band measurement range of the network side device is different, or the frequency band measurement width of the first network side device and the second network side device is different, or the network type used by the first network side device and the second network side device is different, or the terminal device is different.
  • the measurement manners of the first network side device and the second network side device are different, it will indicate that the current condition is a specific condition.
  • the second network side device is a network side device other than the first network side device among the network side devices that establish a connection with the terminal device.
  • the first network side device sends the configuration information to the terminal device.
  • the first network side device may send the configuration information to the terminal device by using RRC signaling or a MAC PDU.
  • the terminal device reports the measured physical layer CSI between the first network side device and the terminal device to the first network side device.
  • the terminal device receives the configuration information sent by the first network side device
  • the measured physical layer CSI is sent to the physical layer through the format. If the measurement of the downlink physical layer channel quality is not performed, the downlink physical layer channel quality measurement is performed first, and then the measured physical layer CSI is sent to the first network side device by using the format.
  • the format may be a MAC PDU format or an RRC signaling format.
  • the physical layer CSI may include an identifier of the first network side device or an index of the first network side device, so that the first network side device determines that the physical layer CSI is information reported to the first network side device;
  • the terminal device is configured to measure the TTI length of the physical layer downlink channel, so that the first network side device determines the TTI length used by the terminal device to measure the physical layer downlink channel, or the uplink coding format used by the terminal device to measure the physical layer downlink channel. So that the first network side device determines which uplink coding format is used when the terminal device is used to measure the physical layer downlink channel.
  • the first network side device may be added to the first physical layer CSI of the first network side device.
  • the identifier or the index is added, and the identifier or index of the second network side device is added to the second physical layer CSI of the second network side device, and then the first physical layer CSI and the second physical layer CSI are combined into an information group and reported to the first a network side device, so that the first network side device determines, according to the identifier or the index, that the first physical layer CSI is information sent to the first network side device, determining that the second physical layer CSI is information sent to the second network side device, and The second physical layer CSI is sent to the second network side device.
  • the format information may also include a sub-packet header for distinguishing the specific format contained in the MAC PDU.
  • the first network side device may also be configured to report the reporting period of the physical layer CSI to the terminal device.
  • the resource that is reported by the terminal device to the physical layer CSI may be sent in the manner of the first network side device scheduling, that is, after the terminal device generates the physical layer CSI, the terminal device generates a downlink resource request, and sends the request to the first network side device.
  • the first network side device After receiving the resource request of the terminal device, the first network side device sends the scheduling resource location to the terminal device. After receiving the scheduling resource, the terminal device sends the physical layer CSI at the scheduling resource location. It may also be sent in a semi-static scheduling manner for the terminal device to send the physical layer CSI.
  • the terminal device may report the physical layer CSI in a format for reporting the physical layer CSI configured by the network side device for the terminal device, and does not need to modify the physical layer CSI, thereby improving the reporting of the physical device by the terminal device.
  • FIG. 4 is a schematic structural diagram of a terminal device according to an embodiment of the present invention.
  • the terminal device may include:
  • the communication unit 401 is configured to receive configuration information sent by the first network side device, where the first network side device and the terminal device support the first protocol stack and the second protocol stack; the first protocol stack may include a first protocol layer; The stack may include a second protocol layer; the configuration information may include information of a third protocol stack; and the third protocol stack may include a first protocol layer and a second protocol layer;
  • the configuration unit 402 is configured to configure a third protocol stack according to the information of the third protocol stack received by the communication unit 401, where the third protocol stack is different from the first protocol stack and the second protocol stack;
  • the communication unit 401 is further configured to communicate with the first network side device by using the third protocol stack.
  • the first protocol layer in the third protocol stack is a protocol layer selected by the first network side device from the protocol layer included in the first protocol stack according to the feature information of the terminal device;
  • the second protocol layer in the third protocol stack is a protocol layer selected by the first network side device from the protocol layer included in the second protocol stack according to the feature information of the terminal device.
  • the feature information of the terminal device may include at least one of capability information of the terminal device configuration protocol stack, a service feature of the terminal device, and a bearer type of the terminal device.
  • the configuration information may further include a configuration manner of the feedback information
  • the terminal device may further include:
  • the generating unit 403 is configured to generate a feedback information group according to the configuration manner received by the communication unit 401, where the feedback information group includes at least first feedback information and second feedback information, where the first feedback information may include an identifier or an index of the first network side device.
  • the second feedback information may include an identifier or an index of the second network side device, where the second network side device is a network side device other than the first network side device of the network side device that establishes a connection with the terminal device;
  • the communication unit 401 is further configured to send the feedback information group generated by the generating unit 403 to the first network side device, so that the first network side device determines, according to the identifier or index included in the first feedback information, that the first feedback information is sent to the first Information of a network side device, and an identifier included according to the second feedback information or The index sends the second feedback information to the second network side device.
  • the first feedback information and the second feedback information may be feedback information of the HARQ layer, an RLC layer status report, or a PDCP status report.
  • the configuration information includes that the first network side device configures the terminal device according to a protocol layer selected from the at least two protocol stacks.
  • the information of the protocol stack can be seen.
  • the protocol stack used for communication between the terminal device and the network side device is configured according to a protocol layer selected from at least two protocol stacks supported by the network side device, and the selected protocol layer is different, and the configuration information may be Differently, the established protocol stack may be different, so the flexibility of the protocol stack configuration can be improved.
  • FIG. 5 is a schematic structural diagram of another terminal device according to an embodiment of the present invention.
  • the terminal device may include a processor 501, a memory 502, a transceiver 503, and a connection line 504.
  • the processor 501 can be a general purpose central processing unit (CPU), a plurality of CPUs, a microprocessor, an application-specific integrated circuit (ASIC), or one or more programs for controlling the execution of the program of the present invention. integrated circuit.
  • the memory 502 can be a read-only memory (ROM) or other type of static storage device that can store static information and instructions, a random access memory (RAM) or other type that can store information and instructions.
  • ROM read-only memory
  • RAM random access memory
  • the dynamic storage device can also be an Electrically Erasable Programmable Read-Only Memory (EEPROM), a Compact Disc Read-Only Memory (CD-ROM) or other optical disc storage, and a disc storage device. (including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), magnetic disk storage media or other magnetic storage devices, or can be used to carry or store desired program code in the form of instructions or data structures and can be Any other media accessed, but not limited to this.
  • the memory 502 can exist independently, and the connection line 504 is connected to the processor 501. Memory 502 can also be integrated with processor 501.
  • the transceiver 503 is configured to communicate with other devices, network elements or communication networks, such as Ethernet, Radio Access Network (RAN), no WLAN, and the like. Connection line 504 can include a path for communicating information between the components described above. among them:
  • the transceiver 503 is configured to receive configuration information sent by the first network side device, and send the configuration information to the processor 501, where the first network side device and the terminal device support the first protocol stack and the second protocol stack;
  • the first protocol layer may be included;
  • the second protocol stack may include a second protocol layer;
  • the configuration information may include information of a third protocol stack;
  • the third protocol stack may include a first protocol layer and a second protocol layer;
  • a set of program codes is stored in the memory 502, and the processor 501 is configured to call the program code stored in the memory 502 to perform the following operations:
  • the transceiver 503 is further configured to communicate with the first network side device by using a third protocol stack.
  • the first protocol layer in the third protocol stack is a protocol layer selected by the first network side device from the protocol layer included in the first protocol stack according to the feature information of the terminal device;
  • the second protocol layer in the third protocol stack is a protocol layer selected by the first network side device from the protocol layer included in the second protocol stack according to the feature information of the terminal device.
  • the feature information of the terminal device may include at least one of capability information of the terminal device configuration protocol stack, a service feature of the terminal device, and a bearer type of the terminal device.
  • the configuration information may further include a configuration manner of the feedback information
  • the processor 501 is further configured to invoke the program code stored in the memory 502 to perform the following operations:
  • the feedback information group includes at least a first feedback information and a second feedback information
  • the first feedback information may include an identifier or an index of the first network side device
  • the second feedback information may include the second network.
  • the transceiver 503 is further configured to send the feedback information group to the first network side device, so that the first network side device determines, according to the identifier or index included in the first feedback information, that the first feedback information is sent to the first network side device. And transmitting the second feedback information to the second network side device according to the identifier or index included in the second feedback information.
  • the first feedback information and the second feedback information may be feedback information of the HARQ layer, an RLC layer status report, or a PDCP status report.
  • the configuration information includes that the first network side device configures the terminal device according to the protocol layer selected from the at least two protocol stacks.
  • the information of the protocol stack can be seen, and the protocol stack used for communication between the terminal device and the network side device is configured according to a protocol layer selected from at least two protocol stacks supported by the network side device, and is selected.
  • the protocol layer is different, the configuration information may be different, and the established protocol stack may be different, so the flexibility of the protocol stack configuration may be improved.
  • FIG. 6 is a schematic structural diagram of a network side device according to an embodiment of the present invention.
  • the network side device supports at least a first protocol stack and a second protocol stack, where the first protocol stack includes a first protocol layer, and the second protocol stack includes a second protocol layer.
  • the network side device may include:
  • the selecting unit 601 is configured to select a first protocol layer from the first protocol stack, and select a second protocol layer from the second protocol stack;
  • the configuration unit 602 is configured to configure configuration information for the terminal device, where the configuration information may include information of the third protocol stack, where the third protocol stack may include the first protocol layer and the second protocol layer selected by the selecting unit 601;
  • the communication unit 603 is configured to send the configuration information configured by the configuration unit 602 to the terminal device, where the configuration information is used to instruct the terminal device to configure the third protocol stack according to the information of the third protocol stack, and use the third protocol stack and the network.
  • the side device communicates.
  • the selecting unit 601 may include:
  • the obtaining subunit 6011 is configured to acquire feature information of the terminal device.
  • the selecting subunit 6012 is configured to select a first protocol layer from the first protocol stack according to the feature information selected by the selecting subunit 6011, and select a second protocol layer from the second protocol stack.
  • the feature information of the terminal device may include at least one of capability information of the terminal device configuration protocol stack, a service feature of the terminal device, and a bearer type of the terminal device.
  • the configuration information may further include a configuration manner of the feedback information, where the configuration information is further used to indicate that the terminal device generates the feedback information group according to the configuration manner;
  • the communication unit 603 is further configured to receive the feedback information group that is sent by the terminal device, where the feedback information group includes at least the first feedback information and the second feedback information, where the first feedback information may include an identifier or an index of the network side device, and the second feedback The information may include an identifier or an index of the second network side device, where the second network side device is a network side device other than the network side device in the network side device that establishes a connection with the terminal device;
  • the network side device may further include:
  • a determining unit 604 configured to use the identifier included in the first feedback information received by the communication unit 603 or The index determines that the first feedback information is information that is sent to the network side device;
  • the communication unit 603 is further configured to send the second feedback information to the second network side device according to the identifier or the index included in the second feedback information.
  • the first feedback information and the second feedback information may be feedback information of the HARQ layer, an RLC layer status report, or a PDCP status report.
  • the protocol stack used for communication between the terminal device and the network side device is configured according to a protocol layer selected from at least two protocol stacks supported by the network side device, and the selected protocol layers are different.
  • the configuration information may be different, and the established protocol stack may be different, so the flexibility of the protocol stack configuration may be improved.
  • FIG. 7 is a schematic structural diagram of another network side device according to an embodiment of the present invention.
  • the network side device supports at least a first protocol stack and a second protocol stack, where the first protocol stack includes a first protocol layer, and the second protocol stack includes a second protocol layer.
  • the network side device may include a processor 701, a memory 702, a transceiver 703, and a connection line 704.
  • the processor 701 can be a general purpose central processing unit (CPU), a plurality of CPUs, a microprocessor, an application-specific integrated circuit (ASIC), or one or more for controlling the execution of the program of the present invention. integrated circuit.
  • the memory 702 can be a read-only memory (ROM) or other type of static storage device that can store static information and instructions, a random access memory (RAM) or other type that can store information and instructions.
  • the dynamic storage device can also be an Electrically Erasable Programmable Read-Only Memory (EEPROM), a Compact Disc Read-Only Memory (CD-ROM) or other optical disc storage, and a disc storage device. (including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), magnetic disk storage media or other magnetic storage devices, or can be used to carry or store desired program code in the form of instructions or data structures and can be Any other media accessed, but not limited to this.
  • EEPROM Electrically Erasable Programmable Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory
  • disc storage device including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.
  • the memory 702 can exist independently, and the connection line 704 is connected to the processor 701. Memory 702 can also be integrated with processor 701.
  • the transceiver 703 is configured to communicate with other devices, network elements or communication networks, such as Ethernet, Radio Access Network (RAN), no WLAN, and the like.
  • Connection line 704 can include a path for communicating information between the components described above. among them:
  • a set of program codes is stored in the memory 702, and the processor 701 is configured to call the memory 702.
  • the stored program code does the following:
  • Configuring configuration information for the terminal device may include information of a third protocol stack, where the third protocol stack includes a first protocol layer and a second protocol layer;
  • the transceiver 703 is configured to send the configuration information to the terminal device, where the configuration information is used to instruct the terminal device to configure the third protocol stack according to the information of the third protocol stack, and communicate with the network side device by using the third protocol stack.
  • the processor 701 selects the first protocol layer from the first protocol stack, and selects the second protocol layer from the second protocol stack as follows:
  • the first protocol layer is selected from the first protocol stack
  • the second protocol layer is selected from the second protocol stack.
  • the feature information of the terminal device may include at least one of capability information of the terminal device configuration protocol stack, a service feature of the terminal device, and a bearer type of the terminal device.
  • the configuration information may further include a configuration manner of the feedback information, where the configuration information is further used to indicate that the terminal device generates the feedback information group according to the configuration manner;
  • the transceiver 703 is further configured to receive the feedback information group sent by the terminal device, where the feedback information group includes at least the first feedback information and the second feedback information, where the first feedback information may include an identifier or an index of the network side device, and the second feedback The information may include an identifier or an index of the second network side device, where the second network side device is a network side device other than the network side device in the network side device that establishes a connection with the terminal device;
  • the processor 701 is further configured to call the program code stored in the memory 702 to perform the following operations:
  • the first feedback information is information that is sent to the network side device
  • the transceiver 703 is further configured to send the second feedback information to the second network side device according to the identifier or the index included in the second feedback information.
  • the first feedback information and the second feedback information may be feedback information of the HARQ layer, an RLC layer status report, or a PDCP status report.
  • the protocol stack used for communication between the terminal device and the network side device is configured according to a protocol layer selected from at least two protocol stacks supported by the network side device, and selected.
  • the protocol layer may be different, the configuration information may be different, and the established protocol stack may be different. Therefore, the flexibility of the protocol stack configuration may be improved.
  • FIG. 8 is a schematic structural diagram of another terminal device according to an embodiment of the present invention. As shown in FIG. 8, the terminal device may include:
  • the receiving unit 801 is configured to receive configuration information that is sent by the first network side device, where the configuration information is information for reporting a format of the physical layer CSI, and the format may be a MAC PDU format or an RRC signaling format.
  • the sending unit 802 is configured to report the physical layer CSI of the downlink channel of the measured first network side device and the terminal device to the first network side device by using the format received by the receiving unit 801.
  • the configuration information is information configured by the first network side device for the terminal device under a specific condition
  • This particular condition can include:
  • the downlink measurement signals of the first network side device and the second network side device are different, or
  • the length of the TTI used by the first network side device and the second network side device is different, or
  • the frequency measurement range of the first network side device and the second network side device is different, or
  • the frequency measurement widths of the first network side device and the second network side device are different, or
  • the network types of the first network side device and the second network side device are different, or
  • the terminal device measures that the measurement manners of the first network side device and the second network side device are different
  • the second network side device is a network side device other than the first network side device among the network side devices that establish a connection with the terminal device.
  • the physical layer CSI may include an identifier of the first network side device, an index of the first network side device, and a TTI used by the terminal device to measure the physical layer downlink channel.
  • the length or terminal device is used to measure the uplink coding format used in the physical layer downlink channel.
  • the terminal device may send the physical layer CSI of the downlink channel of the measured physical layer to the network side device in a high layer signaling format, which may improve the flexibility of information reporting.
  • FIG. 9 is a schematic structural diagram of another terminal device according to an embodiment of the present invention.
  • the terminal device may include a processor 901 and store A reservoir 902, a transceiver 903 and a connection line 904.
  • the processor 901 can be a general purpose central processing unit (CPU), a plurality of CPUs, a microprocessor, an application-specific integrated circuit (ASIC), or one or more for controlling the execution of the program of the present invention. integrated circuit.
  • the memory 902 can be a read-only memory (ROM) or other type of static storage device that can store static information and instructions, a random access memory (RAM) or other type that can store information and instructions.
  • ROM read-only memory
  • RAM random access memory
  • the dynamic storage device can also be an Electrically Erasable Programmable Read-Only Memory (EEPROM), a Compact Disc Read-Only Memory (CD-ROM) or other optical disc storage, and a disc storage device. (including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), magnetic disk storage media or other magnetic storage devices, or can be used to carry or store desired program code in the form of instructions or data structures and can be Any other media accessed, but not limited to this.
  • the memory 902 can exist independently, and the connection line 904 is connected to the processor 901.
  • the memory 902 can also be integrated with the processor 901.
  • the transceiver 903 is configured to communicate with other devices, network elements or communication networks, such as Ethernet, Radio Access Network (RAN), no WLAN, and the like. Connection line 904 can include a path for communicating information between the components described above. among them:
  • the memory 902 stores a set of program codes, and the processor 901 is configured to call the program code stored in the memory 902 to control the transceiver 903 to communicate with the network side device;
  • the transceiver 903 is configured to receive configuration information that is sent by the first network side device, where the configuration information is used to report a format of a physical layer CSI, where the format may be a MAC PDU format or an RRC signaling format.
  • the transceiver 903 is further configured to report the measured physical layer CSI between the first network side device and the terminal device to the first network side device by using the format.
  • the configuration information is information configured by the first network side device for the terminal device under a specific condition
  • This particular condition can include:
  • the downlink measurement signals of the first network side device and the second network side device are different, or
  • the length of the TTI used by the first network side device and the second network side device is different, or
  • the frequency measurement range of the first network side device and the second network side device is different, or
  • the frequency measurement widths of the first network side device and the second network side device are different, or
  • the network types of the first network side device and the second network side device are different, or
  • the terminal device measures that the measurement manners of the first network side device and the second network side device are different
  • the second network side device is a network side device other than the first network side device among the network side devices that establish a connection with the terminal device.
  • the physical layer CSI may include an identifier of the first network side device, an index of the first network side device, and a TTI used by the terminal device to measure the physical layer downlink channel.
  • the length or terminal device is used to measure the uplink coding format used in the physical layer downlink channel.
  • the terminal device may send the physical layer CSI of the downlink channel of the measured physical layer to the network side device in a high layer signaling format, which may improve the flexibility of information reporting.
  • FIG. 10 is a schematic structural diagram of another network side device according to an embodiment of the present invention.
  • the network side device may include:
  • the configuration unit 1001 is configured to configure configuration information for the terminal device under specific conditions, where the configuration information is information for reporting a format of the physical layer CSI;
  • the communication unit 1002 is configured to send the configuration information that is configured by the configuration unit 1001 to the terminal device, where the configuration information is used to indicate that the terminal device reports at least the physical layer CSI between the network side device and the terminal device according to the format, where the format may be a MAC. PDU format or RRC signaling format;
  • the communication unit 1002 is further configured to receive the physical layer CSI sent by the terminal device.
  • the specific condition may include:
  • the downlink measurement signals of the network side device and the second network side device are different, or
  • the length of the TTI used by the network side device and the second network side device is different, or
  • the network side device and the second network side device have different frequency band measurement ranges, or
  • the network side device and the second network side device have different frequency band measurement widths, or
  • the network side device and the second network side device have different network types, or
  • the terminal device measures that the measurement manner of the network side device and the second network side device is different
  • the second network side device is a network side device other than the network side device in the network side device that establishes a connection with the terminal device.
  • the physical layer CSI may be included.
  • the network side device may configure configuration information for the terminal device under specific conditions, so that the terminal device sends the measured physical layer CSI of the downlink channel to the high layer signaling format configured by the network side device to Network-side devices can improve the flexibility of information reporting.
  • FIG. 11 is yet another network side device according to an embodiment of the present invention.
  • the network side device may include a processor 1101, a memory 1102, a transceiver 1103, and a connection line 1104.
  • the processor 1101 may be a general purpose central processing unit (CPU), a plurality of CPUs, a microprocessor, an application-specific integrated circuit (ASIC), or one or more programs for controlling the execution of the program of the present invention. integrated circuit.
  • the memory 1102 can be a read-only memory (ROM) or other type of static storage device that can store static information and instructions, a random access memory (RAM) or other type that can store information and instructions.
  • ROM read-only memory
  • RAM random access memory
  • the dynamic storage device can also be an Electrically Erasable Programmable Read-Only Memory (EEPROM), a Compact Disc Read-Only Memory (CD-ROM) or other optical disc storage, and a disc storage device. (including compact discs, laser discs, optical discs, digital versatile discs, Blu-ray discs, etc.), magnetic disk storage media or other magnetic storage devices, or can be used to carry or store desired program code in the form of instructions or data structures and can be Any other media accessed, but not limited to this.
  • the memory 1102 can exist independently, and the connection line 1104 is connected to the processor 1101.
  • the memory 1102 can also be integrated with the processor 1101.
  • the transceiver 1103 is configured to communicate with other devices, network elements or communication networks, such as Ethernet, Radio Access Network (RAN), no WLAN, and the like. Connection line 1104 can include a path for communicating information between the components described above. among them:
  • the memory 1102 stores a set of program codes
  • the processor 1101 is configured to call the program code stored in the memory 1102 to perform the following operations:
  • the configuration information is configured for the terminal device, where the configuration information is used to report the format of the physical layer CSI, and the format may be a MAC PDU format or an RRC signaling format.
  • the transceiver 1103 is configured to send the configuration information to the terminal device, where the configuration information is used to indicate that the terminal device reports at least the physical layer CSI between the network side device and the terminal device according to the format;
  • the transceiver 1103 is further configured to receive the physical layer CSI sent by the terminal device.
  • the specific condition may include:
  • the downlink measurement signals of the network side device and the second network side device are different, or
  • the length of the TTI used by the network side device and the second network side device is different, or
  • the network side device and the second network side device have different frequency band measurement ranges, or
  • the network side device and the second network side device have different frequency band measurement widths, or
  • the network side device and the second network side device have different network types, or
  • the terminal device measures that the measurement manner of the network side device and the second network side device is different
  • the second network side device is a network side device other than the network side device in the network side device that establishes a connection with the terminal device.
  • the physical layer CSI may include an identifier of the network side device, an index of the network side device, and a TTI length used by the terminal device to measure a physical layer downlink channel or The terminal device is used to measure the uplink coding format used when the physical layer downlink channel is used.
  • the network side device may configure configuration information for the terminal device under specific conditions, so that the terminal device sends the measured physical layer CSI of the downlink channel to the high layer signaling format configured by the network side device to Network-side devices can improve the flexibility of information reporting.
  • the embodiment of the invention further discloses a readable storage medium, which stores program code of the terminal device and the network side device for executing the information processing method shown in FIG. 2 or FIG.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

一种信息处理方法及设备,该方法应用于终端设备,包括:接收第一网络侧设备发送的配置信息,第一网络侧设备和终端设备支持第一协议栈和第二协议栈,第一协议栈包括第一协议层,第二协议栈包括第二协议层该,配置信息包括第三协议栈的信息,第三协议栈包括第一协议层和第二协议层;根据第三协议栈的信息配置第三协议栈,使用第三协议栈与第一网络侧设备进行通信。本发明实施例,可以提高协议栈配置的灵活性。

Description

一种信息处理方法及设备 技术领域
本发明涉及通信技术领域,具体涉及一种信息处理方法及设备。
背景技术
目前,终端设备(Terminal Device)可以与两个演进型基站(eNB,evolved Node B)进行连接,这种连接方式称为双连接(DC,Dual Connectivity)。其中,这两个eNB中一个为主演进型基站(MeNB,Master eNB),另一个为辅演进型基站(SeNB,Secondary eNB)。在DC中,MeNB覆盖下的主小区群(MCG,Master Cell Group)和SeNB覆盖下的辅小区群(SCG,Secondary Cell Group)可以在保留承载的同时向终端设备提供服务;此外,MCG的承载可以在分组数据汇聚协议(PDCP,Packet Data Convergence Protocol)层分流为两部分,一部分数据发送给MeNB的无线链路控制(RLC,Radio Link Controller)层,另一部分数据通过X2接口发送给SeNB的RLC层,以通过SeNB的调度进行数据的发送。
但是,随着通信技术的不断发展,终端设备可能需要与至少两个基站进行连接,现有的方案中协议栈是相对固定的,以致降低了协议栈配置的灵活性。
发明内容
本发明实施例公开了一种信息处理方法及设备,用于提高协议栈配置的灵活性。
第一方面公开了一种信息处理方法,该方法应用于终端设备,接收第一网络侧设备发送的配置信息,根据该配置信息包括的第三协议栈的信息配置第三协议栈,并使用第三协议栈与第一网络侧设备进行通信。其中,第一网络侧设备和终端设备都支持第一协议栈和第二协议栈,第一协议栈可以包括第一协议层,第二协议栈可以包括第二协议层,第三协议栈可以包括第一协议层和第二协议层。可见,终端设备与第一网络侧设备间用于通信的第三协议栈是根据第 一网络侧设备从支持的不同协议栈中选取的协议层配置的,选取的协议层不同,配置的第三协议栈的信息可能不同,建立的第三协议栈可能不同,因此,可以提高协议栈配置的灵活性。
在一个实施例中,第三协议栈中的第一协议层是第一网络侧设备根据终端设备的特征信息从第一协议栈包括的协议层中选取的协议层,第三协议栈中的第二协议层是第一网络侧设备根据终端设备的特征信息从第二协议栈包括的协议层中选取的协议层,可见,终端设备的特征信息不同,选取的协议层可能不同,因此,可以根据终端设备的特征信息灵活地为终端设备配置第三协议栈的信息,从而可以提高协议栈配置的灵活性。
可选的,所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息。
在一个实施例中,终端设备的特征信息可以包括终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种,可见,终端设备不同,终端设备的特征信息可能不同,终端设备上的业务不同,终端设备的特征信息可能不同,因此,终端设备可以根据网络侧设备根据终端设备的特征信息和网络侧设备支持的协议栈为终端设备配置的协议栈的信息灵活地配置协议栈,因此,可以提高协议栈配置的灵活性。
在一个实施例中,配置信息还可以包括反馈信息的配置方式,终端设备可以根据该配置方式生成包括第一反馈信息和第二反馈信息的反馈信息组,并将该反馈信息组发送给第一网络侧设备,以使第一网络侧设备根据第一反馈信息包括的标识或索引确定第一反馈信息是发送给第一网络侧设备的信息,以及根据第二反馈信息包括的标识或索引将第二反馈信息发送给第二网络侧设备。由于反馈信息中增加了网络侧设备的标识或索引,因此,网络侧设备可以识别出哪些反馈信息是发送给自己的,哪些反馈信息是发送给其它网络侧设备的,从而可以实现终端设备对网络侧设备信息的反馈。其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备。
在一个实施例中,第一反馈信息和第二反馈信息可以为混合自动重传请求(Hybrid Automatic Repeat reQuest,HARQ)层的反馈信息,也可以为RLC层状态报告,还可以为PDCP状态报告。
第二方面公开一种终端设备,该终端设备包括用于执行第一方面或第一方面的任一种可能实现方式所提供的信息处理方法的单元。
第三方面公开一种终端设备,包括处理器、存储器和收发器,存储器用于存储组程序代码,处理器用于执行程序代码,收发器用于与网络侧设备进行通信。当处理器执行存储器存储的程序代码时,使得处理器执行第一方面或第一方面的任一种可能实现方式所公开的信息处理方法。
第四方面公开一种可读存储介质,该可读存储介质存储了终端设备用于执行第一方面或第一方面的任一种可能实现方式所公开的信息处理方法的程序代码。
第五方面公开了一种信息处理方法,该方法应用于网络侧设备,该网络侧设备支持第一协议栈和第二协议栈,第一协议栈可以包括第一协议层,第二协议栈可以包括第二协议层,从第一协议栈选取第一协议层,从第二协议栈选取第二协议层,为终端设备配置包括第三协议栈的信息的配置信息,并将配置的配置信息发送给终端设备,以便终端设备根据第三协议栈的信息配置第三协议栈,并使用第三协议栈与该网络侧设备进行通信,可见,终端设备与网络侧设备间用于通信的第三协议栈是根据从网络侧设备从支持的不同协议栈中选取的协议层配置的,选取的协议层不同,配置的第三协议栈的信息可能不同,建立的第三协议栈可能不同,因此,可以提高协议栈配置的灵活性。其中,终端设备是与网络侧设备建立连接的任一终端设备,第三协议栈可以包括第一协议层和第二协议层。
在一个实施例中,从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层时,可以先获取终端设备的特征信息,之后根据终端设备的特征信息从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层,可见,终端设备的特征信息不同,选取的协议层可能不同,配置的第三协议栈的信息可能不同,建立的第三协议栈可能不同,因此,可以提高协议栈配置的灵活性。
在一个实施例中,终端设备的特征信息可以包括终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种,可见,终端设备不同,终端设备的特征信息可能不同,终端设备上的业务不同,终端设备的特征信息可能不同,因此,网络侧设备可以根据终端设备的特征信息和网络侧设备支持的协议栈灵活地为终端设备配置第三协议栈的信息,以便终端设 备根据第三协议栈的信息配置用于通信的协议栈,因此,可以提高协议栈配置的灵活性。
在一个实施例中,配置信息还可以包括反馈信息的配置方式,该配置信息还可以指示终端设备根据反馈信息的配置方式生成反馈信息组,接收终端设备发送的包括第一反馈信息和第二反馈信息的反馈信息组,并根据第一反馈信息包括的标识或索引确定第一反馈信息是发送给网络侧设备的信息,并根据第二反馈信息包括的标识或索引将第二反馈信息发送给第二网络侧设备,由于反馈信息中增加了网络侧设备的标识或索引,因此,网络侧设备可以识别哪些反馈信息是发送给自己的,哪些反馈信息是发送给其它网络侧设备的,从而可以实现终端设备对网络侧设备信息的反馈。其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除该网络侧设备之外的网络侧设备。
在一个实施例中,第一反馈信息和第二反馈信息可以为HARQ层的反馈信息,也可以为RLC层状态报告,还可以为PDCP状态报告。
第六方面公开一种网络侧设备,该网络侧设备包括用于执行第五方面或第五方面的任一种可能实现方式所提供的信息处理方法的单元。
第七方面公开一种网络侧设备,包括处理器、存储器和收发器,存储器用于存储组程序代码,处理器用于执行程序代码,收发器用于与终端设备进行通信。当处理器执行存储器存储的程序代码时,使得处理器执行第五方面或第五方面的任一种可能实现方式所公开的信息处理方法。
第八方面公开一种可读存储介质,该可读存储介质存储了网络侧设备用于执行第五方面或第五方面的任一种可能实现方式所公开的信息处理方法的程序代码。
第九方面公开了一种信息处理方法,该方法应用于终端设备,接收第一网络侧设备发送的配置信息,并至少将测量的第一网络侧设备与终端设备间的物理层信道状态信息(Channel Status Information,CSI)通过用于上报物理层CSI的格式上报给第一网络侧设备,第一网络侧设备是与终端设备建立连接的任一网络侧设备,该配置信息可以为用于上报物理层CSI的格式的信息,该格式可以为媒体接入控制(Media Access Control,MAC)协议数据单元(Protocol Data Unit,PDU)格式或无线资源控制(Radio Resource Control,RRC)信令格式。可见,终端设备可以将测量的物理层CSI通过高层信令格式发送给网络侧设 备,可以提高信息上报的灵活性。
在一个实施例中,该配置信息是特定条件下第一网络侧设备为终端设备配置的信息,该特定条件可以为第一网络侧设备和第二网络侧设备的下行测量信号不同,也可以为第一网络侧设备和第二网络侧设备所使用的传输时间间隔(Transmission Time Interval,TTI)长度不同,还可以为第一网络侧设备和第二网络侧设备的频带测量范围不同,还可以为第一网络侧设备和第二网络侧设备的频带测量宽度不同,还可以为第一网络侧设备和第二网络侧设备所使用的网络类型不同,还可以为终端设备测量第一网络侧设备和第二网络侧设备的测量方式不同,可见,终端设备可以根据网络侧设备在特定条件下配置的配置信息将物理层CSI通过高层信令层发送给网络侧设备,从而提高信息上报的灵活性。其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备。
在一个实施例中,当该格式为MAC PDU格式时,该物理层CSI可以包括第一网络侧设备的标识、第一网络侧设备的索引、终端设备用于测量物理层下行信道的TTI长度、第一网络侧设备的物理小区指示或终端设备用于测量物理层下行信道时采用的上行编码格式等。
第十方面公开一种终端设备,该终端设备包括用于执行第九方面或第九方面的任一种可能实现方式所提供的信息处理方法的单元。
第十一方面公开一种终端设备,包括处理器、存储器和收发器,存储器用于存储组程序代码,处理器用于执行程序代码,收发器用于与网络侧设备进行通信。当处理器执行存储器存储的程序代码时,使得处理器执行第九方面或第九方面的任一种可能实现方式所公开的信息处理方法。
第十二方面公开一种可读存储介质,该可读存储介质存储了终端设备用于执行第九方面或第九方面的任一种可能实现方式所公开的信息处理方法的程序代码。
第十三方面公开了一种信息处理方法,该方法应用于网络侧设备,在特定条件下为终端设备配置配置信息,将该配置信息发送给终端设备,以便终端设备根据配置信息至少上报网络侧设备与终端设备间的物理层CSI,接收终端设备发送的物理层CSI,配置信息为用于上报物理层CSI的格式的信息,该格式可以为MAC PDU格式,也可以为RRC格式。可见,网络侧设备在特定条件 下可以为终端设备配置配置信息,以便终端设备将测量的物理层CSI通过网络侧设备配置的高层信令格式发送给网络侧设备,可以提高信息上报的灵活性。其中,终端设备是与网络侧设备建立连接的任一终端设备。
在一个实施例中,该特定条件可以为第一网络侧设备和第二网络侧设备的下行测量信号不同,也可以为第一网络侧设备和第二网络侧设备所使用的TTI长度不同,还可以为第一网络侧设备和第二网络侧设备的频带测量范围不同,还可以为第一网络侧设备和第二网络侧设备的频带测量宽度不同,还可以为第一网络侧设备和第二网络侧设备所使用的网络类型不同,还可以为终端设备测量第一网络侧设备和第二网络侧设备的测量方式不同,可见,网络侧设备在特定条件下可以为终端设备配置配置信息,以便终端设备可以根据配置信息将物理层CSI通过高层信令层发送给网络侧设备,从而提高信息上报的灵活性。
在一个实施例中,当格式为MAC PDU格式时,该物理层CSI可以包括网络侧设备的标识、网络侧设备的索引、终端设备用于测量物理层下行信道的TTI长度、网络侧设备的物理小区指示或终端设备用于测量物理层下行信道时采用的上行编码格式等。
第十四方面公开一种网络侧设备,该网络侧设备包括用于执行第十三方面或第十三方面的任一种可能实现方式所提供的信息处理方法的单元。
第十五方面公开一种网络侧设备,包括处理器、存储器和收发器,存储器用于存储组程序代码,处理器用于执行程序代码,收发器用于与终端设备进行通信。当处理器执行存储器存储的程序代码时,使得处理器执行第十三方面或第十三方面的任一种可能实现方式所公开的信息处理方法。
第十六方面公开一种可读存储介质,该可读存储介质存储了网络侧设备用于执行第十三方面或第十三方面的任一种可能实现方式所公开的信息处理方法的程序代码。
在上述各个方面当中,可选的,所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要 使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例公开的一种网络架构示意图;
图2是本发明实施例公开的一种信息处理方法的流程示意图;
图3是本发明实施例公开的另一种信息处理方法的流程示意图;
图4是本发明实施例公开的一种终端设备的结构示意图;
图5是本发明实施例公开的另一种终端设备的结构示意图;
图6是本发明实施例公开的一种网络侧设备的结构示意图;
图7是本发明实施例公开的另一种网络侧设备的结构示意图;
图8是本发明实施例公开的又一种终端设备的结构示意图;
图9是本发明实施例公开的又一种终端设备的结构示意图;
图10是本发明实施例公开的又一种网络侧设备的结构示意图;
图11是本发明实施例公开的又一种网络侧设备的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例公开了一种信息处理方法及设备,用于提高协议栈配置的灵活性。以下分别进行详细说明。
为了更好地理解本发明实施例公开的一种信息处理方法及设备,下面先对本发明实施例使用的网络架构进行描述。请参阅图1,图1是本发明实施例公开的一种网络架构示意图。如图1所示,该网络架构可以包括终端设备101和至少两个网络侧设备102,终端设备101可以与这至少两个网络侧设备102进行通信,这至少两个网络侧设备102间也可以进行通信。这至少两个网络侧设备102中的每个网络侧设备支持至少两种协议栈,即下面实施例中的第一协 议栈和第二协议栈,这至少两个网络侧设备102中的每个网络侧设备所支持的协议栈可以完全相同,也可以部分相同,还可以全都不同,此处的协议栈即为网络类型,如长期演进型(Long Term Evolution,LTE)、2G、3G、4G、5G、通用移动通信系统(Universal Mobile Telecommunications System,UMTS)等。其中,终端设备101配置的协议栈,即下面实施例中的第三协议栈,是根据从网络侧设备102支持的多种网络类型中选取的协议层的组合。其中,网络侧设备102可以为基站,例如:LTE网络中的eNB;也可以为核心网侧的控制设备,例如:LTE网络中的移动管理实体(Mobility Management Entity,MME);还可以是小区。其中,终端设备101与这至少两个网络侧设备102之间的连接可以是RRC连接,也可以是核心网MME连接。
在以下各个实施例当中,可选的,所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息。
基于图1所示的网络架构,请参阅图2,图2是本发明实施例公开的一种信息处理方法的流程示意图。其中,该信息处理方法是从终端设备101和网络侧设备102的角度来描述的,网络侧设备102至少支持第一协议栈和第二协议栈,第一协议栈包括第一协议层,第二协议栈包括第二协议层。如图2所示,该信息处理方法可以包括以下步骤。
201、第一网络侧设备从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层。
本实施例中,当终端设备与第一网络侧设备建立连接之后,第一网络侧设备可以从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层,即先获取终端设备的特征信息,之后根据终端设备的特征信息从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层,也即是第一网络侧设备先获取终端设备的特征信息,根据终端设备的特征信息先从第一网络侧设备支持的所有协议栈中选取部分协议栈或全部协议栈,之后再根据终端设备的特征信息从选取的协议栈中的每个协议栈选取至少一个协议层。其中,终端设备的特征信息可以是第一网络侧设备根据终端设备的历史信息获取的,也可以是终端设备主动上报给第一网络侧设备的,还可以是第一网络侧设备根据终端设备与第一网络侧设备间当前传输业务的业务特征获取的。其中,第一网络侧设备是与终端 设备建立连接的任一网络侧设备。
本实施例中,终端设备的特征信息可以为终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种。例如:终端设备配置协议栈的能力信息可以为终端设备是否只是协议架构灵活配置等,终端设备的业务特征可以为终端设备运行的业务是否需要执行灵活协议架构等,终端设备的承载类型可以为网络电话(Voice over Internet Protocol,VoIP)业务,超文本传输协议(Hyper Text Hransfer Protocol,HTTP)业务等。
202、第一网络侧设备根据选取的第一协议层和第二协议层为终端设备配置包括第三协议栈的信息的配置信息。
本实施例中,第一网络侧设备从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层之后,将根据选取的第一协议层和第二协议层为终端设备配置包括第三协议栈的信息的配置信息,第三协议栈的信息可以为第三协议栈中协议层之间的连接关系等。
203、第一网络侧设备将配置信息发送给终端设备。
204、终端设备根据第三协议栈的信息配置第三协议栈。
本实施例中,终端设备接收到第一网络侧设备发送的配置信息之后,将根据配置信息包括的第三协议栈的信息配置第三协议栈。其中,第三协议栈配置完成之后,终端设备可以将配置成功的消息反馈给第一网络侧设备,以便第一网络侧设备与终端设备使用第三协议栈进行通信。
205、当配置信息还包括反馈信息的配置方式时,终端设备根据配置方式生成包括第一反馈信息和第二反馈信息的反馈信息组。
本实施例中,目前,当终端设备需要向某个网络侧设备反馈信息时,终端设备可以直接将反馈信息发送给这个网络侧设备。然而,当终端设备需要向某个网络侧设备发送反馈信息时,由于资源位置、信道质量等原因,可能无法将反馈信息反馈给这个网络侧设备,以致信息反馈率较低。为了解决上述问题,终端设备可以将这个网络侧设备的反馈信息发送给另一个与终端设备连接的网络侧设备,再由另一个网络侧设备将反馈信息发送给这个网络侧设备。
本实施例中,当配置信息还包括反馈信息的配置方式,终端设备至少需要向第一网络侧设备和第二网络侧设备反馈信息时,将根据该配置方式生成包括 第一反馈信息和第二反馈信息的反馈信息组,第一反馈信息可以包括第一网络侧设备的标识或索引,第二反馈信息可以包括第二网络侧设备的标识或索引,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备。配置方式可以是添加网络侧设备的标识或索引。其中,第一反馈信息和第二反馈信息可以为HARQ层的确认(acknowledge)或否认(negative acknowledge)反馈信息,也可以为RLC层状态报告,还可以为PDCP状态报告。
206、终端设备将包括第一反馈信息和第二反馈信息的反馈信息组发送给第一网络侧设备。
207、第一网络侧设备根据第一反馈信息包括的标识或索引确定第一反馈信息是发送给第一网络侧设备的信息,以及根据第二反馈信息包括的标识或索引将第二反馈信息发送给第二网络侧设备。
本实施例中,第一网络侧设备接收到终端设备发送的反馈信息组之后,先确定反馈信息组中包括的反馈信息的数量,之后从每个反馈信息中获取包括的网络侧设备的标识或索引,当第一反馈信息包括的标识或索引为第一网络侧设备的标识或索引时,确定第一反馈信息是发送给第一网络侧设备的信息,当第二反馈信息包括的标识或索引为第二网络侧设备的标识或索引时,确定第二反馈信息是发送给第二网络侧设备的信息,并将第二反馈信息发送给第二网络侧设备。
在图2所描述的信息处理方法中,网络侧设备与终端设备之间的协议栈的信息是网络侧设备根据从网络侧设备支持的多种协议栈中选取的协议层配置的,选取的协议层不同,建立的协议栈可能不同,因此,可以提高协议栈配置的灵活性。
基于图1所示的网络架构,请参阅图3,图3是本发明实施例公开的另一种信息处理方法的流程示意图。其中,该信息处理方法是从终端设备101和网络侧设备102的角度来描述的。如图3所示,该信息处理方法可以包括以下步骤。
301、第一网络侧设备在特定条件下为终端设备配置用于上报物理层CSI 的格式的配置信息。
本实施例中,终端设备需要不断地测量网络侧设备与终端设备下行信道的物理层CSI(即信道质量)并上报给网络侧设备,以便网络侧设备进行下行调度。但是随着网络技术的不断发展,比如灵活协议栈等技术的发展,物理层的信号处理机制发生变化时,如TTI长度、协议栈类型等发送变化,终端设备需要上报的物理层CSI的类型也将发生变化。目前,终端设备需要根据物理层的具体信道、具体编码格式等上报物理层CSI。然而,当物理层的机制发生变化时,那么终端设备需要上报的物理层CSI需要进行修改,以致降低了终端设备通过物理层上报物理层下行信道测量结果的灵活性。
本实施例中,可以是当第一网络侧设备需要终端设备上报物理层CSI时,也可以是第一网络侧设备实时或周期性地,判断当前条件是否为特定条件,当当前条件不是特定条件时,终端设备可以通过物理层格式将下行信道的物理层CSI上报给第一网络侧设备,第一网络侧设备不需要为终端设备配置配置信息;当当前条件为特定条件时,第一网络侧设备将为终端设备配置用于上报物理层CSI的格式的配置信息。
本实施例中,当第一网络侧设备和第二网络侧设备的下行测量信号不同,或者第一网络侧设备和第二网络侧设备所使用的TTI长度不同,或者第一网络侧设备和第二网络侧设备的频带测量范围不同,或者第一网络侧设备和第二网络侧设备的频带测量宽度不同,或者第一网络侧设备和第二网络侧设备所使用的网络类型不同,或者终端设备测量第一网络侧设备和第二网络侧设备的测量方式不同时,将表明当前条件为特定条件。其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备。
302、第一网络侧设备将配置信息发送给终端设备。
本实施例中,第一网络侧设备可以将配置信息通过RRC信令或MAC PDU发送给终端设备。
303、终端设备至少将测量的第一网络侧设备与终端设备间的物理层CSI通过该格式上报给第一网络侧设备。
本实施例中,终端设备接收到第一网络侧设备发送的配置信息之后,如果已完成下行物理层信道质量的测量,则将测量的物理层CSI通过该格式发送给 第一网络侧设备;如果未进行下行物理层信道质量的测量,则先进行下行物理层信道质量测量,之后将测量的物理层CSI通过该格式发送给第一网络侧设备。
本实施例中,该格式可以为MAC PDU格式,也可以为RRC信令格式。当格式为MAC PDU格式时,物理层CSI可以包括第一网络侧设备的标识或第一网络侧设备的索引,以便第一网络侧设备确定物理层CSI是上报给第一网络侧设备的信息;或者终端设备用于测量物理层下行信道的TTI长度,以便第一网络侧设备确定终端设备用于测量物理层下行信道的TTI长度;或者终端设备用于测量物理层下行信道时采用的上行编码格式,以便第一网络侧设备确定终端设备用于测量物理层下行信道时采用那种上行编码格式。
本实施例中,当终端设备至少需要同时给第一网络侧设备和第二网络侧设备上报物理层CSI时,可以在第一网络侧设备的第一物理层CSI中加入第一网络侧设备的标识或索引,以及在第二网络侧设备的第二物理层CSI中加入第二网络侧设备的标识或索引,之后将第一物理层CSI和第二物理层CSI组合成信息组上报给第一网络侧设备,以便第一网络侧设备根据标识或索引确定第一物理层CSI是发送给第一网络侧设备的信息,确定第二物理层CSI是发送给第二网络侧设备的信息,并将第二物理层CSI发送给第二网络侧设备。
本实施例中,当格式为MAC PDU格式,且与终端设备连接的网络侧设备存在相对编号、终端设备测量下行信道时终端设备采用的TTL长度或终端设备测量下行信道时终端设备采用的上行编码格式等时,配置信息还可以包括子包头,用于区分MAC PDU内包含的具体格式。
本实施例中,第一网络侧设备也可以为终端设备配置用于上报物理层CSI的上报周期。
本实施例中,终端设备上报物理层CSI的资源可以是第一网络侧设备调度的方式进行发送,即终端设备生成物理层CSI后,生成下行资源请求,并发送给第一网络侧设备。当第一网络侧设备接收到终端设备的资源请求后,向终端设备发送调度资源位置。终端设备在收到调度资源后,在调度资源位置上发送物理层CSI。也可以是是基于半静态调度的方式进行发送,用于终端设备发送物理层CSI。
在图3所描述的信息处理方法中,终端设备可以通过网络侧设备为终端设备配置的用于上报物理层CSI的格式上报物理层CSI,不需要修改物理层CSI,从而可以提高终端设备上报物理层下行信道测量结果的灵活性。
基于图1所示的网络架构,请参阅图4,图4是本发明实施例公开的一种终端设备的结构示意图。如图4所示,该终端设备可以包括:
通信单元401,用于接收第一网络侧设备发送的配置信息,第一网络侧设备和终端设备支持第一协议栈和第二协议栈;第一协议栈可以包括第一协议层;第二协议栈可以包括第二协议层;该配置信息可以包括第三协议栈的信息;第三协议栈可以包括第一协议层和第二协议层;
配置单元402,用于根据通信单元401接收的第三协议栈的信息配置第三协议栈,第三协议栈不同于第一协议栈和第二协议栈;
通信单元401,还用于使用第三协议栈与第一网络侧设备进行通信。
作为一种可能的实施方式,第三协议栈中的第一协议层是第一网络侧设备根据终端设备的特征信息从第一协议栈包括的协议层中选取的协议层;
第三协议栈中的第二协议层是第一网络侧设备根据终端设备的特征信息从第二协议栈包括的协议层中选取的协议层。
作为一种可能的实施方式,终端设备的特征信息可以包括终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种。
作为一种可能的实施方式,该配置信息还可以包括反馈信息的配置方式,终端设备还可以包括:
生成单元403,用于根据通信单元401接收的配置方式生成反馈信息组,该反馈信息组至少包括第一反馈信息和第二反馈信息,第一反馈信息可以包括第一网络侧设备的标识或索引,第二反馈信息可以包括第二网络侧设备的标识或索引,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备;
通信单元401,还用于将生成单元403生成的反馈信息组发送给第一网络侧设备,以使第一网络侧设备根据第一反馈信息包括的标识或索引确定第一反馈信息是发送给第一网络侧设备的信息,以及根据第二反馈信息包括的标识或 索引将第二反馈信息发送给第二网络侧设备。
作为一种可能的实施方式,第一反馈信息和第二反馈信息可以为HARQ层的反馈信息、RLC层状态报告或PDCP状态报告。
在图4所描述的终端设备中,由于第一网络侧设备支持至少两种协议栈,而配置信息包括第一网络侧设备根据从这至少两种协议栈中选取的协议层为终端设备配置的协议栈的信息,可见,终端设备与网络侧设备间用于通信的协议栈是根据从网络侧设备支持的至少两种协议栈中选取的协议层配置的,选取的协议层不同,配置信息可能不同,建立的协议栈可能不同,因此,可以提高协议栈配置的灵活性。
基于图1所示的网络架构,请参阅图5,图5是本发明实施例公开的另一种终端设备的结构示意图。如图5所示,该终端设备可以包括处理器501、存储器502、收发器503和连接线504。处理器501可以是一个通用中央处理器(CPU),多个CPU,微处理器,特定应用集成电路(application-specific integrated circuit,ASIC),或一个或多个用于控制本发明方案程序执行的集成电路。存储器502可以是只读存储器(read-only memory,ROM)或可存储静态信息和指令的其他类型的静态存储设备,随机存取存储器(random access memory,RAM)或者可存储信息和指令的其他类型的动态存储设备,也可以是电可擦可编程只读存储器(Electrically Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储、光碟存储(包括压缩光碟、激光碟、光碟、数字通用光碟、蓝光光碟等)、磁盘存储介质或者其他磁存储设备、或者能够用于携带或存储具有指令或数据结构形式的期望的程序代码并能够由计算机存取的任何其他介质,但不限于此。存储器502可以是独立存在,连接线504与处理器501相连接。存储器502也可以和处理器501集成在一起。收发器503,用于与其他设备、网元或通信网络通信,如以太网,无线接入网(RAN),无WLAN等。连接线504可包括一通路,在上述组件之间传送信息。其中:
收发器503,用于接收第一网络侧设备发送的配置信息并发送给处理器501,第一网络侧设备和终端设备支持第一协议栈和第二协议栈;第一协议栈 可以包括第一协议层;第二协议栈可以包括第二协议层;该配置信息可以包括第三协议栈的信息;第三协议栈可以包括第一协议层和第二协议层;
存储器502中存储有一组程序代码,处理器501用于调用存储器502中存储的程序代码执行以下操作:
根据第三协议栈的信息配置第三协议栈,第三协议栈不同于第一协议栈和第二协议栈;
收发器503,还用于使用第三协议栈与第一网络侧设备进行通信。
作为一种可能的实施方式,第三协议栈中的第一协议层是第一网络侧设备根据终端设备的特征信息从第一协议栈包括的协议层中选取的协议层;
第三协议栈中的第二协议层是第一网络侧设备根据终端设备的特征信息从第二协议栈包括的协议层中选取的协议层。
作为一种可能的实施方式,终端设备的特征信息可以包括终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种。
作为一种可能的实施方式,该配置信息还可以包括反馈信息的配置方式,处理器501还用于调用存储器502中存储的程序代码执行以下操作:
根据该配置方式生成反馈信息组,该反馈信息组至少包括第一反馈信息和第二反馈信息,第一反馈信息可以包括第一网络侧设备的标识或索引,第二反馈信息可以包括第二网络侧设备的标识或索引,第二网络侧设备是与终端设备建立连接的网络侧设备中除终端设备第一网络侧设备之外的网络侧设备;
收发器503,还用于将该反馈信息组发送给第一网络侧设备,以使第一网络侧设备根据第一反馈信息包括的标识或索引确定第一反馈信息是发送给第一网络侧设备的信息,以及根据第二反馈信息包括的标识或索引将第二反馈信息发送给第二网络侧设备。
作为一种可能的实施方式,第一反馈信息和第二反馈信息可以为HARQ层的反馈信息、RLC层状态报告或PDCP状态报告。
在图5所描述的终端设备中,由于第一网络侧设备支持至少两种协议栈,而配置信息包括第一网络侧设备根据从这至少两种协议栈中选取的协议层为终端设备配置的协议栈的信息,可见,终端设备与网络侧设备间用于通信的协议栈是根据从网络侧设备支持的至少两种协议栈中选取的协议层配置的,选取 的协议层不同,配置信息可能不同,建立的协议栈可能不同,因此,可以提高协议栈配置的灵活性。
基于图1所示的网络架构,请参阅图6,图6是本发明实施例公开的一种网络侧设备的结构示意图。其中,该网络侧设备至少支持第一协议栈和第二协议栈,第一协议栈包括第一协议层,第二协议栈包括第二协议层。如图6所示,该网络侧设备可以包括:
选取单元601,用于从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层;
配置单元602,用于为终端设备配置配置信息,该配置信息可以包括第三协议栈的信息,第三协议栈可以包括选取单元601选取的第一协议层和第二协议层;
通信单元603,用于将该配置单元602配置的配置信息发送给终端设备,该配置信息用于指示终端设备根据第三协议栈的信息配置第三协议栈,并使用第三协议栈与该网络侧设备进行通信。
作为一种可能的实施方式,选取单元601可以包括:
获取子单元6011,用于获取终端设备的特征信息;
选取子单元6012,用于根据选取子单元6011选取的特征信息,从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层。
作为一种可能的实施方式,终端设备的特征信息可以包括终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种。
作为一种可能的实施方式,该配置信息还可以包括反馈信息的配置方式,该配置信息还用于指示终端设备根据该配置方式生成反馈信息组;
通信单元603,还用于接收终端设备发送的反馈信息组,该反馈信息组至少包括第一反馈信息和第二反馈信息,第一反馈信息可以包括该网络侧设备的标识或索引,第二反馈信息可以包括第二网络侧设备的标识或索引,第二网络侧设备是与终端设备建立连接的网络侧设备中除该网络侧设备之外的网络侧设备;
该网络侧设备还可以包括:
确定单元604,用于根据通信单元603接收的第一反馈信息包括的标识或 索引确定第一反馈信息是发送给该网络侧设备的信息;
通信单元603,还用于根据第二反馈信息包括的标识或索引将第二反馈信息发送给第二网络侧设备。
作为一种可能的实施方式,第一反馈信息和第二反馈信息可以为HARQ层的反馈信息、RLC层状态报告或PDCP状态报告。
在图6所描述的网络侧设备中,终端设备与网络侧设备间用于通信的协议栈是根据从网络侧设备支持的至少两种协议栈中选取的协议层配置的,选取的协议层不同,配置信息可能不同,建立的协议栈可能不同,因此,可以提高协议栈配置的灵活性。
基于图1所示的网络架构,请参阅图7,图7是本发明实施例公开的另一种网络侧设备的结构示意图。其中,该网络侧设备至少支持第一协议栈和第二协议栈,第一协议栈包括第一协议层,第二协议栈包括第二协议层。如图7所示,该网络侧设备可以包括处理器701、存储器702、收发器703和连接线704。处理器701可以是一个通用中央处理器(CPU),多个CPU,微处理器,特定应用集成电路(application-specific integrated circuit,ASIC),或一个或多个用于控制本发明方案程序执行的集成电路。存储器702可以是只读存储器(read-only memory,ROM)或可存储静态信息和指令的其他类型的静态存储设备,随机存取存储器(random access memory,RAM)或者可存储信息和指令的其他类型的动态存储设备,也可以是电可擦可编程只读存储器(Electrically Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储、光碟存储(包括压缩光碟、激光碟、光碟、数字通用光碟、蓝光光碟等)、磁盘存储介质或者其他磁存储设备、或者能够用于携带或存储具有指令或数据结构形式的期望的程序代码并能够由计算机存取的任何其他介质,但不限于此。存储器702可以是独立存在,连接线704与处理器701相连接。存储器702也可以和处理器701集成在一起。收发器703,用于与其他设备、网元或通信网络通信,如以太网,无线接入网(RAN),无WLAN等。连接线704可包括一通路,在上述组件之间传送信息。其中:
存储器702中存储有一组程序代码,处理器701用于调用存储器702中存 储的程序代码执行以下操作:
从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层;
为终端设备配置配置信息,该配置信息可以包括第三协议栈的信息,第三协议栈包括第一协议层和第二协议层;
收发器703,用于将该配置信息发送给终端设备,该配置信息用于指示终端设备根据第三协议栈的信息配置第三协议栈,并使用第三协议栈与该网络侧设备进行通信。
作为一种可能的实施方式,处理器701从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层的方式为:
获取终端设备的特征信息;
根据终端设备的特征信息,从第一协议栈选取第一协议层,并从第二协议栈选取第二协议层。
作为一种可能的实施方式,终端设备的特征信息可以包括终端设备配置协议栈的能力信息、终端设备的业务特征和终端设备的承载类型中的至少一种。
作为一种可能的实施方式,该配置信息还可以包括反馈信息的配置方式,该配置信息还用于指示终端设备根据该配置方式生成反馈信息组;
收发器703,还用于接收终端设备发送的反馈信息组,该反馈信息组至少包括第一反馈信息和第二反馈信息,第一反馈信息可以包括该网络侧设备的标识或索引,第二反馈信息可以包括第二网络侧设备的标识或索引,第二网络侧设备是与终端设备建立连接的网络侧设备中除该网络侧设备之外的网络侧设备;
处理器701还用于调用存储器702中存储的程序代码执行以下操作:
根据第一反馈信息包括的标识或索引确定第一反馈信息是发送给该网络侧设备的信息;
收发器703,还用于根据第二反馈信息包括的标识或索引将第二反馈信息发送给第二网络侧设备。
作为一种可能的实施方式,第一反馈信息和第二反馈信息可以为HARQ层的反馈信息、RLC层状态报告或PDCP状态报告。
在图7所描述的网络侧设备中,终端设备与网络侧设备间用于通信的协议栈是根据从网络侧设备支持的至少两种协议栈中选取的协议层配置的,选取的 协议层不同,配置信息可能不同,建立的协议栈可能不同,因此,可以提高协议栈配置的灵活性。
基于图1所示的网络架构,请参阅图8,图8是本发明实施例公开的又一种终端设备的结构示意图。如图8所示,该终端设备可以包括:
接收单元801,用于接收第一网络侧设备发送的配置信息,该配置信息为用于上报物理层CSI的格式的信息,该格式可以为MAC PDU格式或RRC信令格式;
发送单元802,用于至少将测量的第一网络侧设备与终端设备间下行信道的物理层CSI通过接收单元801接收的格式上报给第一网络侧设备。
作为一种可能的实施方式,该配置信息是特定条件下第一网络侧设备为终端设备配置的信息;
该特定条件可以包括:
第一网络侧设备和第二网络侧设备的下行测量信号不同,或者
第一网络侧设备和第二网络侧设备所使用的TTI长度不同,或者
第一网络侧设备和第二网络侧设备的频带测量范围不同,或者
第一网络侧设备和第二网络侧设备的频带测量宽度不同,或者
第一网络侧设备和第二网络侧设备的网络类型不同,或者
终端设备测量第一网络侧设备和第二网络侧设备的测量方式不同;
其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备。
作为一种可能的实施方式,当该格式为MAC PDU格式时,该物理层CSI可以包括第一网络侧设备的标识、第一网络侧设备的索引、终端设备用于测量物理层下行信道的TTI长度或终端设备用于测量物理层下行信道时采用的上行编码格式。
在图8所描述的终端设备中,终端设备可以将测量的物理层的下行信道的物理层CSI通过高层信令格式发送给网络侧设备,可以提高信息上报的灵活性。
基于图1所示的网络架构,请参阅图9,图9是本发明实施例公开的另一种终端设备的结构示意图。如图9所示,该终端设备可以包括处理器901、存 储器902、收发器903和连接线904。处理器901可以是一个通用中央处理器(CPU),多个CPU,微处理器,特定应用集成电路(application-specific integrated circuit,ASIC),或一个或多个用于控制本发明方案程序执行的集成电路。存储器902可以是只读存储器(read-only memory,ROM)或可存储静态信息和指令的其他类型的静态存储设备,随机存取存储器(random access memory,RAM)或者可存储信息和指令的其他类型的动态存储设备,也可以是电可擦可编程只读存储器(Electrically Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储、光碟存储(包括压缩光碟、激光碟、光碟、数字通用光碟、蓝光光碟等)、磁盘存储介质或者其他磁存储设备、或者能够用于携带或存储具有指令或数据结构形式的期望的程序代码并能够由计算机存取的任何其他介质,但不限于此。存储器902可以是独立存在,连接线904与处理器901相连接。存储器902也可以和处理器901集成在一起。收发器903,用于与其他设备、网元或通信网络通信,如以太网,无线接入网(RAN),无WLAN等。连接线904可包括一通路,在上述组件之间传送信息。其中:
存储器902中存储有一组程序代码,处理器901用于调用存储器902中存储的程序代码控制收发器903与网络侧设备进行通信;
收发器903,用于接收第一网络侧设备发送的配置信息,该配置信息为用于上报物理层CSI的格式的信息,该格式可以为MAC PDU格式或RRC信令格式;
收发器903,还用于至少将测量的第一网络侧设备与终端设备间的物理层CSI通过该格式上报给第一网络侧设备。
作为一种可能的实施方式,该配置信息是特定条件下第一网络侧设备为终端设备配置的信息;
该特定条件可以包括:
第一网络侧设备和第二网络侧设备的下行测量信号不同,或者
第一网络侧设备和第二网络侧设备所使用的TTI长度不同,或者
第一网络侧设备和第二网络侧设备的频带测量范围不同,或者
第一网络侧设备和第二网络侧设备的频带测量宽度不同,或者
第一网络侧设备和第二网络侧设备的网络类型不同,或者
终端设备测量第一网络侧设备和第二网络侧设备的测量方式不同;
其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除第一网络侧设备之外的网络侧设备。
作为一种可能的实施方式,当该格式为MAC PDU格式时,该物理层CSI可以包括第一网络侧设备的标识、第一网络侧设备的索引、终端设备用于测量物理层下行信道的TTI长度或终端设备用于测量物理层下行信道时采用的上行编码格式。
在图9所描述的终端设备中,终端设备可以将测量的物理层的下行信道的物理层CSI通过高层信令格式发送给网络侧设备,可以提高信息上报的灵活性。
基于图1所示的网络架构,请参阅图10,图10是本发明实施例公开的又一种网络侧设备的结构示意图。如图10所示,该网络侧设备可以包括:
配置单元1001,用于在特定条件下为终端设备配置配置信息,该配置信息为用于上报物理层CSI的格式的信息;
通信单元1002,用于将配置单元1001配置的配置信息发送给终端设备,该配置信息用于指示终端设备根据该格式至少上报该网络侧设备与终端设备间的物理层CSI,该格式可以为MAC PDU格式或RRC信令格式;
通信单元1002,还用于接收终端设备发送的该物理层CSI。
作为一种可能的实施方式,该特定条件可以包括:
该网络侧设备和第二网络侧设备的下行测量信号不同,或者
该网络侧设备和第二网络侧设备所使用的TTI长度不同,或者
该网络侧设备和第二网络侧设备的频带测量范围不同,或者
该网络侧设备和第二网络侧设备的频带测量宽度不同,或者
该网络侧设备和第二网络侧设备的网络类型不同,或者
终端设备测量该网络侧设备和第二网络侧设备的测量方式不同;
其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除该网络侧设备之外的网络侧设备。
作为一种可能的实施方式,当该格式为MAC PDU格式时,该物理层CSI 可以包括该网络侧设备的标识、该网络侧设备的索引、终端设备用于测量物理层下行信道的TTI长度或终端设备用于测量物理层下行信道时采用的上行编码格式。
在图10所描述的网络侧设备中,网络侧设备可以在特定条件下为终端设备配置配置信息,以便终端设备将测量的下行信道的物理层CSI通过网络侧设备配置的高层信令格式发送给网络侧设备,可以提高信息上报的灵活性。
基于图1所示的网络架构,请参阅图11,图11是本发明实施例公开的又一种网络侧设备。如图11所示,该网络侧设备可以包括处理器1101、存储器1102、收发器1103和连接线1104。处理器1101可以是一个通用中央处理器(CPU),多个CPU,微处理器,特定应用集成电路(application-specific integrated circuit,ASIC),或一个或多个用于控制本发明方案程序执行的集成电路。存储器1102可以是只读存储器(read-only memory,ROM)或可存储静态信息和指令的其他类型的静态存储设备,随机存取存储器(random access memory,RAM)或者可存储信息和指令的其他类型的动态存储设备,也可以是电可擦可编程只读存储器(Electrically Erasable Programmable Read-Only Memory,EEPROM)、只读光盘(Compact Disc Read-Only Memory,CD-ROM)或其他光盘存储、光碟存储(包括压缩光碟、激光碟、光碟、数字通用光碟、蓝光光碟等)、磁盘存储介质或者其他磁存储设备、或者能够用于携带或存储具有指令或数据结构形式的期望的程序代码并能够由计算机存取的任何其他介质,但不限于此。存储器1102可以是独立存在,连接线1104与处理器1101相连接。存储器1102也可以和处理器1101集成在一起。收发器1103,用于与其他设备、网元或通信网络通信,如以太网,无线接入网(RAN),无WLAN等。连接线1104可包括一通路,在上述组件之间传送信息。其中:
存储器1102中存储有一组程序代码,处理器1101用于调用存储器1102中存储的程序代码执行以下操作:
在特定条件下为终端设备配置配置信息,该配置信息为用于上报物理层CSI的格式的信息,该格式可以为MAC PDU格式或RRC信令格式;
收发器1103,用于将该配置信息发送给终端设备,该配置信息用于指示终端设备根据该格式至少上报该网络侧设备与终端设备间的物理层CSI;
收发器1103,还用于接收终端设备发送的该物理层CSI。
作为一种可能的实施方式,该特定条件可以包括:
该网络侧设备和第二网络侧设备的下行测量信号不同,或者
该网络侧设备和第二网络侧设备所使用的TTI长度不同,或者
该网络侧设备和第二网络侧设备的频带测量范围不同,或者
该网络侧设备和第二网络侧设备的频带测量宽度不同,或者
该网络侧设备和第二网络侧设备的网络类型不同,或者
终端设备测量该网络侧设备和第二网络侧设备的测量方式不同;
其中,第二网络侧设备是与终端设备建立连接的网络侧设备中除该网络侧设备之外的网络侧设备。
作为一种可能的实施方式,当该格式为MAC PDU格式时,该物理层CSI可以包括该网络侧设备的标识、该网络侧设备的索引、终端设备用于测量物理层下行信道的TTI长度或终端设备用于测量物理层下行信道时采用的上行编码格式。
在图11所描述的网络侧设备中,网络侧设备可以在特定条件下为终端设备配置配置信息,以便终端设备将测量的下行信道的物理层CSI通过网络侧设备配置的高层信令格式发送给网络侧设备,可以提高信息上报的灵活性。
本发明实施例还公开了一种可读存储介质,该可读存储介质存储了终端设备和网络侧设备用于执行图2或图3所示的信息处理方法的程序代码。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上对本发明实施例所提供的一种信息处理方法及设备行了详细介绍,本文中应用了具体实例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (48)

  1. 一种信息处理方法,其特征在于,所述方法应用于终端设备,包括:
    接收第一网络侧设备发送的配置信息;所述第一网络侧设备和所述终端设备支持第一协议栈和第二协议栈;所述第一协议栈包括第一协议层;所述第二协议栈包括第二协议层;所述配置信息包括第三协议栈的信息;所述第三协议栈包括所述第一协议层和所述第二协议层;所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息;
    根据所述第三协议栈的信息配置所述第三协议栈,所述第三协议栈不同于所述第一协议栈和所述第二协议栈;
    使用所述第三协议栈与所述第一网络侧设备进行通信。
  2. 根据权利要求1所述的方法,其特征在于,所述第三协议栈中的所述第一协议层是所述第一网络侧设备根据所述终端设备的特征信息从所述第一协议栈包括的协议层中选取的协议层;
    所述第三协议栈中的所述第二协议层是所述第一网络侧设备根据所述终端设备的特征信息从所述第二协议栈包括的协议层中选取的协议层。
  3. 根据权利要求1或2所述的方法,其特征在于,所述终端设备的特征信息包括所述终端设备配置协议栈的能力信息、所述终端设备的业务特征和所述终端设备的承载类型中的至少一种。
  4. 根据权利要求1-3任一项所述的方法,其特征在于,所述配置信息还包括反馈信息的配置方式,所述方法还包括:
    根据所述配置方式生成反馈信息组,所述反馈信息组至少包括第一反馈信息和第二反馈信息,所述第一反馈信息包括所述第一网络侧设备的标识或索引,所述第二反馈信息包括第二网络侧设备的标识或索引,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备;
    将所述反馈信息组发送给所述第一网络侧设备,以使所述第一网络侧设备 根据所述第一反馈信息包括的标识或索引确定所述第一反馈信息是发送给所述第一网络侧设备的信息,以及根据所述第二反馈信息包括的标识或索引将所述第二反馈信息发送给所述第二网络侧设备。
  5. 根据权利要求4所述的方法,其特征在于,所述第一反馈信息和所述第二反馈信息为混合自动重传请求层的反馈信息、无线链路控制层状态报告或分组数据汇聚协议状态报告。
  6. 一种信息处理方法,其特征在于,所述方法应用于网络侧设备,所述网络侧设备支持第一协议栈和第二协议栈,所述第一协议栈包括第一协议层,所述第二协议栈包括第二协议层,包括:
    从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层;
    为终端设备配置配置信息,所述配置信息包括第三协议栈的信息,所述第三协议栈包括所述第一协议层和所述第二协议层;所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息;
    将所述配置信息发送给所述终端设备,所述配置信息用于指示所述终端设备根据所述第三协议栈的信息配置所述第三协议栈,并使用所述第三协议栈与所述网络侧设备进行通信。
  7. 根据权利要求6所述的方法,其特征在于,所述从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层包括:
    获取终端设备的特征信息;
    根据所述特征信息,从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层。
  8. 根据权利要求6或7所述的方法,其特征在于,所述终端设备的特征信息包括所述终端设备配置协议栈的能力信息、所述终端设备的业务特征和所述终端设备的承载类型中的至少一种。
  9. 根据权利要求6-8任一项所述的方法,其特征在于,所述配置信息还包括反馈信息的配置方式,所述配置信息还用于指示所述终端设备根据所述配置方式生成反馈信息组;
    所述方法还包括:
    接收所述终端设备发送的反馈信息组,所述反馈信息组至少包括第一反馈信息和第二反馈信息,所述第一反馈信息包括所述网络侧设备的标识或索引,所述第二反馈信息包括第二网络侧设备的标识或索引,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述网络侧设备之外的网络侧设备;
    根据所述第一反馈信息包括的标识或索引确定所述第一反馈信息是发送给所述网络侧设备的信息,并根据所述第二反馈信息包括的标识或索引将所述第二反馈信息发送给所述第二网络侧设备。
  10. 根据权利要求9所述的方法,其特征在于,所述第一反馈信息和所述第二反馈信息为混合自动重传请求层的反馈信息、无线链路控制层状态报告或分组数据汇聚协议状态报告。
  11. 一种信息处理方法,其特征在于,所述方法应用于终端设备,包括:
    接收第一网络侧设备发送的配置信息,所述配置信息为用于上报物理层信道状态信息的格式的信息,所述格式为媒体接入控制协议数据单元格式或无线资源控制信令格式;
    至少将测量的所述第一网络侧设备与所述终端设备间的物理层信道状态信息通过所述格式上报给所述第一网络侧设备。
  12. 根据权利要求11所述的方法,其特征在于,所述配置信息是特定条件下所述第一网络侧设备为所述终端设备配置的信息;
    所述特定条件包括:
    所述第一网络侧设备和第二网络侧设备的下行测量信号不同,或者
    所述第一网络侧设备和第二网络侧设备所使用的传输时间间隔TTI长度不同,或者
    所述第一网络侧设备和第二网络侧设备的频带测量范围不同,或者
    所述第一网络侧设备和第二网络侧设备的频带测量宽度不同,或者
    所述第一网络侧设备和第二网络侧设备的网络类型不同,或者
    所述终端设备测量所述第一网络侧设备和第二网络侧设备的测量方式不同;
    其中,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备。
  13. 根据权利要求11或12所述的方法,其特征在于,当所述格式为媒体接入控制协议数据单元格式时,所述物理层信道状态信息包括所述第一网络侧设备的标识、所述第一网络侧设备的索引、所述终端设备用于测量物理层下行信道的TTI长度或所述终端设备用于测量物理层下行信道时采用的上行编码格式。
  14. 一种信息处理方法,其特征在于,所述方法应用于网络侧设备,包括:
    在特定条件下为终端设备配置配置信息,所述配置信息为用于上报物理层信道状态信息的格式的信息;
    将所述配置信息发送给所述终端设备,所述配置信息用于指示所述终端设备根据所述格式至少上报所述网络侧设备与所述终端设备间的物理层信道状态信息,所述格式为媒体接入控制协议数据单元格式或无线资源控制信令格式;
    接收所述终端设备发送的所述物理层信道状态信息。
  15. 根据权利要求14所述的方法,其特征在于,所述特定条件包括:
    所述网络侧设备和所述第二网络侧设备的下行测量信号不同,或者
    所述网络侧设备和所述第二网络侧设备所使用的传输时间间隔TTI长度不同,或者
    所述网络侧设备和所述第二网络侧设备的频带测量范围不同,或者
    所述网络侧设备和所述第二网络侧设备的频带测量宽度不同,或者
    所述第一网络侧设备和第二网络侧设备的网络类型不同,或者
    所述终端设备测量所述第一网络侧设备和第二网络侧设备的测量方式不同;
    其中,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备。
  16. 根据权利要求14或15所述的方法,其特征在于,当所述格式为媒体接入控制协议数据单元格式时,所述物理层信道状态信息包括所述网络侧设备的标识、所述网络侧设备的索引、所述终端设备用于测量物理层下行信道的TTI长度或所述终端设备用于测量物理层下行信道时采用的上行编码格式。
  17. 一种终端设备,其特征在于,包括:
    通信单元,用于接收第一网络侧设备发送的配置信息;所述第一网络侧设备和所述终端设备支持第一协议栈和第二协议栈;所述第一协议栈包括第一协议层;所述第二协议栈包括第二协议层;所述配置信息包括第三协议栈的信息;所述第三协议栈包括所述第一协议层和所述第二协议层;所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息;
    配置单元,用于根据所述通信单元接收的第三协议栈的信息配置所述第三协议栈,所述第三协议栈不同于所述第一协议栈和所述第二协议栈;
    所述通信单元,还用于使用所述第三协议栈与所述第一网络侧设备进行通信。
  18. 根据权利要求17所述的终端设备,其特征在于,所述第三协议栈中的所述第一协议层是所述第一网络侧设备根据所述终端设备的特征信息从所述第一协议栈包括的协议层中选取的协议层;
    所述第三协议栈中的所述第二协议层是所述第一网络侧设备根据所述终端设备的特征信息从所述第二协议栈包括的协议层中选取的协议层。
  19. 根据权利要求17或18所述的终端设备,其特征在于,所述终端设备的特征信息包括所述终端设备配置协议栈的能力信息、所述终端设备的业务特 征和所述终端设备的承载类型中的至少一种。
  20. 根据权利要求17-19任一项所述的终端设备,其特征在于,所述配置信息还包括反馈信息的配置方式,所述终端设备还包括:
    生成单元,用于根据所述配置方式生成反馈信息组,所述反馈信息组至少包括第一反馈信息和第二反馈信息,所述第一反馈信息包括所述第一网络侧设备的标识或索引,所述第二反馈信息包括第二网络侧设备的标识或索引,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备;
    所述通信单元,还用于将所述生成单元生成的反馈信息组发送给所述第一网络侧设备,以使所述第一网络侧设备根据所述第一反馈信息包括的标识或索引确定所述第一反馈信息是发送给所述第一网络侧设备的信息,以及根据所述第二反馈信息包括的标识或索引将所述第二反馈信息发送给所述第二网络侧设备。
  21. 根据权利要求20所述的终端设备,其特征在于,所述第一反馈信息和所述第二反馈信息为混合自动重传请求层的反馈信息、无线链路控制层状态报告或分组数据汇聚协议状态报告。
  22. 一种终端设备,其特征在于,包括处理器、存储器和收发器,其中:
    所述收发器,用于接收第一网络侧设备发送的配置信息;所述第一网络侧设备和所述终端设备支持第一协议栈和第二协议栈;所述第一协议栈包括第一协议层;所述第二协议栈包括第二协议层;所述配置信息包括第三协议栈的信息;所述第三协议栈包括所述第一协议层和所述第二协议层;所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息;
    所述存储器中存储有一组程序代码,所述处理器用于调用所述存储器中存储的程序代码执行以下操作:
    根据所述第三协议栈的信息配置所述第三协议栈,所述第三协议栈不同于所述第一协议栈和所述第二协议栈;
    所述收发器,还用于使用所述第三协议栈与所述第一网络侧设备进行通 信。
  23. 根据权利要求22所述的终端设备,其特征在于,所述第三协议栈中的所述第一协议层是所述第一网络侧设备根据所述终端设备的特征信息从所述第一协议栈包括的协议层中选取的协议层;
    所述第三协议栈中的所述第二协议层是所述第一网络侧设备根据所述终端设备的特征信息从所述第二协议栈包括的协议层中选取的协议层。
  24. 根据权利要求22或23所述的终端设备,其特征在于,所述终端设备的特征信息包括所述终端设备配置协议栈的能力信息、所述终端设备的业务特征和所述终端设备的承载类型中的至少一种。
  25. 根据权利要求22-24任一项所述的终端设备,其特征在于,所述配置信息还包括反馈信息的配置方式,所述处理器还用于调用所述存储器中存储的程序代码执行以下操作:
    根据所述配置方式生成反馈信息组,所述反馈信息组至少包括第一反馈信息和第二反馈信息,所述第一反馈信息包括所述第一网络侧设备的标识或索引,所述第二反馈信息包括第二网络侧设备的标识或索引,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备;
    所述收发器,还用于将所述反馈信息组发送给所述第一网络侧设备,以使所述第一网络侧设备根据所述第一反馈信息包括的标识或索引确定所述第一反馈信息是发送给所述第一网络侧设备的信息,以及根据所述第二反馈信息包括的标识或索引将所述第二反馈信息发送给所述第二网络侧设备。
  26. 根据权利要求25所述的终端设备,其特征在于,所述第一反馈信息和所述第二反馈信息为混合自动重传请求层的反馈信息、无线链路控制层状态报告或分组数据汇聚协议状态报告。
  27. 一种网络侧设备,其特征在于,所述网络侧设备支持第一协议栈和第 二协议栈,所述第一协议栈包括第一协议层,所述第二协议栈包括第二协议层,包括:
    选取单元,用于从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层;
    配置单元,用于为终端设备配置配置信息,所述配置信息包括第三协议栈的信息,所述第三协议栈包括所述选取单元选取的第一协议层和所述第二协议层;所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息;
    通信单元,用于将所述配置单元配置的配置信息发送给所述终端设备,所述配置信息用于指示所述终端设备根据所述第三协议栈的信息配置所述第三协议栈,并使用所述第三协议栈与所述网络侧设备进行通信。
  28. 根据权利要求27所述的网络侧设备,其特征在于,所述选取单元包括:
    获取子单元,用于获取终端设备的特征信息;
    选取子单元,用于根据所述选取子单元选取的特征信息,从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层。
  29. 根据权利要求27或28所述的网络侧设备,其特征在于,所述终端设备的特征信息包括所述终端设备配置协议栈的能力信息、所述终端设备的业务特征和所述终端设备的承载类型中的至少一种。
  30. 根据权利要求27-29任一项所述的网络侧设备,其特征在于,所述配置信息还包括反馈信息的配置方式,所述配置信息还用于指示所述终端设备根据所述配置方式生成反馈信息组;
    所述通信单元,还用于接收所述终端设备发送的反馈信息组,所述反馈信息组至少包括第一反馈信息和第二反馈信息,所述第一反馈信息包括所述网络侧设备的标识或索引,所述第二反馈信息包括第二网络侧设备的标识或索引,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述网络侧设备之外的网络侧设备;
    所述网络侧设备还包括:
    确定单元,用于根据所述通信单元接收的第一反馈信息包括的标识或索引确定所述第一反馈信息是发送给所述网络侧设备的信息;
    所述通信单元,还用于根据所述第二反馈信息包括的标识或索引将所述第二反馈信息发送给所述第二网络侧设备。
  31. 根据权利要求30所述的网络侧设备,其特征在于,所述第一反馈信息和所述第二反馈信息为混合自动重传请求层的反馈信息、无线链路控制层状态报告或分组数据汇聚协议状态报告。
  32. 一种网络侧设备,其特征在于,所述网络侧设备支持第一协议栈和第二协议栈,所述第一协议栈包括第一协议层,所述第二协议栈包括第二协议层,所述网络侧设备包括处理器、存储器和收发器,其中:
    所述存储器中存储有一组程序代码,所述处理器用于调用所述存储器中存储的程序代码执行以下操作:
    从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层;
    为终端设备配置配置信息,所述配置信息包括第三协议栈的信息,所述第三协议栈包括所述第一协议层和所述第二协议层;所述第三协议栈的信息包含所述第一协议层的信息和/或第二协议层的信息;
    所述收发器,用于将所述配置信息发送给所述终端设备,所述配置信息用于指示所述终端设备根据所述第三协议栈的信息配置所述第三协议栈,并使用所述第三协议栈与所述网络侧设备进行通信。
  33. 根据权利要求32所述的网络侧设备,其特征在于,所述处理器从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层的方式为:
    获取终端设备的特征信息;
    根据所述特征信息,从所述第一协议栈选取所述第一协议层,并从所述第二协议栈选取所述第二协议层。
  34. 根据权利要求32或33所述的网络侧设备,其特征在于,所述终端设备的特征信息包括所述终端设备配置协议栈的能力信息、所述终端设备的业务特征和所述终端设备的承载类型中的至少一种。
  35. 根据权利要求32-34任一项所述的网络侧设备,其特征在于,所述配置信息还包括反馈信息的配置方式,所述配置信息还用于指示所述终端设备根据所述配置方式生成反馈信息组;
    所述收发器,还用于接收所述终端设备发送的反馈信息组,所述反馈信息组至少包括第一反馈信息和第二反馈信息,所述第一反馈信息包括所述网络侧设备的标识或索引,所述第二反馈信息包括第二网络侧设备的标识或索引,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述网络侧设备之外的网络侧设备;
    所述处理器还用于调用所述存储器中存储的程序代码执行以下操作:
    根据所述第一反馈信息包括的标识或索引确定所述第一反馈信息是发送给所述网络侧设备的信息;
    所述收发器,还用于根据所述第二反馈信息包括的标识或索引将所述第二反馈信息发送给所述第二网络侧设备。
  36. 根据权利要求35所述的网络侧设备,其特征在于,所述第一反馈信息和所述第二反馈信息为混合自动重传请求层的反馈信息、无线链路控制层状态报告或分组数据汇聚协议状态报告。
  37. 一种终端设备,其特征在于,包括:
    接收单元,用于接收第一网络侧设备发送的配置信息,所述配置信息为用于上报物理层信道状态信息的格式的信息,所述格式为媒体接入控制协议数据单元格式或无线资源控制信令格式;
    发送单元,用于至少将测量的所述第一网络侧设备与所述终端设备间的物理层信道状态信息通过所述接收单元接收的格式上报给所述第一网络侧设备。
  38. 根据权利要求37所述的终端设备,其特征在于,所述配置信息是特 定条件下所述第一网络侧设备为所述终端设备配置的信息;
    所述特定条件包括:
    所述第一网络侧设备和第二网络侧设备的下行测量信号不同,或者
    所述第一网络侧设备和第二网络侧设备所使用的传输时间间隔TTI长度不同,或者
    所述第一网络侧设备和第二网络侧设备的频带测量范围不同,或者
    所述第一网络侧设备和第二网络侧设备的频带测量宽度不同,或者
    所述第一网络侧设备和第二网络侧设备的网络类型不同,或者
    所述终端设备测量所述第一网络侧设备和第二网络侧设备的测量方式不同;
    其中,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备。
  39. 根据权利要求37或38所述的终端设备,其特征在于,当所述格式为媒体接入控制协议数据单元格式时,所述物理层信道状态信息包括所述第一网络侧设备的标识、所述第一网络侧设备的索引、所述终端设备用于测量物理层下行信道的TTI长度或所述终端设备用于测量物理层下行信道时采用的上行编码格式。
  40. 一种终端设备,其特征在于,包括处理器、存储器和收发器,其中:
    所述存储器中存储有一组程序代码,所述处理器用于调用所述存储器中存储的程序代码控制所述收发器与网络侧设备进行通信;
    所述收发器,用于接收第一网络侧设备发送的配置信息,所述配置信息为用于上报物理层信道状态信息的格式的信息,所述格式为媒体接入控制协议数据单元格式或无线资源控制信令格式;
    所述收发器,还用于至少将测量的所述第一网络侧设备与所述终端设备间的物理层信道状态信息通过所述格式上报给所述第一网络侧设备。
  41. 根据权利要求40所述的终端设备,其特征在于,所述配置信息是特定条件下所述第一网络侧设备为所述终端设备配置的信息;
    所述特定条件包括:
    所述第一网络侧设备和第二网络侧设备的下行测量信号不同,或者
    所述第一网络侧设备和第二网络侧设备所使用的传输时间间隔TTI长度不同,或者
    所述第一网络侧设备和第二网络侧设备的频带测量范围不同,或者
    所述第一网络侧设备和第二网络侧设备的频带测量宽度不同,或者
    所述第一网络侧设备和第二网络侧设备的网络类型不同,或者
    所述终端设备测量所述第一网络侧设备和第二网络侧设备的测量方式不同;
    其中,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述第一网络侧设备之外的网络侧设备。
  42. 根据权利要求40或41所述的终端设备,其特征在于,当所述格式为媒体接入控制协议数据单元格式时,所述物理层信道状态信息包括所述第一网络侧设备的标识、所述第一网络侧设备的索引、所述终端设备用于测量物理层下行信道的TTI长度或所述终端设备用于测量物理层下行信道时采用的上行编码格式。
  43. 一种网络侧设备,其特征在于,包括:
    配置单元,用于在特定条件下为终端设备配置配置信息,所述配置信息为用于上报物理层信道状态信息的格式的信息;
    通信单元,用于将所述配置单元配置的配置信息发送给所述终端设备,所述配置信息用于指示所述终端设备根据所述格式至少上报所述网络侧设备与所述终端设备间的物理层信道状态信息,所述格式为媒体接入控制协议数据单元格式或无线资源控制信令格式;
    所述通信单元,还用于接收所述终端设备发送的所述物理层信道状态信息。
  44. 根据权利要求43所述的网络侧设备,其特征在于,所述特定条件包括:
    所述网络侧设备和第二网络侧设备的下行测量信号不同,或者
    所述网络侧设备和第二网络侧设备所使用的传输时间间隔TTI长度不同,或者
    所述网络侧设备和第二网络侧设备的频带测量范围不同,或者
    所述网络侧设备和第二网络侧设备的频带测量宽度不同,或者
    所述网络侧设备和第二网络侧设备的网络类型不同,或者
    所述终端设备测量所述网络侧设备和第二网络侧设备的测量方式不同;
    其中,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述网络侧设备之外的网络侧设备。
  45. 根据权利要求43或44所述的网络侧设备,其特征在于,当所述格式为媒体接入控制协议数据单元格式时,所述物理层信道状态信息包括所述网络侧设备的标识、所述网络侧设备的索引、所述终端设备用于测量物理层下行信道的TTI长度或所述终端设备用于测量物理层下行信道时采用的上行编码格式。
  46. 一种网络侧设备,其特征在于,包括处理器、存储器和收发器,其中:
    所述存储器中存储有一组程序代码,所述处理器用于调用所述存储器中存储的程序代码执行以下操作:
    在特定条件下为终端设备配置配置信息,所述配置信息为用于上报物理层信道状态信息的格式的信息;
    所述收发器,用于将所述配置信息发送给所述终端设备,所述配置信息用于指示所述终端设备根据所述格式至少上报所述网络侧设备与所述终端设备间的物理层信道状态信息,所述格式为媒体接入控制协议数据单元格式或无线资源控制信令格式;
    所述收发器,还用于接收所述终端设备发送的所述物理层信道状态信息。
  47. 根据权利要求46所述的网络侧设备,其特征在于,所述特定条件包括:
    所述网络侧设备和第二网络侧设备的下行测量信号不同,或者
    所述网络侧设备和第二网络侧设备所使用的传输时间间隔TTI长度不同,或者
    所述网络侧设备和第二网络侧设备的频带测量范围不同,或者
    所述网络侧设备和第二网络侧设备的频带测量宽度不同,或者
    所述网络侧设备和第二网络侧设备的网络类型不同,或者
    所述终端设备测量所述网络侧设备和第二网络侧设备的测量方式不同;
    其中,所述第二网络侧设备是与所述终端设备建立连接的网络侧设备中除所述网络侧设备之外的网络侧设备。
  48. 根据权利要求46或47所述的网络侧设备,其特征在于,当所述格式为媒体接入控制协议数据单元格式时,所述物理层信道状态信息包括所述网络侧设备的标识、所述网络侧设备的索引、所述终端设备用于测量物理层下行信道的TTI长度或所述终端设备用于测量物理层下行信道时采用的上行编码格式。
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