WO2018176500A1 - 用于终端测量的方法、装置,网络侧设备和终端侧设备 - Google Patents

用于终端测量的方法、装置,网络侧设备和终端侧设备 Download PDF

Info

Publication number
WO2018176500A1
WO2018176500A1 PCT/CN2017/079387 CN2017079387W WO2018176500A1 WO 2018176500 A1 WO2018176500 A1 WO 2018176500A1 CN 2017079387 W CN2017079387 W CN 2017079387W WO 2018176500 A1 WO2018176500 A1 WO 2018176500A1
Authority
WO
WIPO (PCT)
Prior art keywords
side device
frequency band
measurement
terminal
terminal side
Prior art date
Application number
PCT/CN2017/079387
Other languages
English (en)
French (fr)
Inventor
黄晓庆
江海涛
王振凯
Original Assignee
深圳前海达闼云端智能科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳前海达闼云端智能科技有限公司 filed Critical 深圳前海达闼云端智能科技有限公司
Priority to CN201780001929.8A priority Critical patent/CN107820726B/zh
Priority to PCT/CN2017/079387 priority patent/WO2018176500A1/zh
Publication of WO2018176500A1 publication Critical patent/WO2018176500A1/zh

Links

Images

Classifications

    • 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
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/54Allocation or scheduling criteria for wireless resources based on quality criteria
    • H04W72/542Allocation or scheduling criteria for wireless resources based on quality criteria using measured or perceived quality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Definitions

  • the present disclosure relates to the field of communications, and in particular, to a method, an apparatus, a network side device, and a terminal side device for terminal measurement.
  • the uplink coverage of the system is less than that of the downlink coverage, which affects the transmission of uplink data.
  • the gap between the two is more obvious. Therefore, the high and low frequency bands need to be considered.
  • the uplink frequency of the low frequency band is used for uplink data transmission.
  • the high frequency band may include frequencies of 28 GHz and 3.5 GHz for providing capacity, and the low frequency band may include frequencies of 900 MHz or the like. Used to provide coverage.
  • the combination of the high and low frequency bands generally includes two implementation modes, one implementation manner is a carrier aggregation mode, and the other implementation mode is a dual connection mode, and both implementation modes need to configure a main service for the terminal.
  • the network device and the slave network device have a configuration time of 20ms-50ms and a long configuration delay, which causes a long delay of data transmission.
  • the high-frequency TDD/FDD band and the low-frequency FDD/TDD band can be paired to become a new frequency pairing, and can be switched between different pairing modes without configuring carrier aggregation or dual Connect, reduce service delay and save related signaling overhead.
  • the main purpose of the present disclosure is to provide a method and apparatus for terminal measurement, a network side device, and a terminal side device, which can support the terminal side device to measure the downlink frequency band when the frequency band is paired, so that the terminal side device can Switching in different downstream bands.
  • a terminal for A method of measuring the method being applied to a network side device, the method comprising:
  • the measurement interval configuration indication information configuring the measurement interval for the terminal-side device according to the measurement interval configuration indication information, to obtain terminal measurement configuration information, where the terminal measurement configuration information includes one or more downlink frequency ranges in the working frequency band supported by the terminal-side device The center frequency point information of the carrier, and the period and measurement duration of the interval at which the terminal side device measures the carrier;
  • a method for terminal measurement the method being applied to a terminal side device, the method comprising:
  • the measurement interval configuration indication information is reported to the network side device.
  • an apparatus for terminal measurement comprising:
  • a receiving module configured to receive measurement interval configuration indication information reported by the terminal device
  • a configuration module configured to configure a measurement interval for the terminal side device according to the measurement interval configuration indication information, to obtain terminal measurement configuration information, where the terminal measurement configuration information includes one or more of the working frequency bands supported by the terminal side device Central frequency point information of carriers in a downlink frequency range, and a period and a measurement duration of an interval at which the terminal side device measures the carrier;
  • a sending module configured to send the terminal measurement configuration information to the terminal side device.
  • an apparatus for terminal measurement comprising:
  • a determining module configured to determine whether a measurement interval needs to be configured in each working frequency band in the working frequency band information list supported by the terminal side device, and at least one downlink other than the carrier in the downlink frequency range of the current received data in the working frequency band Reference signal of carrier in frequency range Or measuring the received power of the synchronization signal to obtain measurement interval configuration indication information;
  • the reporting module is configured to report measurement interval configuration indication information to the network side device.
  • a non-transitory computer readable storage medium comprising one or more programs for performing The method of the above first aspect.
  • a network side device comprising: the non-transitory computer readable storage medium of the above fifth aspect; and one or more processors for Executing the program in the non-transitory computer readable storage medium.
  • a non-transitory computer readable storage medium comprising one or more programs for executing The method of the above second aspect.
  • a network side device comprising: the non-transitory computer readable storage medium of the above seventh aspect; and one or more processors for Executing the program in the non-transitory computer readable storage medium.
  • the network-side device may configure the measurement interval for the terminal-side device according to the measurement interval configuration indication information, and obtain terminal measurement configuration information, where the terminal measurement is performed.
  • the configuration information includes central frequency point information of carriers in one or more downlink frequency ranges in the working frequency band supported by the terminal side device, and a period and a measurement duration of the interval at which the terminal side device measures the carrier, And sending the terminal measurement configuration information to the terminal side device.
  • the terminal side device can measure the downlink frequency band in the supported working frequency band according to the measurement interval configured by the network side device, thereby providing support for the terminal side device to switch in different downlink frequency bands.
  • FIG. 1 is a schematic flowchart diagram of a method for terminal measurement according to an embodiment of the present disclosure
  • FIG. 2 is a schematic flowchart diagram of another method for terminal measurement according to an embodiment of the present disclosure
  • FIG. 3 is a schematic flowchart diagram of still another method for terminal measurement according to an embodiment of the present disclosure
  • FIG. 4 is a schematic structural diagram of an apparatus for terminal measurement according to an embodiment of the present disclosure.
  • FIG. 5A is a schematic structural diagram of another apparatus for terminal measurement according to an embodiment of the present disclosure.
  • FIG. 5B is a schematic structural diagram of another apparatus for terminal measurement according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of another apparatus for terminal measurement according to an embodiment of the present disclosure.
  • the technical solutions provided by the following embodiments of the present disclosure can be applied to a 5G mobile communication system.
  • the system may include a network side device and a terminal side device, where the network side device may be a base station (BS), where the base station is a device that communicates with the terminal side device, and can provide communication of a specific physical area. cover.
  • the base station may be an evolved base station (EBB or eNodeB) in LTE, or may be another access network device in the wireless communication network that provides access services.
  • EBB evolved base station
  • eNodeB evolved base station
  • the terminal side devices may be distributed throughout the mobile communication system, and each terminal side device may be static or mobile.
  • the terminal side device may be a mobile station, a subscriber unit, a station, or a cellular phone, a personal digital assistant (PDA), and a handheld device.
  • PDA personal digital assistant
  • a wireless communication device such as a handheld or a laptop computer.
  • An embodiment of the present invention provides a method for measuring a terminal, where the method is applied to a network side device, as shown in FIG. 1 , the method includes:
  • the network side device may be required to configure the measurement interval.
  • the measurement interval configuration indication information is used to notify the network side device whether the measurement interval needs to be configured for the terminal side device, wherein when the measurement interval configuration indication information is true, the terminal side device is in the working frequency band to other downlink frequencies. When the range is measured, the network side device needs to configure the measurement interval for it. Otherwise, the measurement interval does not need to be configured.
  • the terminal measurement configuration information includes central frequency point information of carriers in one or more downlink frequency ranges in the working frequency band supported by the terminal side device, and an interval at which the terminal side device measures the carrier Cycle and measurement duration.
  • the measurement interval configuration indication information indicates that the terminal side device receives data in a carrier in any downlink frequency range of its working frequency band, it supports the other one or more downlink frequency ranges in the working frequency band.
  • the reference signal of the carrier or the received power of the synchronization signal is measured, it is not necessary to configure a measurement interval for the terminal; otherwise, the network side device is required to configure a measurement interval for the terminal device.
  • the terminal side device can measure the downlink frequency band in the supported working frequency band according to the measurement interval configured by the network side device, thereby providing support for the terminal side device to switch in different downlink frequency bands.
  • the embodiment of the present disclosure may further include: receiving, by the terminal side device, the working frequency band information list supported by the terminal side device, where the working frequency band information list includes the terminal A set of working frequency bands supported by the side device, the working frequency band being composed of at least one uplink frequency range and at least one downlink frequency range pair.
  • the network side device may configure a paired frequency band for the terminal side device according to the working frequency band capability supported by the terminal and the working frequency band information report reported by the terminal side device, where the paired frequency band includes the first downlink frequency band and the first uplink frequency band.
  • the first downlink frequency band is a downlink frequency range of the at least one downlink frequency range included in the working frequency band supported by the terminal, and is used for transmitting broadcast information, synchronization information, and downlink data of the network side device.
  • both the first downlink frequency band and the first uplink frequency band support the pairing combination jointly by the network side and the terminal.
  • the first downlink frequency band is used by the terminal side device to receive downlink broadcast information, synchronization information, control information, data information, and the like; the first uplink frequency band is used by the terminal side device to send uplink data, downlink data feedback information, and random access request. And other information.
  • the uplink frequency band and the downlink frequency band in the paired frequency band can be combined with a high frequency TDD (Time Division Duplexing)/FDD (Frequency Division Duplexing) frequency band and a low frequency FDD/TDD frequency band pairing.
  • TDD Time Division Duplexing
  • FDD Frequency Division Duplexing
  • the paired frequency band may be a high frequency TDD downlink frequency range and a high frequency TDD uplink frequency range pair; or a high frequency TDD downlink frequency range and a high frequency FDD uplink Frequency range matching; or, the high frequency TDD downlink frequency range and the low frequency FDD uplink frequency range are paired; or, the high frequency TDD downlink frequency range and the low frequency TDD uplink frequency range are paired; or, the high frequency FDD downlink frequency range and the high frequency TDD uplink frequency Range matching; or, the high frequency FDD downlink frequency range and the high frequency FDD uplink frequency range are paired; or, the high frequency FDD downlink frequency range and the low frequency FDD uplink frequency range are paired; or, the high frequency FDD downlink frequency range and the low frequency TDD uplink frequency range Pairing; or, the low frequency TDD downlink frequency range is paired with the low frequency TDD uplink frequency range; or, the low frequency
  • the uplink coverage of the system is poorer than that of the downlink coverage, and the gap is obvious. Therefore, it can be considered to use the high and low frequency bands together, that is, in the high frequency band itself.
  • the uplink frequency of the low frequency band is used for uplink data transmission.
  • the selected frequency band pairing can be specifically:
  • the high frequency FDD downlink frequency range is paired with the low frequency TDD uplink frequency range.
  • the high frequency band is selected as the downlink frequency range
  • the low frequency band is selected as the uplink frequency range.
  • the uplink frequency of the low frequency band can be used for uplink data transmission, and the enhancement is performed. Coverage ability.
  • the paired frequency bands can be set according to actual needs.
  • the invention is not limited thereto.
  • the foregoing step S103 may include: sending the terminal measurement configuration information to the terminal side device on the first downlink frequency band.
  • the measurement interval configuration described in the foregoing step S102 is that the network side device can measure the downlink frequency bands except the first downlink frequency band in the working frequency band according to whether the terminal side device needs the measurement interval in the working frequency band supported by the terminal side device. Information to determine. For example, when the terminal side device has multiple downlink transmission channels, when the current working frequency band has multiple downlink frequency bands, the terminal side device can use one transmission channel to receive data of the first downlink frequency band, and use other transmission channels to measure pairing. In the other downlink frequency bands in the combination, in this case, the terminal side device does not need to use the measurement interval to measure other downlink frequency bands.
  • the terminal side device When the terminal side device has only one downlink transmission channel, the terminal side device cannot measure the other downlink frequency bands in the pairing combination while receiving the data of the first downlink frequency band. At this time, the measurement interval must be used for measurement. And the measurement interval is determined by the network In the network side device configuration, the network side device will not schedule the downlink data in the first downlink frequency band in the measurement period of one cycle of the measurement interval, so that the terminal side device can use the measurement interval to tune the frequency. The carriers of the other downlink frequency bands to be tested in the pairing combination are measured.
  • the measurement result reporting configuration information may be sent to the terminal side device, where the measurement result reporting configuration information is used by the terminal side device to measure The obtained measurement result is reported to the network side device.
  • the measurement result reporting configuration information is sent to the terminal side device on the first downlink frequency band configured for the terminal side device.
  • the measurement result reporting configuration information may include at least one of the following: the reporting period configuration information, the measurement trigger event configuration information, and the measurement result reporting resource configuration information.
  • the terminal side device may be configured to start measurement in other situations according to actual requirements, and the disclosure is not limited.
  • receiving the working frequency band supported by the terminal side device reported by the terminal device And determining, by the reference signal of the reference signal of the carrier or the received power of the synchronization signal, in the downlink frequency range except the first downlink frequency band, and determining, according to the measurement report value, whether the downlink data of the terminal side device is used
  • the carrier in the frequency range corresponding to the first downlink frequency band is switched to a carrier in a downlink frequency range other than the carrier in the frequency range corresponding to the first downlink frequency band in the working frequency band supported by the terminal side device on.
  • the determining, according to the measured reporting power value, whether to switch the downlink frequency band of the terminal side device includes: the reference signal receiving power of the first downlink frequency band is lower than the first preset threshold The value of the reference signal of the carrier in the frequency range corresponding to the second downlink frequency band in the working frequency band supported by the terminal side device is lower than the second preset threshold value When the measured value of the received power is higher than the third preset threshold, signaling is sent on the carrier in the frequency range corresponding to the first downlink frequency band, indicating that the terminal side device uses the downlink data from the first A carrier in a frequency range corresponding to a downlink frequency band is switched to a carrier in a frequency range corresponding to the second downlink frequency band.
  • the downlink signal band of the terminal device may not be switched, and the reference signal received power of the first downlink frequency band currently used by the terminal device is lower than the first preset threshold or the synchronization signal of the first downlink frequency band is received.
  • the power is lower than the second preset threshold, a better downlink frequency band can be selected for use.
  • the terminal device can measure the downlink frequency band in the supported working frequency band according to the measurement interval configured by the network side device. After receiving the measurement result reported by the terminal device, the network device can determine whether the measurement result is based on the measurement result. Switching the downlink frequency band of the terminal side device ensures the communication quality between the terminal side device and the network side device in the case of band pairing use.
  • the embodiment of the present disclosure further provides another terminal measurement method, which is applied to a terminal side device, as shown in FIG. 2, the method includes:
  • the method further includes: reporting, to the network side device, a working frequency band information list supported by the terminal side device, where the working frequency band information list is used by the network side device to configure the terminal side device And a working frequency band formed by pairing the first downlink frequency band and the first uplink frequency band, and receiving the working frequency band pairing result notified by the network side device.
  • the method further includes: receiving the measurement result report configuration information sent by the network side device, where the measurement result report configuration information is used by the terminal side device to report the measurement result obtained by the measurement to the Network side device.
  • the measurement result reporting configuration information includes at least one of the following: the reporting period configuration information, the measurement trigger event configuration information, and the measurement result reporting resource configuration information.
  • the method further includes: reporting, according to the measurement result, configuration information, to the network side device, reporting, in the working frequency band supported by the terminal side device, a carrier in a frequency range corresponding to the first downlink frequency band And a received power measurement report value of the reference signal of the carrier in the downlink frequency range, wherein the measurement report value is used by the network side device to determine whether to switch the downlink frequency band of the terminal side device.
  • the method further includes: switching, according to the indication signaling sent by the network side device, downlink data from a carrier in a frequency range corresponding to the first downlink frequency band to a frequency range corresponding to a second downlink frequency band.
  • the reference signal received power of the first downlink frequency band is lower than a first preset threshold, or the synchronization signal received power of the first downlink frequency band is lower than a second preset threshold.
  • the measured report value of the received power of the reference signal of the carrier in the frequency range corresponding to the second downlink frequency band is higher than the third preset threshold value.
  • the method for terminal measurement provided by the embodiment of the present disclosure is described in detail below in conjunction with the terminal side device and the network side device. As shown in Figure 3, it includes:
  • the terminal side device determines whether a measurement interval needs to be configured in each working frequency band in the working frequency band information list supported by the terminal side device, and obtains measurement interval configuration indication information.
  • the measurement interval includes a measurement period and a measurement duration, and is used for receiving a reference signal or a synchronization signal of a carrier in at least one downlink frequency range other than the carrier in the downlink frequency range of the current received data in the working frequency band. Power is measured.
  • the network side device receives the working frequency band information list and the measurement interval configuration indication information.
  • the network side device configures a pairing frequency band for the terminal side device according to the working frequency band list information, where the paired frequency band includes a first downlink frequency band and a first uplink frequency band.
  • the first downlink frequency band is a downlink frequency range of the at least one downlink frequency range included in the working frequency band supported by the terminal, and is used for transmitting broadcast information, synchronization information, and downlink data of the network side device.
  • the network side device configures a measurement interval for the terminal side device according to the measurement interval configuration indication information, and obtains terminal measurement configuration information.
  • the network side device sends the terminal measurement configuration information and the measurement result report configuration information to the terminal side device on the first downlink frequency band.
  • the terminal side device receives the terminal measurement configuration information sent by the network side device, and The measurement result reports configuration information.
  • the network side device will not schedule the downlink data in the first downlink frequency band by the terminal side device, so that the terminal side device can use the measurement interval to tune the frequency to the pairing.
  • the carriers of other downlink frequency bands to be tested in the combination are measured.
  • S311 The network side device receives the measurement report value reported by the terminal side device.
  • step S313 is performed.
  • the network side device notifies the terminal side device to switch downlink data from a carrier in a frequency range corresponding to the first downlink frequency band to a carrier in a frequency range corresponding to the second downlink frequency band by using the second signaling.
  • the terminal device can measure the downlink frequency band in the supported working frequency band according to the measurement interval configured by the network side device. After receiving the measurement result reported by the terminal device, the network device can determine whether the measurement result is based on the measurement result. Switching the downlink frequency band of the terminal side device ensures the communication quality between the terminal side device and the network side device in the case of band pairing use.
  • the embodiment of the present disclosure further provides a device 40 for terminal measurement, which is used to implement the method steps shown in FIG. 1 in the foregoing method embodiment.
  • the device 40 includes:
  • the receiving module 401 is configured to receive measurement interval configuration indication information reported by the terminal device;
  • the configuration module 402 is configured to configure a measurement interval for the terminal side device according to the measurement interval configuration indication information, to obtain terminal measurement configuration information, where the terminal measurement configuration information includes one of working frequency bands supported by the terminal side device or The center frequency point information of the carriers in the plurality of downlink frequency ranges, and the period and the measurement duration of the interval at which the terminal side device measures the carrier.
  • the configuration module 402 is configured to: when the measurement interval configuration indication information indicates that the terminal side device receives data in a carrier in any downlink frequency range of its working frequency band, and supports the working frequency band Reference signal of other one or more carriers in the downlink frequency range When the received power of the synchronization signal is measured, it is not necessary to configure a measurement interval for the terminal; otherwise, a measurement interval is configured for the terminal side device.
  • the receiving module 401 is further configured to receive, by the terminal side device, a working frequency band information list supported by the terminal side device, where the working frequency band information list includes work supported by the terminal side device A set of frequency bands, the working frequency band being composed of at least one uplink frequency range and at least one downlink frequency range pair.
  • the configuration module 402 is further configured to: configure, according to the working frequency band information list, a paired frequency band, where the paired frequency band includes a first downlink frequency band and a first uplink frequency band, where the The first downlink frequency band is a downlink frequency range of the at least one downlink frequency range included in the working frequency band supported by the terminal, and is used for transmitting broadcast information, synchronization information, and downlink data of the network side device; and the sending module 403 is configured to: Transmitting the terminal measurement configuration information to the terminal side device on the first downlink frequency band.
  • the sending module 403 is further configured to: send the measurement result report configuration information to the terminal side device, where the measurement result report configuration information is used by the terminal side device to report the measurement result obtained by the measurement to the terminal side device The network side device.
  • the measurement result reporting configuration information includes at least one of the following: the reporting period configuration information, the measurement trigger event configuration information, and the measurement result reporting resource configuration information.
  • the configuration module is configured to: when the terminal side device currently uses the first downlink frequency The reference signal received power of the segment is lower than the first preset threshold or the synchronization signal received power of the first downlink frequency band is lower than the second preset threshold, and the working frequency band supported by the terminal side device And transmitting, when the measured value of the received power of the reference signal of the carrier in the frequency range corresponding to the second downlink frequency band is higher than the third preset threshold, transmitting the signal on the carrier in the frequency range corresponding to the first downlink frequency band And causing the terminal side device to switch the downlink data from the carrier in the frequency range corresponding to the first downlink frequency band to the carrier in the frequency range corresponding to the second downlink frequency band.
  • the network side device can configure the measurement interval of the terminal device according to the measurement interval configuration indication information reported by the terminal device, and the terminal device can use the measurement interval configured by the network device to support the downlink frequency band in the supported working band.
  • the network side device After receiving the measurement result reported by the terminal device, the network side device can determine whether to switch the downlink frequency band of the terminal device according to the measurement result, and ensure that the terminal device and the network device are used when the band pairing is used. The quality of communication between.
  • the embodiment of the present disclosure further provides another apparatus 50 for terminal measurement, which is used to implement the method steps shown in FIG. 2 in the foregoing method embodiment.
  • the apparatus 50 includes:
  • the determining module 501 is configured to determine whether a measurement interval needs to be configured in each working frequency band in the working frequency band information list supported by the terminal side device, and at least one of the working frequency bands except the carrier in the downlink frequency range of the current received data.
  • the reference signal of the carrier in the downlink frequency range or the received power of the synchronization signal is measured, and the measurement interval configuration indication information is obtained;
  • the reporting module 502 is configured to report measurement interval configuration indication information to the network side device.
  • the apparatus further includes a receiving module 503, where the reporting module is The 502 is further configured to report, to the network side device, a working frequency band information list supported by the terminal side device, where the working frequency band information list is used by the network side device to configure, by the network side device, the first downlink frequency band And a working frequency band formed by pairing with the first uplink frequency band, where the receiving module 503 is configured to receive a frequency band pairing result notified by the network side device by using the first dedicated signaling.
  • the reporting module is The 502 is further configured to report, to the network side device, a working frequency band information list supported by the terminal side device, where the working frequency band information list is used by the network side device to configure, by the network side device, the first downlink frequency band And a working frequency band formed by pairing with the first uplink frequency band
  • the receiving module 503 is configured to receive a frequency band pairing result notified by the network side device by using the first dedicated signaling.
  • the receiving module 503 is further configured to: receive the measurement result report configuration information sent by the network side device, where the measurement result report configuration information is used by the terminal side device to report the measurement result obtained by the measurement To the network side device.
  • the reporting module 502 is further configured to report the frequency range corresponding to the first downlink frequency band in the working frequency band supported by the terminal side device to the network side device according to the measurement result reporting configuration information.
  • the device further includes a switching module 504, configured to: according to the indication signaling sent by the network side device, downlink data from a carrier in a frequency range corresponding to the first downlink frequency band. Switching to a carrier in a frequency range corresponding to the second downlink frequency band, where a reference signal received power of the first downlink frequency band is lower than a first preset threshold value or a synchronization signal receiving of the first downlink frequency band is received. The power is lower than the second preset threshold, and the measured reporting value of the received power of the reference signal of the carrier in the frequency range corresponding to the second downlink frequency band is higher than the third preset threshold.
  • a switching module 504 configured to: according to the indication signaling sent by the network side device, downlink data from a carrier in a frequency range corresponding to the first downlink frequency band. Switching to a carrier in a frequency range corresponding to the second downlink frequency band, where a reference signal received power of the first downlink frequency band is lower than a first preset threshold value or a
  • FIG. 6 is a schematic structural diagram of another apparatus 60 for terminal measurement according to an embodiment of the present disclosure.
  • the apparatus 60 may include: a processor 601, a memory 602, a multimedia component 603, and an input/output (I). /O) interface 604, and communication component 605.
  • the processor 601 is configured to control the overall operation of the device 60 to perform all or part of the steps of the above method for terminal measurement.
  • Memory 602 is used to store various types of data to support operations at the device 60, such as may include instructions for any application or method operating on the device 60, as well as application related data.
  • the received audio signal may be further stored in memory 602 or transmitted via communication component 605.
  • the audio component also includes at least one speaker for outputting an audio signal.
  • the I/O interface 604 provides an interface between the processor 601 and other interface modules.
  • the other interface modules may be keyboards, mice, buttons, and the like. These buttons can be virtual buttons or physical buttons.
  • the communication component 605 is used for wired or no connection between the device 60 and other terminal devices. Line communication.
  • the communication component 605 can include: a Wi-Fi module, a Bluetooth module, and an NFC module.
  • the device 60 may be configured by one or more Application Specific Integrated Circuits (ASICs), Digital Signal Processors (DSPs), and digital signal processing terminals (Digital).
  • ASICs Application Specific Integrated Circuits
  • DSPs Digital Signal Processors
  • Digital Digital
  • DSPD Signal Processing Device
  • PLD Programmable Logic Device
  • FPGA Field Programmable Gate Array
  • controller microcontroller, microprocessor or other electronic components Implemented to perform the method for terminal measurement described above.
  • the measurement interval configuration indication information configuring the measurement interval for the terminal-side device according to the measurement interval configuration indication information, to obtain terminal measurement configuration information, where the terminal measurement configuration information includes one or more downlink frequency ranges in the working frequency band supported by the terminal-side device The center frequency point information of the carrier, and the period and measurement duration of the interval at which the terminal side device measures the carrier;
  • the configuring the measurement interval for the terminal side device according to the measurement interval configuration indication information includes:
  • the method further includes:
  • a paired frequency band for the terminal side device includes a first downlink frequency band and a first uplink frequency band, where the first downlink frequency band is included in a working frequency band supported by the terminal a downlink frequency range of at least one downlink frequency range, used for transmitting broadcast information, synchronization information, and downlink data of the network side device;
  • the sending the terminal measurement configuration information to the terminal side device includes:
  • On the carrier including:
  • the signaling on the carrier in the frequency range corresponding to the downlink frequency band indicates that the terminal side device switches the downlink data from the carrier in the frequency range corresponding to the first downlink frequency band to the frequency range corresponding to the second downlink frequency band.
  • the embodiment of the present disclosure further provides a network side device 2, where the network side device 2 includes:
  • the embodiment of the present disclosure further provides a non-transitory computer readable storage medium 3 including one or more programs for executing a terminal for Method of measurement, the method comprising:
  • the measurement result reporting configuration information includes at least one of the following: the reporting period configuration information, the measurement trigger event configuration information, and the measurement result reporting resource configuration information.
  • the received power measurement report value of the reference signal or the synchronization signal, wherein the measurement report value is used by the network side device to determine whether to switch the downlink frequency band of the terminal side device.
  • the method further includes:
  • the downlink data from the carrier in the frequency range corresponding to the first downlink frequency band to the carrier in the frequency range corresponding to the second downlink frequency band where the first The reference signal received power of the downlink frequency band is lower than the first preset threshold, or the synchronization signal received power of the first downlink frequency band is lower than the second preset threshold, and the frequency corresponding to the second downlink frequency band
  • the measured value of the received power of the reference signal of the carrier within the range is higher than the third preset threshold.
  • the embodiment of the present disclosure further provides a terminal-side device 4, where the terminal-side device 4 includes:

Landscapes

  • Engineering & Computer Science (AREA)
  • Quality & Reliability (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

一种用于终端测量的方法、装置,网络侧设备和终端侧设备,能够在频段配对使用的情况下,支持终端侧设备对下行频段进行测量,使得终端侧设备能够在不同下行频段进行切换。所述方法包括:接收终端侧设备上报的测量间隔配置指示信息;根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长;将所述终端测量配置信息发送给所述终端侧设备。

Description

用于终端测量的方法、装置,网络侧设备和终端侧设备 技术领域
本公开涉及通信领域,尤其涉及一种用于终端测量的方法、装置,网络侧设备和终端侧设备。
背景技术
在3G和4G网络中,系统的上行覆盖相比于下行覆盖的覆盖能力较差,从而影响上行数据的传输,而在5G网络中,两者间的差距更加明显,因此,需要考虑将高低频段搭配使用,即在高频段自身上行覆盖受限时,使用低频段的上行频率进行上行数据传输,其中,高频段可以包括28GHz、3.5GHz等频率,用于提供容量,低频段可以包括900MHz等频率,用于提供覆盖。
但是,现有技术中,高低频段搭配一般包括两种实现方式,一种实现方式是采用载波聚合方式,另一种实现方式是双连接方式,这两种实现方式,都需要为终端配置主服务网络设备和从服务网络设备,且配置时间都需要20ms-50ms,配置时延较长,从而造成数据传输的时延较长的问题。为了解决这一问题,可以采用高频的TDD/FDD频段和低频的FDD/TDD频段配对使用,成为一个新的频率配对,并可以在不同的配对方式之间进行切换,无需配置载波聚合或双连接,减低业务时延并节省相关信令开销。
发明内容
本公开的主要目的是提供一种用于终端测量的方法、装置,网络侧设备和终端侧设备,能够在频段配对使用的情况下,支持终端侧设备对下行频段进行测量,使得终端侧设备能够在不同下行频段进行切换。
为了实现上述目的,根据本公开实施例的第一方面,提供一种用于终端 测量的方法,所述方法应用于网络侧设备,所述方法包括:
接收终端侧设备上报的测量间隔配置指示信息;
根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长;
将所述终端测量配置信息发送给所述终端侧设备。
根据本公开实施例的第二方面,提供一种用于终端测量的方法,所述方法应用于终端侧设备,所述方法包括:
确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量,得到测量间隔配置指示信息;
向网络侧设备上报测量间隔配置指示信息。
根据本公开实施例的第三方面,提供一种用于终端测量的装置,包括:
接收模块,用于接收终端侧设备上报的测量间隔配置指示信息;
配置模块,用于根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长;
发送模块,用于将所述终端测量配置信息发送给所述终端侧设备。
根据本公开实施例的第四方面,提供一种用于终端测量的装置,包括:
确定模块,用于确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号 或同步信号的接收功率进行测量,得到测量间隔配置指示信息;
上报模块,用于向网络侧设备上报测量间隔配置指示信息。
根据本公开实施例的第五方面,提供一种非临时性计算机可读存储介质,所述非临时性计算机可读存储介质中包括一个或多个程序,所述一个或多个程序用于执行上述第一方面所述的方法。
根据本公开实施例的第六方面,提供一种网络侧设备,所述网络侧设备包括:上述第五方面所述的非临时性计算机可读存储介质;以及一个或者多个处理器,用于执行所述非临时性计算机可读存储介质中的程序。
根据本公开实施例的第七方面,提供一种非临时性计算机可读存储介质,所述非临时性计算机可读存储介质中包括一个或多个程序,所述一个或多个程序用于执行上述第二方面所述的方法。
根据本公开实施例的第八方面,提供一种网络侧设备,所述网络侧设备包括:上述第七方面所述的非临时性计算机可读存储介质;以及一个或者多个处理器,用于执行所述非临时性计算机可读存储介质中的程序。
采用上述技术方案,通过接收终端侧设备上报的测量间隔配置指示信息,网络侧设备可以根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长,并将所述终端测量配置信息发送给所述终端侧设备。这样,终端侧设备可以根据网络侧设备配置的测量间隔对支持的工作频段中的下行频段进行测量,进而为终端侧设备能够在不同下行频段进行切换提供支持。
附图说明
图1为本公开实施例提供的一种用于终端测量的方法的流程示意图;
图2为本公开实施例提供的另一种用于终端测量的方法的流程示意图;
图3为本公开实施例提供的又一种用于终端测量的方法的流程示意图;
图4为本公开实施例提供的一种用于终端测量的装置的结构示意图;
图5A为本公开实施例提供的另一种用于终端测量的装置的结构示意图;
图5B为本公开实施例提供的另一种用于终端测量的装置的结构示意图;
图6为本公开实施例提供的又一种用于终端测量的装置的结构示意图。
具体实施方式
以下结合附图对本公开的具体实施方式进行详细说明。应当理解的是,此处所描述的具体实施方式仅用于说明和解释本公开,并不用于限制本公开。
本公开以下实施例提供的技术方案可以应用于5G移动通信系统。该系统中可以包括网络侧设备和终端侧设备,该网络侧设备可以是基站(Base Station,简称为BS),其中,基站是与终端侧设备进行通信的设备,其可以提供特定物理区域的通信覆盖。例如,基站具体可以是LTE中的演进型基站(evolutional node B,简称为ENB或eNodeB),或者,也可以是无线通信网络中的提供接入服务的其他接入网设备。
终端侧设备可以分布于整个移动通信系统中,每个终端侧设备可以是静态的或移动的。例如,终端侧设备可以是移动台(mobile station),用户单元(subscriber unit),站台(station),还可以是蜂窝电话(cellular phone),个人数字助理(personal digital assistant,简称为PDA),手持设备(handheld),膝上型电脑(laptop computer)等无线通信设备。
本发明实施例提供一种用于终端测量的方法,该方法应用于网络侧设备,如图1所示,该方法包括:
S101、接收终端侧设备上报的测量间隔配置指示信息。
值得说明的是,若终端侧设备的工作频段中存在多个下行频率范围,且 终端侧设备需要对除正在工作的下行频率范围以外的其它下行频率范围进行测量的情况下,可能需要网络侧设备为其配置测量间隔。所述测量间隔配置指示信息即用于通知网络侧设备是否需要为终端侧设备配置测量间隔,其中,当所述测量间隔配置指示信息为真时,终端侧设备在该工作频段中对其它下行频率范围进行测量时,网络侧设备需要为其配置测量间隔,否则,不需要配置测量间隔。
S102、根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息。
其中,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长。
具体地,当所述测量间隔配置指示信息表明所述终端侧设备在其工作频段中的任意下行频率范围内的载波接收数据的同时,支持对工作频段中的其它一个或多个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量时,则不需要为所述终端配置测量间隔;否则,需要网络侧设备为所述终端侧设备配置测量间隔。
S103、将所述终端测量配置信息发送给所述终端侧设备。
这样,终端侧设备可以根据网络侧设备配置的测量间隔对支持的工作频段中的下行频段进行测量,进而为终端侧设备能够在不同下行频段进行切换提供支持。
可选地,本公开实施例在上述步骤S101之前,还可以包括:接收所述终端侧设备上报的所述终端侧设备支持的工作频段信息列表,其中,所述工作频段信息列表包括所述终端侧设备支持的工作频段集合,所述工作频段是由至少一个上行频率范围和至少一个下行频率范围配对组成。
进一步地,网络侧设备可以根据自身支持的工作频段能力及终端侧设备上报的所述工作频段信息列表,为终端侧设备配置配对频段,所述配对频段包括第一下行频段和第一上行频段,其中,所述第一下行频段为终端支持的工作频段中包含的至少一个下行频率范围中的一个下行频率范围,用于传输网络侧设备的广播信息、同步信息和下行数据。
值得说明的是,所述第一下行频段和第一上行频段均为网络侧和终端共同支持配对组合。
其中,第一下行频段用于终端侧设备接收下行广播信息、同步信息、控制信息、数据信息等信息;第一上行频段用于终端侧设备发送上行数据、下行数据反馈信息、随机接入请求等信息。
另外,该配对频段中的上行频段和下行频段均可以采用高频的TDD(Time Division Duplexing,时分双工)/FDD(Frequency Division Duplexing,频分双工)频段和低频的FDD/TDD频段配对组成。
具体地,根据网络侧设备和终端侧设备的工作频段支持能力,上述配对频段可以是高频TDD下行频率范围和高频TDD上行频率范围配对;或者,高频TDD下行频率范围和高频FDD上行频率范围配对;或者,高频TDD下行频率范围和低频FDD上行频率范围配对;或者,高频TDD下行频率范围和低频TDD上行频率范围配对;或者,高频FDD下行频率范围和高频TDD上行频率范围配对;或者,高频FDD下行频率范围和高频FDD上行频率范围配对;或者,高频FDD下行频率范围和低频FDD上行频率范围配对;或者,高频FDD下行频率范围和低频TDD上行频率范围配对;或者,低频TDD下行频率范围和低频TDD上行频率范围配对;或者,低频TDD下行频率范围和低频FDD上行频率范围配对;或者,低频FDD下行频率范围和低频TDD上行频率范围配对;或者,低频FDD下行频率范围和低频FDD上行频率范围配对。
以5G网络进行举例说明,值得说明的是,在5G网络中,系统的上行覆盖相比于下行覆盖的覆盖能力较差且差距明显,因此,可以考虑将高低频段搭配使用,即在高频段自身上行覆盖受限时,使用低频段的上行频率进行上行数据传输。这样,在5G网络中,选择的频段配对具体可以是:
高频TDD下行频率范围和低频FDD上行频率范围配对;
高频TDD下行频率范围和低频TDD上行频率范围配对;
高频FDD下行频率范围和低频FDD上行频率范围配对;
高频FDD下行频率范围和低频TDD上行频率范围配对。
也就是说,在配对频段中选择高频频段作为下行频率范围,选择低频频段作为上行频率范围,这样,在高频段自身上行覆盖受限时,可以使用低频段的上行频率进行上行数据传输,增强覆盖能力。
上述只是举例说明,在具体实施时,可以根据实际需求设定配对的频段。本发明对此不做限定。
进一步地,网络侧设备在为终端侧设备配置配对频段后,上述步骤S103具体可以包括:在所述第一下行频段上向所述终端侧设备发送所述终端测量配置信息。
并且,上述步骤S102中所述的测量间隔配置是网络侧设备根据终端侧设备在其支持的工作频段中是否需要测量间隔对工作频段中除第一下行频段外的其它下行频段进行测量的能力信息来确定的。例如,当终端侧设备具备多个下行传输通道,当目前的工作频段中具有多个下行频段时,终端侧设备可以利用一个传输通道接收第一下行频段的数据,利用其它传输通道去测量配对组合中的其它下行频段,在此种情况下,终端侧设备无需使用测量间隔来对其它下行频段进行测量。当终端侧设备仅有一个下行传输通道时,终端侧设备无法在接收第一下行频段的数据的同时,去测量配对组合中的其它下行频段,此时,必须采用测量间隔来进行测量。并且,所述测量间隔由网 络侧设备配置,在测量间隔的一个周期的测量时长内,网络侧设备将不会给终端侧设备在第一下行频段调度下行数据,这样,终端侧设备就可以利用测量间隔,将频率调谐至配对组合中的其它待测下行频段的载波进行测量。
其中,终端侧设备对下行频段的测量结果可以为网络侧设备对终端侧设备的下行频段进行切换提供支持,下面对此进行详细说明。
具体地,在本公开实施例的一种可能的实现方式中,还可以向所述终端侧设备发送测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。例如在为所述终端侧设备配置的第一下行频段上发送所述测量结果上报配置信息给所述终端侧设备。
其中,所述测量结果上报配置信息可以包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
示例地,上报周期配置信息是指终端侧设备周期性的向网络侧设备上报测量结果,例如5分钟,测量触发事件配置信息是指终端侧设备在发生特定事件的情况下开始测量,测量结果上报资源配置信息是指终端侧设备上报测量结果的资源位置,发送时间以及采用的调制编码方式等。
举例说明,配置的终端侧设备测量触发事件可以是,当第一下行频段的参考信号接收功率低于预设第一门限时,或当第一下行频段的同步信号接收功率低于预设第二门限时,终端侧设备启动对配对组合中的其它下行频段进行测量,所述第一门限和第二门限可以根据第一下行频段的覆盖边缘的参考信号接收功率或同步信号的接收功率进行配置(即达到或接近第一下行频段的覆盖边缘时,开启对配对组合中的其它下行频段进行测量)。
上述只是举例说明,在具体实施时,可以根据实际需求配置终端侧设备在其他情况下开始测量,本公开对比不做限定。
进一步地,接收所述终端侧设备上报的所述终端侧设备支持的工作频段 内除所述第一下行频段以外的其他下行频率范围内载波的参考信号或者同步信号的接收功率的测量上报值,并根据所述测量上报值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上。
在一种可能的实现方式中,所述根据所述测量上报功率值确定是否切换所述终端侧设备的下行频段,包括:第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述终端侧设备支持的工作频段内的第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值时,在所述第一下行频段对应的频率范围内的载波上发送信令指示所述终端侧设备将下行数据从所述第一下行频段对应的频率范围内的载波切换到所述第二下行频段对应的频率范围内的载波上。
也就是说,在第一下行频段的参考信号接收功率不低于第一预设门限值且所述第一下行频段的同步信号接收功率不低于第二预设门限值时,可以不需要切换终端侧设备的下行频段,在述终端侧设备当前使用的第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值时,可以选择更优的下行频段使用。
采用上述方法,终端侧设备可以根据网络侧设备配置的测量间隔对支持的工作频段中的下行频段进行测量,网络侧设备在接收到终端侧设备上报的测量结果后,可以根据该测量结果确定是否切换终端侧设备的下行频段,确保了在频段配对使用的情况下,终端侧设备和网络侧设备之间的通信质量。
本公开实施例还提供另一种终端测量方法,该方法应用于终端侧设备,如图2所示,该方法包括:
S201、确定所述终端侧设备支持的工作频段信息列表中的各个工作频段 中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量,得到测量间隔配置指示信息。
S202、向网络侧设备上报测量间隔配置指示信息。
可选地,所述方法还包括:向所述网络侧设备上报所述终端侧设备支持的工作频段信息列表,所述工作频段信息列表用于所述网络侧设备为所述终端侧设备配置由第一下行频段和第一上行频段配对组成的工作频段,并接收所述网络侧设备通知的所述工作频段配对结果。
可选地,所述方法还包括:接收所述网络侧设备发送的测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
可选地,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
可选地,所述方法还包括:根据所述测量结果上报配置信息向所述网络侧设备上报所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波的参考信号或者同步信号的接收功率测量上报值,其中,所述测量上报值用于所述网络侧设备确定是否切换所述终端侧设备的下行频段。
可选地,所述方法还包括:根据所述网络侧设备发送的指示信令将下行数据从所述第一下行频段对应的频率范围内的载波切换到第二下行频段对应的频率范围内的载波上,其中,所述第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值。
为了使本领域技术人员能够更加清楚的理解本公开实施例提供的技术 方案,下面结合终端侧设备和网络侧设备对本公开实施例提供的用于终端测量的方法进行详细说明。如图3所示,包括:
S301、终端侧设备确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔,得到测量间隔配置指示信息。
其中,所述测量间隔包括测量周期以及测量时长,用于对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量。
S302、终端侧设备向网络侧设备上报所述终端侧设备支持的工作频段信息列表,以及所述测量间隔配置指示信息。
S303、网络侧设备接收所述工作频段信息列表以及所述测量间隔配置指示信息。
S304、网络侧设备根据所述工作频段列表信息为所述终端侧设备配置配对频段,所述配对频段包括第一下行频段和第一上行频段。
其中,所述第一下行频段为终端支持的工作频段中包含的至少一个下行频率范围中的一个下行频率范围,用于传输网络侧设备的广播信息、同步信息和下行数据。
S305、网络侧设备通过第一信令向终端侧设备通知工作频段配对结果。
S306、网络侧设备根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息。
其中,终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频段对应的频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期以及测量时长。
S307、网络侧设备在所述第一下行频段上向终端侧设备发送所述终端测量配置信息和测量结果上报配置信息。
S308、终端侧设备接收所述网络侧设备发送的所述终端测量配置信息和 所述测量结果上报配置信息。
其中,所述测量结果上报配置信息可以包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
S309、终端侧设备根据所述终端测量配置信息对支持的工作频段内除所述第一下行频段以外的其他下行频率范围内载波的参考信号或者同步信号的接收功率进行测量,得到测量上报值。
示例地,在测量间隔的一个周期的测量时长内,网络侧设备将不会给终端侧设备在第一下行频段调度下行数据,这样,终端侧设备就可以利用测量间隔,将频率调谐至配对组合中的其它待测下行频段的载波进行测量。
S310、终端侧设备根据所述测量结果上报配置信息上报所述测量上报值。
示例地,在终端侧设备的定时器(该定时器的定时时长为所述测量结果上报配置信息中的上报周期值)超时的时刻,该终端侧设备采用所述测量结果上报配置信息配置调制编码方式,并根据所述测量结果上报配置信息配置的资源位置将所述测量上报值上报给网络侧设备。
S311、网络侧设备接收所述终端侧设备上报的所述测量上报值。
S312、网络侧设备根据所述测量上报值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上。
进一步地,若确定需要进行切换,则执行步骤S313。
其中,本公开在具体实施时,可以根据实际需求设定网络侧设备切换终端侧设备切换下行频段的条件,本公开对此不做限定。在一种可能的实现方式中,网络侧设备可以在所述第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述终端侧设备支持的工作频段内的第二下行频段对应的频率范围内的 载波的参考信号的测量功率上报值高于第三预设门限值时,确定将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述第二下行频段对应的频率范围内的载波上。
S313、网络侧设备通过第二信令通知所述终端侧设备将下行数据从第一下行频段对应的频率范围内的载波切换至第二下行频段对应的频率范围内的载波上。
另外,对于上述图3所示的方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本公开并不受所描述的动作顺序的限制。其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作并不一定是本公开所必须的。
采用上述方法,终端侧设备可以根据网络侧设备配置的测量间隔对支持的工作频段中的下行频段进行测量,网络侧设备在接收到终端侧设备上报的测量结果后,可以根据该测量结果确定是否切换终端侧设备的下行频段,确保了在频段配对使用的情况下,终端侧设备和网络侧设备之间的通信质量。
本公开实施例还提供一种用于终端测量的装置40,用于实施上述方法实施例中的图1所示的方法步骤,如图4所示,所述装置40包括:
接收模块401,用于接收终端侧设备上报的测量间隔配置指示信息;
配置模块402,用于根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长。
发送模块403,用于将所述终端测量配置信息发送给所述终端侧设备。
可选地,所述配置模块402用于,当所述测量间隔配置指示信息表明所述终端侧设备在其工作频段中的任意下行频率范围内的载波接收数据的同时,支持对工作频段中的其它一个或多个下行频率范围内的载波的参考信号 或同步信号的接收功率进行测量时,则不需要为所述终端配置测量间隔;否则,为所述终端侧设备配置测量间隔。
可选地,所述接收模块401还用于,接收所述终端侧设备上报的所述终端侧设备支持的工作频段信息列表,其中,所述工作频段信息列表包括所述终端侧设备支持的工作频段集合,所述工作频段是由至少一个上行频率范围和至少一个下行频率范围配对组成。
可选地,所述配置模块402还用于,根据所述工作频段信息列表为所述终端侧设备配置配对频段,所述配对频段包括第一下行频段和第一上行频段,其中,所述第一下行频段为终端支持的工作频段中包含的至少一个下行频率范围中的一个下行频率范围,用于传输网络侧设备的广播信息、同步信息和下行数据;所述发送模块403用于,在所述第一下行频段上向所述终端侧设备发送所述终端测量配置信息。
可选地,所述发送模块403还用于,向所述终端侧设备发送测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
可选地,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
可选地,所述接收模块401还用于,接收所述终端侧设备上报的所述终端侧设备支持的工作频段内除所述第一下行频段以外的其他下行频率范围内载波的参考信号或者同步信号的接收功率的测量上报值;所述配置模块402还用于,根据所述测量上报值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上。
可选地,所述配置模块用于,当所述终端侧设备当前使用的第一下行频 段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述终端侧设备支持的工作频段内的第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值时,在所述第一下行频段对应的频率范围内的载波上发送信令指示所述终端侧设备将下行数据从所述第一下行频段对应的频率范围内的载波切换到所述第二下行频段对应的频率范围内的载波上。
值得说明的是,本领域的技术人员可以清楚地了解到,为描述的方便和简洁,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将装置的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。上述描述功能模块的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
采用上述装置,网络侧设备可以根据终端侧设备上报的测量间隔配置指示信息对终端侧设备的测量间隔进行配置,终端侧设备可以根据网络侧设备配置的测量间隔对支持的工作频段中的下行频段进行测量,网络侧设备在接收到终端侧设备上报的测量结果后,可以根据该测量结果确定是否切换终端侧设备的下行频段,确保了在频段配对使用的情况下,终端侧设备和网络侧设备之间的通信质量。
本公开实施例还提供另一种用于终端测量的装置50,用于实施上述方法实施例中的图2所示的方法步骤,如图5A所示,该装置50包括:
确定模块501,用于确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量,得到测量间隔配置指示信息;
上报模块502,用于向网络侧设备上报测量间隔配置指示信息。
可选地,如图5B所示,所述装置还包括接收模块503,所述上报模块 502还用于,向所述网络侧设备上报所述终端侧设备支持的工作频段信息列表,所述工作频段信息列表用于所述网络侧设备为所述终端侧设备配置由第一下行频段和第一上行频段配对组成的工作频段,所述接收模块503用于,接收所述网络侧设备通过第一专用信令通知的频段配对结果。
可选地,所述接收模块503还用于,接收所述网络侧设备发送的测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
可选地,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
可选地,所述上报模块502还用于,根据所述测量结果上报配置信息向所述网络侧设备上报所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波的参考信号或者同步信号的接收功率测量上报值,其中,所述测量上报值用于所述网络侧设备确定是否切换所述终端侧设备的下行频段。
可选地,如图5B所示,所述装置还包括切换模块504,用于根据所述网络侧设备发送的指示信令将下行数据从所述第一下行频段对应的频率范围内的载波切换到第二下行频段对应的频率范围内的载波上,其中,所述第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值。
值得说明的是,本领域的技术人员可以清楚地了解到,为描述的方便和简洁,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将装置的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。上述描述功能模块的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
采用上述装置,终端侧设备可以根据网络侧设备配置的测量间隔对支持的工作频段中的下行频段进行测量,网络侧设备在接收到终端侧设备上报的测量结果后,可以根据该测量结果确定是否切换终端侧设备的下行频段,确保了在频段配对使用的情况下,终端侧设备和网络侧设备之间的通信质量。
图6是本公开实施例提供的另一种用于终端测量的装置60的结构示意图,如图所示,该装置60可以包括:处理器601,存储器602,多媒体组件603,输入/输出(I/O)接口604,以及通信组件605。
其中,处理器601用于控制该装置60的整体操作,以完成上述用于终端测量的方法的全部或部分步骤。存储器602用于存储各种类型的数据以支持在该装置60的操作,这些数据例如可以包括用于在该装置60上操作的任何应用程序或方法的指令,以及应用程序相关的数据。
该存储器602可以由任何类型的易失性或非易失性存储终端设备或者它们的组合实现,例如静态随机存取存储器(Static Random Access Memory,简称SRAM),电可擦除可编程只读存储器(Electrically Erasable Programmable Read-Only Memory,简称EEPROM),可擦除可编程只读存储器(Erasable Programmable Read-Only Memory,简称EPROM),可编程只读存储器(Programmable Read-Only Memory,简称PROM),只读存储器(Read-Only Memory,简称ROM),磁存储器,快闪存储器,磁盘或光盘。多媒体组件603可以包括屏幕和音频组件。其中屏幕例如可以是触摸屏,音频组件用于输出和/或输入音频信号。例如,音频组件可以包括一个麦克风,麦克风用于接收外部音频信号。所接收的音频信号可以被进一步存储在存储器602或通过通信组件605发送。音频组件还包括至少一个扬声器,用于输出音频信号。I/O接口604为处理器601和其他接口模块之间提供接口,上述其他接口模块可以是键盘,鼠标,按钮等。这些按钮可以是虚拟按钮或者实体按钮。通信组件605用于该装置60与其他终端设备之间进行有线或无 线通信。该通信组件605可以包括:Wi-Fi模块,蓝牙模块,NFC模块。
在一示例性实施例中,装置60可以被一个或多个应用专用集成电路(Application Specific Integrated Circuit,简称ASIC)、数字信号处理器(Digital Signal Processor,简称DSP)、数字信号处理终端设备(Digital Signal Processing Device,简称DSPD)、可编程逻辑器件(Programmable Logic Device,简称PLD)、现场可编程门阵列(Field Programmable Gate Array,简称FPGA)、控制器、微控制器、微处理器或其他电子元件实现,用于执行上述的用于终端测量的方法。
本公开实施例还提供一种非临时性计算机可读存储介质1,该非临时性计算机可读存储介质1中包括一个或多个程序,该一个或多个程序用于执行一种用于终端测量的方法,该方法包括:
接收终端侧设备上报的测量间隔配置指示信息;
根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长;
将所述终端测量配置信息发送给所述终端侧设备。
可选地,所述根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔包括:
当所述测量间隔配置指示信息表明所述终端侧设备在其工作频段中的任意下行频率范围内的载波接收数据的同时,支持对工作频段中的其它一个或多个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量时,则不需要为所述终端配置测量间隔;否则,为所述终端侧设备配置测量间隔。
可选地,所述方法还包括:
接收所述终端侧设备上报的所述终端侧设备支持的工作频段信息列表;
所述工作频段信息列表包括所述终端侧设备支持的工作频段集合,所述工作频段是由至少一个上行频率范围和至少一个下行频率范围配对组成。
可选地,所述方法还包括:
根据所述工作频段信息列表为所述终端侧设备配置配对频段,所述配对频段包括第一下行频段和第一上行频段,其中,所述第一下行频段为终端支持的工作频段中包含的至少一个下行频率范围中的一个下行频率范围,用于传输网络侧设备的广播信息、同步信息和下行数据;
所述将所述终端测量配置信息发送给所述终端侧设备,包括:
在所述第一下行频段上向所述终端侧设备发送所述终端测量配置信息。
可选地,所述方法还包括:
向所述终端侧设备发送测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
可选地,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
可选地,所述方法还包括:
接收所述终端侧设备上报的所述终端侧设备支持的工作频段内除所述第一下行频段以外的其他下行频率范围内载波的参考信号或者同步信号的接收功率的测量上报值;
根据所述测量上报值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上。
可选地,所述根据所述测量上报值确定是否将所述终端侧设备的下行数 据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上,包括:
当所述终端侧设备当前使用的第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述终端侧设备支持的工作频段内的第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值时,在所述第一下行频段对应的频率范围内的载波上发送信令指示所述终端侧设备将下行数据从所述第一下行频段对应的频率范围内的载波切换到所述第二下行频段对应的频率范围内的载波上。
本公开实施例还提供一种网络侧设备2,该网络侧设备2包括:
上述的非临时性计算机可读存储介质1;以及
一个或者多个处理器,用于执行上述的非临时性计算机可读存储介质1中的程序。
本公开实施例还提供一种非临时性计算机可读存储介质3,该非临时性计算机可读存储介质3中包括一个或多个程序,该一个或多个程序用于执行一种用于终端测量的方法,该方法包括:
确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量,得到测量间隔配置指示信息;
向网络侧设备上报测量间隔配置指示信息。
可选地,所述方法还包括:
向所述网络侧设备上报所述终端侧设备支持的工作频段信息列表,所述工作频段信息列表用于所述网络侧设备为所述终端侧设备配置由第一下行 频段和第一上行频段配对组成的工作频段;
接收所述网络侧设备通知的所述工作频段配对结果。
可选地,所述方法还包括:
接收所述网络侧设备发送的测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
可选地,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
可选地,所述方法还包括:
根据所述测量结果上报配置信息向所述网络侧设备上报所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波的参考信号或者同步信号的接收功率测量上报值,其中,所述测量上报值用于所述网络侧设备确定是否切换所述终端侧设备的下行频段。
可选地,所述方法还包括:
根据所述网络侧设备发送的指示信令将下行数据从所述第一下行频段对应的频率范围内的载波切换到第二下行频段对应的频率范围内的载波上,其中,所述第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值。
本公开实施例还提供一种终端侧设备4,该终端侧设备4包括:
上述的非临时性计算机可读存储介质3;以及
一个或者多个处理器,用于执行上述的非临时性计算机可读存储介质3中的程序。
以上结合附图详细描述了本公开的优选实施方式,但是,本公开并不限于上述实施方式中的具体细节,在本公开的技术构思范围内,可以对本公开的技术方案进行多种简单变型,这些简单变型均属于本公开的保护范围。
另外需要说明的是,在上述具体实施方式中所描述的各个具体技术特征,在不矛盾的情况下,可以通过任何合适的方式进行组合,为了避免不必要的重复,本公开对各种可能的组合方式不再另行说明。
此外,本公开的各种不同的实施方式之间也可以进行任意组合,只要其不违背本公开的思想,其同样应当视为本公开所公开的内容。

Claims (32)

  1. 一种用于终端测量的方法,其特征在于,所述方法应用于网络侧设备,所述方法包括:
    接收终端侧设备上报的测量间隔配置指示信息;
    根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长;
    将所述终端测量配置信息发送给所述终端侧设备。
  2. 根据权利要求1所述的方法,其特征在于,所述根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔包括:
    当所述测量间隔配置指示信息表明所述终端侧设备在其工作频段中的任意下行频率范围内的载波接收数据的同时,支持对工作频段中的其它一个或多个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量时,则不需要为所述终端配置测量间隔;否则,为所述终端侧设备配置测量间隔。
  3. 根据权利要求1所述的方法,其特征在于,所述方法还包括:
    接收所述终端侧设备上报的所述终端侧设备支持的工作频段信息列表;
    所述工作频段信息列表包括所述终端侧设备支持的工作频段集合,所述工作频段是由至少一个上行频率范围和至少一个下行频率范围配对组成。
  4. 根据权利要求3所述的方法,其特征在于,所述方法还包括:
    根据所述工作频段信息列表为所述终端侧设备配置配对频段,所述配对 频段包括第一下行频段和第一上行频段,其中,所述第一下行频段为终端支持的工作频段中包含的至少一个下行频率范围中的一个下行频率范围,用于传输网络侧设备的广播信息、同步信息和下行数据;
    所述将所述终端测量配置信息发送给所述终端侧设备,包括:
    在所述第一下行频段上向所述终端侧设备发送所述终端测量配置信息。
  5. 根据权利要求4任一项所述的方法,其特征在于,所述方法还包括:
    向所述终端侧设备发送测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
  6. 根据权利要求5所述的方法,其特征在于,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
  7. 根据权利要求5所述的方法,其特征在于,所述方法还包括:
    接收所述终端侧设备上报的所述终端侧设备支持的工作频段内除所述第一下行频段以外的其他下行频率范围内载波的参考信号或者同步信号的接收功率的测量上报值;
    根据所述测量上报值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上。
  8. 根据权利要求7所述的方法,其特征在于,所述根据所述测量上报 值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上,包括:
    当所述终端侧设备当前使用的第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述终端侧设备支持的工作频段内的第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值时,在所述第一下行频段对应的频率范围内的载波上发送信令指示所述终端侧设备将下行数据从所述第一下行频段对应的频率范围内的载波切换到所述第二下行频段对应的频率范围内的载波上。
  9. 一种用于终端测量的方法,其特征在于,所述方法应用于终端侧设备,所述方法包括:
    确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量,得到测量间隔配置指示信息;
    向网络侧设备上报测量间隔配置指示信息。
  10. 根据权利要求9所述的方法,其特征在于,所述方法还包括:
    向所述网络侧设备上报所述终端侧设备支持的工作频段信息列表,所述工作频段信息列表用于所述网络侧设备为所述终端侧设备配置由第一下行频段和第一上行频段配对组成的工作频段;
    接收所述网络侧设备通知的所述工作频段配对结果。
  11. 根据权利要求10所述的方法,其特征在于,所述方法还包括:
    接收所述网络侧设备发送的测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
  12. 根据权利要求11所述的方法,其特征在于,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
  13. 根据权利要求11所述的方法,其特征在于,所述方法还包括:
    根据所述测量结果上报配置信息向所述网络侧设备上报所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波的参考信号或者同步信号的接收功率测量上报值,其中,所述测量上报值用于所述网络侧设备确定是否切换所述终端侧设备的下行频段。
  14. 根据权利要求13所述的方法,其特征在于,所述方法还包括:
    根据所述网络侧设备发送的指示信令将下行数据从所述第一下行频段对应的频率范围内的载波切换到第二下行频段对应的频率范围内的载波上,其中,所述第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值。
  15. 一种用于终端测量的装置,其特征在于,包括:
    接收模块,用于接收终端侧设备上报的测量间隔配置指示信息;
    配置模块,用于根据所述测量间隔配置指示信息为所述终端侧设备配置测量间隔,得到终端测量配置信息,所述终端测量配置信息包括所述终端侧设备支持的工作频段中的一个或多个下行频率范围内的载波的中心频点信息,以及所述终端侧设备对所述载波进行测量的间隔的周期和测量时长;
    发送模块,用于将所述终端测量配置信息发送给所述终端侧设备。
  16. 根据权利要求15所述的装置,其特征在于,所述配置模块用于:
    当所述测量间隔配置指示信息表明所述终端侧设备在其工作频段中的任意下行频率范围内的载波接收数据的同时,支持对工作频段中的其它一个或多个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量时,则不需要为所述终端配置测量间隔;否则,为所述终端侧设备配置测量间隔。
  17. 根据权利要求15所述的装置,其特征在于,所述接收模块还用于,接收所述终端侧设备上报的所述终端侧设备支持的工作频段信息列表,其中,所述工作频段信息列表包括所述终端侧设备支持的工作频段集合,所述工作频段是由至少一个上行频率范围和至少一个下行频率范围配对组成。
  18. 根据权利要求17所述的装置,其特征在于,所述配置模块用于:
    根据所述工作频段信息列表为所述终端侧设备配置配对频段,所述配对频段包括第一下行频段和第一上行频段,其中,所述第一下行频段为终端支持的工作频段中包含的至少一个下行频率范围中的一个下行频率范围,用于传输网络侧设备的广播信息、同步信息和下行数据;
    所述发送模块用于:在所述第一下行频段上向所述终端侧设备发送所述终端测量配置信息。
  19. 根据权利要求18所述的装置,其特征在于,所述发送模块还用于,向所述终端侧设备发送测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
  20. 根据权利要求19所述的装置,其特征在于,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、测量结果上报资源配置信息。
  21. 根据权利要求19所述的装置,其特征在于,所述接收模块还用于,接收所述终端侧设备上报的所述终端侧设备支持的工作频段内除所述第一下行频段以外的其他下行频率范围内载波的参考信号或者同步信号的接收功率的测量上报值;
    所述配置模块还用于,根据所述测量上报值确定是否将所述终端侧设备的下行数据从所述第一下行频段对应的频率范围内的载波切换到所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波上。
  22. 根据权利要求19所述的装置,其特征在于,所述配置模块用于,当所述终端侧设备当前使用的第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述终端侧设备支持的工作频段内的第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值时,在所述 第一下行频段对应的频率范围内的载波上发送信令指示所述终端侧设备将下行数据从所述第一下行频段对应的频率范围内的载波切换到所述第二下行频段对应的频率范围内的载波上。
  23. 一种用于终端测量的装置,其特征在于,包括:
    确定模块,用于确定所述终端侧设备支持的工作频段信息列表中的各个工作频段中是否需要配置测量间隔对所述工作频段内除当前接收数据的下行频率范围内载波以外的其它至少一个下行频率范围内的载波的参考信号或同步信号的接收功率进行测量,得到测量间隔配置指示信息;
    上报模块,用于向网络侧设备上报测量间隔配置指示信息。
  24. 根据权利要求23所述的装置,其特征在于,所述上报模块还用于,向所述网络侧设备上报所述终端侧设备支持的工作频段信息列表,所述工作频段信息列表用于所述网络侧设备为所述终端侧设备配置由第一下行频段和第一上行频段配对组成的工作频段;
    所述装置还包括接收模块,用于接收所述网络侧设备通知的所述工作频段配对结果。
  25. 根据权利要求24所述的装置,其特征在于,所述装置的接收模块还用于,接收所述网络侧设备发送的测量结果上报配置信息,其中,所述测量结果上报配置信息用于所述终端侧设备将测量获得的测量结果上报给所述网络侧设备。
  26. 根据权利要求25所述的装置,其特征在于,所述测量结果上报配置信息包括以下至少一种信息:上报周期配置信息、测量触发事件配置信息、 测量结果上报资源配置信息。
  27. 根据权利要求25所述的装置,其特征在于,所述上报模块还用于,根据所述测量结果上报配置信息向所述网络侧设备上报所述终端侧设备支持的工作频段内除所述第一下行频段对应的频率范围内的载波以外的其他下行频率范围内的载波的参考信号或者同步信号的接收功率测量上报值,其中,所述测量上报值用于所述网络侧设备确定是否切换所述终端侧设备的下行频段。
  28. 根据权利要求27所述的装置,其特征在于,所述装置还包括切换模块,用于根据所述网络侧设备发送的指示信令将下行数据从所述第一下行频段对应的频率范围内的载波切换到第二下行频段对应的频率范围内的载波上,其中,所述第一下行频段的参考信号接收功率低于第一预设门限值或者所述第一下行频段的同步信号接收功率低于第二预设门限值,且所述第二下行频段对应的频率范围内的载波的参考信号的接收功率的测量上报值高于第三预设门限值。
  29. 一种非临时性计算机可读存储介质,其特征在于,所述非临时性计算机可读存储介质中包括一个或多个程序,所述一个或多个程序用于执行权利要求1至8中任一项所述的方法。
  30. 一种网络侧设备,其特征在于,包括:
    权利要求29中所述的非临时性计算机可读存储介质;以及
    一个或者多个处理器,用于执行所述非临时性计算机可读存储介质中的程序。
  31. 一种非临时性计算机可读存储介质,其特征在于,所述非临时性计算机可读存储介质中包括一个或多个程序,所述一个或多个程序用于执行权利要求9至14中任一项所述的方法。
  32. 一种终端侧设备,其特征在于,包括:
    权利要求31中所述的非临时性计算机可读存储介质;以及
    一个或者多个处理器,用于执行所述非临时性计算机可读存储介质中的程序。
PCT/CN2017/079387 2017-04-01 2017-04-01 用于终端测量的方法、装置,网络侧设备和终端侧设备 WO2018176500A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201780001929.8A CN107820726B (zh) 2017-04-01 2017-04-01 用于终端测量的方法、装置,网络侧设备和终端侧设备
PCT/CN2017/079387 WO2018176500A1 (zh) 2017-04-01 2017-04-01 用于终端测量的方法、装置,网络侧设备和终端侧设备

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/079387 WO2018176500A1 (zh) 2017-04-01 2017-04-01 用于终端测量的方法、装置,网络侧设备和终端侧设备

Publications (1)

Publication Number Publication Date
WO2018176500A1 true WO2018176500A1 (zh) 2018-10-04

Family

ID=61606885

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/079387 WO2018176500A1 (zh) 2017-04-01 2017-04-01 用于终端测量的方法、装置,网络侧设备和终端侧设备

Country Status (2)

Country Link
CN (1) CN107820726B (zh)
WO (1) WO2018176500A1 (zh)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109451582A (zh) * 2018-11-12 2019-03-08 京信通信系统(中国)有限公司 一种信源选择方法、装置、中继设备及存储介质
CN110913491A (zh) * 2019-12-17 2020-03-24 惠州Tcl移动通信有限公司 信道分配方法、装置及存储介质
CN115669045A (zh) * 2020-06-09 2023-01-31 Oppo广东移动通信有限公司 一种释放配置的方法及装置、终端设备、网络设备
US11711862B1 (en) 2021-07-15 2023-07-25 T-Mobile Usa, Inc. Dual connectivity and carrier aggregation band selection
US12068090B2 (en) 2019-11-25 2024-08-20 Essex Furukawa Magnet Wire Japan Co., Ltd. Insulated wire, coil, and electrical or electronic equipment

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111654888A (zh) * 2015-08-13 2020-09-11 华为技术有限公司 一种通信方法及通信设备
CN110798846B (zh) * 2018-08-03 2023-06-27 中国移动通信有限公司研究院 一种频点测量方法、网络侧设备和用户终端
CN109474968B (zh) * 2018-12-30 2021-07-16 联想(北京)有限公司 控制方法、电子设备及网络接入设备
CN111726817B (zh) * 2019-03-18 2023-08-15 中国移动通信有限公司研究院 一种信息处理方法、装置、设备及计算机可读存储介质
CN115767610A (zh) * 2019-08-28 2023-03-07 华为技术有限公司 一种通信方法及装置
CN113365318B (zh) * 2020-03-06 2022-11-25 华为技术有限公司 Nr测量方法、装置、终端设备及存储介质
CN113382425B (zh) * 2020-03-10 2023-06-20 华为技术有限公司 一种通信方法及装置
CN113923701A (zh) * 2020-07-07 2022-01-11 中国移动通信有限公司研究院 测量配置的方法及设备
CN114071726A (zh) * 2020-07-30 2022-02-18 华为技术有限公司 一种通信方法及装置
KR20230074575A (ko) * 2020-09-30 2023-05-30 지티이 코포레이션 무선 통신에서의 측정 구성 및 리포팅 방식
KR20240074916A (ko) * 2021-10-21 2024-05-28 애플 인크. NeedForGap 능력을 갖는 UE에 대한 CSSF 설계

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102065452A (zh) * 2009-11-12 2011-05-18 中兴通讯股份有限公司 系统间测量方法、装置和系统
CN104602267A (zh) * 2015-01-30 2015-05-06 深圳酷派技术有限公司 一种异频测量非授权频谱的测量间隔配置方法及服务基站
CN105228198A (zh) * 2014-06-27 2016-01-06 中兴通讯股份有限公司 小区测量处理方法、装置、终端及基站
WO2016177293A1 (zh) * 2015-05-07 2016-11-10 中兴通讯股份有限公司 一种计算辅小区组测量间隔的方法和装置
CN106470413A (zh) * 2015-08-14 2017-03-01 中兴通讯股份有限公司 多载波中邻近业务的处理方法及装置

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101868028B (zh) * 2009-04-14 2016-10-12 中国移动通信集团公司 一种上行信号发送方法、移动终端、基站及无线通信系统

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102065452A (zh) * 2009-11-12 2011-05-18 中兴通讯股份有限公司 系统间测量方法、装置和系统
CN105228198A (zh) * 2014-06-27 2016-01-06 中兴通讯股份有限公司 小区测量处理方法、装置、终端及基站
CN104602267A (zh) * 2015-01-30 2015-05-06 深圳酷派技术有限公司 一种异频测量非授权频谱的测量间隔配置方法及服务基站
WO2016177293A1 (zh) * 2015-05-07 2016-11-10 中兴通讯股份有限公司 一种计算辅小区组测量间隔的方法和装置
CN106470413A (zh) * 2015-08-14 2017-03-01 中兴通讯股份有限公司 多载波中邻近业务的处理方法及装置

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109451582A (zh) * 2018-11-12 2019-03-08 京信通信系统(中国)有限公司 一种信源选择方法、装置、中继设备及存储介质
CN109451582B (zh) * 2018-11-12 2022-12-06 京信网络系统股份有限公司 一种信源选择方法、装置、中继设备及存储介质
US12068090B2 (en) 2019-11-25 2024-08-20 Essex Furukawa Magnet Wire Japan Co., Ltd. Insulated wire, coil, and electrical or electronic equipment
CN110913491A (zh) * 2019-12-17 2020-03-24 惠州Tcl移动通信有限公司 信道分配方法、装置及存储介质
CN115669045A (zh) * 2020-06-09 2023-01-31 Oppo广东移动通信有限公司 一种释放配置的方法及装置、终端设备、网络设备
US11711862B1 (en) 2021-07-15 2023-07-25 T-Mobile Usa, Inc. Dual connectivity and carrier aggregation band selection

Also Published As

Publication number Publication date
CN107820726A (zh) 2018-03-20
CN107820726B (zh) 2022-07-08

Similar Documents

Publication Publication Date Title
WO2018176500A1 (zh) 用于终端测量的方法、装置,网络侧设备和终端侧设备
US11006270B2 (en) Method and device for use in reporting terminal capability
US11064535B2 (en) Random access method and apparatus
KR102601532B1 (ko) 채널 모니터링 방법 및 장치, 단말 장비, 네트워크 장비
WO2018176502A1 (zh) 频率选择方法、随机接入方法和装置
US10575361B2 (en) Fast switching between control channels during radio resource control connection
KR102367005B1 (ko) 비연속 수신 방법, 단말기 디바이스 및 네트워크 디바이스
CN114982274B (zh) 早期测量报告下的ue节能机制
WO2018126665A1 (zh) 一种切换方法、基站及终端
JP6950829B2 (ja) システム情報送信、取得方法及び装置、通信システム
WO2019047666A1 (zh) 一种移动性测量方法、装置及系统
WO2019010713A1 (zh) 终端切换的方法、装置以及基站和存储介质
JP2021510028A (ja) トラフィック受信又は送信方法及び装置、通信システム
KR102685069B1 (ko) 무선 통신들에서의 유연한 다운링크 제어 신호 모니터링
CN111757374B (zh) 一种波束管理方法及装置
CN111357369A (zh) 通信方法、装置和计算机程序
TW201826821A (zh) 一種測量方法、基站及終端
JP6968890B2 (ja) 測定方法、基地局及び端末
JP2019208244A (ja) 基地局装置、無線端末装置及び通信システム
WO2018227509A1 (zh) 无线资源管理测量的方法和设备
WO2018176499A1 (zh) 子帧时序配置方法、装置,网络侧设备和终端侧设备
TWI775794B (zh) 一種傳輸業務的方法、基站及終端
WO2021031004A1 (zh) 载波测量方法和装置
WO2020133168A1 (zh) 自干扰上报的方法和设备
CN114667697A (zh) 用于未授权nr的小区检测和测量的装置、系统和方法

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17903873

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 06/02/2020)

122 Ep: pct application non-entry in european phase

Ref document number: 17903873

Country of ref document: EP

Kind code of ref document: A1