WO2015139391A1 - 蜂窝通信和d2d通信共存的方法、系统、装置、存储介质 - Google Patents

蜂窝通信和d2d通信共存的方法、系统、装置、存储介质 Download PDF

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Publication number
WO2015139391A1
WO2015139391A1 PCT/CN2014/082494 CN2014082494W WO2015139391A1 WO 2015139391 A1 WO2015139391 A1 WO 2015139391A1 CN 2014082494 W CN2014082494 W CN 2014082494W WO 2015139391 A1 WO2015139391 A1 WO 2015139391A1
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WO
WIPO (PCT)
Prior art keywords
information
resource
time domain
network coverage
control information
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PCT/CN2014/082494
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English (en)
French (fr)
Inventor
黄莹
陈琳
陈玉芹
谢峰
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US15/127,573 priority Critical patent/US10154510B2/en
Publication of WO2015139391A1 publication Critical patent/WO2015139391A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/1215Wireless traffic scheduling for collaboration of different radio technologies
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/23Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal

Definitions

  • the present invention relates to a wireless communication technology, and in particular, to a method, system, device, and storage medium for coexistence of cellular communication and device-to-device (D2D) communication.
  • D2D device-to-device
  • D2D device-to-device
  • D2D technology can work in licensed or unlicensed frequency bands, allowing multiple D2D-enabled user equipments, that is, D2D User Equipment (D2D User Equipment) to directly discover without network infrastructure or network infrastructure. / Direct communication.
  • D2D User Equipment D2D User Equipment
  • UE1 and UE2 perform data interaction under the coverage of the cellular network, where the cellular network is a network covered by the evolved base station (eNB), and the user plane data interaction process does not pass through the network infrastructure, as shown in mode 1 of FIG. Show
  • D2D technology usually includes D2D discovery technology and D2D communication technology:
  • the D2D discovery technology is used to determine/determine the proximity between two or more D2D UEs, for example, to determine/determine that two or more D2D UEs are adjacent to each other within a range in which D2D direct communication is possible, or for Determining/determining that the first user equipment is adjacent to the second user equipment.
  • D2D communication technology refers to a technology in which some or all of the communication data between D2D UEs can communicate directly without going through the network infrastructure.
  • D2D communication resources are usually scheduled and allocated by the base station, which can improve resource reuse efficiency, and at the same time ensure the control of D2D communication and the interference coordination between D2D communication and cellular communication.
  • the communication resources of the D2D UE may be dynamically scheduled by the base station, or the base station may allocate semi-persistent scheduling resources for the D2D UE.
  • D2D communication requirements are robust and can still provide maximum service in the current shortage of communication resources, congestion or network infrastructure. Therefore, public safety requires D2D communication to work not only in a network coverage scenario, but also in partial coverage and no network coverage scenarios.
  • the D2D UE can work in a self-organizing manner and share the same resource pool with other D2D UEs in the contention mode.
  • a shared resource pool without network coverage may be obtained from a Prose function server or a core network element when the UE is located within the network coverage, for example, from a neighboring service application server.
  • the UE in the cell coverage needs to be able to perform cellular communication with the serving base station and simultaneously perform D2D communication with the D2D UE outside the coverage of the serving base station.
  • a UE located at a cell edge may need to send or receive D2D information of the external D2D UE covered by the serving base station, send or receive cellular data in the coverage of the serving base station, or send D2D using resources scheduled by the serving base station. information.
  • the serving base station covers the frequency of the resource pool used externally and the cell in the coverage of the serving base station
  • the frequency used by D2D communication is different
  • UEs without Carrier Aggregation (CA) capability need to work on these two different frequency points in a time division duplex mode.
  • CA Carrier Aggregation
  • the UE pauses to receive or send the cellular data of the serving base station and the scheduled D2D information, that is, the UE cannot perform the serving base station.
  • Cellular communication and dynamically scheduled D2D communication therefore, affect the quality of service and user experience of cellular communications and D2D communications.
  • the UE can simultaneously monitor and receive the D2D in the coverage and coverage of the serving base station. information.
  • the D2D information of the same UE at the same frequency point needs to be received and transmitted in a time division manner, and when the same UE receives the D2D information and transmits the cellular data at the same frequency point, It also needs to be done in a time division manner.
  • the UE when the UE performs information reception in a resource pool outside the coverage of the serving base station, if the UE monitors and receives D2D information in a resource pool that is not covered by the serving base station, at this time, if the serving base station schedules When the UE sends the cellular data or the D2D information, the UE may interfere with the resource pool outside the coverage of the serving base station to monitor and receive the D2D information, so that the receiving performance of the UE is degraded, which affects the service quality and user experience of the D2D communication.
  • the embodiments of the present invention provide a method, a system, a device, and a storage medium for coexistence of cellular communication and device-to-device communication, which can improve the receiving performance of the user equipment, and can also improve cellular communication and equipment. Quality of service to device communication, and enhance user experience.
  • Embodiments of the present invention provide a method for coexistence of cellular communication and device-to-device communication, including: receiving resource control information;
  • the method further includes:
  • Receiving indication information And transmitting, according to the indication information, resource related information by using a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of a physical uplink control channel.
  • the method further includes: sending resource related information by using a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of a physical uplink control channel.
  • the method further includes:
  • the resource control information After receiving the resource control information, the resource control information is sent through the air interface.
  • the device-to-device information includes: device-to-device control information, and/or device-to-device data.
  • the device-to-device control information includes at least one of the following:
  • the resource related information includes at least one of the following:
  • No network coverage resource pool information, resource information, first time domain resource pattern information, and indication information is used for sending device-to-device information corresponding to the user equipment without network coverage;
  • the resource information is resource information used for device-to-device data transmission in a network-free coverage resource that the user equipment needs to receive;
  • the first time domain resource pattern indicates resource pool information used in the network coverage or time domain resource information used by the device to device data to be received, or indicates that the user equipment recommends the network pool for receiving no network coverage.
  • Time domain resource information of device to device information
  • the indication information is that the user equipment needs or does not need to monitor or receive the indication information corresponding to the device-to-device information in the network without the network coverage resource pool.
  • the resource control information includes at least one of the following:
  • Second time domain resource pattern information confirmation information, rejection information, and discontinuous reception pattern information.
  • the first time domain resource pattern information or the second time domain resource pattern information includes at least One of the following:
  • bit value corresponding to each bit symbol in the bit string indicates whether the corresponding subframe is used for no network Covers the sending device to device information or whether device to device information needs to be received, or whether the subframe can be used to receive device-to-device information without network coverage.
  • the monitoring, receiving, and receiving device-to-device information in the network-free resource pool according to the resource control information includes:
  • the time domain resource indicated by the second time domain resource pattern information monitors and receives device to device information in the networkless resource pool; when the resource control When the information is the confirmation information, the device-to-device information is monitored and received on the resource-related information or the resource pool or resource indicated by the network-free coverage resource pool according to the determination information;
  • the device-to-device information is not monitored and received according to the resource-related information or the resource pool or resource indicated by the network-free resource pool;
  • the device-free coverage resource pool monitors and receives device-to-device information.
  • time domain resource indicated by the second time domain resource pattern information is a subset of the time domain resources indicated by the first time domain resource pattern information.
  • the embodiment of the invention further provides a method for coexistence of cellular communication and device-to-device communication, comprising: acquiring resource-related information;
  • the acquiring resource related information includes:
  • the method further includes: And transmitting, by the system information block message, the RRC message, the media intervention control layer control unit, or the uplink control information of the physical uplink control channel, indication information, indicating whether to send the resource-related information.
  • the resource related information includes at least one of the following:
  • No network coverage resource pool information, resource information, first time domain resource pattern information, and indication information includes at least one of the following:
  • Second time domain resource pattern information confirmation information, rejection information, and discontinuous reception pattern information. Further, the method further includes:
  • the determined resource control information is the second time domain resource pattern information, scheduling cellular data transmission, and/or cellular data reception, and/or on the time domain resource indicated by the second time domain resource pattern information Or device-to-device information transmission;
  • the determined resource control information is the acknowledgment information, scheduling cellular data transmission, and/or cellular data reception, and/or device-to-device on the resource pool or resource indicated by the resource-related information corresponding to the acknowledgment information Information transmission
  • the determined resource control information is the rejection information
  • scheduling cellular data transmission, and/or cellular data reception, and/or device to the resource pool or resource indicated by the resource related information corresponding to the rejection information is not avoided.
  • Device information is sent.
  • the embodiment of the invention further provides a method for coexistence of cellular communication and device-to-device communication, comprising: acquiring, by the base station, resource-related information;
  • the base station determines resource control information according to the resource related information, and sends the resource control information to the user equipment;
  • the user equipment monitors and receives device-to-device information in a network-free resource pool according to the resource control information.
  • resource related information includes:
  • the base station obtains resource-related information from the operation management and maintenance system, the core network element, or the neighboring service server; or
  • the base station receives resource related information sent by the user equipment.
  • the embodiment of the invention further provides a user equipment, including:
  • a receiving unit configured to receive resource control information
  • the monitoring unit is configured to monitor and receive device-to-device information in the network-free resource pool according to the resource control information.
  • the receiving unit is further configured to receive indication information
  • the user equipment further includes: a sending unit, configured to send resource related information according to the indication information by using a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of a physical uplink control channel.
  • a sending unit configured to send resource related information according to the indication information by using a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of a physical uplink control channel.
  • the sending unit is further configured to: after receiving the resource control information, send the resource control information by using an air interface.
  • the resource related information includes at least one of the following:
  • No network coverage resource pool information, resource information, first time domain resource pattern information, and indication information includes at least one of the following:
  • the monitoring unit further includes:
  • a first determining subunit configured to determine, when the resource control information is the second time domain resource pattern information, the time domain resource indicated by the second time domain resource pattern information in the network coverage resource pool monitoring and receiving device Device Information;
  • a second determining subunit configured to determine, when the resource control information is the acknowledgment information, to listen to and receive the device according to the determining information in the resource related information or the resource pool or resource indicated by the networkless resource pool Device Information;
  • a third determining subunit configured to determine, when the resource control information is the reject information, not listening to and receiving the device according to the resource information or the resource pool or the resource indicated by the network coverage resource pool Device Information;
  • a fourth determining subunit configured to determine that the resource control information is discontinuously received pattern information, according to the discontinuous reception pattern information, when in an inactive period in the cellular network, in the networkless coverage resource pool Monitor and receive device-to-device information.
  • the embodiment of the invention further provides a base station, including:
  • An information receiving unit configured to acquire resource related information
  • the information sending unit is configured to determine resource control information according to the resource related information, and send the resource control information.
  • the information receiving unit is further configured to acquire resource related information from the operation management and maintenance system, the core network element or the neighboring service server, or configured to receive the resource related information.
  • the base station further includes an indication unit configured to send indication information by using a system information block message, a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of the physical uplink control channel, to indicate whether to send the resource related information.
  • an indication unit configured to send indication information by using a system information block message, a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of the physical uplink control channel, to indicate whether to send the resource related information.
  • the resource related information includes at least one of the following:
  • No network coverage resource pool information, resource information, first time domain resource pattern information, and indication information includes at least one of the following:
  • the base station further includes: a first determining unit, configured to: when the resource control information is determined to be the second time domain resource pattern information, avoiding the time domain resource indicated by the second time domain resource pattern information Scheduling cellular data transmission, and/or cellular data reception, and/or device-to-device information transmission; a second determining unit, configured to: when the resource control information is determined to be acknowledgement information, avoiding resource correlation corresponding to the acknowledgement information Scheduling cellular data transmission, and/or cellular data reception, and/or device-to-device information transmission on a resource pool or resource indicated by the information;
  • a third determining unit configured to: when the resource control information is determined to be the refusal information, do not circumvent the scheduling of cellular data transmission, and/or cellular data reception on the resource pool or resource indicated by the resource related information corresponding to the refusal information, And/or device-to-device information is sent.
  • the embodiment of the invention further provides a system for coexistence of cellular communication and device-to-device communication, comprising: any one of the user equipments described above, and any one of the foregoing base stations.
  • the embodiment of the present invention further provides a storage medium, where the computer executable instructions are stored in the storage medium, and the computer executable instructions are used to execute any of the above cellular communication and device to device.
  • the method of communication coexistence is not limited to.
  • a method and system, a device, and a storage medium for coexisting cellular communication and device-to-device communication can control a UE in a cellular network coverage of the base station in a network by using a base station.
  • the timing of receiving the D2D information on the outer resource pool, that is, the base station can control the timing of the UE in the network coverage to monitor and receive the D2D information in the network coverage resource pool. Therefore, the embodiment of the present invention can avoid the network coverage external D2D communication pair.
  • the impact of the cellular communication and the D2D communication in the network coverage, and the embodiment of the present invention enables the UE in the network coverage to correctly and efficiently receive the D2D information sent by the UE outside the network coverage.
  • FIG. 1 is an application scenario 1 in the case where cellular communication and device-to-device communication coexist
  • FIG. 2 is a first application scenario of the embodiment of the present invention
  • FIG. 3 is a second application scenario of the embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of an implementation process of a method for coexisting cellular communication and device-to-device communication according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a user equipment according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a monitoring unit according to an embodiment of the present invention.
  • FIG. 7 is a schematic flowchart 2 of a method for implementing device-to-device communication coexistence according to an embodiment of the present invention
  • FIG. 8 is a schematic structural diagram of a base station according to an embodiment of the present invention.
  • FIG. 9 is a schematic flowchart 1 of a specific implementation of a method for coexisting cellular communication and device-to-device communication according to an embodiment of the present invention
  • FIG. 10 is a second schematic diagram of a specific implementation of a method for coexisting cellular communication and device-to-device communication according to an embodiment of the present invention. detailed description
  • FIG. 2 is a schematic diagram of an application scenario according to an embodiment of the present invention.
  • an eNB is an evolved base station.
  • the ellipse is a cellular network covered by the evolved base station, the UE8 is a user equipment in the network coverage, and the UE9 is a user equipment outside the network coverage; wherein the UE8 can perform cellular communication with the eNB, and can receive and transmit the cellular communication.
  • the UE 8 can perform D2D communication with the UE 9 outside the network coverage.
  • FIG. 3 is a second embodiment of the application scenario of the present invention. As shown in FIG.
  • the eNB is an evolved base station
  • the ellipse is a cellular network covered by the evolved base station
  • UE10 and UE11 are user equipments in the network coverage.
  • the UE 11 is considered to be located in the cellular network coverage hole of the eNB. In (coverage hole ), it is equivalent to UE9 in Figure 2.
  • both the UE 8 and the UE 10 can obtain resources for transmitting D2D control information or D2D data from the cellular networks of the respective corresponding eNBs, and the eNB can perform dynamic scheduling or semi-persistent scheduling.
  • the UE8 and the UE 10 corresponding to the eNB transmit D2D information; and the UE9 and the UE1 obtain resources for transmitting D2D control information or D2D data from the non-network coverage D2D resource pool by using a contention method.
  • the frequency of the network coverage of the D2D resource pool is the same as or different from the frequency of the cellular communication or the D2D communication resource pool scheduled by the eNB.
  • FIG. 4 is a schematic diagram of an implementation of a method for coexisting cellular communication and device-to-device communication according to an embodiment of the present invention.
  • the method is used on the user equipment side. As shown in FIG. 1 , the method includes:
  • Step 401 Receive resource control information, where the resource control information is determined according to resource-related information without network coverage;
  • the UE receives resource control information determined by the base station according to resource-related information without network coverage;
  • the resource related information includes at least one of the following:
  • No network coverage resource pool information, resource information, first time domain resource pattern information, and indication information is used for sending device-to-device information corresponding to the user equipment in the network-free coverage;
  • the resource pool information includes time domain resource information and/or frequency domain resource information;
  • the resource information is device-to-device data in a network-free coverage resource that the user equipment needs to receive. Transmitting the resource information used; wherein the resource information includes time domain resource information and/or frequency domain resource information;
  • the first time domain resource pattern information indicates resource pool information used in the network coverage or time domain resource information used by the device to device data to be received, or indicates that the user equipment recommends to receive the network coverage resource pool.
  • Time domain resource information of device to device information
  • the indication information is that the user equipment needs or does not need to monitor or receive the indication information corresponding to the device-to-device information in the network without the network coverage resource pool.
  • the resource control information includes at least one of the following:
  • Second time domain resource pattern information is used to indicate that the UE receives the time domain resource of the D2D information in the network coverage resource pool;
  • the confirmation information is used to indicate that the UE can receive the D2D information on the network-free resource pool or resource indicated by the sent resource-related information;
  • the refusal information is used to indicate that the UE is not able to receive D2D information on the network coverage resource pool or resource indicated by the resource related information that is sent;
  • the discontinuous reception (DRx) pattern information is used to indicate that the UE receives the D2D information of the resource pool without network coverage when the UE is in an active time in the cellular network of the base station.
  • time domain resource indicated by the second time domain resource pattern information is a subset of the time domain resources indicated by the first time domain resource pattern information.
  • first time domain resource pattern information or the second time domain resource pattern information includes at least one of the following:
  • bit value corresponding to each bit symbol in the bit string indicates whether the corresponding subframe is used for no network Covers the sending device to device information or whether device to device information needs to be received, or whether the subframe can be used to receive device-to-device information without network coverage.
  • Step 402 Monitor and receive the device according to the resource control information in the network without the network coverage resource pool.
  • Device Information
  • the UE monitors and receives the D2D information in the network coverage resource pool according to the resource control information
  • the method further includes:
  • the method further includes: sending the resource related information by using the radio resource control protocol message, the media intervention control layer control unit, or the uplink control information of the physical uplink control channel.
  • the UE when the UE receives the indication information, the UE sends the resource-related information according to the indication information; when the UE does not receive the indication information, the UE directly sends the resource-related information to the base station.
  • the UE receives the indication information sent by the base station; the UE passes the Radio Resource Control (RRC) message according to the indication information, the control unit (CE) of the media intervention control layer (MAC, Media Access Control), or the physics.
  • RRC Radio Resource Control
  • CE control unit
  • MAC media intervention control layer
  • MAC Media Access Control
  • UCI uplink control information of the uplink control channel
  • PUCCH Physical Uplink Control CHannel
  • the method further includes: after receiving the resource control information, sending the resource control information by using an air interface.
  • the UE may send the resource control information to the UE in the network coverage corresponding to the base station, or may send the resource control information to the UE outside the network coverage corresponding to the base station. After the other UE receives the resource control information, The transmission time domain resource of the D2D information can be determined according to the resource control information.
  • the device-to-device information includes: device-to-device control information, and/or device-to-device data.
  • the device-to-device control information includes at least one of the following:
  • Time domain and/or frequency domain occupancy of device-to-device data associated with device-to-device control information Source information, modulation and coding mode, transmission power information, resource occupation time information, and device-to-device group information of the device-to-device data.
  • the monitoring, receiving, and receiving device-to-device information in the network-free resource pool according to the resource control information includes:
  • the time domain resource indicated by the second time domain resource pattern information monitors and receives device to device information in the networkless resource pool; when the resource control When the information is the confirmation information, the device-to-device information is monitored and received on the resource-related information or the resource pool or resource indicated by the network-free coverage resource pool according to the determination information;
  • the device-to-device information is not monitored and received according to the resource-related information or the resource pool or resource indicated by the network-free resource pool;
  • the device-free coverage resource pool monitors and receives device-to-device information.
  • the embodiment of the present invention provides a user equipment.
  • the user equipment includes:
  • the receiving unit 51 is configured to receive resource control information
  • the monitoring unit 52 is configured to monitor and receive device-to-device information in the no-network coverage resource pool according to the resource control information.
  • the receiving unit is further configured to receive indication information
  • the user equipment further includes: a sending unit, configured to send, according to the indication information, resource related information by using a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of a physical uplink control channel;
  • a sending unit configured to send, according to the indication information, resource related information by using a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of a physical uplink control channel;
  • the resource control information is determined according to resource-related information without network coverage.
  • the sending unit is further configured to send the resource control information by using an air interface after receiving the resource control information.
  • the monitoring unit 52 further includes:
  • the first determining subunit 521 is configured to: when the resource control information is determined to be the second time domain resource pattern information, the time domain resource indicated by the second time domain resource pattern information is in the network coverage resource pool monitoring and receiving device To device information;
  • the second determining sub-unit 522 is configured to: when the determining that the resource control information is the acknowledgment information, listening to the resource-related information or the resource pool or resource indicated by the network-free resource pool according to the determining information Receiving device-to-device information;
  • the third determining subunit 523 is configured to: when the resource control information is determined to be the reject information, the acknowledgment information is not monitored by the resource related information or the resource pool or resource indicated by the networkless resource pool And receiving device-to-device information;
  • a fourth determining sub-unit 524 configured to determine, when the resource control information is discontinuously received pattern information, according to the discontinuous reception pattern information, when the inactive period in the cellular network is in the non-network coverage resource
  • the pool listens and receives device-to-device information.
  • the receiving unit and the sending unit may be implemented by a signal receiving device and a transmitter or a transmitting and receiving antenna in the user equipment; the monitoring unit may be combined with a central processing unit (CPU) and a digital signal in the user equipment.
  • CPU central processing unit
  • a DSP Digital Signal Processor
  • FPGA Field Programmable Gate Array
  • the embodiment of the present invention further provides a storage medium, where the computer executable instruction is stored in the storage medium, and the computer executable instruction is used to execute the method of coexistence of cellular communication and device-to-device communication in the embodiment.
  • FIG. 7 is a schematic diagram of an implementation of a method for coexisting a cell communication and a device to device coexistence according to an embodiment of the present invention.
  • the method is used on a base station side. As shown in FIG. 7, the method includes:
  • Step 701 Obtain resource related information.
  • the base station receives resource related information sent by the UE; or, the base station selects an OAM (Operation Administration and Maintenance) system, a core network element, or a neighboring network Obtain resource related information at the service server.
  • OAM Operaation Administration and Maintenance
  • the resource related information includes at least one of the following:
  • No network coverage resource pool information, resource information, first time domain resource pattern information, and indication information includes at least one of the following:
  • Step 702 Determine resource control information according to the resource related information, and send the resource control information.
  • the method further includes:
  • the indication information is sent by the system information block message, the radio resource control protocol message, the media intervention control layer control unit, or the uplink control information of the physical uplink control channel, and indicates whether the resource related information is sent.
  • the system information block (SIB) message, the RRC message, the CE of the MAC, or the UCI of the PUCCH sends indication information, indicating whether the user equipment sends the resource related information to the base station.
  • SIB system information block
  • the RRC message, the CE of the MAC, or the UCI of the PUCCH sends indication information, indicating whether the user equipment sends the resource related information to the base station.
  • the method further includes:
  • the determined resource control information is the second time domain resource pattern information, scheduling cellular data transmission, and/or cellular data reception, and/or on the time domain resource indicated by the second time domain resource pattern information Or device-to-device information transmission;
  • the determined resource control information is the acknowledgment information, scheduling cellular data transmission, and/or cellular data reception, and/or device-to-device on the resource pool or resource indicated by the resource-related information corresponding to the acknowledgment information Information transmission
  • the determined resource control information is the rejection information
  • scheduling cellular data transmission, and/or cellular data reception, and/or device to the resource pool or resource indicated by the resource related information corresponding to the rejection information is not avoided.
  • Device information is sent.
  • the embodiment of the present invention provides a base station.
  • the user equipment includes:
  • the information receiving unit 81 is configured to acquire resource related information.
  • the information sending unit 82 is configured to determine resource control information according to the resource related information, and concurrently Send the resource control information.
  • the information receiving unit 81 is further configured to obtain resource related information from the operation management and maintenance system, the core network element or the neighboring service server, or configured to receive the resource related information.
  • the base station further includes an indication unit configured to send indication information by using a system information block message, a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of the physical uplink control channel, to indicate whether to send the resource related information.
  • an indication unit configured to send indication information by using a system information block message, a radio resource control protocol message, a media intervention control layer control unit, or an uplink control information of the physical uplink control channel, to indicate whether to send the resource related information.
  • the base station further includes: a first determining unit, configured to: when the resource control information is determined to be the second time domain resource pattern information, avoiding the time domain resource indicated by the second time domain resource pattern information Scheduling cellular data transmission, and/or cellular data reception, and/or device-to-device information transmission; a second determining unit, configured to: when the resource control information is determined to be acknowledgement information, avoiding resource correlation corresponding to the acknowledgement information Scheduling cellular data transmission, and/or cellular data reception, and/or device-to-device information transmission on a resource pool or resource indicated by the information;
  • a third determining unit configured to: when the resource control information is determined to be the refusal information, do not circumvent the scheduling of cellular data transmission, and/or cellular data reception on the resource pool or resource indicated by the resource related information corresponding to the refusal information, And/or device-to-device information is sent.
  • the scheduling refers to the base station scheduling cellular data or device-to-device information by a specific scheduling manner, and then transmitting cellular data or device-to-device information to the user equipment end.
  • the embodiment of the present invention further provides a system for coexistence of cellular communication and device-to-device communication, and the system includes: the user equipment according to the first embodiment, and the base station according to the second embodiment.
  • the information receiving unit may be implemented by a receiver in a base station; the information sending unit may be implemented by a transmitter in a base station; the first determining unit, the second determining unit, and the third determining unit may be in a base station A central processing unit (CPU), a digital signal processor (DSP) or a Field Programmable Gate Array (FPGA), and a signal receiving and transmitter implementation in a user equipment.
  • CPU central processing unit
  • DSP digital signal processor
  • FPGA Field Programmable Gate Array
  • the embodiment of the present invention further provides a storage medium, where the computer executable instructions are stored in the storage medium, and the computer executable instructions are used to perform the cellular communication and device-to-device communication of the embodiment.
  • the method of coexistence is not limited to, but not limited to, but not limited to, but not limited to
  • FIG. 9 is a cellular communication and an embodiment of the present invention.
  • FIG. 10 is a schematic flowchart of a specific implementation of a method for coexisting cellular communication and device-to-device communication according to an embodiment of the present invention, as shown in FIG. 9 and FIG. The methods include:
  • Step 901a The UE sends the resource related information to the base station.
  • the resource related information includes at least one of the following:
  • the network coverage resource pool information is resource pool information used without network coverage, or D2D resource pool information used without network coverage, and is used to correspond to UEs without network coverage. And transmitting D2D control information and/or D2D data to the UE; the resource pool information includes time domain resource information and/or frequency domain resource information;
  • resource information is resource information used by the UE to receive D2D information without network coverage; wherein the resource information includes time domain resource information and/or frequency domain resource information;
  • first time domain resource pattern information is used to indicate resource pool information used without network coverage or time domain information of resource information used when transmitting D2D information, or to indicate the UE
  • the recommended time domain resource for receiving or using D2D information in the resource pool without network coverage optionally, the pattern information of the time domain resource may be DRx pattern information;
  • indication information is that the UE needs or does not need to listen to the indication information corresponding to the D2D information in the network coverage resource pool, and the indication information corresponding to the D2D information; the indication information may also indicate the D2D information.
  • the indication information indicates that the UE needs or does not need to receive D2D control information to determine whether there is information of interest to the UE, or D2D data that needs to be received; or
  • the indication information indicates that the UE determines whether the UE has information of interest or D2D data that needs to be received by receiving D2D control information.
  • the D2D control information is resource information and usage information occupied by D2D data associated with the D2D control information
  • the resource information and usage information includes at least one of the following: D2D data associated with the D2D control information
  • the base station may indicate whether the UE sends the resource related information to the base station;
  • the specific steps include:
  • the base station sends the indication information to the UE by using a SIB message, an RRC message, a CE of the MAC, a DCI of the PDCCH, or the like, to indicate whether the UE sends the resource-related information.
  • the UE receives the indication information, and sends the resource related information to the base station according to the indication information by using an RRC message, a CE of a MAC, or a UCI of a PDCCH;
  • Step 901b The base station acquires resource-related information from the OAM system, the core network element, or the neighboring service server.
  • the resource related information is resource pool information used without network coverage.
  • the base station can obtain resource related information through steps 901a and 901b at the same time, or obtain resource related information through step 901a or 901b.
  • the base station obtains, by using the step 901a, the resource information that is used by the UE to receive the D2D information that is not covered by the network, or the base station obtains, by using the step 901a, the indication information that the UE needs or does not need to listen to the D2D information under the network coverage resource pool.
  • the indication information corresponding to the D2D information, and the network coverage resource pool information is obtained through step 901b.
  • Step 902 The base station determines resource control information according to the resource related information, and sends the resource control information to the UE.
  • the resource control information includes at least one of the following:
  • the second time domain resource pattern information is used to indicate that the UE receives the time domain resource of the D2D information in the resource pool without the network coverage; optionally, if the UE sends the information to the base station
  • the resource related information includes the first time domain resource pattern information, and the base station determines according to the resource related information.
  • the time domain resource indicated by the second time domain resource pattern information included in the determined resource control information is a subset of the time domain resource indicated by the first time domain resource pattern information;
  • confirmation information is used to indicate that the UE can receive D2D information on the network coverage resource pool or resource indicated by the transmitted resource related information;
  • the rejecting information is used to indicate that the UE is not capable of receiving D2D information on the network-free resource pool or resource indicated by the transmitted resource-related information.
  • D X pattern information is used to indicate that the UE can receive D2D information of the resource pool without network coverage when the UE is in a non-active time in the cellular network of the base station.
  • the principle that the base station determines the resource control information according to the resource-related information includes:
  • the base station tries to avoid the UE may receive D2D information on the resource pool without network coverage.
  • the transmission of the cellular data of the UE and the transmission of the D2D information are scheduled on the time domain resource;
  • the base station tries to avoid the UE may receive the D2D on the resource pool without the network coverage. Scheduling the transmission and reception of cellular data of the UE on the time domain resource where the information is located, and scheduling the transmission of the D2D information;
  • the base station determines, according to the operator policy, the local policy, the service information, or the service priority information, the priority of the D2D information reception, the D2D information transmission, the cellular data transmission, and the cellular data reception of the UE without coverage, and performs priority according to the priority order. High priority data is received or sent.
  • Step 903 The UE monitors and receives the D2D information in the network coverage resource pool according to the resource control information.
  • the UE monitors and receives device-to-device information in the network coverage resource pool according to the time domain resource indicated by the second time domain resource pattern information;
  • the UE when the resource control information is acknowledgment information, the UE is in the resource according to the determining information Relevant information, or monitoring and receiving device-to-device information on the resource pool or resource indicated by the network coverage resource pool;
  • the UE when the resource control information is the rejection information, the UE is not listening to the resource related information, or is not in the resource pool or resource indicated by the network coverage resource pool Device Information;
  • the embodiment of the present invention further provides a storage medium, where the computer executable instruction is stored in the storage medium, and the computer executable instruction is used to execute the method of coexistence of cellular communication and device-to-device communication in the embodiment.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of a hardware embodiment, a software embodiment, or an embodiment in combination with software and hardware. Moreover, the invention can be embodied in the form of one or more computer program products embodied on a computer-usable storage medium (including but not limited to disk storage and optical storage, etc.) in which the program code available for the computer is incorporated.
  • a computer-usable storage medium including but not limited to disk storage and optical storage, etc.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.
  • the base station can control the timing of the UE receiving the D2D information on the network coverage resource pool in the coverage of the network, that is, the base station can control the timing of the UE in the network coverage to monitor and receive the D2D information in the network coverage resource pool. In this way, the influence of the network coverage of the D2D communication on the cellular communication and the D2D communication in the network coverage can be avoided, and the UE in the network coverage can correctly and effectively receive the D2D information sent by the network coverage of the external UE.

Abstract

本发明提供了一种蜂窝通信和设备到设备(D2D)通信共存的方法、系统、装置及存储介质。所述方法包括:接收资源控制信息(401);根据所述资源控制信息在无网络覆盖资源池监听和接收D2D信息(402)。

Description

蜂窝通信和 D2D通信共存的方法、 系统、 装置、 存储介质 技术领域
本发明涉及无线通信技术, 尤其涉及一种蜂窝通信和设备到设备(D2D , Device-to-Device )通信共存的方法及系统、 装置、 存储介质。 背景技术
随着无线多媒体业务的发展, 人们对高数据速率和用户体验的需求日益增 长, 从而对传统蜂窝网络的系统容量和覆盖提出了较高要求。 另一方面社交网 络、 近距离数据共享、 本地广告等应用的流行使得人们对了解附近感兴趣的人 或事物并与之通信的需求逐渐增加; 这里, 社交网络、 近距离数据共享、 本地 广告等应用服务称为邻近服务( Proximity Services )。 传统的基于小区的蜂窝网 下, 代表未来通信技术发展新方向的设备到设备(D2D, Device-to-Device )技 术应运而生。 D2D技术的应用, 可以减轻蜂窝网络的负担、 减少用户设备的电 池功耗、 提高数据速率, 并改善网络基础设施的鲁棒性, 很好地满足上述高数 据速率业务和邻近服务的要求。
D2D技术可以工作在授权频段或非授权频段, 允许多个支持 D2D功能的 用户设备, 即 D2D用户设备( D2D UE, D2D User Equipment )在有网络基础 设施或无网络基础设施的情况下进行直接发现 /直接通信。 D2D的应用场景主要 有三种:
1 ) UE1和 UE2在蜂窝网络的覆盖下进行数据交互, 所述蜂窝网络为演进 型基站 (eNB ) 所覆盖的网络, 用户面数据交互过程不经过网络基础设施, 如 图 1中的模式 1所示;
2 )在弱 /无覆盖区域中 UE的中继传输, 如图 1 中的模式 2所示, 允许信 号质量较差的 UE4通过附近有网络覆盖的 UE3与网络进行通信, 能帮助运营 商扩展覆盖、 提高容量;
3 )在发生地震或紧急情况, 蜂窝网络不能正常工作的情况下, 允许设备间 直接通信, 如图 1中的模式 3所示, UE5、 UE6和 UE7之间的控制面和用户面 都不经过网络基础设施而进行一跳或多跳的数据通信。
D2D技术通常包括 D2D发现技术和 D2D通信技术:
1 ) D2D发现技术用于判断 /确定两个或多个 D2D UE之间相互邻近, 例如 在可进行 D2D直接通信范围之内判断 /确定两个或多个 D2D UE之间相互邻近, 或者用于判断 /确定第一用户设备邻近第二用户设备。
2 ) D2D通信技术是指 D2D UE之间部分或全部通信数据可以不通过网络 基础设施而直接进行通信的技术。
在有蜂窝网络覆盖的场景下, D2D通信资源通常由基站进行调度分配, 这 样可以提高资源复用效率, 同时保证网络侧对 D2D通信的控制以及 D2D通信 与蜂窝通信之间干扰协调的效果。 D2D UE的通信资源可以由基站动态调度, 或者基站可为 D2D UE分配半持续调度资源。 公共安全场景下, D2D通信要求 具有很强的鲁棒性, 能够在当前通信资源短缺、 拥塞或者网络基础设施瘫痪的 情况下仍然最大限度的提供服务。 因此,公共安全要求 D2D通信不仅在有网络 覆盖场景下工作, 还要求在部分覆盖以及无网络覆盖场景下工作。 在无网络覆 盖场景下, D2D UE可以通过自组织的方式工作, 并通过竟争方式与其它无网 络覆盖下 D2D UE共享同一个资源池。 无网络覆盖下共享的资源池可以在 UE 位于网络覆盖内时从邻近服务( Prose function )服务器或核心网网元处获取, 例如从邻近服务应用服务器处获取。
由于小区覆盖内的 UE需要能与服务基站进行蜂窝通信, 以及同时与服务 基站覆盖外的 D2D UE进行 D2D通信。 例如, 位于小区边缘的 UE可能需要一 边发送或接收所述服务基站覆盖外 D2D UE的 D2D信息,一边发送或接收所述 服务基站覆盖内的蜂窝数据, 或者使用所述服务基站调度的资源发送 D2D信 息。
当所述服务基站覆盖外使用的资源池的频点与所述服务基站覆盖内的蜂窝 或 D2D通信使用的频点不同时, 没有载波聚合(CA, Carrier Aggregation ) 能 力的 UE需要以时分双工的方式在这两个不同的频点上工作。 并且当 UE在所 述服务基站覆盖外资源池使用的频点上工作时, 所述 UE暂停接收或发送所述 服务基站的蜂窝数据及调度的 D2D信息, 即所述 UE无法进行所述服务基站的 蜂窝通信及动态调度的 D2D通信, 因此, 影响蜂窝通信及 D2D通信的服务质 量和用户体验。
当所述服务基站覆盖外使用的资源池的频点与所述服务基站覆盖内的蜂窝 或 D2D通信使用的频点相同时, UE可以同时监听和接收所述服务基站覆盖内 和覆盖外的 D2D信息。但由于 UE可能只有一个射频单元或由于收发自干扰现 象, 同一频点上同一 UE的 D2D信息的接收与发送需要以时分方式进行, 且同 一频点上同一 UE接收 D2D信息与发送蜂窝数据时, 也需要以时分方式进行。 具体地, 当 UE在所述服务基站覆盖外的资源池内进行信息接收时, 如所述 UE 在所述服务基站覆盖外的资源池监听和接收 D2D信息, 此时, 若所述服务基站 调度所述 UE发送蜂窝数据或 D2D信息时, 会干扰所述 UE在所述服务基站覆 盖外的资源池监听和接收 D2D信息, 使得 UE的接收性能下降, 影响 D2D通 信的服务质量和用户体验。 发明内容
为解决现有存在的技术问题, 本发明实施例提供了一种蜂窝通信和设备到 设备通信共存的方法及系统、 装置、 存储介质, 能提升用户设备的接收性能, 还能提升蜂窝通信和设备到设备通信的服务质量, 以及提升用户体验。
本发明实施例的技术方案是这样实现的:
本发明实施例提供了一种蜂窝通信和设备到设备通信共存的方法, 包括: 接收资源控制信息;
根据所述资源控制信息在无网络覆盖资源池监听和接收设备到设备信息。 进一步地, 所述接收资源控制信息之前, 所述方法还包括:
接收指示信息; 根据所述指示信息通过无线资源控制协议消息、 媒体介入控制层控制单元 或物理上行控制信道的上行控制信息发送资源相关信息。
进一步地, 所述接收资源控制信息之前, 所述方法还包括: 通过无线资源 控制协议消息、 媒体介入控制层控制单元或物理上行控制信道的上行控制信息 发送资源相关信息。
进一步地, 所述方法还包括:
所述接收资源控制信息之后, 通过空口发送资源控制信息。
进一步地, 所述设备到设备信息包括: 设备到设备控制信息、 和 /或设备到 设备数据。
进一步地, 所述设备到设备控制信息至少包括以下之一:
与设备到设备控制信息关联的设备到设备数据所占用的时域和 /或频域资 源信息、 调制编码方式、 发送功率信息、 资源占用时长信息及所述设备到设备 数据的设备到设备组信息。
进一步地, 所述资源相关信息至少包括以下之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。 进一步地, 所述无网络覆盖资源池信息用于无网络覆盖下用户设备对应的 设备到设备信息的发送;
所述资源信息为用户设备需要接收的无网络覆盖资源中的设备到设备数据 发送所使用的资源信息;
所述第一时域资源图样指示无网络覆盖下使用的资源池信息或需要接收的 设备到设备数据所使用的时域资源信息, 或者指示用户设备所推荐的用于接收 无网络覆盖资源池中设备到设备信息的时域资源信息;
所述指示信息为用户设备需要或不需要监听或接收无网络覆盖资源池下的 设备到设备信息对应的指示信息。
进一步地, 所述资源控制信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。 进一步地, 所述第一时域资源图样信息或第二时域资源图样信息至少包括 以下之一:
时域资源重复周期、 时域偏移量、 时域资源持续时间、 以及比特符串; 其中, 所述比特符串中每个比特符对应的比特值指示所对应的子帧是否用 于无网络覆盖下发送设备到设备信息或是否有设备到设备信息需要接收, 或者 所述子帧是否可以用于接收无网络覆盖下的设备到设备信息。
进一步地,所述根据所述资源控制信息在无网络覆盖资源池监听和接收设 备到设备信息, 包括:
当所述资源控制信息为第二时域资源图样信息时, 根据所述第二时域资源 图样信息指示的时域资源在无网络覆盖资源池监听和接收设备到设备信息; 当所述资源控制信息为确认信息时, 根据所述确定信息在所述资源相关信 息或所述无网络覆盖资源池指示的资源池或资源上监听和接收设备到设备信 息;
当所述资源控制信息为拒绝信息时, 根据所述拒绝信息不在所述资源相关 信息或所述无网络覆盖资源池指示的资源池或资源上监听和接收设备到设备信 息;
当所述资源控制信息为非连续接收图样信息时, 根据所述非连续接收图样 信息, 在处于蜂窝网络中的非活跃时段时, 在所述无网络覆盖资源池监听和接 收设备到设备信息。
进一步地, 所述第二时域资源图样信息所指示的时域资源是所述第一时域 资源图样信息所指示的时域资源的子集。
本发明实施例还提供了一种蜂窝通信和设备到设备通信共存的方法,包括: 获取资源相关信息;
根据所述资源相关信息确定资源控制信息, 并发送所述资源控制信息。 进一步地, 所述获取资源相关信息包括:
从操作管理维护系统、核心网网元或邻近服务服务器处获取资源相关信息; 或者, 接收用户设备发送的资源相关信息。
进一步地, 所述接收资源相关信息之前, 所述方法还包括: 通过系统信息块消息、 无线资源控制协议消息、 媒体介入控制层控制单元 或物理上行控制信道的上行控制信息发送指示信息, 指示是否发送所述资源相 关信息。
进一步地, 所述资源相关信息至少包括以下之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。 进一步地, 所述资源控制信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。 进一步地, 所述方法还包括:
当确定的所述资源控制信息为第二时域资源图样信息时, 避开在所述第二 时域资源图样信息指示的时域资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
当确定的所述资源控制信息为确认信息时, 避开在所述确认信息对应的资 源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
当确定的所述资源控制信息为拒绝信息时, 不避开在所述拒绝信息对应的 资源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送。
本发明实施例还提供了一种蜂窝通信和设备到设备通信共存的方法,包括: 基站获取资源相关信息;
基站根据所述资源相关信息确定资源控制信息, 并将所述资源控制信息发 送至用户设备;
所述用户设备根据所述资源控制信息在无网络覆盖资源池监听和接收设备 到设备信息。
进一步地, 所述基站获取资源相关信息包括:
基站从操作管理维护系统、 核心网网元或邻近服务服务器处获取资源相关 信息; 或者,
基站接收用户设备发送的资源相关信息。 本发明实施例还提供了一种用户设备, 包括:
接收单元, 配置为接收资源控制信息;
监听单元, 配置为根据所述资源控制信息在无网络覆盖资源池监听和接收 设备到设备信息。
进一步地, 所述接收单元, 还配置为接收指示信息;
相应地, 所述用户设备还包括: 发送单元, 配置为根据所述指示信息通过 无线资源控制协议消息、 媒体介入控制层控制单元或物理上行控制信道的上行 控制信息发送资源相关信息。
进一步地, 所述发送单元, 还配置为在接收资源控制信息之后, 通过空口 发送资源控制信息。
进一步地, 所述资源相关信息至少包括以下之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。 进一步地, 所述资源控制信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。 进一步地, 所述监听单元还包括:
第一确定子单元, 配置为确定所述资源控制信息为第二时域资源图样信息 时, 根据所述第二时域资源图样信息指示的时域资源在无网络覆盖资源池监听 和接收设备到设备信息;
第二确定子单元, 配置为确定所述资源控制信息为确认信息时, 根据所述 确定信息在所述资源相关信息或所述无网络覆盖资源池指示的资源池或资源上 监听和接收设备到设备信息;
第三确定子单元, 配置为确定所述资源控制信息为拒绝信息时, 根据所述 拒绝信息不在所述资源相关信息或所述无网络覆盖资源池指示的资源池或资源 上监听和接收设备到设备信息;
第四确定子单元,配置为确定所述资源控制信息为非连续接收图样信息时, 根据所述非连续接收图样信息, 在处于蜂窝网络中的非活跃时段时, 在所述无 网络覆盖资源池监听和接收设备到设备信息。 本发明实施例还提供了一种基站, 包括:
信息接收单元, 配置为获取资源相关信息;
信息发送单元, 配置为根据所述资源相关信息确定资源控制信息, 并发送 所述资源控制信息。
进一步地, 所述信息接收单元, 还配置为从操作管理维护系统、 核心网网 元或邻近服务服务器处获取资源相关信息; 或者配置为接收资源相关信息。
进一步地, 若所述信息接收用于单元接收资源相关信息, 此时,
所述基站还包括指示单元, 配置为通过系统信息块消息、 无线资源控制协 议消息、 媒体介入控制层控制单元或物理上行控制信道的上行控制信息发送指 示信息, 指示是否发送所述资源相关信息。
进一步地, 所述资源相关信息至少包括以下之一:
无网络覆盖资源池信息、 资源信息、第一时域资源图样信息以及指示信息。 进一步地, 所述资源控制信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。 进一步地, 所述基站还包括: 第一确定单元, 配置为确定所述资源控制信 息为第二时域资源图样信息时, 避开在所述第二时域资源图样信息指示的时域 资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送; 第二确定单元, 配置为确定所述资源控制信息为确认信息时, 避开在所述 确认信息对应的资源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 / 或蜂窝数据接收、 和 /或设备到设备信息发送;
第三确定单元, 配置为确定所述资源控制信息为拒绝信息时, 不避开在所 述拒绝信息对应的资源相关信息指示的资源池或资源上调度蜂窝数据发送、和 / 或蜂窝数据接收、 和 /或设备到设备信息发送。
本发明实施例还提供了一种蜂窝通信和设备到设备通信共存的系统,包括: 以上所述的任意一种用户设备、 及以上所述的任意一种基站。
本发明实施例还提供了一种存储介质, 所述存储介质中存储有计算机可执 行指令, 所述计算机可执行指令用于执行以上任意一种蜂窝通信和设备到设备 通信共存的方法。
与现有技术相比, 釆用本发明实施例所提供的蜂窝通信和设备到设备通信 共存的方法及系统、 装置、 存储介质, 能通过基站控制所述基站的蜂窝网络覆 盖内的 UE在网络覆盖外资源池上接收 D2D信息的时机, 即基站能够控制网络 覆盖范围内的 UE在无网络覆盖资源池监听和接收 D2D信息的时机, 因此, 釆 用本发明实施例能避免网络覆盖外 D2D通信对网络覆盖内的蜂窝通信和 D2D 通信的影响, 而且, 釆用本发明实施例能使网络覆盖内的 UE正确有效的接收 网络覆盖外 UE发送的 D2D信息。 附图说明
图 1为蜂窝通信和设备到设备通信共存的情况下的应用场景图一; 图 2为本发明实施例的应用场景图一;
图 3为本发明实施例的应用场景图二;
图 4为本发明实施例蜂窝通信和设备到设备通信共存的方法的实现流程示 意图一;
图 5为本发明实施例用户设备的结构示意图;
图 6为本发明实施例监听单元的结构示意图;
图 7为本发明实施例设备到设备通信共存的方法的实现流程示意图二; 图 8为本发明实施例基站的结构示意图;
图 9为本发明实施例蜂窝通信和设备到设备通信共存的方法的具体实现的 流程示意图一;
图 10 为本发明实施例蜂窝通信和设备到设备通信共存的方法的具体实现 的流程示意图二。 具体实施方式
下面将结合具体实施例及附图对本发明的实施方式进行详细描述。
图 2为本发明实施例的应用场景图一, 如图 2所示, eNB为演进型基站, 椭圓形为演进型基站所覆盖的蜂窝网络, UE8 为网络覆盖内的用户设备, UE9 为网络覆盖外的用户设备; 其中, 所述 UE8能与 eNB进行蜂窝通信, 能够接 收和发送蜂窝通信中的蜂窝数据; 所述 UE8能与网络覆盖外 UE9进行 D2D通 信。 图 3为本发明实施例的应用场景图二, 如图 3所示, eNB为演进型基站, 椭圓形为演进型基站所覆盖的蜂窝网络, UE10和 UE11均为网络覆盖内的用户 设备, 但由于特殊情况, 如所述 UE11位于着火的大楼内, 虽然所述 UE11在地 里位置上位于 eNB的覆盖内, 但由于 UE11不能与 eNB进行通信, 因此, 认为 UE11位于 eNB的蜂窝网络覆盖空洞 ( coverage hole ) 中, 等同于图 2中 UE9。
在图 2和图 3所示的场景中,所述 UE8和 UE10均能从各自对应的 eNB的 蜂窝网络中获得用于发送 D2D控制信息或 D2D数据的资源, 同时 eNB能够 动态调度或半持续调度 eNB对应的 UE8和 UE10发送 D2D信息; 而 UE9和 UEl 1通过使用竟争方式从无网络覆盖 D2D资源池中获得用于发送 D2D控制信 息或 D2D数据的资源。 其中, 在实际应用过程中, 无网络覆盖 D2D资源池的 频点、 与 eNB调度的蜂窝通信或 D2D通信资源池的频点相同或者不相同。
实施例一
图 4为本发明实施例蜂窝通信和设备到设备通信共存的方法的实现流程示 意图一, 所述方法用于用户设备侧, 如图 1所示, 所述方法包括:
步骤 401 : 接收资源控制信息; 其中, 所述资源控制信息是根据无网络覆 盖下的资源相关信息而确定的;
具体地, UE接收基站根据无网络覆盖下的资源相关信息而确定的资源控制 信息;
进一步地, 所述资源相关信息至少包括以下之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。 具体地, 所述无网络覆盖资源池信息, 用于无网络覆盖下用户设备对应的 设备到设备信息的发送; 所述资源池信息包括时域资源信息和 /或频域资源信 息;
所述资源信息为用户设备需要接收的无网络覆盖资源中的设备到设备数据 发送所使用的资源信息; 其中, 所述资源信息包括时域资源信息和 /或频域资源 信息;
所述第一时域资源图样信息指示无网络覆盖下使用的资源池信息或需要接 收的设备到设备数据所使用的时域资源信息, 或者指示用户设备所推荐的用于 接收无网络覆盖资源池中设备到设备信息的时域资源信息;
所述指示信息为用户设备需要或不需要监听或接收无网络覆盖资源池下的 设备到设备信息对应的指示信息。
所述资源控制信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。 具体地, 所述第二时域资源图样信息, 用于指示 UE接收无网络覆盖资源 池中 D2D信息的时域资源;
所述确认信息, 用于指示 UE能够在发送的资源相关信息指示的无网络覆 盖资源池或资源上接收 D2D信息;
所述拒绝信息, 用于指示 UE不能够在发送的所述资源相关信息指示的无 网络覆盖资源池或资源上接收 D2D信息;
所述非连续接收(DRx, Discontinuous Reception )图样信息, 用于指示 UE 在基站的蜂窝网络中处于非活跃时段(active time )时接收无网络覆盖下资源池 的 D2D信息。
进一步地, 所述第二时域资源图样信息所指示的时域资源是所述第一时域 资源图样信息所指示的时域资源的子集。
进一步地, 所述第一时域资源图样信息或第二时域资源图样信息至少包括 以下之一:
时域资源重复周期、 时域偏移量、 时域资源持续时间、 以及比特符串; 其中, 所述比特符串中每个比特符对应的比特值指示所对应的子帧是否用 于无网络覆盖下发送设备到设备信息或是否有设备到设备信息需要接收, 或者 所述子帧是否可以用于接收无网络覆盖下的设备到设备信息。
步骤 402: 根据所述资源控制信息在无网络覆盖资源池监听和接收设备到 设备信息。
具体地, UE根据所述资源控制信息在无网络覆盖资源池监听和接收 D2D 信息;
这里, 所述接收资源控制信息之前, 所述方法还包括:
接收指示信息;
根据所述指示信息通过无线资源控制协议消息、 媒体介入控制层控制单元 或物理上行控制信道的上行控制信息发送资源相关信息。
所述接收资源控制信息之前, 所述方法还包括: 通过无线资源控制协议消 息、 媒体介入控制层控制单元或物理上行控制信道的上行控制信息发送资源相 关信息。
这里, 当 UE接收到指示信息时, 所述 UE根据所述指示信息发送资源相 关信息; 当 UE未接收到指示信息时, 所述 UE直接将资源相关信息发送至基 站。
具体为, UE接收基站发送的指示信息; 所述 UE根据指示信息通过无线资 源控制协议(RRC, Radio Resource Control ) 消息、 媒体介入控制层(MAC, Media Access Control )的控制单元( CE )或物理上行控制信道( PUCCH, Physical Uplink Control CHannel ) 的上行控制信息 (UCI )发送源相关信息。
进一步地, 所述方法还包括: 所述接收资源控制信息之后, 通过空口发送 资源控制信息。
这里, 所述 UE 可以将资源控制信息发送至基站对应的网络覆盖内的 UE 中, 也可以将资源控制信息发送至基站对应的网络覆盖外的 UE中, 当其他 UE 接收到资源控制信息后, 能够根据资源控制信息确定 D2D信息的发送时域资 源。
进一步地, 所述设备到设备信息包括: 设备到设备控制信息、 和 /或设备到 设备数据。
进一步地, 所述设备到设备控制信息至少包括以下之一:
与设备到设备控制信息关联的设备到设备数据所占用的时域和 /或频域资 源信息、 调制编码方式、 发送功率信息、 资源占用时长信息及所述设备到设备 数据的设备到设备组信息。
进一步地, 所述根据所述资源控制信息在无网络覆盖资源池监听和接收设 备到设备信息, 包括:
当所述资源控制信息为第二时域资源图样信息时, 根据所述第二时域资源 图样信息指示的时域资源在无网络覆盖资源池监听和接收设备到设备信息; 当所述资源控制信息为确认信息时, 根据所述确定信息在所述资源相关信 息或所述无网络覆盖资源池指示的资源池或资源上监听和接收设备到设备信 息;
当所述资源控制信息为拒绝信息时, 根据所述拒绝信息不在所述资源相关 信息或所述无网络覆盖资源池指示的资源池或资源上监听和接收设备到设备信 息;
当所述资源控制信息为非连续接收图样信息时, 根据所述非连续接收图样 信息, 在处于蜂窝网络中的非活跃时段时, 在所述无网络覆盖资源池监听和接 收设备到设备信息。
对应于实施例一所述的方法, 本发明实施例提供了一种用户设备, 如图 5 所示, 所述用户设备包括:
接收单元 51, 配置为接收资源控制信息;
监听单元 52, 配置为根据所述资源控制信息在无网络覆盖资源池监听和接 收设备到设备信息。
进一步地, 所述接收单元, 还配置为接收指示信息;
相应地, 所述用户设备还包括: 发送单元, 配置为根据所述指示信息通过 无线资源控制协议消息、 媒体介入控制层控制单元或物理上行控制信道的上行 控制信息发送资源相关信息;
其中, 所述资源控制信息根据无网络覆盖下的资源相关信息确定。
进一步地, 所述发送单元, 还配置为在接收资源控制信息之后, 通过空口 发送资源控制信息。 进一步地, 如图 6所示, 所述监听单元 52还包括:
第一确定子单元 521, 配置为确定所述资源控制信息为第二时域资源图样 信息时, 根据所述第二时域资源图样信息指示的时域资源在无网络覆盖资源池 监听和接收设备到设备信息;
第二确定子单元 522, 配置为确定所述资源控制信息为确认信息时, 才艮据 所述确定信息在所述资源相关信息或所述无网络覆盖资源池指示的资源池或资 源上监听和接收设备到设备信息;
第三确定子单元 523, 配置为确定所述资源控制信息为拒绝信息时, 才艮据 所述拒绝信息不在所述资源相关信息或在所述无网络覆盖资源池指示的资源池 或资源上监听和接收设备到设备信息;
第四确定子单元 524, 配置为确定所述资源控制信息为非连续接收图样信 息时, 根据所述非连续接收图样信息, 在处于蜂窝网络中的非活跃时段时, 在 所述无网络覆盖资源池监听和接收设备到设备信息。
实际应用中, 所述接收单元和发送单元可由用户设备中的信号接收和发射 器或收发天线等实现; 所述监听单元可结合用户设备中的中央处理器(CPU, Central Processing Unit )、 数字信号处理器(DSP, Digital Signal Processor )或 现场可编程门阵列 (FPGA, Field Programmable Gate Array ), 以及用户设备中 的信号接收和发射器实现。
本发明实施例还提供了一种存储介质, 所述存储介质中存储有计算机可执 行指令, 所述计算机可执行指令用于执行本实施例蜂窝通信和设备到设备通信 共存的方法。
实施例二
图 7为本发明实施例蜂窝通信和设备到设备通信共存的方法的实现流程示 意图二, 所述方法用于基站侧, 如图 7所示, 所述方法包括:
步骤 701 : 获取资源相关信息;
具体地, 基站接收 UE发送的资源相关信息; 或者, 基站从操作管理维护 ( OAM, Operation Administration and Maintenance ) 系统、 核心网网元或邻近 服务服务器处获取资源相关信息。
进一步地, 所述资源相关信息至少包括以下之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。 进一步地, 所述资源控制信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。 步骤 702: 根据所述资源相关信息确定资源控制信息, 并发送所述资源控 制信息。
进一步地, 所述接收资源相关信息之前, 所述方法还包括:
通过系统信息块消息、 无线资源控制协议消息、 媒体介入控制层控制单元 或物理上行控制信道的上行控制信息发送指示信息, 指示是否发送所述资源相 关信息。
具体地, 通过系统信息块( SIB )消息、 RRC消息、 MAC的 CE或 PUCCH 的 UCI发送指示信息, 指示用户设备是否将所述资源相关信息发送基站。
进一步地, 所述方法还包括:
当确定的所述资源控制信息为第二时域资源图样信息时, 避开在所述第二 时域资源图样信息指示的时域资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
当确定的所述资源控制信息为确认信息时, 避开在所述确认信息对应的资 源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
当确定的所述资源控制信息为拒绝信息时, 不避开在所述拒绝信息对应的 资源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送。
对应于实施例二所述的方法, 本发明实施例提供了一种基站,如图 8所示, 所述用户设备包括:
信息接收单元 81, 配置为获取资源相关信息;
信息发送单元 82, 配置为根据所述资源相关信息确定资源控制信息, 并发 送所述资源控制信息。
进一步地, 所述信息接收单元 81, 还配置为从操作管理维护系统、 核心网 网元或邻近服务服务器处获取资源相关信息; 或者配置为接收资源相关信息。
进一步地, 若所述信息接收用于单元接收资源相关信息, 此时,
所述基站还包括指示单元, 配置为通过系统信息块消息、 无线资源控制协 议消息、 媒体介入控制层控制单元或物理上行控制信道的上行控制信息发送指 示信息, 指示是否发送所述资源相关信息。
进一步地, 所述基站还包括: 第一确定单元, 配置为确定所述资源控制信 息为第二时域资源图样信息时, 避开在所述第二时域资源图样信息指示的时域 资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送; 第二确定单元, 配置为确定所述资源控制信息为确认信息时, 避开在所述 确认信息对应的资源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 / 或蜂窝数据接收、 和 /或设备到设备信息发送;
第三确定单元, 配置为确定所述资源控制信息为拒绝信息时, 不避开在所 述拒绝信息对应的资源相关信息指示的资源池或资源上调度蜂窝数据发送、和 / 或蜂窝数据接收、 和 /或设备到设备信息发送。
这里, 所述调度指的是基站通过特定调度方式调度蜂窝数据或设备到设备 信息, 随后将蜂窝数据或设备到设备信息发送至用户设备端。
本发明实施例还提供了一种蜂窝通信和设备到设备通信共存的系统, 所述 系统包括: 实施例一所述的用户设备、 以及实施例二所述的基站。
实际应用中, 所述信息接收单元可由基站中的接收机实现; 所述信息发送 单元可由基站中的发射器实现; 所述第一确定单元、 第二确定单元及第三确定 单元可由基站中的中央处理器 (CPU, Central Processing Unit ), 数字信号处理 器 (DSP, Digital Signal Processor ) 或现场可编程门阵列 (FPGA, Field Programmable Gate Array ), 以及用户设备中的信号接收和发射器实现。
本发明实施例还提供了一种存储介质, 所述存储介质中存储有计算机可执 行指令, 所述计算机可执行指令用于执行本实施例蜂窝通信和设备到设备通信 共存的方法。
实施例三
本实施例描述的是基站根据无网络覆盖资源池将无网络覆盖 D2D 资源池 中 D2D信息发送至 UE中, 进而实现蜂窝通信和设备到设备通信的共存; 图 9为本发明实施例蜂窝通信和设备到设备通信共存的方法的具体实现的 流程示意图一,图 10为本发明实施例蜂窝通信和设备到设备通信共存的方法的 具体实现的流程示意图二, 如图 9和图 10所示, 所述方法包括:
步骤 901a: UE将资源相关信息发送至基站;
这里, 所述资源相关信息至少包括以下之一:
1 )无网络覆盖资源池信息; 所述无网络覆盖资源池信息为无网络覆盖下的 使用的资源池信息、或者无网络覆盖下使用的 D2D资源池信息, 用于无网络覆 盖下将 UE对应的 D2D控制信息和 /或 D2D数据发送至所述 UE;所述资源池信 息包括时域资源信息和 /或频域资源信息;
2 ) 资源信息; 所述资源信息为发送 UE接收的、 无网络覆盖下的 D2D信 息时所使用的资源信息; 其中, 所述资源信息包括时域资源信息和 /或频域资源 信息;
3 )第一时域资源图样信息; 所述第一时域资源图样信息用于指示无网络覆 盖下使用的资源池信息或发送 D2D信息时所使用的资源信息的时域信息,或者 指示 UE所推荐的用于接收或使用无网络覆盖下资源池中 D2D信息的时域资 源; 可选的, 所述时域资源的图样信息可以为 DRx图样信息;
4 )指示信息; 所述指示信息为 UE需要或不需要监听无网络覆盖资源池下 的 D2D信息对应的指示信息、 以及接收 D2D信息时对应的指示信息; 所述指 示信息还可指示所述 D2D信息为 D2D控制信息或 D2D数据;
即所述指示信息指示 UE需要或不需要接收 D2D控制信息以确定是否有所 述 UE感兴趣的信息、 或需要接收的 D2D数据; 或者,
所述指示信息指示 UE通过接收 D2D控制信息以确定所述 UE有没有感兴 趣的信息、 或需要接收的 D2D数据。 这里,所述 D2D控制信息为与所述 D2D控制信息关联的 D2D数据所占用 的资源信息以及使用信息, 所述资源信息以及使用信息至少包括以下之一: 与所述 D2D控制信息关联的 D2D数据所占用的时域和 /或频域资源信息, 所述 D2D控制信息釆用的 MCS、 发送功率信息、 资源占用时长信息以及所述 D2D数据的 D2D组信息;
可选的, 所述 UE将所述资源相关信息发送至所述基站之前, 所述基站可 指示所述 UE是否将所述资源相关信息发送至所述基站;
具体步骤包括:
基站通过 SIB消息, RRC消息, MAC的 CE, PDCCH的 DCI等方式将指 示信息发送至 UE, 指示所述 UE是否发送所述资源相关信息;
所示 UE接收所述指示信息, 根据所述指示信息通过 RRC消息、 MAC的 CE或 PDCCH 的 UCI 等将所述资源相关信息发送至所述基站;
步骤 901b: 基站从 OAM系统、 核心网网元或邻近服务服务器处获取资源 相关信息;
这里, 所述资源相关信息为无网络覆盖下使用的资源池信息。
需要注意的是, 基站可以同时通过步骤 901a和 901b获得资源相关信息, 或者通过步骤 901a或 901b获得资源相关信息。 例如, 基站通过步骤 901a获得 发送 UE需要接收的、 无网络覆盖下 D2D信息时所使用的资源信息, 或者基站 通过步骤 901a获得 UE需要或不需要监听无网络覆盖资源池下的 D2D信息对 应的指示信息、 以及接收 D2D信息时对应的指示信息, 并且通过步骤 901b获 得无网络覆盖资源池信息。
步骤 902: 所述基站根据所述资源相关信息确定资源控制信息, 并将所述 资源控制信息发送至所述 UE;
这里, 所述资源控制信息至少包括以下之一:
1 )第二时域资源图样信息; 所述第二时域资源图样信息用于指示 UE接收 无网络覆盖下资源池中 D2D信息的时域资源; 可选的, 若所述 UE发送给基站 的资源相关信息包含第一时域资源图样信息, 则基站根据所述资源相关信息确 定出的资源控制信息中包含的第二时域资源图样信息所指示的时域资源是所述 第一时域资源图样信息所指示的时域资源的子集;
2 )确认信息; 所述确认信息用于指示 UE能够在发送的资源相关信息指示 的无网络覆盖资源池或资源上接收 D2D信息;
3 )拒绝信息; 所述拒绝信息用于指示 UE不能够在发送的资源相关信息指 示的无网络覆盖资源池或资源上接收 D2D信息。
4 ) D X图样信息; 所述 DRX图样信息用于指示 UE能够在基站的蜂窝网 络中处于非 active time时接收无网络覆盖下资源池的 D2D信息。
具体地, 基站根据资源相关信息确定资源控制信息的原则包括:
1 )若无网络覆盖下资源池所在的频点与基站的蜂窝网络或覆盖内 D2D通 信的调度资源池的频点相同时, 则基站尽量避开 UE可能在无网络覆盖下资源 池上接收 D2D信息所在的时域资源上调度 UE的蜂窝数据的发送及 D2D信息 的发送;
2 )若无网络覆盖下资源池所在的频点与基站的蜂窝网络或基站覆盖内 D2D 通信的调度资源池的频点不相同, 则基站尽量避开 UE可能在无网络覆盖下资 源池上接收 D2D信息所在的时域资源上调度 UE的蜂窝数据的发送和接收, 以 及调度 D2D信息的发送;
3 )基站根据运营商策略、 本地策略、 业务信息或业务优先级信息确定 UE 的无覆盖下 D2D信息接收、 D2D信息发送、 蜂窝数据发送以及蜂窝数据接收 的优先级, 并根据优先级顺序优先执行优先级高的数据接收或发送。
步骤 903: UE根据所述资源控制信息在无网络覆盖资源池监听和接收 D2D 信息;
具体地:
1 ) 当所述资源控制信息为第二时域资源图样信息时, UE根据所述第二时 域资源图样信息指示的时域资源在无网络覆盖资源池监听和接收设备到设备信 息;
2 ) 当所述资源控制信息为确认信息时, UE根据所述确定信息在所述资源 相关信息、 或者在所述无网络覆盖资源池指示的资源池或资源上监听和接收设 备到设备信息;
3 ) 当所述资源控制信息为拒绝信息时, UE ^^艮据所述拒绝信息不在所述资 源相关信息、 或者不在所述无网络覆盖资源池指示的资源池或资源上监听和接 收设备到设备信息;
4 )当所述资源控制信息为非连续接收图样信息时,根据所述非连续接收图 样信息, 在处于蜂窝网络中的非活跃时段时, 在所述无网络覆盖资源池监听和 接收设备到设备信息。
本发明实施例还提供了一种存储介质, 所述存储介质中存储有计算机可执 行指令, 所述计算机可执行指令用于执行本实施例蜂窝通信和设备到设备通信 共存的方法。
本领域内的技术人员应明白, 本发明的实施例可提供为方法、 系统、 或计 算机程序产品。 因此, 本发明可釆用硬件实施例、 软件实施例、 或结合软件和 硬件方面的实施例的形式。 而且, 本发明可釆用在一个或多个其中包含有计算 机可用程序代码的计算机可用存储介质 (包括但不限于磁盘存储器和光学存储 器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、 和计算机程序产品 的流程图和 /或方框图来描述的。应理解可由计算机程序指令实现流程图和 /或方 框图中的每一流程和 /或方框、 以及流程图和 /或方框图中的流程和 /或方框的结 合。 可提供这些计算机程序指令到通用计算机、 专用计算机、 嵌入式处理机或 其他可编程数据处理设备的处理器以产生一个机器, 使得通过计算机或其他可 编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个 流程和 /或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备 以特定方式工作的计算机可读存储器中, 使得存储在该计算机可读存储器中的 指令产生包括指令装置的制造品, 该指令装置实现在流程图一个流程或多个流 程和 /或方框图一个方框或多个方框中指定的功能。 这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上, 使 得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处 理, 从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个 流程或多个流程和 /或方框图一个方框或多个方框中指定的功能的步骤。
以上所述仅是本发明实施例的实施方式, 应当指出, 对于本技术领域的普 通技术人员来说, 在不脱离本发明实施例原理的前提下, 还可以作出若干改进 和润饰, 这些改进和润饰也应视为本发明实施例的保护范围。 工业实用性
本发明实施例基站能控制自身的蜂窝网络覆盖内的 UE在网络覆盖外资源 池上接收 D2D信息的时机, 即基站能够控制网络覆盖范围内的 UE在无网络覆 盖资源池监听和接收 D2D信息的时机, 如此, 能避免网络覆盖外 D2D通信对 网络覆盖内的蜂窝通信和 D2D通信的影响, 而且, 能使网络覆盖内的 UE正确 有效的接收网络覆盖外 UE发送的 D2D信息。

Claims

权利要求书
1、 一种蜂窝通信和设备到设备通信共存的方法, 所述方法包括: 接收资源控制信息;
根据所述资源控制信息在无网络覆盖资源池监听和接收设备到设备信息。
2、 根据权利要求 1所述的方法, 其中, 所述接收资源控制信息之前, 所述 方法还包括:
接收指示信息;
根据所述指示信息通过无线资源控制协议消息、 媒体介入控制层控制单元 或物理上行控制信道的上行控制信息发送资源相关信息。
3、 根据权利要求 1所述的方法, 其中, 所述接收资源控制信息之前, 所述 方法还包括: 通过无线资源控制协议消息、 媒体介入控制层控制单元或物理上 行控制信道的上行控制信息发送资源相关信息。
4、 根据权利要求 1所述的方法, 其中, 所述方法还包括:
所述接收资源控制信息之后, 通过空口发送资源控制信息。
5、 根据权利要求 1所述的方法, 其中, 所述设备到设备信息包括: 设备到 设备控制信息、 和 /或设备到设备数据。
6、根据权利要求 5所述的方法, 其中, 所述设备到设备控制信息至少包括 以下之一:
与设备到设备控制信息关联的设备到设备数据所占用的时域和 /或频域资 源信息、 调制编码方式、 发送功率信息、 资源占用时长信息及所述设备到设备 数据的设备到设备组信息。
7、根据权利要求 2所述的方法, 其中, 所述资源相关信息至少包括以下之 无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。
8、根据权利要求 7所述的方法, 其中, 所述无网络覆盖资源池信息用于无 网络覆盖下用户设备对应的设备到设备信息的发送;
所述资源信息为用户设备需要接收的无网络覆盖资源中的设备到设备数据 发送所使用的资源信息;
所述第一时域资源图样指示无网络覆盖下使用的资源池信息或需要接收的 设备到设备数据所使用的时域资源信息, 或者指示用户设备所推荐的用于接收 无网络覆盖资源池中设备到设备信息的时域资源信息;
所述指示信息为用户设备需要或不需要监听或接收无网络覆盖资源池下的 设备到设备信息对应的指示信息。
9、根据权利要求 1至 8任一项所述的方法, 其中, 所述资源控制信息至少 包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。
10、 根据权利要求 9所述的方法, 其中, 所述第一时域资源图样信息或第 二时域资源图样信息至少包括以下之一:
时域资源重复周期、 时域偏移量、 时域资源持续时间、 以及比特符串; 其中, 所述比特符串中每个比特符对应的比特值指示所对应的子帧是否用 于无网络覆盖下发送设备到设备信息或是否有设备到设备信息需要接收, 或者 所述子帧是否可以用于接收无网络覆盖下的设备到设备信息。
11、 根据权利要求 9所述的方法, 其中, 所述根据所述资源控制信息在无 网络覆盖资源池监听和接收设备到设备信息, 包括:
当所述资源控制信息为第二时域资源图样信息时, 根据所述第二时域资源 图样信息指示的时域资源在无网络覆盖资源池监听和接收设备到设备信息; 当所述资源控制信息为确认信息时, 根据所述确定信息在所述资源相关信 息或所述无网络覆盖资源池指示的资源池或资源上监听和接收设备到设备信 息;
当所述资源控制信息为拒绝信息时, 根据所述拒绝信息不在所述资源相关 信息或所述无网络覆盖资源池指示的资源池或资源上监听和接收设备到设备信 息; 当所述资源控制信息为非连续接收图样信息时, 根据所述非连续接收图样 信息, 在处于蜂窝网络中的非活跃时段时, 在所述无网络覆盖资源池监听和接 收设备到设备信息。
12、 根据权利要求 9所述的方法, 其中, 所述第二时域资源图样信息所指 示的时域资源是所述第一时域资源图样信息所指示的时域资源的子集。
13、 一种蜂窝通信和设备到设备通信共存的方法, 所述方法包括: 获取资源相关信息;
根据所述资源相关信息确定资源控制信息, 并发送所述资源控制信息。
14、 根据权利要求 13所述的方法, 其中, 所述获取资源相关信息包括: 从操作管理维护系统、核心网网元或邻近服务服务器处获取资源相关信息; 或者, 接收用户设备发送的资源相关信息。
15、 根据权利要求 14所述的方法, 其中, 所述接收资源相关信息之前, 所 述方法还包括:
通过系统信息块消息、 无线资源控制协议消息、 媒体介入控制层控制单元 或物理上行控制信道的上行控制信息发送指示信息, 指示是否发送所述资源相 关信息。
16、根据权利要求 13所述的方法, 其中, 所述资源相关信息至少包括以下 之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。
17、 根据权利要求 13至 16任一项所述的方法, 其中, 所述资源控制信息 至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。
18、 根据权利要求 17所述的方法, 其中, 所述方法还包括:
当确定的所述资源控制信息为第二时域资源图样信息时, 避开在所述第二 时域资源图样信息指示的时域资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
当确定的所述资源控制信息为确认信息时, 避开在所述确认信息对应的资 源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
当确定的所述资源控制信息为拒绝信息时, 不避开在所述拒绝信息对应的 资源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送。
19、 一种蜂窝通信和设备到设备通信共存的方法, 所述方法包括: 基站获取资源相关信息;
基站根据所述资源相关信息确定资源控制信息, 并将所述资源控制信息发 送至用户设备;
所述用户设备根据所述资源控制信息在无网络覆盖资源池监听和接收设备 到设备信息。
20、根据权利要求 19所述的方法,其中,所述基站获取资源相关信息包括: 基站从操作管理维护系统、 核心网网元或邻近服务服务器处获取资源相关 信息; 或者,
基站接收用户设备发送的资源相关信息。
21、 一种用户设备, 所述用户设备包括:
接收单元, 配置为接收资源控制信息;
监听单元, 配置为根据所述资源控制信息在无网络覆盖资源池监听和接收 设备到设备信息。
22、 根据权利要求 21所述的用户设备, 其中, 所述接收单元, 还配置为接 收指示信息;
相应地, 所述用户设备还包括: 发送单元, 配置为根据所述指示信息通过 无线资源控制协议消息、 媒体介入控制层控制单元或物理上行控制信道的上行 控制信息发送资源相关信息。
23、 根据权利要求 22所述的用户设备, 其中, 所述发送单元, 还配置为在 接收资源控制信息之后, 通过空口发送资源控制信息。
24、根据权利要求 22所述的用户设备, 其中, 所述资源相关信息至少包括 以下之一:
无网络覆盖资源池信息、 资源信息、 第一时域资源图样信息及指示信息。
25、 根据权利要求 21至 24任一项所述的用户设备, 其中, 所述资源控制 信息至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。
26、 根据权利要求 25所述的用户设备, 其中, 所述监听单元还包括: 第一确定子单元, 配置为确定所述资源控制信息为第二时域资源图样信息 时, 根据所述第二时域资源图样信息指示的时域资源在无网络覆盖资源池监听 和接收设备到设备信息;
第二确定子单元, 配置为确定所述资源控制信息为确认信息时, 根据所述 确定信息在所述资源相关信息或所述无网络覆盖资源池指示的资源池或资源上 监听和接收设备到设备信息;
第三确定子单元, 配置为确定所述资源控制信息为拒绝信息时, 根据所述 拒绝信息不在所述资源相关信息或所述无网络覆盖资源池指示的资源池或资源 上监听和接收设备到设备信息;
第四确定子单元,配置为确定所述资源控制信息为非连续接收图样信息时, 根据所述非连续接收图样信息, 在处于蜂窝网络中的非活跃时段时, 在所述无 网络覆盖资源池监听和接收设备到设备信息。
27、 一种基站, 所述基站包括:
信息接收单元, 配置为获取资源相关信息;
信息发送单元, 配置为根据所述资源相关信息确定资源控制信息, 并发送 所述资源控制信息。
28、 根据权利要求 27所述的基站, 其中, 所述信息接收单元, 还配置为从 操作管理维护系统、 核心网网元或邻近服务服务器处获取资源相关信息; 或者 配置为接收资源相关信息。
29、根据权利要求 28所述的基站, 其中, 若所述信息接收用于单元接收资 源相关信息, 此时, 所述基站还包括指示单元, 配置为通过系统信息块消息、 无线资源控制协 议消息、 媒体介入控制层控制单元或物理上行控制信道的上行控制信息发送指 示信息, 指示是否发送所述资源相关信息。
30、根据权利要求 27所述的基站, 其中, 所述资源相关信息至少包括以下 之一:
无网络覆盖资源池信息、 资源信息、第一时域资源图样信息以及指示信息。
31、 根据权利要求 27至 30任一项所述的基站, 其中, 所述资源控制信息 至少包括以下之一:
第二时域资源图样信息、 确认信息、 拒绝信息及非连续接收图样信息。
32、根据权利要求 31所述的基站,其中,所述基站还包括: 第一确定单元, 配置为确定所述资源控制信息为第二时域资源图样信息时, 避开在所述第二时 域资源图样信息指示的时域资源上调度蜂窝数据发送、 和 /或蜂窝数据接收、 和 /或设备到设备信息发送;
第二确定单元, 配置为确定所述资源控制信息为确认信息时, 避开在所述 确认信息对应的资源相关信息指示的资源池或资源上调度蜂窝数据发送、 和 / 或蜂窝数据接收、 和 /或设备到设备信息发送;
第三确定单元, 配置为确定所述资源控制信息为拒绝信息时, 不避开在所 述拒绝信息对应的资源相关信息指示的资源池或资源上调度蜂窝数据发送、和 / 或蜂窝数据接收、 和 /或设备到设备信息发送。
33、 一种蜂窝通信和设备到设备通信共存的系统, 所述系统包括: 权利要 求 21至 26任一项所述的用户设备、 及权利要求 27至 32任一项所述的基站。
34、 一种存储介质, 所述存储介质中存储有计算机可执行指令, 所述计算 机可执行指令用于执行权利要求 1至 12任一项所述的蜂窝通信和设备到设备通 信共存的方法。
35、 一种存储介质, 所述存储介质中存储有计算机可执行指令, 所述计算 机可执行指令用于执行权利要求 13至 18任一项所述的蜂窝通信和设备到设备 通信共存的方法。
36、 一种存储介质, 所述存储介质中存储有计算机可执行指令, 所述计算 机可执行指令用于或执行权利要求 19或 20所述的蜂窝通信和设备到设备通信 共存的方法。
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