WO2018228360A1 - 通信方法、移动终端、基站及计算机可读存储介质 - Google Patents

通信方法、移动终端、基站及计算机可读存储介质 Download PDF

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Publication number
WO2018228360A1
WO2018228360A1 PCT/CN2018/090786 CN2018090786W WO2018228360A1 WO 2018228360 A1 WO2018228360 A1 WO 2018228360A1 CN 2018090786 W CN2018090786 W CN 2018090786W WO 2018228360 A1 WO2018228360 A1 WO 2018228360A1
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WIPO (PCT)
Prior art keywords
frequency point
mobile terminal
uplink
target resource
communication
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PCT/CN2018/090786
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English (en)
French (fr)
Inventor
陈力
姜大洁
杨晓东
秦飞
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维沃移动通信有限公司
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Publication date
Application filed by 维沃移动通信有限公司 filed Critical 维沃移动通信有限公司
Priority to EP18818488.1A priority Critical patent/EP3641205B1/en
Priority to ES18818488T priority patent/ES2889198T3/es
Priority to US16/621,868 priority patent/US11576176B2/en
Publication of WO2018228360A1 publication Critical patent/WO2018228360A1/zh
Priority to US18/148,459 priority patent/US20230142710A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W16/00Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
    • H04W16/14Spectrum sharing arrangements between different networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0453Resources in frequency domain, e.g. a carrier in FDMA
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0001Arrangements for dividing the transmission path
    • H04L5/0003Two-dimensional division
    • H04L5/0005Time-frequency
    • H04L5/0007Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT
    • H04L5/001Time-frequency the frequencies being orthogonal, e.g. OFDM(A), DMT the frequencies being arranged in component carriers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0053Allocation of signaling, i.e. of overhead other than pilot signals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/0091Signaling for the administration of the divided path
    • H04L5/0096Indication of changes in allocation
    • H04L5/0098Signalling of the activation or deactivation of component carriers, subcarriers or frequency bands
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/0205Traffic management, e.g. flow control or congestion control at the air interface
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/08Reselecting an access point
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/20Selecting an access point
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/02Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
    • H04W84/04Large scale networks; Deep hierarchical networks
    • H04W84/042Public Land Mobile systems, e.g. cellular systems

Definitions

  • the present disclosure relates to the technical field of communication applications, and in particular, to a communication method, a mobile terminal, a base station, and a computer readable storage medium.
  • 5G NR New Radio
  • the 3.5GHz uplink and downlink budgets have large differences (downlink transmission loss is about 10dB less than the uplink transmission loss), resulting in uplink coverage.
  • the range is significantly smaller than the downlink coverage.
  • the main reason for the difference between the uplink and downlink budgets is that the uplink transmit power of the mobile terminal is much smaller than the downlink transmit power of the base station, and the downlink antenna configuration is 64 rounds and 4 rounds, and the uplink antenna configuration is 1 round and 64 rounds, resulting in uplink coverage.
  • the range is significantly smaller than the downlink coverage.
  • the difference between the uplink and downlink budgets causes the coverage of 5G networks to be limited to the uplink coverage.
  • the 3.5GHz is 5dB worse than the uplink coverage of China Mobile's 2.6GHz 4G network (mainly the propagation loss gap), thus making When the 4G base station is co-sited, the 5G base station cannot achieve continuous coverage, which affects the user experience of the 5G user.
  • the 3GPP Rel-15 NR WI (work item) includes gradual and gradual upgrade to NR in the frequency domain.
  • the research content of LTE NR uplink spectrum sharing but there is no relevant solution in the uplink spectrum sharing technology for how to perform cell camping, access and/or uplink transmission.
  • the present disclosure provides a communication method applied to a mobile terminal, including:
  • the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR Communication Systems;
  • the present disclosure also provides a communication method applied to a base station, including:
  • the mobile terminal Transmitting the resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, a target resource for uplink communication in a current communication process, and performs communication with the base station according to the target resource, where the target
  • the frequency corresponding to the resource includes the first service frequency of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is the new air interface NR communication system.
  • the disclosure also provides a mobile terminal, including:
  • An acquiring module configured to acquire a target resource for uplink communication in a current communication process, where a frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication where the mobile terminal is located
  • the system is a new air interface NR communication system
  • a communication module configured to communicate with the base station according to the target resource.
  • the present disclosure also provides a mobile terminal, including a first memory, a first processor, and a first computer program stored on the first memory and operable on the first processor, the processor executing the first
  • the computer program implements the steps in the communication method as described above.
  • the present disclosure also provides a computer readable storage medium having stored thereon a first computer program that, when executed by a processor, implements the steps in the communication method as described above.
  • the present disclosure also provides a base station, including:
  • a second sending module configured to send resource indication information to the mobile terminal, to enable the mobile terminal to determine, according to the resource indication information, a target resource used for uplink communication in a current communication process, and perform, according to the target resource, the target resource
  • the communication wherein the frequency point corresponding to the target resource comprises a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR communication system.
  • the present disclosure also provides a base station including a second memory, a second processor, and a second computer program stored on the second memory and operable on the second processor, the second processor executing the The second computer program implements the steps in the communication method as described above.
  • the present disclosure also provides a computer readable storage medium having stored thereon a second computer program that, when executed by a processor, implements the steps in the communication method described above.
  • FIG. 1 is a flowchart showing the operation of a communication method according to some embodiments of the present disclosure
  • FIG. 2 is a schematic diagram of coverage of a base station frequency point in a communication method according to some embodiments of the present disclosure
  • FIG. 3 is a schematic diagram of transmission in a communication method according to some embodiments of the present disclosure.
  • FIG. 4 is a flowchart of a communication method of a communication method according to still another embodiment of the present disclosure.
  • FIG. 5 is a structural block diagram of a mobile terminal according to some embodiments of the present disclosure.
  • FIG. 6 is a structural block diagram of a mobile terminal according to still another embodiment of the present disclosure.
  • FIG. 7 is a structural block diagram of a mobile terminal according to still another embodiment of the present disclosure.
  • FIG. 8 is a structural block diagram of a mobile terminal according to still another embodiment of the present disclosure.
  • FIG. 9 is a structural block diagram of a base station according to some embodiments of the present disclosure.
  • FIG. 10 is a structural block diagram of a base station according to further embodiments of the present disclosure.
  • an embodiment of the present disclosure provides a communication method applied to a mobile terminal, including steps 101 and 102.
  • Step 101 Acquire a target resource for uplink communication in the current communication process, where the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface.
  • NR communication system
  • the first service frequency point is specifically 1.8 GHz, 800 MHz, 900 MHz, 2.3 GHz, 2.6 GHz, or 2.1 GHz.
  • the following is an example of 1.8 GHz, and other frequency points are similar;
  • the second service frequency point is specifically a 5G NR deployment frequency.
  • the non-new air interface NR communication system may be specifically an LTE communication system, and the current communication process is specifically a cell camping, random access or data transmission process.
  • the mobile terminal can perform uplink transmission or downlink transmission through a second service frequency point (such as 3.5 GHz) of the NR communication system, and the frequency point corresponding to the target resource includes The first service frequency of the LTE communication system (such as 1.8 GHz), so the mobile terminal can also perform uplink transmission through the first service frequency, that is, the LTE system and the NR communication system share the first service frequency to solve the 5G NR system.
  • the mid-upstream coverage is significantly smaller than the downlink coverage.
  • the frequency mentioned above is a common frequency point in the industry.
  • the specific frequency information is:
  • the 800 MHz, 900 MHz frequency point also includes any of 800 MHz and 900 MHz used in CDMA, GSM, and TD-SCDMA systems.
  • the frequency point corresponding to the target resource further includes a second service frequency point of the new air interface NR communication system.
  • Step 102 Communicate with the base station according to the target resource.
  • the target resource resides in a cell corresponding to the base station and performs data transmission with the base station, or accesses a cell corresponding to the base station according to the target resource, and performs data transmission with the base station.
  • the communication method of the embodiment of the present disclosure acquires a target resource for uplink communication in a current communication process, where a frequency point corresponding to the target resource includes a first service frequency point of the LTE communication system, and the communication where the mobile terminal is located
  • the system is a new air interface NR communication system; and communicates with the base station according to the target resource.
  • uplink transmission may be performed by using a first serving frequency point of the LTE communication system and a second serving frequency point of the NR communication system, and performing communication with the base station on the premise of sharing the uplink frequency point.
  • the foregoing step 101 includes:
  • Step 1011 Obtain a target resource for uplink communication in the current communication process by using a preset protocol.
  • the uplink frequency used in the cell camping, random access, and data transmission processes may be pre-defined in the protocol.
  • the foregoing step 101 includes:
  • Step 1012 Acquire, according to the resource indication information sent by the base station, the target resource used for uplink communication in the current communication process.
  • the resource indication information is sent by the base station by using at least one of a reference signal, a physical broadcast channel, system information, or dedicated radio resource control RRC signaling. Or the resource indication information is sent by a newly added reference signal or channel in the synchronization signal block.
  • the base station broadcasts in the physical broadcast channel PBCH (Master System Information Block MIB), the synchronization signal block or the system information block SIB (a certain SIB message, such as SIB2), or informs the UE of the uplink transmission through the proprietary radio resource control RRC signaling.
  • PBCH Master System Information Block MIB
  • SIB system information block
  • RRC Radio Resource Control
  • the resource indication information sent by the base station enables the terminal to know the frequency of access or camping earlier.
  • the above target resources are specifically cells or frequency points.
  • the foregoing step 1012 includes:
  • Step 10121 If the resource indication information includes frequency point information corresponding to the candidate cell, select a target cell to camp in the candidate cell according to a frequency point supported by the mobile terminal, and use the target cell as the target. Resources.
  • the target cell is selected to camp.
  • the base station sends the frequency point information corresponding to the candidate cell to the terminal, so that the terminal can identify earlier whether the candidate cell is a cell that prohibits the mobile terminal from camping or denying access to the bar, so as to avoid Delaying the mobile terminal to initiate a service.
  • the foregoing step 1012 further includes:
  • the determining parameter used in performing cell reselection or cell selection for each candidate cell is corrected according to a preset offset parameter, where the determining The parameter is calculated according to the S criterion or the R criterion selected by the cell; and the target cell is determined according to the judgment parameter after the correction process.
  • the step of performing a correction process on the determining parameters used for cell reselection or cell selection in each of the candidate cells according to a preset offset parameter includes:
  • the uplink frequency point supported by the mobile terminal includes the first service frequency point
  • the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first service frequency point for uplink transmission or does not support the second service of the NR communication system.
  • the frequency point is used for uplink transmission, and the determination parameter is added to the preset offset parameter, otherwise the determination parameter is subtracted from the preset offset parameter, and the preset offset parameter is a positive number.
  • the mobile terminal can camp on the cell matching the supported frequency capability of the mobile terminal with a high probability.
  • the foregoing step 1012 further includes:
  • the cell selection is performed on the candidate cells having the respective camping priorities, and the target cell to be camped is obtained.
  • the uplink frequency point supported by the mobile terminal includes the first service frequency point
  • the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first service frequency point for uplink transmission or does not support the second service frequency of the NR communication system. If the point is used for uplink transmission, the camping priority of the candidate cell is increased, otherwise the camping priority of the candidate cell is lowered.
  • the camping priority of the candidate cell is adjusted so that the mobile terminal can camp on the cell matching the supported frequency capability of the mobile terminal with a higher probability.
  • the foregoing step 1012 includes:
  • Step 10122 If the resource indication information includes an uplink frequency point, the available uplink frequency point is used as the target resource, and the available uplink frequency point is configured by the base station according to the capability information reported by the mobile terminal.
  • the capability information includes an uplink frequency point supported by the mobile terminal.
  • the method further includes:
  • the foregoing capability information further includes:
  • the mobile terminal supports using the first serving frequency point as the uplink frequency point for accessing or performing uplink data transmission in the corresponding time slot of the downlink transmission.
  • the mobile terminal reports the capability information, so that when the UE performs downlink reception using the second service frequency, the network does not configure uplink access or uplink transmission resources for the UE; when the UE does not use the second service frequency for downlink reception
  • the network can configure uplink access or uplink transmission resources for the UE.
  • the communications method further includes:
  • the network may notify the UE of the access mode supported by the network by using broadcast or proprietary RRC signaling, or after the UE accesses, the network notifies the uplink transmission mode supported by the UE network through broadcast or proprietary RRC signaling broadcast.
  • the access mode and the uplink transmission mode herein refer to whether the time slot for downlink reception using the second service frequency point is supported, and the first service frequency point is used for uplink transmission.
  • the foregoing step 102 includes: the step of performing communication with the base station according to the target resource includes:
  • the foregoing step 102 includes: performing, according to the target resource, communication with the base station:
  • the target resource includes a frequency point for camping, camping according to a frequency point for camping, or after camping according to a frequency point for camping, according to a frequency point for camping In and / or uplink transmission;
  • the target resource includes a frequency point for access, according to the frequency point used for access, or according to the frequency point used for access, according to the frequency point used for accessing Uplink transmission
  • uplink transmission is performed according to a frequency point used for uplink transmission.
  • the step of camping according to the target resource includes:
  • a signal strength threshold, the second signal strength threshold, and a current reference signal received power RSRP are selected to be camped by the first serving frequency point or the second serving frequency point.
  • the step of obtaining the first signal strength threshold corresponding to the first service frequency point and the second signal strength threshold corresponding to the second service frequency point includes:
  • different thresholds for cell selection or reselection may be set for different frequency points.
  • the terminal may select a corresponding cell and camp on the corresponding frequency point.
  • the step of accessing according to the target resource includes:
  • the third signal strength threshold, the fourth signal strength threshold, and the current reference signal received power RSRP are selected to be accessed by using the first serving frequency point or the second serving frequency point.
  • the step of obtaining the third signal strength threshold corresponding to the first serving frequency point and the fourth signal strength threshold corresponding to the second serving frequency point includes:
  • different random access thresholds can be set for different frequency points.
  • the terminal may select random access at the corresponding frequency point.
  • step 102 includes:
  • the first service frequency point as an uplink frequency point for uplink or downlink transmission, where the predetermined time slot is used by the mobile terminal to use the downlink service frequency of the NR communication system.
  • the time slot for downlink reception is used by the mobile terminal to use the downlink service frequency of the NR communication system.
  • the foregoing predetermined time slots include:
  • the time slot in which the connection state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • Time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • the time slot in which the idle state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving a paging message, and a time slot for receiving reference information.
  • the NR system uplink frequency includes 3.5 GHz and shared LTE 1.8 GHz, and the downlink is only 3.5 GHz.
  • the 1.8 GHz coverage is greater than 3.5 GHz.
  • the first area is closer to the base station, and the UE can perform uplink transmission using 1.8 GHz and/or 3.5 GHz; the second area is far from the base station, and the UE can only use 1.8 GHz for uplink transmission.
  • the NR system uplinks and shares 1.8 GHz of the LTE system, and when the mobile terminal uses 3.5 GHz for downlink reception, it is not possible to use the 1.8 GHz for uplink transmission at the same time.
  • the mobile terminal can perform uplink transmission using 1.8 GHz only when downlink reception is not performed using 3.5 GHz.
  • This scheme allows the UE to have only one transceiver to perform uplink and downlink transmissions in a time-sharing manner, which not only saves the cost of a duplexer, but also reduces the effects of intermodulation interference and secondary co-wave.
  • the base station broadcasts in the physical broadcast channel PBCH (Master System Information Block MIB), the synchronization signal block or the system information block SIB (a certain SIB message, such as SIB2), or informs the UE of the uplink transmission frequency through the proprietary radio resource control RRC signaling. Or inform the UE of the frequency used for random access, or the frequency of the camp, such as 3.5 GHz and / or 1.8 GHz.
  • PBCH Master System Information Block MIB
  • SIB system information block
  • RRC radio resource control
  • the mobile terminal selects the frequency of the stay according to the frequency of the broadcast
  • the UE can camp on 3.5 GHz and/or 1.8 GHz;
  • UEs are all camped at 1.8GHz, or
  • the UE camps at 3.5 GHz and/or 1.8 GHz (implicitly supporting 3.5 GHz can reside);
  • UE Do not broadcast 3.5Ghz and 1.8Ghz, UE camps at 3.5GHz (implicit support for 3.5GHz can reside);
  • the UE can access at 3.5 GHz and / or 1.8 GHz;
  • UEs are all connected at 1.8 GHz;
  • UE access at 3.5GHz and / or 1.8GHz (implicit support for 3.5GHz can do uplink access)
  • the UE may request the uplink transmission to use the frequency point (for example, according to the UE capability, the RRC message or the UE assists reporting the message request), and the base station side according to the received UE request, and then Configure the uplink transmission resources for the UE.
  • the UL transmission situation is similar to RACH.
  • the UE can transmit at 3.5 GHz and/or 1.8 GHz uplink;
  • UEs are all transmitting at 1.8 GHz uplink;
  • the UE transmits uplinks at 3.5 GHz and/or 1.8 GHz (implicitly supporting 3.5 GHz for uplink transmission);
  • the 3.5Ghz and 1.8Ghz are not broadcast, and the UE transmits on the 3.5GHz uplink (implicitly supporting 3.5GHz for uplink transmission).
  • the communication method of the embodiment of the present disclosure may also be independent of the frequency of the broadcast, or in the absence of a broadcast frequency point, directly define a random access or resident at a certain frequency point or a default 1.8 Ghz in the protocol, or Uplink transmission is performed directly in areas of 3.5 GHz and/or 1.8 GHz.
  • the communication method of the embodiment of the present disclosure acquires a target resource for uplink communication in the current communication process, where the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the mobile terminal
  • the communication system in which it is located is a new air interface NR communication system; and communicates with the base station according to the target resource.
  • uplink transmission may be performed by using a first serving frequency point of the LTE communication system and a second serving frequency point of the NR communication system, and performing communication with the base station on the premise of sharing the uplink frequency point.
  • an embodiment of the present disclosure further provides a communication method, which is applied to a base station, and includes:
  • Step 401 Send resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, a target resource for uplink communication in the current communication process, and performs communication with the base station according to the target resource, where
  • the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR communication system.
  • the communication method of the embodiment of the present disclosure sends resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, a target resource used for uplink communication in the current communication process, and according to the target resource and the base station.
  • the communication is performed, wherein the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR communication system, which can be adopted in the embodiment of the present disclosure.
  • the first service frequency point of the LTE communication system and the second service frequency point of the NR communication system perform uplink transmission, and the communication between the terminal and the base station is implemented on the premise of the uplink frequency point sharing.
  • the frequency point corresponding to the target resource further includes a second service frequency point of the new air interface NR communication system.
  • step 401 includes:
  • the resource indication information is transmitted by at least one of a reference signal, a physical broadcast channel, system information, or dedicated radio resource control RRC signaling.
  • step 401 includes: sending the resource indication information to the mobile terminal:
  • step 401 includes:
  • the frequency point information corresponding to the candidate cell is sent to the mobile terminal as the resource indication information.
  • step 401 includes:
  • Obtaining capability information sent by the mobile terminal where the capability information includes a frequency point supported by the mobile terminal; configuring, according to a frequency point supported by the mobile terminal, an uplink frequency point for the mobile terminal, and using the available frequency point
  • the uplink frequency point is sent to the mobile terminal as resource indication information.
  • the capability information further includes: whether the mobile terminal supports using the first serving frequency point as an uplink frequency point for accessing or performing uplink data transmission in a corresponding time slot of the downlink transmission.
  • the step of configuring the mobile terminal to use an uplink frequency point includes:
  • the mobile terminal does not support the use of the first serving frequency point as the uplink frequency point for uplink data transmission in the corresponding time slot of the downlink transmission, when the mobile terminal does not use the downlink serving frequency point for downlink reception, And configuring the first serving frequency point to use an uplink frequency point.
  • the UE When the mobile terminal reports the capability information, the UE does not configure the uplink access or the uplink transmission resource for the UE when using the downlink service frequency (such as 3.5 GHz) for downlink reception; when the UE does not use the downlink service frequency point, During downlink reception, the network may configure uplink access or uplink transmission resources for the UE.
  • the downlink service frequency such as 3.5 GHz
  • the NR system uplinks 1.8 GHz of the LTE system, and when the mobile terminal uses 3.5 GHz for downlink reception, it is not possible to simultaneously use 1.8 GHz for uplink transmission.
  • the mobile terminal can perform uplink transmission using 1.8 GHz only when downlink reception is not performed using 3.5 GHz.
  • This scheme allows the mobile terminal to have only one transceiver to perform uplink and downlink transmissions in a time-sharing manner, which not only saves the cost of a duplexer, but also reduces the effects of intermodulation interference and secondary co-wave.
  • an embodiment of the present disclosure further provides a mobile terminal 500, including:
  • the obtaining module 501 is configured to acquire a target resource for uplink communication in the current communication process, where the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the mobile terminal is located
  • the communication system is a new air interface NR communication system
  • the communication module 502 is configured to communicate with the base station according to the target resource.
  • the frequency point corresponding to the target resource further includes a second service frequency point of the new air interface NR communication system.
  • the acquiring module 501 is configured to acquire, by using a preset protocol, a target resource for uplink communication in a current communication process.
  • the acquiring module 501 is configured to acquire, according to the resource indication information sent by the base station, the target resource used for uplink communication in the current communication process.
  • the acquiring module 501 includes:
  • a first acquiring submodule configured to: if the resource indication information includes frequency point information corresponding to the candidate cell, select a target cell to camp in the candidate cell according to a frequency point supported by the mobile terminal, and The cell serves as the target resource.
  • the first obtaining submodule includes:
  • a first selecting unit configured to: if the frequency information corresponding to the first candidate cell in the candidate cell indicates that the first candidate cell supports the first serving frequency point for uplink transmission or does not support the second service of the NR communication system The frequency point is used for uplink transmission, and the uplink frequency point supported by the mobile terminal does not include the first serving frequency point, and then determining that the first candidate cell prohibits the mobile terminal from camping or denying access, and The target cell is selected to camp in the other candidate cells of the first candidate cell.
  • the first obtaining submodule includes:
  • a correction unit configured to: if the resource indication information includes frequency point information corresponding to the candidate cell, correct the determination parameter used when performing cell reselection or cell selection for each candidate cell according to a preset offset parameter Processing, the determining parameter is calculated according to the S criterion or the R criterion selected by the cell;
  • a determining unit configured to determine the target cell according to the determining parameter after the correction processing.
  • the correcting unit is configured to: if the uplink frequency point supported by the mobile terminal includes a first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point
  • the second service frequency point for uplink transmission or not supporting the NR communication system is used for uplink transmission, and the determination parameter is added to the preset offset parameter, otherwise the determination parameter is subtracted from the preset offset
  • the parameter is set, and the preset offset parameter is a positive number.
  • the first obtaining submodule includes:
  • a setting unit configured to set a resident priority for the candidate cell according to a frequency point supported by the mobile terminal and frequency point information corresponding to the candidate cell;
  • a selecting unit configured to select a target cell to camp in the candidate cell according to a camping priority of each of the candidate cells.
  • the setting unit is configured to: if the uplink frequency point supported by the mobile terminal includes the first service frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first service frequency point For uplink transmission or not supporting the NR communication system, the second serving frequency point is used for uplink transmission, then the camping priority of the candidate cell is increased, otherwise the camping priority of the candidate cell is lowered.
  • the acquiring module 501 includes:
  • a second obtaining submodule configured to: if the resource indication information includes an uplink frequency point, use the available uplink frequency point as the target resource, where the available uplink frequency point is reported by the base station according to the mobile terminal.
  • the capability information is configured, and the capability information includes an uplink frequency point supported by the mobile terminal.
  • a first sending module configured to send, to the base station, capability information of the mobile terminal, where the capability information includes an uplink frequency point supported by the mobile terminal.
  • the capability information further includes:
  • the mobile terminal supports using the first serving frequency point as the uplink frequency point for accessing or performing uplink data transmission in the corresponding time slot of the downlink transmission.
  • the communication module 502 is configured to perform camping according to the target resource, or perform access and/or uplink transmission according to the target resource according to the target resource camping; or
  • the communication module 502 is configured to: if the target resource includes a frequency point for camping, camp according to a frequency point for camping, or according to a frequency used for camping After the point is camped, access and/or uplink transmission is performed according to the frequency point used for camping;
  • the target resource includes a frequency point for access, according to the frequency point used for access, or according to the frequency point used for access, according to the frequency point used for accessing Uplink transmission
  • uplink transmission is performed according to a frequency point used for uplink transmission.
  • the communication module 502 includes:
  • a third acquiring submodule configured to acquire a first signal strength threshold corresponding to the first serving frequency point and a second corresponding to the second serving frequency point, if the target resource includes the first serving frequency point and the second serving frequency point Signal strength threshold;
  • the first selection submodule is configured to select the first serving frequency point or the second serving frequency point to perform camping according to the first signal strength threshold, the second signal strength threshold, and the current reference signal received power RSRP.
  • the third acquiring sub-module is configured to obtain, by using a first notification message broadcasted by the base station, a first signal strength threshold corresponding to the first serving frequency point and a second signal strength corresponding to the second serving frequency point. Threshold.
  • the communication module 502 includes:
  • a fourth acquiring submodule configured to acquire a third signal strength threshold corresponding to the first serving frequency point and a fourth corresponding to the second serving frequency point, if the target resource includes the first serving frequency point and the second serving frequency point Signal strength threshold;
  • the second selection submodule is configured to select the first service frequency point or the second service frequency point for access according to the third signal strength threshold, the fourth signal strength threshold, and the current reference signal received power RSRP.
  • the fourth acquiring sub-module is configured to obtain, by using a second notification message broadcasted by the base station, a third signal strength threshold corresponding to the first serving frequency point and a fourth signal strength corresponding to the second serving frequency point. Threshold.
  • the communication module 502 is configured to perform access or uplink transmission of the first service frequency point as an uplink frequency point in other time slots except a predetermined time slot, where the predetermined time is The slot is a time slot in which the mobile terminal performs downlink reception using a downlink serving frequency point of the NR communication system.
  • the predetermined time slot includes:
  • the time slot in which the connection state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • Time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • the time slot in which the idle state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving a paging message, and a time slot for receiving reference information.
  • the mobile terminal of the embodiment of the present disclosure acquires a target resource for uplink communication in the current communication process, where the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the mobile terminal The communication system in which it is located is a new air interface NR communication system; and communicates with the base station according to the target resource.
  • uplink transmission may be performed by using the first service frequency point of the non-new air interface NR communication system and the second service frequency point of the NR communication system, and communication with the base station is implemented on the premise of the uplink frequency point sharing.
  • the mobile terminal is a terminal corresponding to the foregoing method embodiment. All the implementation manners in the foregoing method embodiments are applicable to the embodiment of the mobile terminal, and the same technical effects can be achieved.
  • an embodiment of the present disclosure further provides a mobile terminal, including a first memory 620, a first processor 600, a first transceiver 610, a user interface 630, and a bus. And a first computer program stored on the first memory 620 and operable on the first processor 600, the first processor 600 is configured to read the program in the first memory 620, and perform the following process:
  • the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR Communication Systems;
  • the bus architecture may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by the first processor 600 and various circuits of the memory represented by the first memory 620. .
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • the first transceiver 610 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the user interface 630 may also be an interface capable of externally connecting the required devices, including but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the first processor 600 is responsible for managing the bus architecture and the usual processing, and the first memory 620 can store data used by the first processor 600 when performing operations.
  • the frequency corresponding to the target resource further includes a second serving frequency of the new air interface NR communication system.
  • the first processor 600 is further configured to: acquire, by using a preset protocol, a target resource for uplink communication in a current communication process.
  • the first processor 600 is further configured to: acquire, according to the resource indication information sent by the base station, a target resource used for uplink communication in the current communication process.
  • the first processor 600 is further configured to: if the resource indication information includes frequency point information corresponding to the candidate cell, select a target cell to camp in the candidate cell according to a frequency point supported by the mobile terminal, and The target cell serves as the target resource.
  • the first processor 600 is further configured to: if the frequency point information corresponding to the first candidate cell in the candidate cell indicates that the first candidate cell supports the first serving frequency point for uplink transmission or does not support the NR communication system The second service frequency point is used for uplink transmission, and the uplink frequency point supported by the mobile terminal does not include the first service frequency point, and then determining that the first candidate cell prohibits the mobile terminal from camping or denying access, and The target cell is selected to be camped among other candidate cells of the first candidate cell.
  • the first processor 600 is further configured to: if the resource indication information includes frequency point information corresponding to the candidate cell, perform cell reselection or cell selection for each candidate cell according to a preset offset parameter.
  • the determination parameter is subjected to a correction process, and the determination parameter is calculated according to the S criterion or the R criterion selected by the cell; and the target cell is determined according to the determination parameter after the correction process.
  • the first processor 600 is further configured to: if the uplink frequency point supported by the mobile terminal includes a first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point for uplink transmission or If the second service frequency point of the NR communication system is not supported for uplink transmission, the determination parameter is added to the preset offset parameter, otherwise the determination parameter is subtracted from the preset offset parameter, The preset offset parameter is a positive number.
  • the first processor 600 is further configured to: set, according to the frequency point supported by the mobile terminal and the frequency point information corresponding to the candidate cell, a camping priority for the candidate cell; and according to the resident priority of each candidate cell And selecting a target cell to camp in the candidate cell.
  • the first processor 600 is further configured to: if the uplink frequency point supported by the mobile terminal includes the first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point for uplink transmission or If the second serving frequency point of the NR communication system is not supported for uplink transmission, the camping priority of the candidate cell is increased, otherwise the camping priority of the candidate cell is lowered.
  • the first processor 600 is further configured to: if the resource indication information includes an uplink frequency point, use the available uplink frequency point as the target resource, where the available uplink frequency point is reported by the base station according to the mobile terminal.
  • the capability information is configured, and the capability information includes an uplink frequency point supported by the mobile terminal.
  • the first processor 600 is further configured to: send, by the first transceiver 610, capability information of the mobile terminal to the base station, where the capability information includes an uplink frequency point supported by the mobile terminal.
  • the capability information further includes:
  • the mobile terminal supports using the first serving frequency point as the uplink frequency point for accessing or performing uplink data transmission in the corresponding time slot of the downlink transmission.
  • the first processor 600 is further configured to: perform camping according to the target resource, or perform access and/or uplink transmission according to the target resource according to the target resource camping; or
  • the first processor 600 is further configured to: if the target resource includes a frequency point for camping, camp according to a frequency point for camping, or after camping according to a frequency point for camping, according to Access and/or uplink transmission for the frequency of the camping;
  • the target resource includes a frequency point for access, according to the frequency point used for access, or according to the frequency point used for access, according to the frequency point used for accessing Uplink transmission
  • uplink transmission is performed according to a frequency point used for uplink transmission.
  • the first processor 600 is further configured to: if the target resource includes the first service frequency point and the second service frequency point, acquire a first signal strength threshold corresponding to the first service frequency point and a second service frequency point corresponding to the first And a second signal strength threshold; selecting the first serving frequency point or the second serving frequency point to perform camping according to the first signal strength threshold, the second signal strength threshold, and the current reference signal received power RSRP.
  • the first processor 600 is further configured to: obtain, by using the first notification message broadcasted by the base station, a first signal strength threshold corresponding to the first serving frequency point and a second signal strength threshold corresponding to the second serving frequency point.
  • the first processor 600 is further configured to: if the target resource includes the first service frequency point and the second service frequency point, acquire a third signal strength threshold corresponding to the first service frequency point and a second service frequency point corresponding to the first a fourth signal strength threshold; selecting the first serving frequency point or the second serving frequency point for access according to the third signal strength threshold, the fourth signal strength threshold, and the current reference signal received power RSRP.
  • the first processor 600 is further configured to: obtain, by using the second notification message broadcasted by the base station, a third signal strength threshold corresponding to the first serving frequency point and a fourth signal strength threshold corresponding to the second serving frequency point.
  • the first processor 600 is further configured to: access, or uplink, the first serving frequency point as an uplink frequency point in a time slot other than a predetermined time slot, where the predetermined time slot is the mobile terminal A time slot for downlink reception using the downlink serving frequency of the NR communication system.
  • the predetermined time slot includes:
  • the time slot in which the connection state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • Time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • the time slot in which the idle state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving a paging message, and a time slot for receiving reference information.
  • a computer readable storage medium having stored thereon a first computer program, the first program being executed by the processor to implement the following steps:
  • the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR Communication Systems;
  • FIG. 7 another structural block diagram of a mobile terminal according to an embodiment of the present disclosure includes: at least one processor 701, a memory 702, at least one network interface 704, and other user interfaces 703.
  • the various components in mobile terminal 700 are coupled together by a bus system 705.
  • the bus system 705 is used to implement connection communication between these components.
  • the bus system 705 includes a power bus, a control bus, and a status signal bus in addition to the data bus.
  • various buses are labeled as bus system 705 in FIG.
  • the user interface 703 may include a display, a keyboard, or a pointing device (eg, a mouse, a trackball, a touchpad, or a touch screen, etc.).
  • a pointing device eg, a mouse, a trackball, a touchpad, or a touch screen, etc.
  • the memory 702 in an embodiment of the present disclosure may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memory.
  • the non-volatile memory may be a read-only memory (ROM), a programmable read only memory (PROM), an erasable programmable read only memory (Erasable PROM, EPROM), or an electric Erase programmable read only memory (EEPROM) or flash memory.
  • the volatile memory can be a Random Access Memory (RAM) that acts as an external cache.
  • RAM Random Access Memory
  • many forms of RAM are available, such as static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (Synchronous DRAM).
  • Memory 702 of the systems and methods described herein is intended to comprise, without being limited to, these and any other suitable types of memory.
  • memory 702 stores elements, executable modules or data structures, or a subset thereof, or their extended set: operating system 7021 and application 7022.
  • the operating system 7021 includes various system programs, such as a framework layer, a core library layer, a driver layer, and the like, for implementing various basic services and processing hardware-based tasks.
  • the application 7022 includes various applications, such as a media player (Media Player), a browser, and the like, for implementing various application services.
  • a program implementing the method of the embodiments of the present disclosure may be included in the application 7022.
  • the processor 701 by calling a program or instruction stored in the memory 702, specifically a program or an instruction stored in the application 7022, the processor 701 is configured to acquire a target for uplink communication in the current communication process.
  • the frequency corresponding to the target resource further includes a second serving frequency of the new air interface NR communication system.
  • the processor 701 is further configured to: acquire, by using a preset protocol, a target resource used for uplink communication in the current communication process.
  • the processor 701 is further configured to: acquire, according to the resource indication information sent by the base station, a target resource used for uplink communication in the current communication process.
  • the processor 701 is further configured to: if the resource indication information includes the frequency point information corresponding to the candidate cell, select a target cell to camp in the candidate cell according to a frequency point supported by the mobile terminal, and camp the target cell. As the target resource.
  • the processor 701 is further configured to: if the frequency point information corresponding to the first candidate cell in the candidate cell indicates that the first candidate cell supports the first service frequency point for uplink transmission or does not support the second service of the NR communication system The frequency point is used for uplink transmission, and the uplink frequency point supported by the mobile terminal does not include the first serving frequency point, and then determining that the first candidate cell prohibits the mobile terminal from camping or denying access, and The target cell is selected to camp in the other candidate cells of the first candidate cell.
  • the processor 701 is further configured to: if the resource indication information includes frequency point information corresponding to the candidate cell, perform determining parameters used for cell reselection or cell selection for each candidate cell according to a preset offset parameter Performing a correction process, where the determination parameter is calculated according to the S criterion or the R criterion selected by the cell; and determining the target cell according to the determination parameter after the correction process.
  • the processor 701 is further configured to: if the uplink frequency point supported by the mobile terminal includes a first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point for uplink transmission or does not support
  • the second service frequency of the NR communication system is used for uplink transmission, and the determination parameter is added to the preset offset parameter, otherwise the determination parameter is subtracted from the preset offset parameter, and the preset The offset parameter is a positive number.
  • the processor 701 is further configured to: set, according to the frequency point supported by the mobile terminal and the frequency point information corresponding to the candidate cell, a camping priority for the candidate cell; according to the resident priority of each candidate cell, The target cell is selected to camp in the candidate cell.
  • the processor 701 is further configured to: if the uplink frequency point supported by the mobile terminal includes the first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point for uplink transmission or does not support The second serving frequency point of the NR communication system is used for uplink transmission, and then the camping priority of the candidate cell is increased, otherwise the camping priority of the candidate cell is lowered.
  • the processor 701 is further configured to: if the resource indication information includes an uplink frequency point, use the available uplink frequency point as the target resource, where the available uplink frequency point is a capability of the base station to report according to the mobile terminal.
  • the information is configured, and the capability information includes an uplink frequency point supported by the mobile terminal.
  • the processor 701 is further configured to: send the capability information of the mobile terminal to the base station by using the first transceiver 610, where the capability information includes an uplink frequency point supported by the mobile terminal.
  • the capability information further includes:
  • the mobile terminal supports using the first serving frequency point as the uplink frequency point for accessing or performing uplink data transmission in the corresponding time slot of the downlink transmission.
  • the processor 701 is further configured to: perform camping according to the target resource, or perform access and/or uplink transmission according to the target resource according to the target resource camping; or
  • the processor 701 is further configured to: if the target resource includes a frequency point for camping, camp according to a frequency point for camping, or according to a frequency point for camping, according to the Residing frequency points for access and/or uplink transmission;
  • the target resource includes a frequency point for access, according to the frequency point used for access, or according to the frequency point used for access, according to the frequency point used for accessing Uplink transmission
  • uplink transmission is performed according to a frequency point used for uplink transmission.
  • the processor 701 is further configured to: if the target resource includes the first service frequency point and the second service frequency point, acquire a first signal strength threshold corresponding to the first service frequency point and a second signal corresponding to the second service frequency point And an intensity threshold; selecting the first serving frequency point or the second serving frequency point to perform camping according to the first signal strength threshold, the second signal strength threshold, and the current reference signal received power RSRP.
  • the processor 701 is further configured to: obtain, by using the first notification message broadcasted by the base station, a first signal strength threshold corresponding to the first serving frequency point and a second signal strength threshold corresponding to the second serving frequency point.
  • the processor 701 is further configured to: if the target resource includes the first service frequency point and the second service frequency point, acquire a third signal strength threshold corresponding to the first service frequency point and a fourth signal corresponding to the second service frequency point And an intensity threshold; selecting the first serving frequency point or the second serving frequency point for access according to the third signal strength threshold, the fourth signal strength threshold, and the current reference signal received power RSRP.
  • the processor 701 is further configured to: obtain, by using the second notification message broadcasted by the base station, a third signal strength threshold corresponding to the first serving frequency point and a fourth signal strength threshold corresponding to the second serving frequency point.
  • the processor 701 is further configured to: access, or uplink, the first serving frequency point as an uplink frequency point in a time slot other than a predetermined time slot, where the predetermined time slot uses NR for the mobile terminal.
  • the predetermined time slot includes:
  • the time slot in which the connection state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • Time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • the time slot in which the idle state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving a paging message, and a time slot for receiving reference information.
  • the processor 701 is configured to acquire a target resource for uplink communication in a current communication process, where the frequency point corresponding to the target resource includes a first service frequency of the non-new air interface NR communication system. And the communication system where the mobile terminal is located is a new air interface NR communication system; and communicates with the base station according to the target resource.
  • uplink transmission may be performed by using the first service frequency point of the non-new air interface NR communication system and the second service frequency point of the NR communication system, and communication with the base station is implemented on the premise of the uplink frequency point sharing.
  • the mobile terminal of the present disclosure may be, for example, a mobile phone, a tablet computer, a personal digital assistant (PDA), or a car computer or the like.
  • PDA personal digital assistant
  • the mobile terminal 700 can implement various processes implemented by the terminal in the foregoing embodiment. To avoid repetition, details are not described herein again.
  • Processor 701 may be an integrated circuit chip with signal processing capabilities. In the implementation process, each step of the foregoing method may be completed by an integrated logic circuit of hardware in the processor 701 or an instruction in a form of software.
  • the processor 701 may be a general-purpose processor, a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA), or the like. Programmable logic devices, discrete gates or transistor logic devices, discrete hardware components.
  • DSP digital signal processor
  • ASIC application specific integrated circuit
  • FPGA field programmable gate array
  • the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
  • the steps of the method disclosed in connection with the embodiments of the present disclosure may be directly implemented by the hardware decoding processor, or may be performed by a combination of hardware and software modules in the decoding processor.
  • the software module can be located in a conventional storage medium such as random access memory, flash memory, read only memory, programmable read only memory or electrically erasable programmable memory, registers, and the like.
  • the storage medium is located in the memory 702, and the processor 701 reads the information in the memory 702 and completes the steps of the above method in combination with its hardware.
  • the embodiments described herein can be implemented in hardware, software, firmware, middleware, microcode, or a combination thereof.
  • the processing unit can be implemented in one or more Application Specific Integrated Circuits (ASICs), Digital Signal Processing (DSP), Digital Signal Processing Equipment (DSP Device, DSPD), programmable Programmable Logic Device (PLD), Field-Programmable Gate Array (FPGA), general purpose processor, controller, microcontroller, microprocessor, other for performing the functions described herein In an electronic unit or a combination thereof.
  • ASICs Application Specific Integrated Circuits
  • DSP Digital Signal Processing
  • DSP Device Digital Signal Processing Equipment
  • PLD programmable Programmable Logic Device
  • FPGA Field-Programmable Gate Array
  • the techniques described herein can be implemented by modules (eg, procedures, functions, and so on) that perform the functions described herein.
  • the software code can be stored in memory and executed by the processor.
  • the memory can be implemented in the processor or external to the processor.
  • FIG. 8 is a block diagram showing still another structure of a mobile terminal according to an embodiment of the present disclosure.
  • the mobile terminal 800 shown in FIG. 8 includes a radio frequency (RF) circuit 810, a memory 820, an input unit 830, a display unit 840, a processor 860, an audio circuit 870, a WiFi (Wireless Fidelity) module 8100, and a power supply 890.
  • RF radio frequency
  • the input unit 830 can be used to receive digital or character information input by the user, and generate signal input related to user setting and function control of the mobile terminal 800.
  • the input unit 830 may include a touch panel 831.
  • the touch panel 831 also referred to as a touch screen, can collect touch operations on or near the user (such as the operation of the user using any suitable object or accessory such as a finger or a stylus on the touch panel 831), and according to the preset
  • the programmed program drives the corresponding connection device.
  • the touch panel 831 can include two parts: a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information.
  • the processor 860 is provided and can receive commands from the processor 860 and execute them.
  • the touch panel 831 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the input unit 830 may further include other input devices 832, which may include, but are not limited to, physical keyboards, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, joysticks, and the like. One or more of them.
  • the display unit 840 can be used to display information input by the user or information provided to the user and various menu interfaces of the mobile terminal 800.
  • the display unit 840 can include a display panel 841.
  • the display panel 841 can be configured in the form of an LCD or an Organic Light-Emitting Diode (OLED).
  • the touch panel 831 can cover the display panel 841 to form a touch display screen, and when the touch display screen detects a touch operation on or near it, it is transmitted to the processor 860 to determine the type of the touch event, and then the processor The 860 provides a corresponding visual output on the touch display depending on the type of touch event.
  • the touch display includes an application interface display area and a common control display area.
  • the arrangement manner of the application interface display area and the display area of the common control is not limited, and the arrangement manner of the two display areas can be distinguished by up-and-down arrangement, left-right arrangement, and the like.
  • the application interface display area can be used to display the interface of the application. Each interface can contain interface elements such as at least one application's icon and/or widget desktop control.
  • the application interface display area can also be an empty interface that does not contain any content.
  • the common control display area is used to display controls with high usage, such as setting buttons, interface numbers, scroll bars, phone book icons, and the like.
  • the processor 860 is a control center of the mobile terminal 800, and connects various parts of the entire mobile phone by using various interfaces and lines, by running or executing software programs and/or modules stored in the first memory 821, and calling the second storage.
  • the data in the memory 822 performs various functions and processing data of the mobile terminal 800, thereby performing overall monitoring of the mobile terminal 800.
  • processor 860 can include one or more processing units.
  • the processor 860 is configured to acquire an uplink for the current communication process by calling a software program and/or a module stored in the first memory 821 and/or data in the second memory 822.
  • a target resource of the communication wherein the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR communication system; according to the target resource Communicating with the base station.
  • the frequency corresponding to the target resource further includes a second serving frequency of the new air interface NR communication system.
  • the processor 860 is further configured to: acquire, by using a preset protocol, a target resource for uplink communication in a current communication process.
  • the processor 860 is further configured to: obtain, according to the resource indication information sent by the base station, a target resource used for uplink communication in the current communication process.
  • the processor 860 is further configured to: if the resource indication information includes frequency point information corresponding to the candidate cell, select a target cell to camp in the candidate cell according to a frequency point supported by the mobile terminal, and camp the target cell. As the target resource.
  • the processor 860 is further configured to: if the frequency point information corresponding to the first candidate cell in the candidate cell indicates that the first candidate cell supports the first service frequency point for uplink transmission or does not support the second service of the NR communication system The frequency point is used for uplink transmission, and the uplink frequency point supported by the mobile terminal does not include the first serving frequency point, and then determining that the first candidate cell prohibits the mobile terminal from camping or denying access, and The target cell is selected to camp in the other candidate cells of the first candidate cell.
  • the processor 860 is further configured to: if the resource indication information includes the frequency point information corresponding to the candidate cell, perform determining parameters used for performing cell reselection or cell selection for each candidate cell according to a preset offset parameter. Performing a correction process, where the determination parameter is calculated according to the S criterion or the R criterion selected by the cell; and determining the target cell according to the determination parameter after the correction process.
  • the processor 860 is further configured to: if the uplink frequency point supported by the mobile terminal includes the first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point for uplink transmission or does not support
  • the second service frequency of the NR communication system is used for uplink transmission, and the determination parameter is added to the preset offset parameter, otherwise the determination parameter is subtracted from the preset offset parameter, and the preset The offset parameter is a positive number.
  • the processor 860 is further configured to: set, according to the frequency point supported by the mobile terminal and the frequency point information corresponding to the candidate cell, a camping priority for the candidate cell; according to the resident priority of each candidate cell, The target cell is selected to camp in the candidate cell.
  • the processor 860 is further configured to: if the uplink frequency point supported by the mobile terminal includes the first serving frequency point, and the frequency point information corresponding to the candidate cell indicates that the candidate cell supports the first serving frequency point for uplink transmission or does not support The second serving frequency point of the NR communication system is used for uplink transmission, and then the camping priority of the candidate cell is increased, otherwise the camping priority of the candidate cell is lowered.
  • the processor 860 is further configured to: if the resource indication information includes an uplink frequency point, use the available uplink frequency point as the target resource, where the available uplink frequency point is a capability that the base station reports according to the mobile terminal.
  • the information is configured, and the capability information includes an uplink frequency point supported by the mobile terminal.
  • the processor 860 is further configured to: send the capability information of the mobile terminal to the base station by using the first transceiver 610, where the capability information includes an uplink frequency point supported by the mobile terminal.
  • the capability information further includes:
  • the mobile terminal supports using the first serving frequency point as the uplink frequency point for accessing or performing uplink data transmission in the corresponding time slot of the downlink transmission.
  • the processor 860 is further configured to: perform camping according to the target resource, or perform access and/or uplink transmission according to the target resource according to the target resource camping; or
  • the processor 860 is further configured to: if the target resource includes a frequency point for camping, camp according to a frequency point for camping, or according to a frequency point for camping, according to Residing frequency points for access and/or uplink transmission;
  • the target resource includes a frequency point for access, according to the frequency point used for access, or according to the frequency point used for access, according to the frequency point used for accessing Uplink transmission
  • uplink transmission is performed according to a frequency point used for uplink transmission.
  • the processor 860 is further configured to: if the target resource includes the first service frequency point and the second service frequency point, acquire a first signal strength threshold corresponding to the first service frequency point and a second signal corresponding to the second service frequency point And an intensity threshold; selecting the first serving frequency point or the second serving frequency point to perform camping according to the first signal strength threshold, the second signal strength threshold, and the current reference signal received power RSRP.
  • the processor 860 is further configured to: obtain, by using the first notification message broadcasted by the base station, a first signal strength threshold corresponding to the first serving frequency point and a second signal strength threshold corresponding to the second serving frequency point.
  • the processor 860 is further configured to: if the target resource includes the first service frequency point and the second service frequency point, acquire a third signal strength threshold corresponding to the first service frequency point and a fourth signal corresponding to the second service frequency point And an intensity threshold; selecting the first serving frequency point or the second serving frequency point for access according to the third signal strength threshold, the fourth signal strength threshold, and the current reference signal received power RSRP.
  • the processor 860 is further configured to: obtain, by using the second notification message broadcasted by the base station, a third signal strength threshold corresponding to the first serving frequency point and a fourth signal strength threshold corresponding to the second serving frequency point.
  • the processor 860 is further configured to: perform access or uplink transmission as the uplink frequency point, where the predetermined time slot is used by the mobile terminal, in other time slots except the predetermined time slot.
  • the predetermined time slot includes:
  • the time slot in which the connection state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • Time slot for receiving downlink control information, a time slot for receiving downlink data, a time slot for receiving a broadcast message, a time slot for receiving a paging message, and receiving reference information.
  • the time slot in which the idle state uses the downlink service frequency to perform downlink reception includes: a time slot for receiving downlink control information, a time slot for receiving a paging message, and a time slot for receiving reference information.
  • the mobile terminal of the present disclosure may be, for example, a mobile phone, a tablet computer, a personal digital assistant (PDA), or a car computer or the like.
  • PDA personal digital assistant
  • the mobile terminal 800 can implement various processes implemented by the terminal in the foregoing embodiment. To avoid repetition, details are not described herein again.
  • the processor 860 is configured to acquire a target resource for uplink communication in a current communication process, where the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR letter system. And the communication system where the mobile terminal is located is a new air interface NR communication system; and communicates with the base station according to the target resource.
  • uplink transmission may be performed by using the first service frequency point of the non-new air interface NR communication system and the second service frequency point of the NR communication system, and communication with the base station is implemented on the premise of the uplink frequency point sharing.
  • an embodiment of the present disclosure further provides a base station 900, including
  • the second sending module 901 is configured to send resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, a target resource used for uplink communication in a current communication process, and according to the target resource and the base station The communication is performed, wherein the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR communication system.
  • the frequency point corresponding to the target resource further includes a second serving frequency point of the new air interface NR communication system.
  • the second sending module 901 is configured to send the resource indication information by using at least one of a reference signal, a physical broadcast channel, system information, or dedicated radio resource control RRC signaling.
  • the second sending module is configured to send the resource indication information to a mobile terminal by newly adding a reference signal or a channel; or by using a newly added reference signal or channel in the synchronization signal block
  • the resource indication information is sent to the mobile terminal.
  • the second sending module is configured to send the frequency point information corresponding to the candidate cell to the mobile terminal as the resource indication information.
  • the second sending module includes:
  • a fifth obtaining submodule configured to acquire capability information sent by the mobile terminal, where the capability information includes a frequency point supported by the mobile terminal;
  • the configuration submodule is configured to configure, according to the frequency point supported by the mobile terminal, an uplink frequency point for the mobile terminal, and send the available uplink frequency point as the resource indication information to the mobile terminal.
  • the capability information further includes: whether the mobile terminal supports using the first serving frequency point as an uplink frequency point for uplink data transmission in a corresponding time slot of the downlink transmission.
  • the configuration sub-module is configured to not use the downlink service in the mobile terminal if the mobile terminal does not support the use of the first serving frequency point as the uplink frequency point for uplink data transmission in the corresponding time slot of the downlink transmission.
  • the frequency point performs a downlink receiving time slot, and the first serving frequency point is configured to use an uplink frequency point.
  • the base station of the embodiment of the present disclosure sends the resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, the target resource used for uplink communication in the current communication process, and according to the The target resource is in communication with the base station, wherein the frequency point corresponding to the target resource includes a first service frequency point of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is a new air interface NR communication system,
  • uplink transmission may be performed by using a first serving frequency point of the non-new air interface NR communication system and a second serving frequency point of the NR communication system, and communication between the terminal and the base station is implemented on the premise of uplink frequency sharing.
  • an embodiment of the present disclosure further provides a base station, including a second memory 1020, a second processor 1000, a second transceiver 1010, a bus interface, and a storage device.
  • a second computer program on the second memory 1020 and operable on the second processor 1000, the second processor 1000 is configured to read the program in the second memory 1020, and perform the following process:
  • the mobile terminal Transmitting the resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, a target resource for uplink communication in a current communication process, and performs communication with the base station according to the target resource, where the target
  • the frequency corresponding to the resource includes the first service frequency of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is the new air interface NR communication system.
  • the bus architecture may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by the second processor 1000 and various circuits of the memory represented by the second memory 1020. .
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • the second transceiver 1010 can be a plurality of components, including a transmitter and a transceiver, providing means for communicating with various other devices on a transmission medium.
  • the second processor 1000 is responsible for managing the bus architecture and normal processing, and the second memory 1020 can store data used by the second processor 1000 when performing operations.
  • the frequency corresponding to the target resource further includes a second serving frequency of the new air interface NR communication system.
  • the second processor 1000 is further configured to send the resource indication information by using at least one of a reference signal, a physical broadcast channel, system information, or dedicated radio resource control RRC signaling.
  • the second processor 1000 is further configured to send the resource indication information to the mobile terminal by newly adding a reference signal or channel; or send the resource indication information to the new reference signal or channel in the synchronization signal block. Mobile terminal.
  • the second processor 1000 is further configured to send the frequency point information corresponding to the candidate cell to the mobile terminal as the resource indication information.
  • the second processor 1000 is further configured to acquire capability information sent by the mobile terminal, where the capability information includes a frequency point supported by the mobile terminal, and configured to use an uplink frequency for the mobile terminal according to a frequency point supported by the mobile terminal. Pointing, and transmitting the available uplink frequency point as resource indication information to the mobile terminal.
  • the capability information further includes: whether the mobile terminal supports using the first serving frequency point as an uplink frequency point for uplink or downlink data transmission in a corresponding time slot of the downlink transmission.
  • the second processor 1000 is further configured to: if the mobile terminal does not support the use of the first serving frequency point as the uplink frequency point for uplink data transmission in the corresponding time slot of the downlink transmission, the mobile terminal does not use the downlink.
  • the serving frequency performs a downlink receiving time slot, and the first serving frequency point is configured to use an uplink frequency point.
  • a computer readable storage medium having stored thereon a second computer program, the program being executed by the processor to implement the following steps:
  • the mobile terminal Transmitting the resource indication information to the mobile terminal, so that the mobile terminal determines, according to the resource indication information, a target resource for uplink communication in a current communication process, and performs communication with the base station according to the target resource, where the target
  • the frequency corresponding to the resource includes the first service frequency of the non-new air interface NR communication system, and the communication system where the mobile terminal is located is the new air interface NR communication system.
  • the disclosed apparatus and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in various embodiments of the present disclosure may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product. Based on such understanding, a portion of the technical solution of the present disclosure that contributes in essence or to the related art or a part of the technical solution may be embodied in the form of a software product stored in a storage medium, including several The instructions are for causing a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present disclosure.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a ROM, a RAM, a magnetic disk, or an optical disk.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

本公开提供了一种通信方法、移动终端、基站及计算机可读存储介质。本公开包括:获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。

Description

通信方法、移动终端、基站及计算机可读存储介质
相关申请的交叉引用
本申请主张在2017年6月12日在中国提交的中国专利申请No.201710439907.1的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及通信应用的技术领域,尤其涉及一种通信方法、移动终端、基站及计算机可读存储介质。
背景技术
未来一些运营商会在C载波(3.5GHz左右)部署5G NR(New Radio,新空口),但3.5GHz上下行链路预算差异较大(下行传输损耗比上行传输损耗大约少10dB),导致上行覆盖范围明显小于下行覆盖范围。
上下行链路预算差异较大的主要原因是:移动终端的上行发射功率远小于基站的下行发射功率,而且下行天线配置是64发4收,上行天线配置是1发64收,从而导致上行覆盖范围明显小于下行覆盖范围。上下行链路预算的差异导致了5G网络的覆盖范围只能局限于上行覆盖范围内,另外3.5GHz比中国移动2.6GHz 4G网络的上行覆盖差5dB左右(主要是传播损耗差距),从而使得和4G基站共站址时,5G基站无法做到连续覆盖,影响了5G用户的使用体验。
为了解决上述5G上下行链路预算差异较大的问题,同时为了支持LTE(Long Term Evolution,长期演进)在频域上能逐步渐进的升级到NR,3GPP Rel-15 NR WI(work item)包括了LTE NR上行频谱共享的研究内容,但上行频谱共享技术中对于如何进行小区驻留、接入和/或上行传输还没有相关解决方案。
发明内容
本公开提供了一种通信方法,应用于移动终端,包括:
获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
根据所述目标资源与基站进行通信。
本公开还提供了一种通信方法,应用于基站,包括:
向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
本公开还提供了一种移动终端,包括:
获取模块,用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
通信模块,用于根据所述目标资源与基站进行通信。
本公开还提供了一种移动终端,包括第一存储器、第一处理器及存储在第一存储器上并可在第一处理器上运行的第一计算机程序,所述处理器执行所述第一计算机程序时实现如上所述通信方法中的步骤。
本公开还提供了一种计算机可读存储介质,其上存储有第一计算机程序,该第一计算机程序被处理器执行时实现如上所述通信方法中的步骤。
本公开还提供了一种基站,包括:
第二发送模块,用于向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
本公开还提供了一种基站,包括第二存储器、第二处理器及存储在第二存储器上并可在第二处理器上运行的第二计算机程序,所述第二处理器执行所述第二计算机程序时实现如上所述通信方法中的步骤。
本公开还提供了一种计算机可读存储介质,其上存储有第二计算机程序, 该第二计算机程序被处理器执行时实现如上所述通信方法中的步骤。
附图说明
图1为本公开的一些实施例的通信方法的工作流程图;
图2为本公开的一些实施例通信方法中基站频点的覆盖示意图;
图3为本公开的一些实施例通信方法中的传输示意图;
图4为本公开的另一些实施例的通信方法的工作流程图;
图5为本公开的一些实施例的移动终端的结构框图;
图6为本公开的另一些实施例的移动终端的结构框图;
图7为本公开的另一些实施例的移动终端的结构框图;
图8为本公开的另一些实施例的移动终端的结构框图;
图9为本公开的一些实施例的基站的结构框图;
图10为本公开的另一些实施例的基站的结构框图。
具体实施方式
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开一部分实施例,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作出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
如图1所示,本公开的实施例提供了一种通信方法,应用于移动终端,包括步骤101和102。
步骤101:获取当前通信过程中用于上行通信的目标资源,其中,该目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且该移动终端所在的通信系统为新空口NR通信系统。
上述第一服务频点具体为1.8GHz、800MHz、900MHz、2.3GHz、2.6GHz或者2.1GHz,下面以1.8GHz为例,其它的频点类似;上述第二服务频点具体为5G NR的部署频点,包括3.5GHz或者其它的频点,下面以3.5GHz为例,其它的频点类似。
这里的,非新空口NR通信系统可具体为LTE通信系统,当前通信过程 具体为小区驻留、随机接入或数据传输过程。由于移动终端所在的通信系统为新空口NR通信系统,因此,移动终端可通过NR通信系统的第二服务频点(如3.5GHz)进行上行传输或下行传输,且由于目标资源对应的频点包括LTE通信系统的第一服务频点(如1.8GHz),因此移动终端还可通过该第一服务频点进行上行传输,即LTE系统与NR通信系统共享第一服务频点,以解决5G NR系统中上行覆盖范围明显小于下行覆盖范围的问题。
上述提到的频点是业界通用的频点说法,具体的频点信息为:
对于时分双工TDD系统:
1.8GHz:1880-1900MHz(bands:39);
2.3GHz:2320-2370MHz,或2300-2320MHz,或2370-2390MHz(bands:40);
2.5GHz:2575-2635MHz,或2555-2575MHz,或2635-2655MHz(bands:41);
对于频分双工FDD系统:
1.8GHz:1755-1785MHZ/1850-1880MHz;
2.1GHz:1955-1980MHz/2145-2170MHz;
800MHz,900MHz频点也包括CDMA,GSM,TD-SCDMA系统使用的800MHz和900MHz中的任意一个。
进一步地,上述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
步骤102:根据上述目标资源与基站进行通信。
具体的,根据上述目标资源驻留在上述基站对应的小区并与该基站进行数据传输,或者根据上述目标资源接入上述基站对应的小区并与该基站进行数据传输。
本公开实施例的通信方法,获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括LTE通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。本公开实施例中可通过LTE通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现 与基站的通信。
作为一种可选的实现方式,上述步骤101包括:
步骤1011:通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
本公开实施例中,可预先在协议中约定小区驻留、随机接入及数据传输过程中使用的上行频点。
作为另一种可选的实现方式,上述步骤101包括:
步骤1012:根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
这里的,该资源指示信息为基站通过参考信号,物理广播信道,系统信息或专用无线资源控制RRC信令中的至少一种发送的。或者资源指示信息是通过同步信号块中新增加的参考信号或信道发送的。
这里,基站在物理广播信道PBCH(主系统信息块MIB)、同步信号块或者系统信息块SIB(某个SIB消息,如SIB2)里广播,或者通过专有无线资源控制RRC信令通知UE上行传输频率,或者通知UE进行随机接入时用的频率,或者驻留的频率,如3.5GHz和/或1.8GHz。使UE可以知道是在哪个频点上做随机接入、上行传输、或驻留。
通过基站发送的资源指示信息,能够使终端比较早的获知接入或驻留的频点。
上述目标资源具体为小区或频点。
当上述目标资源为小区时,上述步骤1012包括:
步骤10121:若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
具体的,若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
本公开实施例中,通过基站向终端发送候选小区对应的频点信息,使得终端能够比较早地识别出该候选小区是否为对所述移动终端禁止驻留或拒绝接入bar的小区,以避免延迟移动终端发起业务。
当上述目标资源为小区时,上述步骤1012还包括:
若所述资源指示信息包括候选小区对应的频点信息,则根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;根据修正处理后的判断参数,确定所述目标小区。
其中,根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理的步骤包括:
若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
这里通过对上述判断参数进行修正处理,使得移动终端能够以较高的几率驻留到与移动终端的支持的频点能力相匹配的小区。
当上述目标资源为小区时,上述步骤1012还包括:
根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
这里,根据应用于小区选取的S准则或R准则,对具有各个驻留优先级的候选小区进行小区选取,得到进行驻留的目标小区。
其中,根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级的步骤包括:
若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
这里,对候选小区的驻留优先级进行调整,使得移动终端能够以较高的几率驻留到与移动终端的支持的频点能力相匹配的小区。
当上述目标资源为小区时,上述步骤1012包括:
步骤10122:若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
进一步地,在上述10122之前还包括:
向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
进一步地,上述能力信息还包括:
所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
移动终端通过上报该能力信息,使得UE在使用第二服务频点进行下行接收时,网络不为UE配置上行接入,或上行传输的资源;当UE未使用第二服务频点进行下行接收时,网络可以为UE配置上行接入,或上行传输的资源。
可选的,在移动终端发送所述能力信息之前,该通信方法还包括:
网络可以通过广播或者专有RRC信令通知UE网络支持的接入方式,或者在UE接入之后,网络通过广播或者专有RRC信令广播通知UE网络支持的上行传输的方式。这里的接入方式和上行传输的方式是指是否支持在使用第二服务频点进行下行接收的时隙,同时使用第一服务频点进行上行传输。
作为一种可选的实现方式,上述步骤102包括:根据所述目标资源与所述基站进行通信的步骤包括:
根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传输;或者
根据所述目标资源进行上行传输。
作为另一种可选的实现方式,上述步骤102包括:根据所述目标资源与 所述基站进行通信的步骤包括:
若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
可选的,根据所述目标资源进行驻留的步骤包括:
若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
其中,获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值的步骤包括:
通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
本公开实施例中,当移动终端可以在两个频点驻留时,可以为不同的频点设置不同的小区选择或重选的门限。当终端判断当前参考信号接收功率RSRP到达某个频点对应的门限值时,即可选择对应的小区,并在对应频点上驻留。
可选的,根据所述目标资源进行接入的步骤包括:
若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;根据所述第三信号强度阈值、所述第四信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行接入。
其中,获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值的步骤包括:
通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈 值及第二服务频点对应的第四信号强度阈值。
本公开实施例中,当移动终端可以在两个频点接入时,可以为不同的频点设置不同的随机接入的门限。当终端判断当前参考信号接收功率RSRP到达某个频点对应的门限值时,即可选择在对应频点上随机接入。
进一步地,上述步骤102包括:
在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
具体的,上述预定时隙包括:
连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频点进行下行接收的时隙;
其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息的时隙及接收参考信息的时隙;
空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
假定NR系统上行频率包括3.5GHz和共享的LTE的1.8GHz,下行只有3.5GHz。1.8GHz的覆盖范围大于3.5GHz。如图2所示,第一区域距离基站较近,UE可以使用1.8GHz和/或3.5GHz进行上行传输;第二区域距离基站较远,UE只能使用1.8GHz进行上行传输。
NR系统上行共享LTE系统的1.8GHz,并且在移动终端使用3.5GHz进行下行接收时,不可以同时使用1.8GHz进行上行发送。如图3所示,只有在未使用3.5GHz进行下行接收时,移动终端才可以使用1.8GHz进行上行发送。此方案允许UE只有一个收发器,分时进行上下行发送,不止能节省一个双工器的成本,还可以减少交调干扰和二次协波的影响。
下面对本公开实施例的一具体应用说明如下。
基站在物理广播信道PBCH(主系统信息块MIB)、同步信号块或者系统信息块SIB(某个SIB消息,如SIB2)里广播,或者通过专有无线资源控制RRC信令通知UE上行传输频率,或者通知UE进行随机接入时用的频率, 或者驻留的频率,如3.5GHz和/或1.8GHz。使UE可以知道是在哪个频点上做随机接入、上行传输、或驻留。假定第一服务频点为1.8GHz,第二服务频点为3.5GHz。
(一)移动终端根据广播的频点选择驻留的频点
(1)广播3.5GHz和1.8GHz,UE可以在3.5GHz和/或1.8GHz上驻留;
(2)只广播1.8GHz
UE都在1.8GHz驻留,或者
UE在3.5GHz和/或1.8GHz驻留(隐含支持3.5GHz可以驻留);
(3)只广播3.5GHz,UE在3.5GHz驻留;
(4)不广播3.5Ghz和1.8Ghz,UE在3.5GHz驻留(隐含支持3.5GHz可以驻留);
UE在3.5GHz或者1.8GHz驻留后,后续:
a.继续使用驻留的频点进行上行接入。
b.使用3.5GHz频点进行上行接入。
c.使用1.8GHz频点进行上行接入。
(二)随机接入
(1)广播3.5GHz和1.8GHz,UE可以在3.5GHz和/或1.8GHz接入;
(2)只广播1.8GHz;
UE都在1.8GHz接入;
UE在3.5GHz和/或1.8GHz接入(隐含支持3.5GHz可以做上行接入)
(3)只广播3.5GHz,UE在3.5GHz接入;
(4)不广播3.5Ghz和1.8Ghz,UE在3.5GHz接入(隐含支持3.5GHz可以做上行接入)。
UE在3.5GHz或者1.8GHz接入后,后续:
继续使用接入的频点进行上行传输。
使用3.5GHz频点进行上行传输。
可选地,UE可以在某频点接入后,再通过发送请求上行传输使用频点(如根据UE能力,通过RRC消息或者UE辅助上报消息请求),基站侧根据接收到的UE请求,再为UE配置上行传输的资源。
上行传输(UL transmission)情况与RACH类似。
(三)上行传输:
(1)广播3.5GHz和1.8GHz,UE可以在3.5GHz和/或1.8GHz上行传输;
(2)只广播1.8GHz;
UE都在1.8GHz上行传输;或者
UE在3.5GHz和/或1.8GHz上行传输(隐含支持3.5GHz可以做上行传输);
(3)只广播3.5GHz,UE在3.5GHz上行传输;
(4)不广播3.5Ghz和1.8Ghz,UE在3.5GHz上行传输(隐含支持3.5GHz可以做上行传输)。
本公开实施例的通信方法,也可以不依赖于广播的频点,或者在没有广播频点的情况下,直接在协议中定义在某频点或者默认1.8Ghz进行随机接入或者驻留,或者直接在有3.5GHz和/或1.8GHz的区域进行上行传输。
本公开实施例的通信方法,获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。本公开实施例中可通过LTE通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现与基站的通信。
如图4所示,本公开的实施例还提供了一种通信方法,应用于基站,包括:
步骤401:向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
本公开实施例的通信方法,向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点 包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统,本公开实施例中可通过LTE通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现终端与基站的通信。
进一步地,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
进一步地,上述步骤401包括:
通过参考信号,物理广播信道,系统信息或专用无线资源控制RRC信令中的至少一种发送所述资源指示信息。
进一步地,上述步骤401包括:向移动终端发送资源指示信息的步骤包括:
通过新增加一个参考信号或信道将所述资源指示信息发送给移动终端;或者通过同步信号块中新增加的参考信号或信道将所述资源指示信息发送给所述移动终端。
进一步地,上述步骤401包括:
将候选小区对应的频点信息作为所述资源指示信息发送给所述移动终端。
进一步地,上述步骤401包括:
获取移动终端发送的能力信息,所述能力信息包括所述移动终端支持的频点;根据所述移动终端支持的频点,为所述移动终端配置可使用上行频点,并将所述可使用上行频点作为资源指示信息发送给所述移动终端。
进一步地,所述能力信息还包括:所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
根据所述能力信息,为所述移动终端配置可使用上行频点的步骤包括:
若所述移动终端不支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输,则在所述移动终端未使用下行服务频点进行下行接收的时隙,将所述第一服务频点配置为可使用上行频点。
移动终端通过上报该能力信息,使得UE在使用下行服务频点(如3.5GHz)进行下行接收时,网络不为UE配置上行接入,或上行传输的资源;当UE未使用下行服务频点进行下行接收时,网络可以为UE配置上行接入,或上 行传输的资源。
假定NR系统上行共享LTE系统的1.8GHz,并且在移动终端使用3.5GHz进行下行接收时,不可以同时使用1.8GHz进行上行发送。如图3所示,只有在未使用3.5GHz进行下行接收时,移动终端才可以使用1.8GHz进行上行发送。此方案允许移动终端只有一个收发器,分时进行上下行发送,不止能节省一个双工器的成本,还可以减少交调干扰和二次协波的影响。
如图5所示,本公开实施例还提供了一种移动终端500,包括:
获取模块501,用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
通信模块502,用于根据所述目标资源与所述基站进行通信。
本公开实施例的移动终端,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
本公开实施例的移动终端,所述获取模块501用于通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
本公开实施例的移动终端,所述获取模块501用于根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
本公开实施例的移动终端,所述获取模块501包括:
第一获取子模块,用于若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
本公开实施例的移动终端,所述第一获取子模块包括:
第一选取单元,用于若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
本公开实施例的移动终端,所述第一获取子模块包括:
修正单元,用于若所述资源指示信息包括候选小区对应的频点信息,则 根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;
确定单元,用于根据修正处理后的判断参数,确定所述目标小区。
本公开实施例的移动终端,所述修正单元用于若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
本公开实施例的移动终端,所述第一获取子模块包括:
设置单元,用于根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;
选取单元,用于根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
本公开实施例的移动终端,所述设置单元用于若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
本公开实施例的移动终端,所述获取模块501包括:
第二获取子模块,用于若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
本公开实施例的移动终端,还包括:
第一发送模块,用于向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
本公开实施例的移动终端,所述能力信息还包括:
所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
本公开实施例的移动终端,所述通信模块502用于根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
用于根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传输;或者
用于根据所述目标资源进行上行传输。
本公开实施例的移动终端,所述通信模块502用于若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
本公开实施例的移动终端,所述通信模块502包括:
第三获取子模块,用于若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;
第一选择子模块,用于根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
本公开实施例的移动终端,所述第三获取子模块用于通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
本公开实施例的移动终端,所述通信模块502包括:
第四获取子模块,用于若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;
第二选择子模块,用于根据所述第三信号强度阈值、所述第四信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行 接入。
本公开实施例的移动终端,所述第四获取子模块用于通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值。
本公开实施例的移动终端,所述通信模块502用于在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
本公开实施例的移动终端,所述预定时隙包括:
连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频点进行下行接收的时隙;
其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息的时隙及接收参考信息的时隙;
空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
本公开实施例的移动终端,获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。本公开实施例中可通过非新空口NR通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现与基站的通信。
需要说明的是,该移动终端是与上述方法实施例对应的终端,上述方法实施例中所有实现方式均适用于该移动终端的实施例中,也能达到相同的技术效果。
为了更好的实现上述目的,如图6所示,本公开的实施例还提供了一种移动终端,包括第一存储器620、第一处理器600、第一收发机610、用户接口630、总线接口及存储在第一存储器620上并可在第一处理器600上运行的第一计算机程序,所述第一处理器600用于读取第一存储器620中的程序, 执行下列过程:
获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
根据所述目标资源与所述基站进行通信。
其中,在图6中,总线架构可以包括任意数量的互联的总线和桥,具体由第一处理器600代表的一个或多个处理器和第一存储器620代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。第一收发机610可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。针对不同的用户设备,用户接口630还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
第一处理器600负责管理总线架构和通常的处理,第一存储器620可以存储第一处理器600在执行操作时所使用的数据。
可选的,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
第一处理器600还用于:通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
第一处理器600还用于:根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
第一处理器600还用于:若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
第一处理器600还用于:若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接 入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
第一处理器600还用于:若所述资源指示信息包括候选小区对应的频点信息,则根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;根据修正处理后的判断参数,确定所述目标小区。
第一处理器600还用于:若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
第一处理器600还用于:根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
第一处理器600还用于:若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
第一处理器600还用于:若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
第一处理器600还用于:通过第一收发机610向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
可选的,所述能力信息还包括:
所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
第一处理器600还用于:根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传 输;或者
根据所述目标资源进行上行传输。
第一处理器600还用于:若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
第一处理器600还用于:若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
第一处理器600还用于:通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
第一处理器600还用于:若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;根据所述第三信号强度阈值、所述第四信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行接入。
第一处理器600还用于:通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值。
第一处理器600还用于:在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
可选的,所述预定时隙包括:
连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频点进行下行接收的时隙;
其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息 的时隙及接收参考信息的时隙;
空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
在本公开的一些实施例中,还提供了一种计算机可读存储介质,其上存储有第一计算机程序,该第一程序被处理器执行时实现以下步骤:
获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
根据所述目标资源与所述基站进行通信。
如图7所示,为本公开实施例移动终端的又一结构框图,图7所示的移动终端700包括:至少一个处理器701、存储器702、至少一个网络接口704和其他用户接口703。移动终端700中的各个组件通过总线系统705耦合在一起。可理解,总线系统705用于实现这些组件之间的连接通信。总线系统705除包括数据总线之外,还包括电源总线、控制总线和状态信号总线。但是为了清楚说明起见,在图7中将各种总线都标为总线系统705。
其中,用户接口703可以包括显示器、键盘或者点击设备(例如,鼠标,轨迹球(trackball)、触感板或者触摸屏等。
可以理解,本公开实施例中的存储器702可以是易失性存储器或非易失性存储器,或可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。易失性存储器可以是随机存取存储器(Random Access Memory,RAM),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(Static RAM,SRAM)、动态随机存取存储器(Dynamic RAM,DRAM)、同步动态随机存取存储器(Synchronous DRAM,SDRAM)、双倍数据速率同步动态随机存取存储器(Double Data Rate SDRAM,DDRSDRAM)、增强型同步动态随机存取存储器(Enhanced SDRAM,ESDRAM)、同步连接动态随机存取存储器(Synchlink DRAM,SLDRAM)和直 接内存总线随机存取存储器(Direct Rambus RAM,DRRAM)。本文描述的系统和方法的存储器702旨在包括但不限于这些和任意其它适合类型的存储器。
在一些实施方式中,存储器702存储了如下的元素,可执行模块或者数据结构,或者他们的子集,或者他们的扩展集:操作系统7021和应用程序7022。
其中,操作系统7021,包含各种系统程序,例如框架层、核心库层、驱动层等,用于实现各种基础业务以及处理基于硬件的任务。应用程序7022,包含各种应用程序,例如媒体播放器(Media Player)、浏览器(Browser)等,用于实现各种应用业务。实现本公开实施例方法的程序可以包含在应用程序7022中。
在本公开的一些实施例中,通过调用存储器702存储的程序或指令,具体的可以是在应用程序7022中存储的程序或指令,处理器701用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。
可选的,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
处理器701还用于:通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
处理器701还用于:根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
处理器701还用于:若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
处理器701还用于:若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
处理器701还用于:若所述资源指示信息包括候选小区对应的频点信息,则根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;根据修正处理后的判断参数,确定所述目标小区。
处理器701还用于:若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
处理器701还用于:根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
处理器701还用于:若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
处理器701还用于:若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
处理器701还用于:通过第一收发机610向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
可选的,所述能力信息还包括:
所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
处理器701还用于:根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传输;或者
根据所述目标资源进行上行传输。
处理器701还用于:若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
处理器701还用于:若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
处理器701还用于:通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
处理器701还用于:若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;根据所述第三信号强度阈值、所述第四信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行接入。
处理器701还用于:通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值。
处理器701还用于:在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
可选的,所述预定时隙包括:
连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频点进行下行接收的时隙;
其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息的时隙及接收参考信息的时隙;
空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息 的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
本公开实施例的移动终端700,处理器701用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。本公开实施例中可通过非新空口NR通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现与基站的通信。
本公开的移动终端如可以是手机、平板电脑、个人数字助理(Personal Digital Assistant,PDA)、或车载电脑等等终端。
移动终端700能够实现前述实施例中终端实现的各个过程,为避免重复,这里不再赘述。
上述本公开实施例揭示的方法均可以应用于处理器701中,或者由处理器701实现。处理器701可能是一种集成电路芯片,具有信号的处理能力。在实现过程中,上述方法的各步骤可以通过处理器701中的硬件的集成逻辑电路或者软件形式的指令完成。上述的处理器701可以是通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现成可编程门阵列(Field Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件。可以实现或者执行本公开实施例中的公开的各方法、步骤及逻辑框图。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。结合本公开实施例所公开的方法的步骤可以直接体现为硬件译码处理器执行完成,或者用译码处理器中的硬件及软件模块组合执行完成。软件模块可以位于随机存储器,闪存、只读存储器,可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存储介质中。该存储介质位于存储器702,处理器701读取存储器702中的信息,结合其硬件完成上述方法的步骤。
可以理解的是,本文描述的这些实施例可以用硬件、软件、固件、中间件、微码或其组合来实现。对于硬件实现,处理单元可以实现在一个或多个专用集成电路(Application Specific Integrated Circuits,ASIC)、数字信号处理器(Digital Signal Processing,DSP)、数字信号处理设备(DSP Device,DSPD)、 可编程逻辑设备(Programmable Logic Device,PLD)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)、通用处理器、控制器、微控制器、微处理器、用于执行本申请所述功能的其它电子单元或其组合中。
对于软件实现,可通过执行本文所述功能的模块(例如过程、函数等)来实现本文所述的技术。软件代码可存储在存储器中并通过处理器执行。存储器可以在处理器中或在处理器外部实现。
如图8所示,为本公开实施例的移动终端的再一结构框图。图8所示的移动终端800包括射频(Radio Frequency,RF)电路810、存储器820、输入单元830、显示单元840、处理器860、音频电路870、WiFi(Wireless Fidelity)模块8100和电源890。
其中,输入单元830可用于接收用户输入的数字或字符信息,以及产生与移动终端800的用户设置以及功能控制有关的信号输入。具体地,本公开实施例中,该输入单元830可以包括触控面板831。触控面板831,也称为触摸屏,可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板831上的操作),并根据预先设定的程式驱动相应的连接装置。可选的,触控面板831可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给该处理器860,并能接收处理器860发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板831。除了触控面板831,输入单元830还可以包括其他输入设备832,其他输入设备832可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆等中的一种或多种。
其中,显示单元840可用于显示由用户输入的信息或提供给用户的信息以及移动终端800的各种菜单界面。显示单元840可包括显示面板841,可选的,可以采用LCD或有机发光二极管(Organic Light-Emitting Diode,OLED)等形式来配置显示面板841。
应注意,触控面板831可以覆盖显示面板841,形成触摸显示屏,当该 触摸显示屏检测到在其上或附近的触摸操作后,传送给处理器860以确定触摸事件的类型,随后处理器860根据触摸事件的类型在触摸显示屏上提供相应的视觉输出。
触摸显示屏包括应用程序界面显示区及常用控件显示区。该应用程序界面显示区及该常用控件显示区的排列方式并不限定,可以为上下排列、左右排列等可以区分两个显示区的排列方式。该应用程序界面显示区可以用于显示应用程序的界面。每一个界面可以包含至少一个应用程序的图标和/或widget桌面控件等界面元素。该应用程序界面显示区也可以为不包含任何内容的空界面。该常用控件显示区用于显示使用率较高的控件,例如,设置按钮、界面编号、滚动条、电话本图标等应用程序图标等。
其中处理器860是移动终端800的控制中心,利用各种接口和线路连接整个手机的各个部分,通过运行或执行存储在第一存储器821内的软件程序和/或模块,以及调用存储在第二存储器822内的数据,执行移动终端800的各种功能和处理数据,从而对移动终端800进行整体监控。可选的,处理器860可包括一个或多个处理单元。
在本公开的一实施例中,通过调用存储该第一存储器821内的软件程序和/或模块和/或该第二存储器822内的数据,处理器860用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。
可选的,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
处理器860还用于:通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
处理器860还用于:根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
处理器860还用于:若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
处理器860还用于:若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
处理器860还用于:若所述资源指示信息包括候选小区对应的频点信息,则根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;根据修正处理后的判断参数,确定所述目标小区。
处理器860还用于:若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
处理器860还用于:根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
处理器860还用于:若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
处理器860还用于:若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
处理器860还用于:通过第一收发机610向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
可选的,所述能力信息还包括:
所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
处理器860还用于:根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传输;或者
根据所述目标资源进行上行传输。
处理器860还用于:若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
处理器860还用于:若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
处理器860还用于:通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
处理器860还用于:若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;根据所述第三信号强度阈值、所述第四信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行接入。
处理器860还用于:通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值。
处理器860还用于:在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
可选的,所述预定时隙包括:
连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频 点进行下行接收的时隙;
其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息的时隙及接收参考信息的时隙;
空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
本公开的移动终端如可以是手机、平板电脑、个人数字助理(Personal Digital Assistant,PDA)、或车载电脑等等终端。
移动终端800能够实现前述实施例中终端实现的各个过程,为避免重复,这里不再赘述。
本公开实施例的移动终端800,处理器860用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;根据所述目标资源与所述基站进行通信。本公开实施例中可通过非新空口NR通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现与基站的通信。
如图9所示,本公开的实施例还提供了一种基站900,包括
第二发送模块901,用于向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
本公开实施例的基站,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
本公开实施例的基站,所述第二发送模块901用于通过参考信号,物理广播信道,系统信息或专用无线资源控制RRC信令中的至少一种发送所述资源指示信息。
本公开实施例的基站,所述第二发送模块用于通过新增加一个参考信号或信道将所述资源指示信息发送给移动终端;或者通过同步信号块中新增加 的参考信号或信道将所述资源指示信息发送给所述移动终端。
本公开实施例的基站,所述第二发送模块用于将候选小区对应的频点信息作为所述资源指示信息发送给所述移动终端。
本公开实施例的基站,所述第二发送模块包括:
第五获取子模块,用于获取移动终端发送的能力信息,所述能力信息包括所述移动终端支持的频点;
配置子模块,用于根据所述移动终端支持的频点,为所述移动终端配置可使用上行频点,并将所述可使用上行频点作为资源指示信息发送给所述移动终端。
本公开实施例的基站,所述能力信息还包括:所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
所述配置子模块用于若所述移动终端不支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输,则在所述移动终端未使用下行服务频点进行下行接收的时隙,将所述第一服务频点配置为可使用上行频点。
本公开实施例的基站,本公开实施例的通信方法,向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统,本公开实施例中可通过非新空口NR通信系统的第一服务频点和NR通信系统的第二服务频点进行上行传输,在上行频点共享的前提下,实现终端与基站的通信。
为了更好的实现上述目的,如图10所示,本公开的实施例还提供了一种基站,包括第二存储器1020、第二处理器1000、第二收发机1010、总线接口及存储在第二存储器1020上并可在第二处理器1000上运行的第二计算机程序,所述第二处理器1000用于读取第二存储器1020中的程序,执行下列过程:
向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息 确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
其中,在图10中,总线架构可以包括任意数量的互联的总线和桥,具体由第二处理器1000代表的一个或多个处理器和第二存储器1020代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。第二收发机1010可以是多个元件,即包括发送机和收发机,提供用于在传输介质上与各种其他装置通信的单元。第二处理器1000负责管理总线架构和通常的处理,第二存储器1020可以存储第二处理器1000在执行操作时所使用的数据。
可选的,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
第二处理器1000还用于通过参考信号,物理广播信道,系统信息或专用无线资源控制RRC信令中的至少一种发送所述资源指示信息。
第二处理器1000还用于通过新增加一个参考信号或信道将所述资源指示信息发送给移动终端;或者通过同步信号块中新增加的参考信号或信道将所述资源指示信息发送给所述移动终端。
第二处理器1000还用于将候选小区对应的频点信息作为所述资源指示信息发送给所述移动终端。
第二处理器1000还用于获取移动终端发送的能力信息,所述能力信息包括所述移动终端支持的频点;根据所述移动终端支持的频点,为所述移动终端配置可使用上行频点,并将所述可使用上行频点作为资源指示信息发送给所述移动终端。
可选的,所述能力信息还包括:所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
第二处理器1000还用于若所述移动终端不支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输,则在所述移动终端未使用下行服务频点进行下行接收的时隙,将所述第一服务频点配置 为可使用上行频点。
在本公开的一些实施例中,还提供了一种计算机可读存储介质,其上存储有第二计算机程序,该程序被处理器执行时实现以下步骤:
向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本公开的范围。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的实施例中,应该理解到,所揭露的装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本公开各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本公开的技术方案本质上或者说对相关技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本公开各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、ROM、RAM、磁碟或者光盘等各种可以存储程序代码的介质。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来控制相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上所述仅为本公开的可选的实施例而已,并不用以限制本公开,凡在本公开的原则之内,所作的任何修改、等同替换、改进等,均应包含在本公开的保护范围之内。

Claims (60)

  1. 一种通信方法,应用于移动终端,包括:
    获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
    根据所述目标资源与基站进行通信。
  2. 根据权利要求1所述的通信方法,其中,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
  3. 根据权利要求1所述的通信方法,其中,获取当前通信过程中用于上行通信的目标资源的步骤包括:
    通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
  4. 根据权利要求1所述的通信方法,其中,获取当前通信过程中用于上行通信的目标资源的步骤包括:
    根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
  5. 根据权利要求4所述的通信方法,其中,根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源的步骤包括:
    若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
  6. 根据权利要求5所述的通信方法,其中,若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留的步骤包括:
    若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
  7. 根据权利要求5所述的通信方法,其中,若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留的步骤包括:
    若所述资源指示信息包括候选小区对应的频点信息,则根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;
    根据修正处理后的判断参数,确定所述目标小区。
  8. 根据权利要求7所述的通信方法,其中,根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理的步骤包括:
    若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
  9. 根据权利要求5所述的通信方法,其中,若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留的步骤包括:
    根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;
    根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
  10. 根据权利要求9所述的通信方法,其中,根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级的步骤包括:
    若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
  11. 根据权利要求4所述的通信方法,其中,根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源的步骤包括:
    若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
  12. 根据权利要求11所述的通信方法,其中,所述根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源的步骤之前,还包括:
    向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
  13. 根据权利要求12所述的通信方法,其中,所述能力信息还包括:
    所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输。
  14. 根据权利要求11所述的通信方法,其中,根据所述目标资源与基站进行通信的步骤包括:
    根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
    根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传输;或者
    根据所述目标资源进行上行传输。
  15. 根据权利要求11所述的通信方法,其中,根据所述目标资源与基站进行通信的步骤包括:
    若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
    若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
    若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
  16. 根据权利要求14所述的通信方法,其中,根据所述目标资源进行驻留的步骤包括:
    若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;
    根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
  17. 根据权利要求16所述的通信方法,其中,获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值的步骤包括:
    通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
  18. 根据权利要求14所述的通信方法,其中,根据所述目标资源进行接入的步骤包括:
    若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;
    根据所述第三信号强度阈值、所述第四信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行接入。
  19. 根据权利要求18所述的通信方法,其中,获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值的步骤包括:
    通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值。
  20. 根据权利要求1所述的通信方法,其中,根据所述目标资源与基站进行通信的步骤包括:
    在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
  21. 根据权利要求20所述的通信方法,其中,所述预定时隙包括:
    连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频点进行下行接收的时隙;
    其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控 制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息的时隙及接收参考信息的时隙;
    空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
  22. 一种通信方法,应用于基站,包括:
    向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统。
  23. 根据权利要求22所述的通信方法,其中,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
  24. 根据权利要求22所述的通信方法,其中,向移动终端发送资源指示信息的步骤包括:
    通过参考信号,物理广播信道,系统信息或专用无线资源控制RRC信令中的至少一种发送所述资源指示信息。
  25. 根据权利要求22所述的通信方法,其中,向移动终端发送资源指示信息的步骤包括:
    通过新增加一个参考信号或信道将所述资源指示信息发送给移动终端;或者通过同步信号块中新增加的参考信号或信道将所述资源指示信息发送给所述移动终端。
  26. 根据权利要求22所述的通信方法,其中,向移动终端发送资源指示信息的步骤包括:
    将候选小区对应的频点信息作为所述资源指示信息发送给所述移动终端。
  27. 根据权利要求22所述的通信方法,其中,向移动终端发送资源指示信息的步骤包括:
    获取移动终端发送的能力信息,所述能力信息包括所述移动终端支持的频点;
    根据所述移动终端支持的频点,为所述移动终端配置可使用上行频点,并将所述可使用上行频点作为资源指示信息发送给所述移动终端。
  28. 根据权利要求27所述的通信方法,其中,所述能力信息还包括:所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输;
    根据所述能力信息,为所述移动终端配置可使用上行频点的步骤包括:
    若所述移动终端不支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输,则在所述移动终端未使用下行服务频点进行下行接收的时隙,将所述第一服务频点配置为可使用上行频点。
  29. 一种移动终端,包括:
    获取模块,用于获取当前通信过程中用于上行通信的目标资源,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新空口NR通信系统;
    通信模块,用于根据所述目标资源与基站进行通信。
  30. 根据权利要求29所述的移动终端,其中,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
  31. 根据权利要求29所述的移动终端,其中,所述获取模块用于通过预设协议约定,获取当前通信过程中用于上行通信的目标资源。
  32. 根据权利要求29所述的移动终端,其中,所述获取模块用于根据基站发送的资源指示信息,获取当前通信过程中用于上行通信的目标资源。
  33. 根据权利要求32所述的移动终端,其中,所述获取模块包括:
    第一获取子模块,用于若所述资源指示信息包括候选小区对应的频点信息,则根据移动终端支持的频点,在所述候选小区中选取目标小区进行驻留,并将所述目标小区作为所述目标资源。
  34. 根据权利要求33所述的移动终端,其中,所述第一获取子模块包括:
    第一选取单元,用于若所述候选小区中的第一候选小区对应的频点信息表明所述第一候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,所述移动终端支持的上行频点不包括第一服务频点,则确定所述第一候选小区对所述移动终端禁止驻留或拒绝接入,并在除所述第一候选小区的其他候选小区中选取目标小区进行驻留。
  35. 根据权利要求33所述的移动终端,其中,所述第一获取子模块包括:
    修正单元,用于若所述资源指示信息包括候选小区对应的频点信息,则根据一预设偏置参数,对每个所述候选小区进行小区重选或小区选择时使用的判断参数进行修正处理,所述判断参数为根据小区选取的S准则或R准则计算得到;
    确定单元,用于根据修正处理后的判断参数,确定所述目标小区。
  36. 根据权利要求35所述的移动终端,其中,所述修正单元用于若所述移动终端支持的上行频点包括第一服务频点,且候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统的第二服务频点用于上行传输,则将所述判断参数加上所述预设偏置参数,否则将所述判断参数减去所述预设偏置参数,所述预设偏置参数为正数。
  37. 根据权利要求33所述的移动终端,其中,所述第一获取子模块包括:
    设置单元,用于根据移动终端支持的频点及所述候选小区对应的频点信息,为所述候选小区设置驻留优先级;
    选取单元,用于根据每个所述候选小区的驻留优先级,在所述候选小区中选取目标小区进行驻留。
  38. 根据权利要求37所述的移动终端,其中,所述设置单元用于若移动终端支持的上行频点包括第一服务频点,且所述候选小区对应的频点信息表明所述候选小区支持第一服务频点用于上行传输或不支持NR通信系统第二服务频点用于上行传输,则提高所述候选小区的驻留优先级,否则降低所述候选小区的驻留优先级。
  39. 根据权利要求32所述的移动终端,其中,所述获取模块包括:
    第二获取子模块,用于若所述资源指示信息包括可使用上行频点,则将所述可使用上行频点作为所述目标资源,所述可使用上行频点是基站根据移动终端上报的能力信息配置的,所述能力信息包括移动终端支持的上行频点。
  40. 根据权利要求39所述的移动终端,其中,还包括:
    第一发送模块,用于向所述基站发送所述移动终端的能力信息,所述能力信息包括移动终端支持的上行频点。
  41. 根据权利要求40所述的移动终端,其中,所述能力信息还包括:
    所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上 行频点进行接入或进行上行数据传输。
  42. 根据权利要求39所述的移动终端,其中,所述通信模块用于根据所述目标资源进行驻留,或者根据所述目标资源驻留后,根据所述目标资源进行接入和/或上行传输;或者
    用于根据所述目标资源进行接入,或者根据所述目标资源接入后进行上行传输;或者
    用于根据所述目标资源进行上行传输。
  43. 根据权利要求39所述的移动终端,其中,所述通信模块用于若所述目标资源包括用于驻留的频点,则根据用于驻留的频点进行驻留,或者根据用于驻留的频点驻留后,根据用于驻留的频点进行接入和/或上行传输;
    若所述目标资源包括用于接入的频点,则根据用于接入的频点进行接入,或者根据用于接入的频点进行接入后,根据用于接入的频点进行上行传输;
    若所述目标资源包括用于上行传输的频点,则根据用于上行传输的频点进行上行传输。
  44. 根据权利要求42所述的移动终端,其中,所述通信模块包括:
    第三获取子模块,用于若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值;
    第一选择子模块,用于根据所述第一信号强度阈值、所述第二信号强度阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行驻留。
  45. 根据权利要求44所述的移动终端,其中,所述第三获取子模块用于通过基站广播的第一通知消息获取第一服务频点对应的第一信号强度阈值及第二服务频点对应的第二信号强度阈值。
  46. 根据权利要求42所述的移动终端,其中,所述通信模块包括:
    第四获取子模块,用于若所述目标资源包括第一服务频点和第二服务频点,则获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值;
    第二选择子模块,用于根据所述第三信号强度阈值、所述第四信号强度 阈值及当前参考信号接收功率RSRP,选择第一服务频点或第二服务频点进行接入。
  47. 根据权利要求46所述的移动终端,其中,所述第四获取子模块用于通过基站广播的第二通知消息获取第一服务频点对应的第三信号强度阈值及第二服务频点对应的第四信号强度阈值。
  48. 根据权利要求29所述的移动终端,其特征在于,所述通信模块用于在除预定时隙之外的其他时隙,将所述第一服务频点作为上行频点进行接入或上行传输,所述预定时隙为所述移动终端使用NR通信系统的下行服务频点进行下行接收的时隙。
  49. 根据权利要求48所述的移动终端,其中,所述预定时隙包括:
    连接态使用下行服务频点进行下行接收的时隙及空闲态使用下行服务频点进行下行接收的时隙;
    其中,连接态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收下行数据的时隙、接收广播消息的时隙、接收寻呼消息的时隙及接收参考信息的时隙;
    空闲态使用下行服务频点进行下行接收的时隙包括:接收下行控制信息的时隙、接收寻呼消息的时隙和接收参考信息的时隙。
  50. 一种移动终端,包括第一存储器、第一处理器及存储在第一存储器上并可在第一处理器上运行的第一计算机程序,其特征在于,所述第一处理器执行所述第一计算机程序时实现如权利要求1-21中任一项所述通信方法中的步骤。
  51. 一种计算机可读存储介质,其上存储有第一计算机程序,其中,该第一计算机程序被处理器执行时实现如权利要求1-21中任一项所述通信方法中的步骤。
  52. 一种基站,包括:
    第二发送模块,用于向移动终端发送资源指示信息,使所述移动终端根据所述资源指示信息确定当前通信过程中用于上行通信的目标资源,并根据所述目标资源与所述基站进行通信,其中,所述目标资源对应的频点包括非新空口NR通信系统的第一服务频点,且所述移动终端所在的通信系统为新 空口NR通信系统。
  53. 根据权利要求52所述的基站,其中,所述目标资源对应的频点还包括新空口NR通信系统的第二服务频点。
  54. 根据权利要求52所述的基站,其中,所述第二发送模块用于通过参考信号,物理广播信道,系统信息或专用无线资源控制RRC信令中的至少一种发送所述资源指示信息。
  55. 根据权利要求52所述的基站,其中,所述第二发送模块用于通过新增加一个参考信号或信道将所述资源指示信息发送给移动终端;或者通过同步信号块中新增加的参考信号或信道将所述资源指示信息发送给所述移动终端。
  56. 根据权利要求52所述的基站,其中,所述第二发送模块用于将候选小区对应的频点信息作为所述资源指示信息发送给所述移动终端。
  57. 根据权利要求52所述的基站,其中,所述第二发送模块包括:
    第五获取子模块,用于获取移动终端发送的能力信息,所述能力信息包括所述移动终端支持的频点;
    配置子模块,用于根据所述移动终端支持的频点,为所述移动终端配置可使用上行频点,并将所述可使用上行频点作为资源指示信息发送给所述移动终端。
  58. 根据权利要求57所述的基站,其中,所述能力信息还包括:所述移动终端是否支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输;
    所述配置子模块用于若所述移动终端不支持在下行传输对应时隙中采用第一服务频点作为上行频点进行接入或进行上行数据传输,则在所述移动终端未使用下行服务频点进行下行接收的时隙,将所述第一服务频点配置为可使用上行频点。
  59. 一种基站,包括第二存储器、第二处理器及存储在第二存储器上并可在第二处理器上运行的第二计算机程序,其特征在于,所述第二处理器执行所述第二计算机程序时实现如权利要求22-28中任一项所述通信方法中的步骤。
  60. 一种计算机可读存储介质,其上存储有第二计算机程序,其中,该第二计算机程序被处理器执行时实现如权利要求22-28中任一项所述通信方法中的步骤。
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