WO2019041964A1 - 一种进行盲检测的方法和设备 - Google Patents
一种进行盲检测的方法和设备 Download PDFInfo
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- WO2019041964A1 WO2019041964A1 PCT/CN2018/091023 CN2018091023W WO2019041964A1 WO 2019041964 A1 WO2019041964 A1 WO 2019041964A1 CN 2018091023 W CN2018091023 W CN 2018091023W WO 2019041964 A1 WO2019041964 A1 WO 2019041964A1
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- control resource
- aggregation level
- resource set
- terminal
- network side
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0212—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower
- H04W52/0216—Power saving arrangements in terminal devices managed by the network, e.g. network or access point is leader and terminal is follower using a pre-established activity schedule, e.g. traffic indication frame
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L5/00—Arrangements affording multiple use of the transmission path
- H04L5/0001—Arrangements for dividing the transmission path
- H04L5/0003—Two-dimensional division
- H04L5/0005—Time-frequency
- H04L5/0007—Time-frequency the frequencies being orthogonal, e.g. OFDM(A) or DMT
- H04L5/001—Time-frequency the frequencies being orthogonal, e.g. OFDM(A) or DMT the frequencies being arranged in component carriers
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. Transmission Power Control [TPC] or power classes
- H04W52/02—Power saving arrangements
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/0001—Systems modifying transmission characteristics according to link quality, e.g. power backoff
- H04L1/0036—Systems modifying transmission characteristics according to link quality, e.g. power backoff arrangements specific to the receiver
- H04L1/0038—Blind format detection
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02D—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
- Y02D30/00—Reducing energy consumption in communication networks
- Y02D30/70—Reducing energy consumption in communication networks in wireless communication networks
Definitions
- the present disclosure relates to the field of wireless communication technologies, and in particular, to a method and apparatus for performing blind detection.
- LTE Long Term Evolution
- downlink control information of multiple terminals is simultaneously transmitted on downlink control channel resources.
- the basic unit of the downlink control channel physical resource is a Control Channel Element (CCE), and the number of elements occupied by each terminal for transmitting downlink control information of the terminal is called an aggregation level.
- CCE Control Channel Element
- the base station selects an aggregation level according to the current channel quality of the terminal to send downlink control information. Since there is no additional signaling indicating the aggregation level selected by the base station, the terminal needs to perform blind detection, that is, separately detect the four aggregation levels. This greatly increases the time and battery power consumption of the terminal search detection.
- the terminal needs to blindly detect all aggregation levels, causing a large amount of search detection time and battery power consumption to the terminal.
- the present disclosure provides a method and device for performing blind detection to solve the related art.
- the terminal needs to blindly detect all aggregation levels, and causes a large amount of search detection time and battery power to the terminal. The problem of consumption.
- Embodiments of the present disclosure provide a method for reducing blind detection, the method comprising:
- the network side device configures, by the terminal, at least one control resource set corresponding to the downlink control channel, so that the terminal performs blind detection on the control resource set by using the aggregation level set corresponding to the control resource set, where the control resource set corresponds to the aggregation level set.
- the terminal performs blind detection on the control resource set by using the aggregation level set corresponding to the control resource set, where the control resource set corresponds to the aggregation level set.
- the network side device sends data through the control resource set according to the aggregation level set corresponding to the control resource set.
- An embodiment of the present disclosure provides another method for performing blind detection, the method comprising:
- the terminal performs blind detection on the control resource set by using an aggregation level set corresponding to the control resource set.
- An embodiment of the present disclosure provides a device for blind detection, where the device includes:
- At least one processing unit and at least one storage unit, wherein the storage unit stores program code, and when the program code is executed by the processing unit, causes the processing unit to perform the following process:
- An embodiment of the present disclosure provides another device for performing blind detection, where the device includes:
- At least one processing unit and at least one storage unit, wherein the storage unit stores program code, and when the program code is executed by the processing unit, causes the processing unit to perform the following process:
- the control resource set is blindly checked by using the aggregation level set corresponding to the control resource set.
- An embodiment of the present disclosure provides another device for performing blind detection, where the device includes:
- a configuration module configured to configure, by the terminal, at least one control resource set corresponding to the downlink control channel, so that the terminal performs blind detection on the control resource set by using an aggregation level set corresponding to the control resource set, where the control resource set corresponds to the aggregation A partial aggregation level is included in the level set;
- a sending module configured to send data by using the control resource set according to the aggregation level set corresponding to the control resource set.
- An embodiment of the present disclosure provides another device for performing blind detection, where the device includes:
- a determining module configured to determine at least one control resource set corresponding to a downlink control channel configured by the network side device, where the aggregation level set corresponding to the control resource set includes a partial aggregation level;
- the blind detection module is configured to perform blind detection on the control resource set by using an aggregation level set corresponding to the control resource set.
- Embodiments of the present disclosure provide a computing device readable storage medium including program code for causing the computing device to perform network side device assistance of an embodiment of the present disclosure when the program code is run on a computing device The steps of the method for the terminal to perform blind detection.
- Embodiments of the present disclosure provide a readable storage medium for blind detection of a network side device, including program code for causing the computing device to perform the present disclosure when the program code is run on a computing device The steps of the method for performing blind detection in an embodiment terminal.
- the embodiment of the present disclosure divides the downlink control channel resource into one or more control resource sets, where each control resource set corresponds to a specific aggregation level set, where the aggregation level set corresponding to the control resource set includes a partial aggregation level.
- the terminal only needs to detect the aggregation level included in the corresponding aggregation level set under the control resource set during the blind detection process, and does not need to detect all aggregation levels under the control channel, thereby reducing the terminal aggregation level. Search for the time of detection and the consumption of battery power.
- FIG. 1 is a schematic structural diagram of a system according to an embodiment of the present disclosure
- FIG. 2 is a schematic diagram of a first set of control resource sets according to an embodiment of the present disclosure
- FIG. 3 is a schematic diagram of a second partition control resource set according to an embodiment of the present disclosure.
- FIG. 4 is a schematic structural diagram of a first network side device according to an embodiment of the present disclosure.
- FIG. 5 is a schematic structural diagram of a first terminal according to an embodiment of the present disclosure.
- FIG. 6 is a schematic structural diagram of a second network side device according to an embodiment of the present disclosure.
- FIG. 7 is a schematic structural diagram of a second terminal according to an embodiment of the present disclosure.
- FIG. 8 is a schematic flowchart of a method for performing blind detection according to an embodiment of the present disclosure
- FIG. 9 is a schematic flow chart of another method for performing blind detection according to an embodiment of the present disclosure.
- FIG. 10 is a schematic diagram of a first blind detection process according to an embodiment of the present disclosure.
- FIG. 11 is a schematic diagram of a second blind detection process according to an embodiment of the present disclosure.
- FIG. 12 is a schematic diagram of a third blind detection process according to an embodiment of the present disclosure.
- FIG. 13 is a schematic diagram of a fourth blind detection process according to an embodiment of the present disclosure.
- FIG. 14 is a schematic diagram of a fifth blind detection process according to an embodiment of the present disclosure.
- a system for performing blind detection includes:
- the network side device 10 is configured to configure, by the terminal, at least one control resource set corresponding to the downlink control channel, so that the terminal performs blind detection on the control resource set by using an aggregation level set corresponding to the control resource set, where the control resource set corresponds to
- the aggregation level set includes a partial aggregation level, and the data is sent by the control resource set according to the aggregation level set corresponding to the control resource set.
- the terminal 20 is configured to determine at least one control resource set corresponding to the downlink control channel configured by the network side device, where the aggregation level set corresponding to the control resource set includes a partial aggregation level, and the aggregation level set pair control corresponding to the control resource set is used.
- the collection of resources is blinded.
- the information is transmitted between the network side device and the terminal through some or all of the following information, but not limited to:
- MIB Master Information Block
- SIB System Information Block
- RRC Radio Resource Control
- PDCCH Physical Downlink Control Channel
- the embodiment of the present disclosure divides the downlink control channel resource into one or more control resource sets, where each control resource set corresponds to a specific aggregation level set, where the aggregation level set corresponding to the control resource set includes a partial aggregation level.
- the terminal only needs to detect the aggregation level included in the corresponding aggregation level set under the control resource set during the blind detection process, and does not need to detect all aggregation levels under the control channel, thereby reducing the terminal aggregation level. Search for the time of detection and the consumption of battery power.
- the control resource set 1 corresponds to the aggregation level set 1.
- the physical time-frequency resources of the downlink control channel included in different control resource sets are different.
- the system bandwidth (or subband bandwidth) is 50 PRBs (Physical Resource Blocks), and one TTI (Transimit Time Interval) contains 14 OFDM (Orthogonal Frequency Division Multiplexing).
- Each of the control resource sets occupies one or several different OFDM symbols of the 14 OFDM symbols, or the occupied OFDM symbols are the same but the bandwidths do not overlap.
- the control resource set 1 occupies the first OFDM symbol of the 14 OFDM symbols, and the control resource set 0 occupies the first OFDM symbol and the second OFDM symbol of the 14 OFDM symbols;
- the system bandwidth occupied by the control resource set 1 and the control resource set 0 does not overlap.
- the control resource set 1 occupies the above 15 PRBs, and the control resource set 0 occupies the middle 6 PRBs.
- the control resource set 0 and the control resource set 1 occupy the first OFDM symbol of the 14 OFDM symbols and the second OFDM symbol of the 14 OFDM symbols, respectively.
- the terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device, where the aggregation level set corresponding to the control resource set includes a partial aggregation level; and the control resource set is performed by using the aggregation level set corresponding to the control resource set.
- the search space of different terminals does not overlap, and there is no problem that the terminal with a large aggregation level occupies the search space of other terminals at a certain aggregation level, thereby reducing the control channel blocking probability.
- the embodiment of the present disclosure can perform control resource set configuration in the following manner, which are respectively introduced below.
- Manner 1 The network side device configures the control resource set through the MIB information.
- the network side device configures, by using the MIB information, at least one control resource set corresponding to the downlink control channel, and the at least one control resource set adopts a default aggregation level set.
- the default aggregation level set contains a higher aggregation level.
- the aggregation level set can be expressed as set 0, set 1;
- the at least one control resource set corresponding to the downlink control channel includes a control resource set such as CORESET#0, CORESET#1, CORESET#2.
- the network side device sends data through the control resource set according to the aggregation level set corresponding to the control resource set.
- the terminal uses the default aggregation level set to perform blind detection on the control resource set.
- the network side device may add resource set configuration information to the MIB information.
- the resource set configuration information may include a set identifier of a control resource set configured to the terminal, and a time-frequency resource.
- control resource set configuration information included in the MIB information includes, but is not limited to, a set identifier of the control resource set, and a time-frequency resource that controls the resource set.
- the data sent in the control resource set includes but is not limited to some or all of the following information:
- SIB Random Access Response
- Paging Paging
- Manner 2 The network side device controls the resource set by using an identifier of the aggregation level set and an aggregation level configured in each aggregation level set.
- the network side device notifies the identifier of the aggregation level set of the terminal and the aggregation level included in each aggregation level set; the network side device configures at least one control resource set corresponding to the downlink control channel for the terminal;
- the identifier of the aggregation level set may be set 0, set 1, set 2, and the like;
- the at least one control resource set corresponding to the downlink control channel includes a control resource set such as CORESET#0, CORESET#1, CORESET#2.
- the network side device configures the at least one control resource set for the terminal, and the identifier of the aggregation level set corresponding to each control resource set in the at least one control resource set.
- CORESET#0 corresponds to set 0
- CORESET#1 corresponds to set 1.
- the terminal establishes a binding relationship between the identifier of the aggregation level set and the aggregation level according to the identifier of all the aggregation level sets notified by the network side device and the aggregation level included in each aggregation level set; the terminal determines the network.
- the binding relationship between the identifier of the aggregation level set and the aggregation level can be expressed as:
- the terminal determines, according to the binding relationship, the aggregation level set including the aggregation level in the aggregation level set corresponding to the control resource set notified by the network side device, and performs blind detection on the control resource set.
- the network side device may notify the terminal of the identifier of all aggregation level sets and the aggregation level included in each aggregation level set by using the SIB information, and establish a binding relationship between the identifier of the aggregation level set and the aggregation level.
- the network side device informs, by using RRC signaling, the at least one control resource set corresponding to the final configuration downlink control channel and the identifier of the corresponding aggregation level set;
- the terminal finally corresponds to the aggregation level set and the aggregation level included in each aggregation level set according to the identifier of the aggregation level set.
- the network side device configures the control resource set by using the identifier of the aggregation level set and the aggregation level included in each aggregation level set; wherein the identity of the aggregation level set and the binding level of the aggregation level are updated.
- the network side device notifies the identifier of the aggregation level set of the terminal and the aggregation level included in each aggregation level set; the network side device configures at least one control resource set corresponding to the downlink control channel for the terminal;
- the network side device configures the at least one control resource set for the terminal, and the identifier of the aggregation level set corresponding to each control resource set in the at least one control resource set.
- the network side device If the aggregation level set has a target aggregation level set, the network side device notifies the terminal of the update information corresponding to the target aggregation level set;
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the terminal establishes a binding relationship between the identifier of the aggregation level set and the aggregation level according to the identifier of all the aggregation level sets notified by the network side device and the aggregation level included in each aggregation level set; the terminal determines the network.
- the at least one control resource set corresponding to the downlink control channel configured by the side device the terminal updates the binding relationship according to the received update information corresponding to the target aggregation level set sent by the network side device;
- the binding relationship is determined, and the aggregation level included in the aggregation level set corresponding to the control resource set notified by the network side device is determined.
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the terminal updates the binding relationship according to the update information.
- the terminal performs blind detection on the control resource set by using the aggregation level set corresponding to the control resource set according to the binding relationship.
- the network side device may notify the terminal of the identifier of all aggregation level sets and the aggregation level included in each aggregation level set by using the SIB information, and establish a binding relationship between the identifier of the aggregation level set and the aggregation level.
- Manner 4 The network side device configuration control resource set, where the control resource set corresponds to an aggregation level included in the aggregation level set.
- the network side device configures, by the terminal, at least one control resource set corresponding to the downlink control channel;
- the at least one control resource set corresponding to the downlink control channel includes a control resource set such as CORESET#0, CORESET#1, CORESET#2.
- the network side device configures the at least one control resource set for the terminal, and the aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set.
- the terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device; the terminal determines that the aggregation level set corresponding to each control resource set in the at least one control resource set configured by the network side device is included Aggregation level.
- the terminal adopts an aggregation level set including an aggregation level in the aggregation level set corresponding to the control resource set, and performs blind detection on the control resource set.
- the network side device notifies, by using RRC signaling, an aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set configured by the terminal.
- the network side device configuration control resource set where the control resource set corresponds to an aggregation level included in the aggregation level set, where the aggregation level included in the aggregation level set is updated.
- the network side device configures, by the terminal, at least one control resource set corresponding to the downlink control channel;
- the at least one control resource set corresponding to the downlink control channel includes a control resource set such as CORESET#0, CORESET#1, CORESET#2.
- the network side device configures the at least one control resource set for the terminal, and the aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set.
- the network side device notifies the terminal of the update information corresponding to the target aggregation level set
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device; and the terminal, according to the received update information corresponding to the target aggregation level set sent by the network side device, to the network side device
- the configured aggregation level set corresponding to at least one control resource set is updated.
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the terminal updates according to the update information
- the network side device notifies, by using RRC signaling, an aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set configured by the terminal.
- the network side device configures a control resource set, an aggregation level set, and a correspondence between the control resource set and the aggregation level set by using RRC signaling.
- the network side device notifies the identifier of the aggregation level set of the terminal and the aggregation level included in each aggregation level set by using the RRC signaling; the network side device configures, by using RRC signaling, the at least one control resource set corresponding to the downlink control channel.
- the network side device configures, by the RRC signaling, an identifier of the aggregation level set corresponding to each control resource set in the at least one control resource set.
- the terminal determines, according to the received identifier of all the aggregation level sets notified by the network side device, and the aggregation level included in each aggregation level set; the terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device. The terminal determines an aggregation level set corresponding to the control resource set configured by the network side device.
- the terminal determines, according to the correspondence, that the aggregation level set corresponding to the control resource set notified by the network side device includes an aggregation level, and performs blind detection on the control resource set.
- the RRC signaling includes but is not limited to some or all of the following information:
- SIB UE-specific RRC signaling.
- the first network side device of the embodiment of the present disclosure includes:
- At least one processing unit 400 and at least one storage unit 401, wherein the storage unit stores program code, and when the program code is executed by the processing unit, causes the processing unit 400 to perform the following process:
- the physical time-frequency resources of the downlink control channel included in different control resource sets are different.
- processing unit 400 is specifically configured to:
- processing unit 400 is further configured to:
- the network side device If the aggregation level set has a target aggregation level set, the network side device notifies the terminal of the update information corresponding to the target aggregation level set;
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- processing unit 400 is further configured to:
- processing unit 400 is further configured to:
- the network side device notifies the terminal of the update information corresponding to the target aggregation level set
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the first terminal of the embodiment of the present disclosure includes:
- At least one processing unit 500 and at least one storage unit 501, wherein the storage unit stores program code, and when the program code is executed by the processing unit, causes the processing unit 500 to perform the following process:
- the control resource set is blindly checked by using the aggregation level set corresponding to the control resource set.
- processing unit 500 is specifically configured to:
- the network side device After determining that the network side device configures the control resource set by using the MIB information, determining that the default aggregation level set is the aggregation level set corresponding to the configured control resource set.
- processing unit 500 is specifically configured to:
- processing unit 500 is further configured to:
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- processing unit 500 is specifically configured to:
- processing unit 500 is further configured to:
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the second network side device of the example of the present disclosure includes:
- the configuration module 600 is configured to configure, by the terminal, at least one control resource set corresponding to the downlink control channel, so that the terminal performs blind detection on the control resource set by using an aggregation level set corresponding to the control resource set, where the control resource set corresponds to A partial aggregation level is included in the aggregation level set;
- the sending module 601 is configured to send data by using the control resource set according to the aggregation level set corresponding to the control resource set.
- the configuration module 600 is further configured to:
- the identifiers of all aggregation level sets of the terminal and the aggregation level included in each aggregation level set are known;
- the configuration module 600 is further configured to:
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the configuration module 600 is further configured to:
- the configuration module 600 is further configured to:
- the network side device After the at least one control resource set corresponding to the downlink control channel is configured for the terminal, if the target aggregation level set is included in the aggregation level set corresponding to the at least one control resource set configured by the terminal, the network side device notifies the terminal of the target Update information corresponding to the aggregation level set;
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the second terminal of the example of the present disclosure includes:
- the determining module 700 is configured to determine at least one control resource set corresponding to the downlink control channel configured by the network side device, where the aggregation level set corresponding to the control resource set includes a partial aggregation level;
- the blind detection module 701 is configured to perform blind detection on the control resource set by using an aggregation level set corresponding to the control resource set.
- the determining module 700 is further configured to:
- the default aggregation level set is the aggregation level set corresponding to the configured control resource set.
- the determining module 700 is further configured to:
- the network side device notification is determined according to the binding relationship.
- the determining module 700 is further configured to:
- the binding relationship between the identifier of the aggregation level set and the aggregation level is established, the binding relationship is updated according to the updated information corresponding to the target aggregation level set sent by the network side device.
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the determining module 700 is further configured to:
- the network side device After determining the at least one control resource set corresponding to the downlink control channel configured by the network side device, determining, by using the aggregation level set corresponding to the control resource set, to perform blind detection on the control resource set, determining, in the at least one control resource set configured by the network side device The aggregation level included in the aggregation level set corresponding to each control resource set.
- the determining module 700 is further configured to:
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- various aspects of processing a terminal path may also be implemented in the form of a program product, including program code, when the program code is run on a computer device, The program code is for causing the computer device to perform the steps in the method of processing a terminal path in accordance with various exemplary embodiments of the present disclosure described in this specification.
- the program product can employ any combination of one or more readable media.
- the readable medium can be a readable signal medium or a readable storage medium.
- the readable storage medium can be, for example, but not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the above. More specific examples (non-exhaustive lists) of readable storage media include: electrical connections with one or more wires, portable disks, hard disks, random access memory (RAM), read only memory (ROM), erasable Programmable Read Only Memory (EPROM) or flash memory, optical fiber, portable compact disk read only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination of the foregoing.
- a program product for data forwarding control may employ a portable compact disk read only memory (CD-ROM) and include program code, and may run on a server device.
- CD-ROM portable compact disk read only memory
- the program product of the present disclosure is not limited thereto, and in the present document, the readable storage medium may be any tangible medium containing or storing a program that can be used by or in combination with an information transmission, apparatus or device.
- the readable signal medium can include a data signal that is propagated in the baseband or as part of a carrier, carrying readable program code. Such propagated data signals can take a variety of forms including, but not limited to, electromagnetic signals, optical signals, or any suitable combination of the foregoing.
- the readable signal medium can also be any readable medium other than a readable storage medium that can transmit, propagate, or transport a program for use by or in connection with a periodic network motion system, apparatus, or device.
- Program code embodied on a readable medium can be transmitted by any suitable medium, including but not limited to wireless, wireline, optical cable, RF, etc., or any suitable combination of the foregoing.
- Program code for performing the operations of the present disclosure may be written in any combination of one or more programming languages, including an object oriented programming language, such as Java, C++, etc., including conventional procedural Programming language—such as the "C" language or a similar programming language.
- the program code can execute entirely on the user computing device, partially on the user device, as a stand-alone software package, partially on the remote computing device on the user computing device, or entirely on the remote computing device or server. Execute on.
- the remote computing device can be connected to the user computing device through any kind of network, including a local area network (LAN) or wide area network (WAN), or can be connected to an external computing device.
- LAN local area network
- WAN wide area network
- the method for performing blind detection on the network side device pair in the embodiment of the present disclosure further provides a computing device readable storage medium, that is, the content is not lost after power off.
- the network side device assists the terminal in blind detection.
- the method for performing blind detection on a terminal pair further provides a computing device readable storage medium, that is, the content is not lost after power off.
- Storing a software program, including program code, in the storage medium, when the program code is run on a computing device, the software program can implement any of the above embodiments of the present disclosure when read and executed by one or more processors Terminal pair blind detection scheme.
- a method for performing blind detection is also provided in the embodiment of the present disclosure.
- the device corresponding to the method is a method corresponding to the device for performing blind detection in the embodiment of the present disclosure, and the method solves the problem and the method
- the devices are similar, so the implementation of the method can be referred to the implementation of the device, and the details are not repeated here.
- a method for performing blind detection includes the following steps:
- Step 800 The network side device configures, by the terminal, at least one control resource set corresponding to the downlink control channel, so that the terminal performs blind detection on the control resource set by using an aggregation level set corresponding to the control resource set, where the control resource set corresponds to A partial aggregation level is included in the aggregation level set;
- Step 801 The network side device sends data by using the control resource set according to the aggregation level set corresponding to the control resource set.
- the physical time-frequency resources of the downlink control channel included in different control resource sets are different.
- the method further includes:
- the network side device notifies the terminal of the identifier of all aggregation level sets and the aggregation level included in each aggregation level set;
- the network side device configures, by the terminal, at least one control resource set corresponding to the downlink control channel, and further includes:
- the network side device after the network side device notifies the identifier of the aggregation level set of the terminal and the aggregation level included in each aggregation level set, the network side device further includes:
- the network side device If the aggregation level set has a target aggregation level set, the network side device notifies the terminal of the update information corresponding to the target aggregation level set;
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the network side device is configured to configure, by the terminal, at least one control resource set corresponding to the downlink control channel, and further includes:
- the network side device configures the at least one control resource set for the terminal, and the aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set.
- the method further includes:
- the network side device notifies the terminal of the update information corresponding to the target aggregation level set
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- a method for performing blind detection is also provided in the embodiment of the present disclosure.
- the device corresponding to the method is a method corresponding to the device for performing blind detection in the embodiment of the present disclosure, and the method solves the problem and the method
- the devices are similar, so the implementation of the method can be referred to the implementation of the device, and the details are not repeated here.
- another method for performing blind detection specifically includes the following steps:
- Step 900 The terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device, where the aggregation level set corresponding to the control resource set includes a partial aggregation level.
- Step 901 The terminal performs blind detection on the control resource set by using an aggregation level set corresponding to the control resource set.
- the terminal further includes:
- the terminal After determining that the network side device configures the control resource set by using the primary information block MIB information, the terminal determines that the default aggregation level set is the aggregation level set corresponding to the configured control resource set.
- the method before the determining, by the terminal, the at least one control resource set corresponding to the downlink control channel configured by the network side device, the method further includes:
- the terminal establishes a binding relationship between the identifier of the aggregation level set and the aggregation level according to the identifiers of all the aggregation level sets notified by the network side device and the aggregation level included in each aggregation level set.
- the terminal After the terminal determines the at least one control resource set corresponding to the downlink control channel configured by the network side device, and before performing the blind detection on the control resource set by using the aggregation level set corresponding to the control resource set, the terminal further includes:
- the terminal further includes:
- the terminal updates the binding relationship according to the updated information corresponding to the received aggregation level set sent by the network side device.
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the terminal further includes:
- the method further includes:
- the target aggregation level set is a set of aggregation levels including changes in aggregation levels.
- the network side device configures a control resource set by using MIB information. Specifically, the following steps are included:
- Step 1000 In the initial access process, the network side device notifies the terminal to adopt a default aggregation level set;
- Step 1001 The network side device configures at least one control resource set corresponding to the downlink control channel for the terminal by using the MIB information.
- Step 1002 The terminal determines a control resource set configured by the network side device by using the MIB information.
- Step 1003 The terminal determines, by using a control resource set that includes common control information, that the default aggregation level set is an aggregation level set corresponding to the configured control resource set.
- Step 1004 The terminal adopts the default aggregation level set to be an aggregation level set corresponding to the configured control resource set, and performs blind detection on the control resource set.
- the second blind detection method in the embodiment of the present disclosure the identifier of the aggregation level set in the method is preset, and the binding relationship between the aggregation level identifier and the aggregation level is fixed. Specifically, the following steps are included:
- Step 1100 The network side device determines an identifier of all aggregation level sets and an aggregation level included in each aggregation level set.
- Step 1101 The network side device notifies the identifier of the aggregation level set of the terminal and the aggregation level included in each aggregation level set by using the SIB information.
- Step 1102 The terminal establishes a binding relationship between the identifier of the aggregation level set and the aggregation level according to the identifiers of all the aggregation level sets notified by the network side device and the aggregation level included in each aggregation level set.
- Step 1103 The network side device divides the downlink control channel into at least one control resource set, and configures a corresponding aggregation level set for each control resource set.
- Step 1104 The network side device schedules downlink control information of the terminal in the at least one control resource set.
- Step 1105 The network side device configures, by using RRC signaling, at least one control resource set corresponding to the downlink control channel for the terminal.
- Step 1106 The terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device, and determines, according to the binding relationship, the aggregation level set corresponding to the control resource set that is notified by the network side device. Aggregation level
- Step 1107 The terminal performs blind detection by using an aggregation level included in the aggregation level set corresponding to the control resource set in the configured at least one control resource set.
- the third method for blind detection in the embodiment of the present disclosure in which the identifier of the aggregation level set is preset, and the binding relationship between the aggregation level identifier and the aggregation level is updated. Specifically, the following steps are included:
- Step 1200 The network side device determines an identifier of all aggregation level sets and an aggregation level included in each aggregation level set.
- Step 1201 The network side device notifies the identifier of the aggregation level set of the terminal and the aggregation level included in each aggregation level set by using the SIB information.
- Step 1202 The terminal establishes a binding relationship between the identifier of the aggregation level set and the aggregation level according to the identifiers of all the aggregation level sets notified by the network side device and the aggregation level included in each aggregation level set.
- Step 1203 The network side device divides the downlink control channel into at least one control resource set, and configures a corresponding aggregation level set for each control resource set.
- Step 1204 The network side device configures, by using RRC signaling, at least one control resource set corresponding to the downlink control channel for the terminal.
- Step 1205 If the network side device determines that the aggregation level set changes, the network side device informs the terminal of the changed aggregation level set by using a group common PDCCH.
- Step 1206 The terminal updates the binding relationship according to the received update information sent by the network side device.
- Step 1207 The terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device, and determines, according to the binding relationship, the aggregation level set corresponding to the control resource set that is notified by the network side device. Aggregation level
- Step 1208 The terminal performs blind detection by using the aggregation level included in the aggregation level set corresponding to the control resource set in the configured at least one control resource set.
- a fourth method for blind detection in the embodiment of the present disclosure in the method, the aggregation level set network side device configuration control resource set is preset. Specifically, the following steps are included:
- Step 1300 The network side device divides the downlink control channel into at least one control resource set, and configures a corresponding aggregation level set for each control resource set.
- Step 1301 The network side device schedules downlink control information of the terminal in at least one control resource set.
- Step 1302 The network side device configures, by using RRC signaling, the at least one control resource set corresponding to the downlink control channel, and the aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set. ;
- Step 1303 The terminal determines at least one control resource set corresponding to the downlink control channel configured by the network side device, and determines that the aggregation level set corresponding to each control resource set in the at least one control resource set configured by the network side device is included. Aggregation level
- Step 1304 The terminal performs blind detection by using the aggregation level included in the aggregation level set corresponding to the control resource set in the configured at least one control resource set.
- a fifth method for blind detection in the embodiment of the present disclosure in which the aggregation level set network side device configuration control resource set is preset, and the aggregation level included in the aggregation level set is updated. Specifically, the following steps are included:
- Step 1400 The network side device divides the downlink control channel into at least one control resource set, and configures a corresponding aggregation level set for each control resource set.
- Step 1401 The network side device schedules downlink control information of the terminal in at least one control resource set.
- Step 1402 The network side device configures, by the RRC signaling, the at least one control resource set corresponding to the downlink control channel, and the aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set. ;
- Step 1403 If the network side device determines that the aggregation level set changes, the network side device informs the terminal of the changed aggregation level set by using the group common PDCCH.
- Step 1404 The terminal updates, according to the received update information sent by the network side device, an aggregation level included in the aggregation level set corresponding to each control resource set in the at least one control resource set configured by the network side device.
- Step 1405 The terminal performs blind detection by using the aggregation level included in the aggregation level set corresponding to the control resource set in the configured at least one control resource set.
- the application can also be implemented in hardware and/or software (including firmware, resident software, microcode, etc.). Still further, the application can take the form of a computer program product on a computer usable or computer readable storage medium having computer usable or computer readable program code embodied in a medium for use by an instruction execution system or Used in conjunction with the instruction execution system.
- a computer usable or computer readable medium can be any medium that can contain, store, communicate, communicate, or transport a program for use by an instruction execution system, apparatus or device, or in conjunction with an instruction execution system, Used by the device or device.
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Abstract
本公开公开了一种进行盲检测的方法和设备。所述进行盲检测的方法包括:网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;所述网络侧设备根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
Description
相关申请的交叉引用
本申请主张在2017年8月29日在中国提交的中国专利申请No.201710756840.4的优先权,其全部内容通过引用包含于此。
本公开涉及无线通信技术领域,特别涉及一种进行盲检测的方法和设备。
相关技术中的LTE(Long Term Evolution,长期演进)系统中,下行控制信道资源上同时传输着多个终端的下行控制信息。下行控制信道物理资源的基本单位是控制信道元素(Control Channel Element,CCE),每个终端占用的用于传输该终端下行控制信息的元素个数称为聚合等级。LTE系统中定义了1/2/4/8四种聚合等级,基站根据终端当前信道质量选择某一聚合等级发送下行控制信息。由于没有额外的信令指示基站选择的聚合等级,因此终端需要进行盲检测,即对四种聚合等级分别进行检测。这大大增加了终端搜索检测的时间和电池电量消耗。
综上所述,相关技术在进行盲检测过程中,终端需要对所有的聚合等级进行盲检测,给终端造成了大量的搜索检测的时间和电池电量的消耗。
发明内容
本公开提供一种进行盲检测的方法和设备,用以解决相关技术在进行盲检测过程中,终端需要对所有的聚合等级进行盲检测,给终端造成了大量的搜索检测的时间和电池电量的消耗的问题。
本公开实施例提供一种降低盲检测的方法,该方法包括:
网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
所述网络侧设备根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
本公开实施例提供另一种进行盲检测的方法,该方法包括:
终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
本公开实施例提供一种盲检测的设备,该设备包括:
至少一个处理单元、以及至少一个存储单元,其中,所述存储单元存储有程序代码,当所述程序代码被所述处理单元执行时,使得所述处理单元执行下列过程:
为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
本公开实施例提供另一种进行盲检测的设备,该设备包括:
至少一个处理单元、以及至少一个存储单元,其中,所述存储单元存储有程序代码,当所述程序代码被所述处理单元执行时,使得所述处理单元执行下列过程:
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
本公开实施例提供另一种进行盲检测的设备,该设备包括:
配置模块,用于为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
发送模块,用于根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
本公开实施例提供另一种进行盲检测的设备,该设备包括:
确定模块,用于确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
盲检模块,用于采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
本公开实施例提供一种计算设备可读存储介质,包括程序代码,当所述程序代码在计算设备上运行时,所述程序代码用于使所述计算设备执行本公开实施例网络侧设备协助终端进行盲检测的方法的步骤。
本公开实施例提供一种对网络侧设备进行盲检测的可读存储介质,包括程序代码,当所述程序代码在计算设备上运行时,所述程序代码用于使所述计算设备执行本公开实施例终端进行盲检测的方法的步骤。
本公开实施例将下行控制信道资源划分成一个或多个控制资源集合,每个控制资源集合对应特定的聚合等级集合,其中控制资源集合对应的聚合等级集合中包括部分聚合等级。由于在进行盲检测过程中,终端仅需对控制资源集合下对应的聚合等级集合中包含的聚合等级进行检测,不需要再对控制信道下所有的聚合等级进行检测,因此减少了终端对聚合等级搜索检测的时间和电池电量的消耗。
为了更清楚地说明本公开实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简要介绍,显而易见地,下面描述中的附图仅仅是本公开的一些实施例,对于本领域的普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本公开实施例系统结构示意图;
图2为本公开实施例第一种划分控制资源集合的示意图;
图3为本公开实施例第二种划分控制资源集合的示意图;
图4为本公开实施例第一种网络侧设备的结构示意图;
图5为本本公开实施例第一种终端的结构示意图;
图6为本公开实施例第二种网络侧设备的结构示意图;
图7为本公开实施例第二种终端的结构示意图;
图8为本公开实施例一种进行盲检测的方法流程示意图;
图9为本公开实施例另一种进行盲检测的方法流程示意图;
图10为本公开实施例第一种盲检测流程示意图;
图11为本公开实施例第二种盲检测流程示意图;
图12为本公开实施例第三种盲检测流程示意图;
图13为本公开实施例第四种盲检测流程示意图;
图14为本公开实施例第五种盲检测流程示意图。
为了使本公开的目的、技术方案和优点更加清楚,下面将结合附图对本公开作进一步地详细描述,显然,所描述的实施例仅是本公开一部份实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本公开保护的范围。
如图1所述,本公开实施例进行盲检测的系统包括:
网络侧设备10,用于为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
终端20,用于确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
其中网络侧设备与终端之间通过下列信息中包含的但不限于的部分或全部进行信息传递:
MIB(Master Information Block,主信息块)、SIB(System Information Block,系统信息块)、RRC(Radio Resource Control,无线资源控制协议)、PDCCH(Physical Downlink Control Channel,物理下行控制信道)等。
本公开实施例将下行控制信道资源划分成一个或多个控制资源集合,每 个控制资源集合对应特定的聚合等级集合,其中控制资源集合对应的聚合等级集合中包括部分聚合等级。由于在进行盲检测过程中,终端仅需对控制资源集合下对应的聚合等级集合中包含的聚合等级进行检测,不需要再对控制信道下所有的聚合等级进行检测,因此减少了终端对聚合等级搜索检测的时间和电池电量的消耗。
比如,系统中共有1/2/4/8四种聚合等级,控制资源集合1对应聚合等级集合1,聚合等级集合1中包含的聚合等级可以为AL=1/2或AL=4/8或AL=1/2/4等,其中聚合等级集合中包含的可以是四种聚合等级中的部分等级或全部等级。
其中,不同的控制资源集合包括的所述下行控制信道的物理时频资源不同。
比如,系统带宽(或子带带宽)为50个PRB(Physical Resource Block,物理资源块),一个TTI(Transimit Time Interval,传输时间间隔)中包含有14个OFDM(Orthogonal Frequency Division Multiplexing,正交频分复用)符号,则每个控制资源集合占用14个OFDM符号中一个或几个不同的OFDM符号,或占用的OFDM符号相同但是带宽不重叠。
具体地,如图2所示,控制资源集合1占用14个OFDM符号中的第一个OFDM符号,控制资源集合0占用14个OFDM符号中的第一个OFDM符号和第二个OFDM符号;但是控制资源集合1和控制资源集合0所占用的系统带宽不重叠,控制资源集合1占用上面15个PRB,控制资源集合0占用中间6个PRB。或者,如图3所示,控制资源集合0和控制资源集合1分别占用14个OFDM符号中的第一个OFDM符号和14个OFDM符号中的第二个OFDM符号。
因此终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检时,不同终端的搜索空间不会出现重叠,就不会出现聚合等级较大的终端占用了其他终端在某个聚合等级下的搜索空间的问题,因而降低了控制信道阻塞概率。
本公开实施例可以通过以下方式进行控制资源集合配置,下面分别进行 介绍。
方式一、网络侧设备通过MIB信息配置控制资源集合。
具体地,在初始接入过程中,网络侧设备通过MIB信息为终端配置下行控制信道对应的至少一个控制资源集合;所述至少一个控制资源集合采用默认的聚合等级集合。
其中,默认的聚合等级集合包含较高的聚合等级。
聚合等级越高,需要的物理资源越多,因此占用较多的时域符号和较大的频域带宽范围,同时可以提供一定的时间和频率分集增益。
聚合等级集合可以表示为集合0,集合1;
下行控制信道对应的至少一个控制资源集合中包括CORESET#0,CORESET#1,CORESET#2等控制资源集合。
其中,所述网络侧设备根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
相应地,终端在确定网络侧设备通过MIB信息配置控制资源集合后,采用所述默认的聚合等级集合对控制资源集合进行盲检测。在实施中,网络侧设备可以在MIB信息中加入资源集配置信息。
资源集配置信息可以包括配置给终端的控制资源集合的集合标识,以及时频资源。
在实施中,MIB信息中包含的控制资源集合配置信息包括但不限于:控制资源集合的集合标识、控制资源集合的时频资源。
所述控制资源集合中发送的数据包括但不限于下列信息中的部分或者全部:
SIB、RAR(Random Access Response,随机接入响应)、Paging(寻呼)消息。
方式二、网络侧设备通过聚合等级集合的标识和每个聚合等级集合中包括的聚合等级配置控制资源集合。
具体的,网络侧设备通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合;
其中聚合等级集合的标识表示可以为集合0,集合1,集合2等;
每个聚合等级集合中包括的聚合等级表示为AL=1/2,AL=2/4,AL=4/8等;
下行控制信道对应的至少一个控制资源集合中包括CORESET#0,CORESET#1,CORESET#2等控制资源集合。
其中,所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
比如CORESET#0对应集合0,CORESET#1对应集合1。
相应的,终端根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系;终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合;终端根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
其中,建立聚合等级集合的标识和聚合等级的绑定关系可以表示为:
集合0={AL=1/2},集合1={AL=2/4}。
之后,终端采用根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括聚合等级的聚合等级集合,并对控制资源集合进行盲检。
在实施中,网络侧设备可以通过SIB信息告知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系。
网络侧设备通过RRC信令告知终配置下行控制信道对应的至少一个控制资源集合以及相对应的聚合等级集合的标识;
终端最终根据聚合等级集合的标识就可以对应出聚合等级集合和每个聚合等级集合中包括的聚合等级。
后续再调整的时候,只需要指明聚合等级集合的标识就可以了,可以减少bit数。
方式三、网络侧设备通过聚合等级集合的标识和每个聚合等级集合中包 括的聚合等级配置控制资源集合;其中,聚合等级集合的标识和聚合等级的绑定关系有更新。
具体地,网络侧设备通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合;
其中,所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
若所述聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
比如,集合0中包括聚合等级{AL=1/2},所述集合0中的聚合等级发生变化,变化为{AL=1/2/4}或{AL=2/4}则称集合0为目标聚合等级集合。
相应地,终端根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系;终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合;终端根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述绑定关系进行更新;终端根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
相应地,终端根据更新信息对绑定关系进行更新。
比如,集合0中包括聚合等级{AL=1/2},所述绑定关系为集合0={AL=1/2},
若聚合等级集合0中包括的聚合等级变更为{AL=1/2/4},则网络侧设备会发送更新信息,其中包括集合0={AL=1/2/4};
相应地,终端将绑定关系中集合0={AL=1/2}替换为集合0={AL=1/2/4}。
之后,终端采用根据所述绑定关系,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
在实施中,网络侧设备可以通过SIB信息告知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系。
方式四、网络侧设备配置控制资源集合,其中控制资源集合对应聚合等级集合中包括的聚合等级。
具体地,网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合;
其中下行控制信道对应的至少一个控制资源集合中包括CORESET#0,CORESET#1,CORESET#2等控制资源集合。
其中,所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
比如聚合等级聚合0中包括的聚合等级为{AL=1/2},则控制资源聚合CORESET#0对应的所述聚合等级集合中包括的聚合等级为{AL=1/2},即CORESET#0={AL=1/2}。
相应地,终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合;终端确定网络侧设备配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
之后,终端采用控制资源集合对应的所述聚合等级集合中包括聚合等级的聚合等级集合,并对控制资源集合进行盲检测。
在实施中,网络侧设备通过RRC信令告知终端配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
方式五、网络侧设备配置控制资源集合,其中控制资源集合对应聚合等级集合中包括的聚合等级,其中聚合等级集合中包括的聚合等级有更新。
具体地,网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合;
其中下行控制信道对应的至少一个控制资源集合中包括CORESET#0, CORESET#1,CORESET#2等控制资源集合。
其中,所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
若为终端配置的所述至少一个控制资源集合对应的聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
比如,集合0中包括聚合等级{AL=1/2},所述集合0中的聚合等级发生变化,变化为{AL=1/2/4}或{AL=2/4}则称集合0为目标聚合等级集合。
相应地,终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合;终端根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述网络侧设备配置的至少一个控制资源集合对应的聚合等级集合进行更新。
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
相应地,终端根据更新信息进行更新;
比如,集合0中包括聚合等级{AL=1/2},所述控制资源聚合CORESET#0对应的所述聚合等级集合中包括的聚合等级为{AL=1/2},即CORESET#0={AL=1/2}。
若聚合等级集合0中包括的聚合等级变更为{AL=1/2/4},则网络侧设备会发送更新信息,其中包括集合0中聚合等级{AL=1/2/4};
相应地,终端将控制资源聚合CORESET#0对应的所述聚合等级集合中包括的聚合等级{AL=1/2},即CORESET#0={AL=1/2}替换为控制资源聚合CORESET#0={AL=1/2/4}。之后,终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
在实施中,网络侧设备通过RRC信令告知终端配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
方式六、网络侧设备通过RRC信令配置控制资源集合、聚合等级集合以及所述控制资源集合与聚合等级集合的对应关系。
具体地,网络侧设备通过RRC信令通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;网络侧设备通过RRC信令为终端配置下行控制信道对应的至少一个控制资源集合;网络侧设备通过RRC信令为终端配置所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
相应地,终端根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合;终端确定网络侧设备配置的所述控制资源集合对应的聚合等级集合。
之后,终端根据所述对应关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括聚合等级,并对控制资源集合进行盲检。
在实施中,所述RRC信令包括但不限于下列信息中的部分或者全部:
SIB、终端特定(UE-specific)RRC信令。
如图4所述,本公开实施例第一种网络侧设备包括:
至少一个处理单元400、以及至少一个存储单元401,其中,所述存储单元存储有程序代码,当所述程序代码被所述处理单元执行时,使得所述处理单元400执行下列过程:
为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
可选地,若所述下行控制信道对应多个控制资源集合,不同的控制资源集合包括的所述下行控制信道的物理时频资源不同。
可选地,所述处理单元400具体用于:
通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
可选地,所述处理单元400,还用于:
若所述聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
可选地,所述处理单元400,还用于:
为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
可选地,所述处理单元400,还用于:
若为终端配置的所述至少一个控制资源集合对应的聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
如图5所述,本公开实施例第一种终端包括:
至少一个处理单元500、以及至少一个存储单元501,其中,所述存储单元存储有程序代码,当所述程序代码被所述处理单元执行时,使得所述处理单元500执行下列过程:
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
可选地,所述处理单元500具体用于:
在确定网络侧设备通过MIB信息配置控制资源集合后,确定默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合。
可选地,所述处理单元500具体用于:
根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关 系;
根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
可选地,所述处理单元500,还用于:
根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述绑定关系进行更新;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
可选地,所述处理单元500具体用于:
确定网络侧设备配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
可选地,所述处理单元500,还用于:
根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述网络侧设备配置的至少一个控制资源集合对应的聚合等级集合进行更新;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
如图6所示,本公开实例第二种网络侧设备包括:
配置模块600,用于为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
发送模块601,用于根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
可选地,所述配置模块600还用于:
为终端配置下行控制信道对应的至少一个控制资源集合之前,知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
为终端配置下行控制信道对应的至少一个控制资源集合,为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
可选地,所述配置模块600还用于:
知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级之后,若所述聚合等级集合中有目标聚合等级集合,则通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
可选地,所述配置模块600还用于:
为终端配置下行控制信道对应的至少一个控制资源集合,为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
可选地,所述配置模块600还用于:
为终端配置下行控制信道对应的至少一个控制资源集合之后,若为终端配置的所述至少一个控制资源集合对应的聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
如图7所示,本公开实例第二种终端包括:
确定模块700,用于确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
盲检模块701,用于采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
可选地,所述确定模块700还用于:
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,确定网络侧设备通过MIB信息配置控制资源集合后,确定默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合。
可选地,所述确定模块700还用于:
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之前, 根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系;
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
可选地,所述确定模块700还用于:
建立聚合等级集合的标识和聚合等级的绑定关系之后,根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述绑定关系进行更新;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
可选地,所述确定模块700还用于:
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,确定网络侧设备配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
可选地,所述确定模块700还用于:
确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述网络侧设备配置的至少一个控制资源集合对应的聚合等级集合进行更新;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
在一些可能的实施方式中,本公开实施例提供的对终端通路进行处理的各个方面还可以实现为一种程序产品的形式,其包括程序代码,当所述程序代码在计算机设备上运行时,所述程序代码用于使所述计算机设备执行本说明书中描述的根据本公开各种示例性实施方式的对终端通路进行处理的方法中的步骤。
所述程序产品可以采用一个或多个可读介质的任意组合。可读介质可以是可读信号介质或者可读存储介质。可读存储介质例如可以是——但不限于——电、磁、光、电磁、红外线、或半导体的系统、装置或器件,或者任意以上的组合。可读存储介质的更具体的例子(非穷举的列表)包括:具有一个或多个导线的电连接、便携式盘、硬盘、随机存取存储器(RAM)、只读存储器(ROM)、可擦式可编程只读存储器(EPROM)或闪存、光纤、便携式紧凑盘只读存储器(CD-ROM)、光存储器件、磁存储器件、或者上述的任意合适的组合。
根据本公开的实施方式的用于数据转发控制的程序产品,其可以采用便携式紧凑盘只读存储器(CD-ROM)并包括程序代码,并可以在服务器设备上运行。然而,本公开的程序产品不限于此,在本文件中,可读存储介质可以是任何包含或存储程序的有形介质,该程序可以被信息传输、装置或者器件使用或者与其结合使用。
可读信号介质可以包括在基带中或者作为载波一部分传播的数据信号,其中承载了可读程序代码。这种传播的数据信号可以采用多种形式,包括——但不限于——电磁信号、光信号或上述的任意合适的组合。可读信号介质还可以是可读存储介质以外的任何可读介质,该可读介质可以发送、传播或者传输用于由周期网络动作系统、装置或者器件使用或者与其结合使用的程序。
可读介质上包含的程序代码可以用任何适当的介质传输,包括——但不限于——无线、有线、光缆、RF等等,或者上述的任意合适的组合。
可以以一种或多种程序设计语言的任意组合来编写用于执行本公开操作的程序代码,所述程序设计语言包括面向对象的程序设计语言—诸如Java、C++等,还包括常规的过程式程序设计语言—诸如“C”语言或类似的程序设计语言。程序代码可以完全地在用户计算设备上执行、部分地在用户设备上执行、作为一个独立的软件包执行、部分在用户计算设备上部分在远程计算设备上执行、或者完全在远程计算设备或服务器上执行。在涉及远程计算设备的情形中,远程计算设备可以通过任意种类的网络——包括局域网(LAN)或广域网(WAN)—连接到用户计算设备,或者,可以连接到外部计算设备。
本公开实施例针对网络侧设备对进行盲检测的方法还提供一种计算设备可读存储介质,即断电后内容不丢失。该存储介质中存储软件程序,包括程序代码,当所述程序代码在计算设备上运行时,该软件程序在被一个或多个处理器读取并执行时可实现本公开实施例上面任何一种网络侧设备协助终端进行盲检测的方案。
本公开实施例针对终端对进行盲检测的方法还提供一种计算设备可读存储介质,即断电后内容不丢失。该存储介质中存储软件程序,包括程序代码,当所述程序代码在计算设备上运行时,该软件程序在被一个或多个处理器读取并执行时可实现本公开实施例上面任何一种终端对进行盲检测的方案。
基于同一发明构思,本公开实施例中还提供了一种进行盲检测的方法,由于该方法对应的设备是本公开实施例进行盲检测的设备对应的方法,并且该方法解决问题的原理与该设备相似,因此该方法的实施可以参见设备的实施,重复之处不再赘述。
如图8所述,本公开实施例一种进行盲检测的方法,具体包括如下步骤:
步骤800、网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
步骤801、网络侧设备根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
可选地,若所述下行控制信道对应多个控制资源集合,不同的控制资源集合包括的所述下行控制信道的物理时频资源不同。
可选地,所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合之前,还包括:
所述网络侧设备通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,还包括:
所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少 一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
可选地,所述网络侧设备通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级之后,还包括:
若所述聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
可选地,所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,还包括:
所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
可选地,所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合之后,还包括:
若为终端配置的所述至少一个控制资源集合对应的聚合等级集合中有目标聚合等级集合,则所述网络侧设备通知终端所述目标聚合等级集合对应的更新信息;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
基于同一发明构思,本公开实施例中还提供了一种进行盲检测的方法,由于该方法对应的设备是本公开实施例进行盲检测的设备对应的方法,并且该方法解决问题的原理与该设备相似,因此该方法的实施可以参见设备的实施,重复之处不再赘述。
如图9所述,本公开实施例另一种进行盲检测的方法,具体包括如下步骤:
步骤900、终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;
步骤901、终端采用控制资源集合对应的聚合等级集合对控制资源集合 进行盲检。
可选地,所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,还包括:
所述终端在确定网络侧设备通过主信息块MIB信息配置控制资源集合后,确定默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合。
可选地,所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之前,还包括:
所述终端根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系;
所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,还包括:
所述终端根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
可选地,所述终端建立聚合等级集合的标识和聚合等级的绑定关系之后,还包括:
所述终端根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述绑定关系进行更新;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
可选地,所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,还包括:
所述终端确定网络侧设备配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
可选地,所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,还包括:
所述终端根据收到的所述网络侧设备发送的所述目标聚合等级集合对应的更新信息,对所述网络侧设备配置的至少一个控制资源集合对应的聚合等级集合进行更新;
其中,所述目标聚合等级集合为包括的聚合等级发生变化的聚合等级集合。
本公开实施例在盲检测时的几种完整方法,下面具体介绍。
如图10所述,本公开实施例第一种盲检测的方法:该方法中网络侧设备通过MIB信息配置控制资源集合。具体包括下列步骤:
步骤1000、在初始接入过程中,网络侧设备通知终端采用默认的聚合等级集合;
步骤1001、网络侧设备通过MIB信息为终端配置下行控制信道对应的至少一个控制资源集合;
步骤1002、终端确定网络侧设备通过MIB信息配置的控制资源集合;
步骤1003、终端通过包含公共控制信息的控制资源集合,确定默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合;
步骤1004、终端采用所述默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合,并对控制资源集合进行盲检测。
如图11所述,本公开实施例第二种盲检测的方法:该方法中聚合等级集合的标识是预先设置的,且聚合等级的标识和聚合等级的绑定关系是固定的。具体包括下列步骤:
步骤1100、网络侧设备确定所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
步骤1101、网络侧设备通过SIB信息,通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
步骤1102、终端根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系;
步骤1103、网络侧设备将下行控制信道分成至少一个控制资源集合,并为每个控制资源集合配置对应的聚合等级集合;
步骤1104、网络侧设备将终端的下行控制信息调度在至少一个控制资源集合内;
步骤1105、网络侧设备通过RRC信令为终端配置下行控制信道对应的至少一个控制资源集合;
步骤1106、终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,并根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级;
步骤1107、终端在配置的至少一个控制资源集合内,用所述控制资源集合对应的聚合等级集合中包括的聚合等级进行盲检。
如图12所述,本公开实施例第三种盲检测的方法,该方法中聚合等级集合的标识是预先设置的,且聚合等级的标识和聚合等级的绑定关系会更新。具体包括下列步骤:
步骤1200、网络侧设备确定所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
步骤1201、网络侧设备通过SIB信息,通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;
步骤1202、终端根据收到的所述网络侧设备通知的所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级,建立聚合等级集合的标识和聚合等级的绑定关系;
步骤1203、网络侧设备将下行控制信道分成至少一个控制资源集合,并为每个控制资源集合配置对应的聚合等级集合;
步骤1204、网络侧设备通过RRC信令为终端配置下行控制信道对应的至少一个控制资源集合;
步骤1205、若网络侧设备确定聚合等级集合发生变化,所述网络侧设备通过分组公共控制信息(group common PDCCH)告知终端发生变化的聚合等级集合;
步骤1206、终端根据收到的所述网络侧设备发送的更新信息,对所述绑定关系进行更新;
步骤1207、终端确定网络侧设备配置的下行控制信道对应的至少一个控 制资源集合,并根据所述绑定关系,确定所述网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级;
步骤1208、终端在配置的至少一个控制资源集合内,用所述控制资源集合对应的聚合等级集合中包括的聚合等级进行盲检。
如图13所述,本公开实施例第四种盲检测的方法:该方法中,聚合等级集合网络侧设备配置控制资源集合预先设置。具体包括下列步骤:
步骤1300、网络侧设备将下行控制信道分成至少一个控制资源集合,并为每个控制资源集合配置对应的聚合等级集合;
步骤1301、网络侧设备将终端的下行控制信息调度在至少一个控制资源集合内;
步骤1302、网络侧设备通过RRC信令为终端配置下行控制信道对应的至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级;
步骤1303、终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,以及确定网络侧设备配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级;
步骤1304、终端在配置的至少一个控制资源集合内,用所述控制资源集合对应的聚合等级集合中包括的聚合等级进行盲检。
如图14所述,本公开实施例第五种盲检测的方法,该方法中,聚合等级集合网络侧设备配置控制资源集合预先设置,且聚合等级集合中包括的聚合等级会更新。具体包括下列步骤:
步骤1400、网络侧设备将下行控制信道分成至少一个控制资源集合,并为每个控制资源集合配置对应的聚合等级集合;
步骤1401、网络侧设备将终端的下行控制信息调度在至少一个控制资源集合内;
步骤1402、网络侧设备通过RRC信令为终端配置下行控制信道对应的至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级;
步骤1403、若网络侧设备确定聚合等级集合发生变化,所述网络侧设备 通过分组公共控制信息(group common PDCCH)告知终端发生变化的聚合等级集合;
步骤1404、终端根据收到的所述网络侧设备发送的更新信息,更新网络侧设备配置的所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级;
步骤1405、终端在配置的至少一个控制资源集合内,用所述控制资源集合对应的聚合等级集合中包括的聚合等级进行盲检。
以上参照示出根据本申请实施例的方法、装置(系统)和/或计算机程序产品的框图和/或流程图描述本申请。应理解,可以通过计算机程序指令来实现框图和/或流程图示图的一个块以及框图和/或流程图示图的块的组合。可以将这些计算机程序指令提供给通用计算机、专用计算机的处理器和/或其它可编程数据处理装置,以产生机器,使得经由计算机处理器和/或其它可编程数据处理装置执行的指令创建用于实现框图和/或流程图块中所指定的功能/动作的方法。
相应地,还可以用硬件和/或软件(包括固件、驻留软件、微码等)来实施本申请。更进一步地,本申请可以采取计算机可使用或计算机可读存储介质上的计算机程序产品的形式,其具有在介质中实现的计算机可使用或计算机可读程序代码,以由指令执行系统来使用或结合指令执行系统而使用。在本申请上下文中,计算机可使用或计算机可读介质可以是任意介质,其可以包含、存储、通信、传输、或传送程序,以由指令执行系统、装置或设备使用,或结合指令执行系统、装置或设备使用。
显然,本领域的技术人员可以对本公开进行各种改动和变型而不脱离本公开的精神和范围。这样,倘若本公开的这些修改和变型属于本公开权利要求及其等同技术的范围之内,则本公开也意图包含这些改动和变型在内。
Claims (18)
- 一种进行盲检测的方法,包括:网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;所述网络侧设备根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
- 如权利要求1所述的方法,其中,若所述下行控制信道对应多个控制资源集合,不同的控制资源集合包括的所述下行控制信道的物理时频资源不同。
- 如权利要求1所述的方法,其中,所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合之前,还包括:所述网络侧设备通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,还包括:所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
- 如权利要求1所述的方法,其中,所述网络侧设备为终端配置下行控制信道对应的至少一个控制资源集合,还包括:所述网络侧设备为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
- 一种进行盲检测的方法,包括:终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
- 如权利要求5所述的方法,其中,所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,还包括:所述终端在确定网络侧设备通过主信息块MIB信息配置控制资源集合后,确定默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合。
- 如权利要求5所述的方法,其中,所述终端确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合之后,采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检之前,还包括:所述终端确定网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
- 一种进行盲检测的设备,包括:至少一个处理单元、以及至少一个存储单元,其中,所述存储单元存储有程序代码,当所述程序代码被所述处理单元执行时,使得所述处理单元执行下列过程:为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
- 如权利要求8所述的设备,其中,若所述下行控制信道对应多个控制资源集合,不同的控制资源集合包括的所述下行控制信道的物理时频资源不同。
- 如权利要求8所述的设备,其中,所述处理单元具体用于:通知终端所有聚合等级集合的标识和每个聚合等级集合中包括的聚合等级;为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集合中每个控制资源集合对应的所述聚合等级集合的标识。
- 如权利要求8所述的设备,其中,所述处理单元,还用于:为终端配置所述至少一个控制资源集合,以及所述至少一个控制资源集 合中每个控制资源集合对应的所述聚合等级集合中包括的聚合等级。
- 一种进行盲检测的设备,包括:至少一个处理单元、以及至少一个存储单元,其中,所述存储单元存储有程序代码,当所述程序代码被所述处理单元执行时,使得所述处理单元执行下列过程:确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
- 如权利要求12所述的设备,其中,所述处理单元具体用于:在确定网络侧设备通过MIB信息配置控制资源集合后,确定默认的聚合等级集合为配置的控制资源集合对应的聚合等级集合。
- 如权利要求12所述的设备,其中,所述处理单元具体用于:确定网络侧设备通知的所述控制资源集合对应的聚合等级集合中包括的聚合等级。
- 一种进行盲检测的设备,包括:配置模块,用于为终端配置下行控制信道对应的至少一个控制资源集合,以使所述终端采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;发送模块,用于根据所述控制资源集合对应的聚合等级集合,通过所述控制资源集合发送数据。
- 一种进行盲检测的设备,包括:确定模块,用于确定网络侧设备配置的下行控制信道对应的至少一个控制资源集合,其中所述控制资源集合对应的聚合等级集合中包括部分聚合等级;盲检模块,用于采用控制资源集合对应的聚合等级集合对控制资源集合进行盲检。
- 一种计算设备可读存储介质,包括程序代码,当所述程序代码在计算设备上运行时,所述程序代码用于使所述计算设备执行权利要求1~4任一所述方法的步骤。
- 一种计算设备可读存储介质,包括程序代码,当所述程序代码在计算设备上运行时,所述程序代码用于使所述计算设备执行权利要求5~7任一所述方法的步骤。
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| CN102264135A (zh) * | 2010-05-26 | 2011-11-30 | 财团法人工业技术研究院 | 控制信道配置方法与控制信道搜索方法及其通信装置 |
| WO2011160280A1 (en) * | 2010-06-21 | 2011-12-29 | Huawei Technologies Co., Ltd. | Aggregation level determination |
| CN103716144A (zh) * | 2012-09-28 | 2014-04-09 | 上海贝尔股份有限公司 | 一种进行ePDCCH相关配置和获取该配置的方法、装置和系统 |
| CN104662982A (zh) * | 2012-09-27 | 2015-05-27 | 华为技术有限公司 | 一种控制信道候选的分配方法及装置 |
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| CN102264135A (zh) * | 2010-05-26 | 2011-11-30 | 财团法人工业技术研究院 | 控制信道配置方法与控制信道搜索方法及其通信装置 |
| WO2011160280A1 (en) * | 2010-06-21 | 2011-12-29 | Huawei Technologies Co., Ltd. | Aggregation level determination |
| CN104662982A (zh) * | 2012-09-27 | 2015-05-27 | 华为技术有限公司 | 一种控制信道候选的分配方法及装置 |
| CN103716144A (zh) * | 2012-09-28 | 2014-04-09 | 上海贝尔股份有限公司 | 一种进行ePDCCH相关配置和获取该配置的方法、装置和系统 |
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