WO2014047898A1 - 基于上行检测的处理方法、网络设备和终端 - Google Patents

基于上行检测的处理方法、网络设备和终端 Download PDF

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Publication number
WO2014047898A1
WO2014047898A1 PCT/CN2012/082376 CN2012082376W WO2014047898A1 WO 2014047898 A1 WO2014047898 A1 WO 2014047898A1 CN 2012082376 W CN2012082376 W CN 2012082376W WO 2014047898 A1 WO2014047898 A1 WO 2014047898A1
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WO
WIPO (PCT)
Prior art keywords
access device
terminal
power information
information
wireless signal
Prior art date
Application number
PCT/CN2012/082376
Other languages
English (en)
French (fr)
Inventor
邓天乐
陈啸
Original Assignee
华为技术有限公司
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 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP12885262.1A priority Critical patent/EP2894902A4/en
Priority to PCT/CN2012/082376 priority patent/WO2014047898A1/zh
Priority to CN201280008589.9A priority patent/CN103907375A/zh
Publication of WO2014047898A1 publication Critical patent/WO2014047898A1/zh
Priority to US14/670,963 priority patent/US9693216B2/en
Priority to US15/606,558 priority patent/US20170265054A1/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/16Discovering, processing access restriction or access information
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/005Discovery of network devices, e.g. terminals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/08Access restriction or access information delivery, e.g. discovery data delivery
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0203Power saving arrangements in the radio access network or backbone network of wireless communication networks
    • H04W52/0206Power saving arrangements in the radio access network or backbone network of wireless communication networks in access points, e.g. base stations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/20Control channels or signalling for resource management
    • H04W72/21Control channels or signalling for resource management in the uplink direction of a wireless link, i.e. towards the network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B17/00Monitoring; Testing
    • H04B17/30Monitoring; Testing of propagation channels
    • H04B17/382Monitoring; Testing of propagation channels for resource allocation, admission control or handover
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to wireless communication technologies, and in particular, to a processing method, a network device, and a terminal based on uplink detection. Background technique
  • Heterogeneous Network includes different wireless networks, such as a macro cell, a pico cell, a femto cell, and the like, and the transmit power and coverage of different base stations. Different. Among them, the transmission power and coverage of high-power base stations (such as macro base stations) are relatively large, and the transmission power and coverage of small-power base stations (such as Femto base stations and Pico base stations) are relatively small. A typical HetNet scenario provides hotspot coverage for multiple low-power base stations within a single high-power base station coverage.
  • ES energy saving
  • SON Self-Organizing Network
  • small power base stations for hotspot coverage are turned off for energy saving when there is no high-speed data service (such as at night).
  • the station provides basic coverage and support for the underlying business.
  • the network side needs to wake up a suitable low-power base station to provide services for its User Equipment (UE) to reduce the load in the macro cell.
  • UE User Equipment
  • the uplink and downlink of the UE need to be accessed according to the optimal channel condition, for example, the downlink access macro base station of the UE and the low power base station uplink access.
  • the small power base station is required to identify whether the UEs (which may be referred to as MUEs) originally served by the macro base station are within its coverage.
  • the small power base station can identify the MUE and its interference condition by actively monitoring the uplink transmission of the MUE, but cannot accurately determine whether the MUE is within the coverage of the small power base station according to the interference situation, for example, in the non-coverage range.
  • the MUE may have a large receiving power at the time of reception due to a large transmission power, and may be determined to be within the coverage if it is in accordance with the interference situation.
  • Summary of the invention In view of this, the embodiments of the present invention provide a processing method, a network device, and a terminal, which are based on the uplink detection, and are used to complete the processing based on the uplink detection, and further provide a basis for the small power base station to identify the MUE in the coverage.
  • a processing method based on uplink detection including:
  • the network device obtains the first information, where the first information is the transmit power information when the terminal sends the wireless signal; or the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal And the path loss information of the second access device to the terminal; or the first information includes: the second access device receives the received power information of the wireless signal sent by the terminal, and the second connection Transmit power information of the ingress device and measurement information of the second access device by the terminal.
  • the network device performs processing according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the network device is the first access device, the second access device or a network entity, and the network entity is a network device different from the first access device and the second access device,
  • the second access device is an access device currently serving the terminal.
  • the network device receives the receiving of the wireless signal sent by the terminal Power information, processed, including:
  • the network device determines, according to the first information, that the first access device receives the received power information of the wireless signal sent by the terminal, whether the terminal can be served by the first access device.
  • the method further includes: the network device acquiring interference power information, where the interference power information is interference power information received by the first access device or The interference power information received by the terminal reported by the terminal; the network device performs processing according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal. , including:
  • the network device receives the terminal
  • the received power information of the wireless signal is sent to determine whether the terminal can be served by the first access device, including:
  • the network device receives the terminal
  • the received power information of the wireless signal and the interference power information, determining whether the terminal can be served by the first access device includes:
  • the network device receives the wireless signal sent by the terminal according to the first information, and the first access device The received power information and the interference signal power information received by the first access device and the terminal transmit power information when the terminal is served by the first access device determine a signal quality, and the terminal is determined according to the signal quality. Whether it can be served by the first access device; or
  • interference power information is interference power information received by the terminal
  • the network device receives, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference signal power information received by the terminal, And determining, by the first access device, the power information, when the terminal is served by the first access device, determining a signal quality, and determining, according to the signal quality, whether the terminal can be served by the first access device; or
  • the network device receive the receiving, by the terminal, the wireless signal Power information, processed, including:
  • the network device turns on the transmitter of the first access device according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the first information is when the terminal sends the wireless signal Transmitting the power information, where the acquiring the first information includes:
  • the second access device When the network device is the second access device, the second access device receives the transmit power information when the terminal sends the wireless signal sent by the terminal; or the second access device receives And the measurement information reported by the terminal, and determining, according to the transmit power information of the second access device, the second access device receiving the received power information of the wireless signal sent by the terminal, and the measurement information.
  • the second access device determines transmit power information when the terminal sends a wireless signal, and the transmit power information when the terminal sends the wireless signal is the second connection
  • the device is configured to be forwarded to the terminal or the second access device is pre-agreed with the terminal; or
  • the network device is the first access device or the network entity, the first access device or the network entity receives the first information sent by the second access device.
  • the first information includes the second access device receiving The received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal; or the first information includes the second access device receiving the location sent by the terminal The received power information of the wireless signal, the transmit power information of the second access device, and the measurement information of the terminal to the second access device.
  • the obtaining the first information includes:
  • the second access device acquires, by the second access device, the received power information of the wireless signal sent by the terminal, where the second connection
  • the inbound device obtains the measurement information reported by the terminal, and the second access device acquires the transmit power information of the second access device
  • the second access device acquires, by the second access device, the received power information of the wireless signal that is sent by the terminal, where the second access device acquires the second access device to the terminal Road loss information;
  • the first access device or the network entity receives the first information sent by the second access device.
  • the first information is when the terminal sends the wireless signal Transmit power information, the transmit power information when the terminal sends the wireless signal has a corresponding relationship with the wireless signal, and the acquiring the first information includes:
  • the first access device or the second access device determines, according to the received wireless signal, that the terminal sends Transmit power information when wireless signals; or,
  • the network entity When the network device is the network entity, the network entity receives the transmit power information when the terminal determined by the first access device or the second access device sends a wireless signal; or Receiving, by the network entity, the information about the wireless signal sent by the first access device or the second access device, and determining, according to the correspondence relationship and information about the wireless signal, a transmit power when the terminal sends a wireless signal information.
  • the acquiring, by the network device, the received power information of the wireless signal that is sent by the first access device includes:
  • the first access device receives the wireless signal according to the feature information of the terminal or receives the pre-agreed wireless signal, and acquires the wireless signal sent by the first access device receiving terminal. Received power information; or,
  • the second access device or the network entity receives the first access device that is sent by the first access device to receive Receive power information of the wireless signal transmitted by the terminal.
  • the network device obtains the interference power information received by the first access device, including:
  • the first access device acquires interference power information received by the first access device.
  • the second access device or the network entity receives the first access device that is sent by the first access device to receive Interference power information.
  • the interference power information is the interference power information received by the first access device
  • Access device services including:
  • the first access device Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the first access device, and the terminal
  • the terminal that is served by the first access device transmits power information to determine whether the terminal can be served by the first access device.
  • the network device acquires Interference power information, including:
  • the second access device receives the interference power information received by the terminal that is sent by the terminal; or
  • the network device is the first access device or the network entity, the first access device or the network entity receives the interference power information received by the terminal that is sent by the second receiving device.
  • the network device when the interference power information is the interference power information received by the terminal, the network device is configured according to Determining, by the first access device, the received power information of the wireless signal and the interference power information sent by the terminal, determining whether the terminal can be served by the first access device , including:
  • the first access device transmits power information when the access device is in service, and determines whether the terminal can be served by the first access device.
  • the wireless signal is the terminal according to the characteristic information
  • the sent feature information includes at least one of the following items:
  • the configuration message that the second access device sends the radio signal configured by the terminal includes the following At least one of the items:
  • Time domain resource information frequency domain resource information, code domain resource information, spatial domain resource information.
  • a processing method based on uplink detection including:
  • the terminal sends the wireless signal and reports the second information to the second access device, where the wireless signal causes the first access device to acquire the received power information of the wireless signal that is sent by the terminal by the first access device, where
  • the second information is the transmission power information when the terminal sends the wireless signal, or the second information is the measurement information of the terminal to the second access device, so that the network device is in the second information
  • the terminal transmits the transmit power information when the wireless signal is sent, according to the transmit power information when the terminal sends the wireless signal, and the first access device receives the received power of the wireless signal sent by the terminal Information is processed, or in the second information Receiving, by the second access device, the received power information of the wireless signal sent by the terminal, and the transmit power of the second access device, when the measurement information of the second access device is received by the terminal And the measurement information of the second access device by the terminal and the received power information of the wireless signal sent by the first access device by the terminal;
  • the first access device acquiring, by the first access device, receiving power information of the wireless signal sent by the terminal, and acquiring, by the second access device, the second access device, The received power information of the wireless signal sent by the terminal, so that the network device receives the received power information of the wireless signal sent by the terminal according to the first access device, and the second access device receives the received by the terminal
  • the received power information of the wireless signal and the path loss information of the second access device to the terminal are processed;
  • the network device is the first access device, the second access device, or the network entity, where the network entity is a network device different from the first access device and the second access device, and the second The access device is an access device currently serving the terminal.
  • the method further includes: the terminal reporting the interference power information received by the terminal to the second access device, so that the network device is in the The second information is the transmit power information when the terminal transmits the wireless signal, and the transmit power information when the terminal sends the wireless signal, and the first access device receives the wireless sent by the terminal Determining whether the terminal can be connected by the first connection, the received power information of the signal, the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access device Or the device, or the network device, when the second information is the measurement information of the second access device by the terminal, according to the second access device, receiving the The received power information of the wireless signal, the transmit power information of the second access device, the measurement information of the terminal to the second access device, and the first access device Receiving, by the terminal, the received power information of the wireless signal, the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access
  • the sending, by the terminal, the wireless signal includes:
  • the terminal sends the wireless signal by using pre-agreed transmission power information according to the transmit power information agreed by the second access device and the terminal in advance.
  • the sending, by the terminal, the wireless signal includes:
  • the terminal sends the wireless signal by using the configured feature information according to the feature information configured by the second access device; or
  • the terminal sends a pre-agreed wireless signal according to a wireless signal pre-agreed by the second access device and the terminal.
  • a network device including:
  • a first acquiring module configured to acquire first information, where the first information is transmit power information when the terminal sends a wireless signal; or the first information includes the second access device receiving the wireless sent by the terminal The received power information of the signal and the path loss information of the second access device to the terminal; or the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, Transmit power information of the second access device and measurement information of the second access device by the terminal.
  • a second acquiring module configured to acquire, by the first access device, receiving power information of the wireless signal sent by the terminal
  • a processing module configured to perform processing according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the network device is the first access device, the second access device or a network entity, and the network entity is a network device different from the first access device and the second access device,
  • the second access device is an access device currently serving the terminal.
  • the processing module is specifically configured to:
  • the method further includes: a third acquiring module, configured to acquire interference power information, where the interference power information is the interference received by the first access device Power information or interference power information received by the terminal reported by the terminal;
  • the processing module is specifically configured to: determine, according to the first information, that the first access device receives the received power information of the wireless signal and the interference power information that are sent by the terminal, Serving by the first access device.
  • the processing module is specifically configured to:
  • the processing module is specifically configured to:
  • the network device receives the wireless signal sent by the terminal according to the first information, and the first access device The received power information and the interference signal power information received by the first access device and the terminal transmit power information when the terminal is served by the first access device determine a signal quality, and the terminal is determined according to the signal quality. Capable of being served by the first access device; or
  • Information and a terminal transmitting power when the terminal is served by the first access device Rate information determines a signal quality; determining, according to a path loss between the terminal and the first access device, and the signal quality, whether the terminal can be served by the first access device;
  • interference power information is interference power information received by the terminal
  • the first access device transmits the power information to determine the signal quality, and determines whether the terminal can be served by the first access device according to the signal quality;
  • the processing module is specifically configured to:
  • the transmitter of the first access device is turned on according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the first information is when the terminal sends the wireless signal Transmitting power information
  • the first acquiring module is specifically configured to:
  • the network device When the network device is the second access device, receiving, by the terminal, transmit power information when the terminal sends a wireless signal; or receiving measurement information reported by the terminal, and according to the second Transmit power information of the access device, the second access device receiving the received power information of the wireless signal sent by the terminal, and the measurement information, determining transmit power information when the terminal sends a wireless signal; or determining Transmit power information when the terminal transmits a wireless signal,
  • the transmit power information when the terminal sends a wireless signal is configured by the second access device to the terminal or the second access device and the terminal pre-agreed; or
  • the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the first information includes the second access device receiving The received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal; or the first information includes the second access device receiving the location sent by the terminal The received power information of the wireless signal, the transmit power information of the second access device, and the measurement information of the terminal to the second access device.
  • the first acquiring module is specifically configured to:
  • the network device is the second access device
  • the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the first information is when the terminal sends the wireless signal Transmit power information
  • the transmit power information when the terminal sends the wireless signal has a corresponding relationship with the wireless signal
  • the first acquiring module is specifically configured to:
  • the network device When the network device is the first access device or the second access device, determining, according to the received wireless signal, transmit power information when the terminal sends a wireless signal; or
  • the second acquiring module is specifically configured to: When the network device is the first access device, receiving the wireless signal or receiving the pre-agreed wireless signal according to the feature information of the terminal, and acquiring, by the first access device, the received power information of the wireless signal sent by the terminal; or
  • the third obtaining module is specifically configured to:
  • the processing module is specifically used to:
  • Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the first access device, and the terminal is configured by the first The terminal transmits power information when the access device is in service, and determines whether the terminal can be served by the first access device.
  • the third acquiring The module is specifically used to:
  • the processing module is specific Used for: Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the terminal, and the terminal is used by the first access device
  • the first access device at the time of service transmits power information, and determines whether the terminal can be served by the first access device.
  • the wireless signal is the terminal according to the characteristic information
  • the sent feature information includes at least one of the following items:
  • the configuration message that the second access device sends the radio signal configured by the terminal includes the following At least one of the items:
  • Time domain resource information frequency domain resource information, code domain resource information, spatial domain resource information.
  • a terminal including:
  • a first sending module configured to send a wireless signal, and report the second information to the second access device
  • the wireless signal causes the first access device to acquire, by the first access device, the receiving of the wireless signal sent by the terminal Power information
  • the second information is transmit power information when the terminal sends the wireless signal, or the second information is measurement information of the terminal to the second access device, so that the network device is
  • the second information is the transmit power information when the terminal sends the wireless signal, according to the transmit power information when the terminal sends the wireless signal, and the first access device receives the location sent by the terminal
  • the receiving power information of the wireless signal is processed, or when the second information is the measurement information of the second access device by the terminal, according to the second access device receiving the Receive power information of the wireless signal, transmit power information of the second access device, and measurement information of the second access device by the terminal and the Receiving power information of the wireless access device receives a first signal sent by the terminal for processing; or,
  • a second sending module configured to send a wireless signal, where the wireless signal causes the first access device to acquire the received power information of the wireless signal sent by the first access device, and the second access device obtains the second Receiving, by the access device, a received power signal of the wireless signal sent by the terminal And the network device receives, according to the first access device, the received power information of the wireless signal sent by the terminal, and the second access device receives the received power information of the wireless signal sent by the terminal, and Processing, by the second access device, path loss information of the terminal;
  • the network device is the first access device, the second access device, or the network entity, where the network entity is a network device different from the first access device and the second access device, and the second The access device is an access device currently serving the terminal.
  • the method further includes: a third sending module, configured to report, to the second access device, interference power information received by the terminal,
  • the network device sends the transmit power information when the terminal sends the wireless signal
  • the first access device sends the terminal to send The received power information of the wireless signal, the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access device, determining whether the terminal can be The first access device service, or the network device, when the second information is the measurement information of the second access device by the terminal, receiving the terminal according to the second access device Received power information of the wireless signal, transmit power information of the second access device, measurement information of the terminal to the second access device, Receiving, by the first access device, the received power information of the wireless signal sent by the terminal, the interference power information received by the terminal, and the first access device when the terminal is served by the first access device The power information,
  • the first sending module is specifically configured to:
  • the first sending module is specifically configured to:
  • a network device including:
  • a transceiver configured to acquire first information, where the first information is transmit power information when the terminal sends a wireless signal, or the first information includes the second access device receiving the wireless signal sent by the terminal Receiving the power information and the path loss information of the second access device to the terminal; or the first information includes receiving, by the second access device, the received power information of the wireless signal sent by the terminal, Transmit power information of the second access device and measurement information of the second access device by the terminal; and acquiring, by the first access device, received power information of the wireless signal sent by the terminal;
  • the processor is configured to perform processing according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the network device is the first access device, the second access device or a network entity, and the network entity is a network device different from the first access device and the second access device,
  • the second access device is an access device currently serving the terminal.
  • the processor is specifically configured to:
  • the transceiver is further configured to:
  • the interference power information is the interference power information received by the first access device or the interference power information received by the terminal reported by the terminal;
  • the processor is specifically configured to: receive according to the first information, and the first access device The received power information of the wireless signal and the interference power information sent by the terminal determine whether the terminal can be served by the first access device.
  • the processor is specifically configured to:
  • the processor is specifically configured to:
  • the interference power information is the interference power information received by the first access device, according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal Determining signal quality with interference signal power information received by the first access device and terminal transmit power information when the terminal is served by the first access device, and determining whether the terminal can be used according to the signal quality Said first access device service; or
  • the network device receives the received power information of the wireless signal sent by the terminal, and the interference signal power information received by the first access device, and the Determining a signal quality by the terminal transmitting power information when the terminal is served by the first access device; determining, according to a path loss between the terminal and the first access device, and the signal quality, whether the terminal can be The first access device service;
  • interference power information is interference power information received by the terminal
  • the first access device Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference signal power information received by the terminal, and the terminal being accessed by the first access
  • the first access device transmits power information to determine the signal quality, and determines whether the terminal can be served by the first access device according to the signal quality;
  • the processor is specifically configured to:
  • the transmitter of the first access device is turned on according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the first information is when the terminal sends the wireless signal Transmit power information
  • the transceiver is specifically used to:
  • the network device When the network device is the second access device, receiving, by the terminal, transmit power information when the terminal sends a wireless signal; or receiving measurement information reported by the terminal, and according to the second Transmit power information of the access device, the second access device receiving the received power information of the wireless signal sent by the terminal, and the measurement information, determining transmit power information when the terminal sends a wireless signal; or determining Transmit power information when the terminal sends a wireless signal, and the transmit power information when the terminal sends the wireless signal is configured by the second access device to the terminal or the second access device and the terminal are pre- Agreed; or,
  • the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the first information includes the second access device receiving The received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal; or the first information includes the second access device receiving the location sent by the terminal The receiving power information of the wireless signal, the transmitting power information of the second access device, and the measurement information of the second access device by the terminal, where the transceiver is specifically configured to:
  • the wireless device receives, by the terminal, the wireless device when the network device is the second access device
  • the received power information of the signal the second access device acquires the measurement information reported by the terminal, and the second access device acquires the transmit power information of the second access device; or acquires the second access device Receiving received power information of the wireless signal sent by the terminal, where the second access device acquires path loss information of the second access device to the terminal;
  • the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the first information is when the terminal sends the wireless signal Transmit power information, and the transmit power information when the terminal sends the wireless signal has a corresponding relationship with the wireless signal, where the transceiver is specifically configured to:
  • the network device When the network device is the first access device or the second access device, determining, according to the received wireless signal, transmit power information when the terminal sends a wireless signal; or
  • the network device And receiving, when the network device is the network entity, the transmit power information when the terminal determined by the first access device or the second access device sends a wireless signal; or receiving the first connection And the information about the wireless signal sent by the device or the second access device, determining, according to the correspondence relationship and the information of the wireless signal, a transmit power signal when the terminal sends a wireless signal
  • the transceiver is specifically used to:
  • the network device is the first access device, receiving the wireless signal or receiving the pre-agreed wireless signal according to the feature information of the terminal, and acquiring, by the first access device, the received power information of the wireless signal sent by the terminal;
  • the transceiver when the interference power information is the interference power information received by the first access device, the transceiver is specifically used to:
  • the processor when the interference power information is the interference power information received by the first access device, the processor is specifically used to:
  • Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the first access device, and the terminal is configured by the first The terminal transmits power information when the access device is in service, and determines whether the terminal can be served by the first access device.
  • the transceiver when the interference power information is the interference power information received by the terminal, the transceiver is specific Used for:
  • the processor when the interference power information is the interference power information received by the terminal, the processor is specific to Used for:
  • the first access device Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the terminal, and the terminal is used by the first access device
  • the first access device at the time of service transmits power information, and determines whether the terminal can be served by the first access device.
  • the wireless signal is the terminal according to the characteristic information
  • the sent feature information includes at least one of the following items:
  • the configuration message that the second access device sends the wireless signal configured by the terminal includes at least one of the following items:
  • Time domain resource information frequency domain resource information, code domain resource information, spatial domain resource information.
  • a terminal including:
  • a transceiver configured to send a wireless signal, and report the second information to the second access device, where the wireless signal causes the first access device to acquire, by the first access device, the received power information of the wireless signal sent by the terminal
  • the second information is the transmit power information when the terminal sends the wireless signal, or the second information is the measurement information of the terminal to the second access device, so that the network device is in the
  • the second information is the transmit power information when the terminal sends the wireless signal, and the transmit power information when the terminal sends the wireless signal, and the first access device receives the wireless sent by the terminal Receiving the received power information of the signal, or receiving the wireless signal sent by the terminal according to the second access device when the second information is the measurement information of the second access device by the terminal Received power information, transmit power information of the second access device, and measurement information of the terminal to the second access device, and the first
  • the ingress device receives the received power information of the wireless signal sent by the terminal for processing; or the transceiver is configured to send a wireless signal, where
  • the network device is the first access device, the second access device, or the network entity, where the network entity is a network device different from the first access device and the second access device, and the second The access device is an access device currently serving the terminal.
  • the transceiver is further configured to:
  • the network device Reporting the interference power information received by the terminal to the second access device, so that the network device sends the location according to the terminal when the second information is the transmit power information when the terminal sends the wireless signal
  • the transmission power information when the wireless signal is used, the first access device receiving the received power information of the wireless signal sent by the terminal, and the interference power information received by the terminal And transmitting the power information by the first access device when the terminal is served by the first access device, determining whether the terminal can be served by the first access device, or causing the network device to be in the
  • the second information is the measurement information of the second access device by the terminal, receiving, according to the second access device, the received power information of the wireless signal sent by the terminal, the second access device
  • the transmission power information, the measurement information of the terminal to the second access device, the first access device receiving the received power information of the wireless signal sent by the terminal, and the interference power information received by the terminal And transmitting, by the first access device, the power information, by the first access device, determining whether the terminal can be served by
  • the transceiver is specifically used to:
  • the transceiver is specifically used to:
  • the network device may obtain the first information, and then may perform the processing based on the uplink detection according to the first information and the received power information when the first access device receives the wireless signal, and may further determine according to the processing result. Whether the terminal is in the coverage of the small power base station Within the perimeter, either determine the path loss and turn on the transmitter.
  • FIG. 1 is a schematic flowchart of an embodiment of a method for uplink detection according to the present invention
  • FIG. 2 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 3 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 4 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 5 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 6 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 7 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 8 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 9 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • FIG. 10 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention
  • FIG. 11 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention
  • FIG. 12 is a schematic structural diagram of an embodiment of a network device according to the present invention
  • FIG. 13 is a schematic structural diagram of an embodiment of a terminal according to the present invention.
  • FIG. 14 is a schematic structural diagram of another embodiment of a network device according to the present invention.
  • FIG. 15 is a schematic structural diagram of another embodiment of a terminal according to the present invention.
  • the technical solutions in the embodiments of the present invention are clearly and completely described in the following with reference to the accompanying drawings in the embodiments of the present invention.
  • the embodiments are a part of the embodiments of the invention, and not all of the embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without creative efforts are within the scope of the present invention.
  • FIG. 1 is a schematic flowchart of an embodiment of an uplink detection method according to an embodiment of the present invention, including: Step 11: The network device acquires the first information, where the first information is the transmit power information when the terminal sends the wireless signal; or the first information includes the second access device receiving the wireless signal sent by the terminal Receiving the power information and the path loss information of the second access device to the terminal; or the first information includes receiving, by the second access device, the received power information of the wireless signal sent by the terminal, Transmit power information of the second access device and measurement information of the second access device by the terminal.
  • the first information is the transmit power information when the terminal sends the wireless signal
  • the first information includes the second access device receiving the wireless signal sent by the terminal Receiving the power information and the path loss information of the second access device to the terminal
  • the first information includes receiving, by the second access device, the received power information of the wireless signal sent by the terminal, Transmit power information of the second access device and measurement information of the second access device by the terminal.
  • Step 12 The network device acquires, by the first access device, receiving power information of the wireless signal sent by the terminal.
  • Step 13 The network device performs processing according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal.
  • the network device is the first access device, the second access device or a network entity, and the network entity is a network device different from the first access device and the second access device,
  • the second access device is an access device currently serving the terminal.
  • the foregoing access device may be specifically a macro base station, such as a Macro eNB; a small power base station, such as a Pico eNB, a Femto eNB; or other types of access nodes, such as a home.
  • Base station Home eNB
  • Low Mobility Low Mobility
  • AP Local Access Point
  • LPN Low Power Node
  • Radio Remote Unit Radio Remote Unit
  • the first access device is a small power base station
  • the second access device is a macro base station
  • the above network entity may be a controller, such as a base station controller (BSC), a radio network controller (RNC), a centralized controller, and the like.
  • BSC base station controller
  • RNC radio network controller
  • the foregoing process may include: determining whether the terminal can be served by the first access device; or: turning on a transmitter of the first access device; or determining the terminal and the first access Path loss between devices.
  • the above power information (including the transmission power information or the received power information) may be a power value, or an index of the power value, and the power value may be determined according to the index.
  • the measurement information is that the terminal receives the received power of the second access device to send the wireless signal; or the terminal receives the signal quality of the second access device to send the wireless signal.
  • the terminal receives the received power of the test signal, the received power of the pilot signal, the received power of the CSI-RS, the quality of the reference signal, and the quality of the pilot signal.
  • Step 21 The terminal sends a wireless signal, where the wireless signal causes the first access device to acquire, by the first access device, the received power information of the wireless signal sent by the terminal.
  • Step 22 The terminal reports the second information to the second access device, where the second information is the transmit power information when the terminal sends the wireless signal, or the second information is the terminal And the measurement information of the access device, when the second information is the transmit power information when the terminal sends the wireless signal, according to the transmit power information when the terminal sends the wireless signal, and the Receiving, by the first access device, the received power information of the wireless signal sent by the terminal, or when the second information is the measurement information of the second access device by the terminal, according to the Receiving, by the second access device, the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, and the measurement information of the second access device by the terminal, and the first The access device receives the received power information of the wireless signal sent by the terminal for processing.
  • the step 21-22 may further include: the terminal sending a wireless signal, where the wireless signal causes the first access device to acquire, by the first access device, the received power information of the wireless signal sent by the terminal, and the first Receiving, by the second access device, the received power information of the wireless signal sent by the terminal, by the second access device, so that the network device receives, according to the first access device, the received power information of the wireless signal sent by the terminal.
  • the second access device receives the received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal for processing.
  • the network device is the first access device, the second access device, or the network entity, where the network entity is a network device different from the first access device and the second access device, and the second The access device is an access device currently serving the terminal.
  • the terminal is a terminal under the service of the macro base station, such as the MUE described above.
  • the method may further include:
  • the terminal reports the interference power information received by the terminal to the second access device, so that the network device, according to the second information, is the transmit power information when the terminal sends the wireless signal, according to the Transmit power information when the terminal sends the wireless signal, the first access device Receiving, by the terminal, the received power information of the wireless signal, the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access device, determining the Whether the terminal can be served by the first access device, or the network device, when the second information is the measurement information of the terminal to the second access device, according to the second access Receiving, by the device, the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, the measurement information of the second access device by the terminal, and the first access device Receiving, by the terminal, the received power information of the wireless signal, the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access device, determining the Whether the terminal can be served by the first
  • the terminal sends a wireless signal, including:
  • the terminal sends the wireless signal by using pre-agreed transmission power information according to the transmit power information agreed by the second access device and the terminal in advance.
  • the terminal sends a wireless signal, including:
  • the terminal sends the wireless signal by using the configured feature information according to the feature information configured by the second access device; or
  • the terminal sends a pre-agreed wireless signal according to a wireless signal pre-agreed by the second access device and the terminal.
  • FIG. 3 is a schematic flowchart of another embodiment of a method for processing uplink detection according to the present invention.
  • This embodiment takes a small power base station as an example for processing. This embodiment includes:
  • Step 31 The macro base station sends a configuration message (UL transmission configuration) to the MUE, where the configuration message carries the feature information of the MUE.
  • a configuration message (UL transmission configuration)
  • the feature information may include:
  • a configuration message for sending a wireless signal configured by the second access device to the terminal is
  • the configuration message that the second access device sends the radio signal configured by the terminal includes at least one of the following items:
  • Time domain resource information frequency domain resource information, code domain resource information, spatial domain resource information.
  • Step 32 The macro base station interacts with the small power base station (UL transmission configuration transfer).
  • the small power base station can learn the feature information of each MUE, and then, when detecting the wireless signal, determine the MUE from which the wireless signal comes from according to the feature information corresponding to the wireless signal.
  • Step 33 The MUE transmits a wireless signal (UL transmission) according to the characteristic information.
  • the wireless signal transmitted by the MUE is a sounding signal
  • the characteristic information of the sounding signal is time-frequency resource location information and a cyclic shift mode of the sequence, so that the macro base station can respond to the sounding signal when configured.
  • the time-frequency resource location information, the cyclic shift mode of the sequence, and the like are sent to the MUE, and then the MUE sends a sounding signal at the corresponding time-frequency resource location according to the cyclic shift mode of the corresponding sequence.
  • the radio signal transmitted by the MUE may also be a random access channel (RACH) signal, and the feature information corresponding to the RACH signal includes a time domain location, a random access preamble sequence, and the like. Therefore, the macro base station may configure the RACH when configured.
  • the time domain location corresponding to the signal, the random access preamble sequence, and the like are sent to the MUE, and then the MUE sends the RACH signal according to the corresponding time domain location and according to the corresponding random access preamble sequence.
  • Step 34 The small power base station detects the wireless signal sent by the MUE according to the feature information, and obtains, by the first access device, the received power information (UL detection) of the wireless signal sent by the terminal.
  • the MUE sends a wireless signal at a time-frequency resource location configured by the macro base station, and the low-power base station can listen to the uplink signal at the time-frequency resource location, perform power detection on the detected wireless signal, and obtain the first access device. Receiving received power information of the wireless signal sent by the terminal.
  • Step 35 The MUE sends the transmit power information when the terminal sends the wireless signal to the transmission power indication.
  • Steps 35 and 34 have no timing constraints.
  • Step 36 The macro base station sends the transmit power information when the terminal reported by the MUE sends the wireless signal to the small power base station (transmission power notification).
  • Step 36 and step 34 have no timing constraint relationship.
  • Step 37 The small power base station performs processing according to the received first access device receiving the received power information of the wireless signal sent by the terminal and the transmitting power information when the terminal sends a wireless signal sent by the macro base station.
  • the processing may include: determining, according to the transmit power information when the terminal sends a wireless signal, and the received power information of the wireless signal sent by the first access device, the terminal and the first access a path loss between the devices; for example, the difference between the transmit power information when the small power base station transmits the wireless signal and the received power information of the wireless signal sent by the first access device to the terminal is determined as the path loss Or, the difference is determined according to the set policy, and then determined as the path loss, and the transmission power information and the first access device when the terminal sends the wireless signal in the calculation manner of the path loss in the subtraction manner is obtained.
  • the received power information of the wireless signal transmitted by the terminal is received in units of decibels (dB). Or,
  • the MUE After determining the path loss, the MUE is determined by the path loss to be a small power base station; for example, when the path loss value is less than a set threshold, it is determined that the small power base station serves the MUE; or
  • the information and the first access device receive the received power information of the wireless signal sent by the terminal to determine a path loss, and turn on the transmitter when the number of MUEs whose path loss is less than a set threshold is greater than a set value.
  • the number of terminals in the coverage of the small power base station can be determined to wake up the corresponding small power base station, for example, when the number of terminals in the coverage of the small power base station reaches After setting the threshold, wake up the small power base station and avoid Energy waste caused by waking up small power base stations when there is no or only a small number of UEs or data services within the coverage of the small power base station.
  • Whether the MUE is within the coverage of the small power base station can be determined according to the path loss between the MUE and the small power base station, and when the path loss is less than the set value, it can be determined to be within its coverage. or,
  • a suitable cell may be selected according to the path loss between the MUE and the small power base station.
  • a small power base station with a small path loss is selected to provide an uplink access service for the terminal.
  • the terminal transmits the transmit power information when the terminal sends the wireless signal to the macro base station.
  • the terminal may not report the transmit power information when the terminal sends the wireless signal, but send the measurement information to the macro base station. Calculating, by the macro base station, the transmit power information when the terminal sends the wireless signal, according to the measurement information, the transmit power information of the second access device, and the received power information of the wireless signal sent by the second access device, The macro base station then transmits the calculated transmit power information when the terminal sends the wireless signal to the small power base station; or, the terminal sends the measurement information to the macro base station, and the macro base station then uses the measurement information and the transmit power of the second access device.
  • the transmitting power information when the terminal sends the wireless signal may be included according to the measurement information, the transmit power information of the second access device, and the received power information of the wireless signal sent by the second access device.
  • the measurement information is the reference signal received power
  • the transmit power information of the second access device is the reference signal transmit power
  • the reference signal transmit power is subtracted from the reference signal received power to obtain the path between the second access device and the terminal.
  • receiving, by the second access device, the received power information of the wireless signal sent by the terminal, and the path loss between the second access device and the terminal to obtain the transmit power information when the terminal sends the wireless signal.
  • the terminal may not report the transmit power information when the terminal sends the wireless signal, and does not report the measurement information, but the macro base station receives the received power information of the wireless signal sent by the terminal according to the second access device.
  • the path loss information of the second access device to the terminal is calculated, and the transmit power information when the terminal sends the wireless signal is calculated, and then the macro base station sends the transmit power information when the terminal sends the wireless signal to the small power base station, or
  • the macro base station receives, by the second access device, the received power information of the wireless signal sent by the terminal, and the second access device to the terminal
  • the road loss information is sent to the small power base station, and the small power base station receives the received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal according to the second access device,
  • the transmission power information when the terminal transmits the wireless signal is calculated.
  • the macro base station transmits the transmit power information or the measurement information when the terminal sends the wireless signal, or the second access device receives the received power information of the wireless signal sent by the terminal, and the second access device to the terminal.
  • the transmission of the path loss information to the small power base station may be: the macro base station directly sends the small power base station, or the macro base station sends the foregoing information to the network entity, and then the network entity sends the information to the small power base station.
  • the transmission not specifically described in the embodiment of the present invention may refer to direct transmission or forwarding via other devices.
  • the information related to the low-power base station is processed and processed, and the processing based on the uplink detection is completed, thereby providing a basis for subsequent wake-up or uplink cell selection.
  • FIG. 4 is a schematic flowchart of another embodiment of a method for processing an uplink detection according to the present invention.
  • the embodiment is performed by using a macro base station as an example.
  • This embodiment includes:
  • Step 41 The macro base station sends a configuration message (UL transmission configuration) to the MUE.
  • Step 42 The macro base station interacts with the small power base station (UL transmission configuration transfer).
  • Step 43 The MUE sends a radio signal (UL transmission) according to the configuration message.
  • Step 44 The small power base station detects the wireless signal sent by the MUE according to the characteristic information, and obtains, by the first access device, the received power information (UL detection) of the wireless signal sent by the terminal.
  • Step 45 The MUE sends the transmit power information when the terminal sends the wireless signal to the transmission power indication.
  • steps 41 to 45 For details of the above steps 41 to 45, refer to steps 31 to 35.
  • Step 46 The small power base station sends, by the first access device, the received power information of the wireless signal sent by the terminal to the macro base station.
  • Step 47 The macro base station receives, according to the first access device sent by the small power base station, the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal sent by the MUE, and performs processing.
  • the terminal transmits the transmit power information when the terminal sends the wireless signal to the macro base station.
  • the terminal may not report the transmit power information when the terminal sends the wireless signal, but send the measurement information to the macro base station. Transmit power information is calculated by the macro base station according to the measurement information, the transmit power information of the second access device, and the received power information of the wireless signal sent by the second access device.
  • the transmitting power information when the terminal sends the wireless signal may be specifically calculated according to the measurement information, the transmit power information of the second access device, and the received power information of the wireless signal sent by the second access device. See the previous embodiment.
  • the terminal may not report the transmit power information when the terminal sends the wireless signal, and does not report the measurement information, but the macro base station receives the received power information of the wireless signal sent by the terminal according to the second access device.
  • the path loss information of the second access device to the terminal is used to calculate transmit power information when the terminal sends a wireless signal.
  • the small power base station sends the received power information of the wireless signal sent by the first access device to the macro base station to be sent by the first power device to the macro base station, or the small power base station directly sends the information to the macro base station.
  • the receiving device receives the received power information of the wireless signal sent by the terminal, and sends the received power information to the network entity, where the network entity sends the received power information to the macro base station.
  • the macro base station obtains relevant information and performs processing to complete the processing based on the uplink detection, which may further provide a basis for subsequent wake-up or uplink cell selection.
  • FIG. 5 is a schematic flowchart of another embodiment of a method for uplink detection according to the present invention.
  • This embodiment takes a processing performed by a network entity different from a macro base station and a small power base station as an example.
  • This embodiment includes: Step 51: The macro base station sends a configuration message (UL transmission configuration) to the MUE.
  • Step 53 The MUE performs uplink transmission according to the configuration message.
  • Step 54 The small power base station detects the wireless signal sent by the MUE according to the feature information, and obtains, by the first access device, the received power information (UL detection) of the wireless signal sent by the terminal.
  • Step 55 The MUE sends the transmit power information when the terminal sends the wireless signal to the transmission power indication.
  • steps 51 to 55 refer to steps 31 to 35.
  • Step 56 The macro base station sends the transmit power information when the terminal sends the wireless signal to the network entity.
  • Step 57 The small power base station sends the received power information of the wireless signal sent by the first access device to the same network entity.
  • Steps 56 and 57 have no timing constraints.
  • Step 58 The network entity receives, according to the first access device sent by the small power base station, the received power information of the wireless signal sent by the terminal, and the transmit power information when the terminal sends the wireless signal sent by the macro base station, and performs processing.
  • the first access device receives the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal, and the subsequent application content, refer to the content corresponding to FIG. 3, where No longer.
  • the terminal transmits the transmit power information when the terminal sends the wireless signal to the macro base station.
  • the terminal may not report the transmit power information when the terminal sends the wireless signal, but send the measurement information to the macro base station. Calculating, by the macro base station, the transmit power information when the terminal sends the wireless signal, according to the measurement information, the transmit power information of the second access device, and the received power information of the wireless signal sent by the second access device, The macro base station then transmits the calculated transmit power information when the terminal sends the wireless signal to the network entity.
  • the terminal sends the measurement information to the macro base station, and the macro base station further uses the measurement information and the transmit power information of the second access device.
  • the received power information of the wireless signal sent by the terminal is calculated and sent Power information.
  • the transmitting power information when the terminal sends the wireless signal may be included according to the measurement information, the transmit power information of the second access device, and the received power information of the wireless signal sent by the second access device.
  • the measurement information is the reference signal received power
  • the transmit power information of the second access device is the reference signal transmit power
  • the reference signal transmit power is subtracted from the reference signal received power to obtain the path between the second access device and the terminal.
  • receiving, by the second access device, the received power information of the wireless signal sent by the terminal, and the path loss between the second access device and the terminal to obtain the transmit power information when the terminal sends the wireless signal.
  • the terminal may not report the transmit power information when the terminal sends the wireless signal, nor The measurement information is reported, but the macro base station receives the received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal according to the second access device, and calculates that the terminal sends the wireless Transmit power information at the time of the signal, and then the macro base station transmits the transmit power information when the terminal sends the radio signal to the network entity, or the macro base station receives the received power information of the radio signal sent by the terminal by the second access device.
  • path loss information of the second access device to the terminal is sent to the network entity, where the network entity receives, according to the second access device, the received power information of the wireless signal sent by the terminal, and the second connection
  • the path loss information of the device to the terminal is calculated, and the transmission power information when the terminal transmits the wireless signal is calculated.
  • the network entity obtains related information and performs processing to complete the processing based on the uplink detection, which may further provide a basis for subsequent wake-up or uplink cell selection.
  • FIG. 6 is a schematic flowchart of another embodiment of the method for uplink detection according to the present invention.
  • the difference between this embodiment and the foregoing embodiment is that, in this embodiment, the transmit power information when the terminal sends a wireless signal may be determined according to the wireless signal sent by the MUE.
  • the transmission power information when the terminal transmits the wireless signal does not need to be separately transmitted.
  • This embodiment includes:
  • Step 61 The macro base station sends a configuration message (UL transmission configuration) to the MUE, where the configuration message carries the feature information of the MUE and the wireless signal information indicated to the MUE.
  • a configuration message (UL transmission configuration)
  • the wireless signal has a correspondence relationship with the transmission power information when the terminal transmits the wireless signal.
  • there are multiple pseudo-random sequence signals in the LTE system which can be divided into several groups, and at least one pseudo-random sequence signal in each packet is used for uplink transmission.
  • the pseudo-random sequence signals in different packets are transmitted with different transmit powers.
  • the transmit power information when the terminal transmits the wireless signals may be determined according to the packets to which the terminal belongs. For example, packet 1 corresponds to transmit power 1 and packet 2 corresponds to transmit power 2. If the detected pseudo-random sequence signal belongs to packet 1, then it can be determined that the transmit power information when the terminal transmits the radio signal is transmit power 1.
  • Step 62 The macro base station interacts with the small power base station (UL transmission configuration transfer).
  • Step 63 The MUE sends a radio signal (UL transmission) according to the configuration message.
  • the MUE determines that a wireless signal is to be transmitted according to the transmission power 1, and the corresponding selection sends a packet.
  • Step 64 The small power base station detects the wireless signal sent by the MUE according to the feature information, and obtains, by the first access device, the received power information of the wireless signal sent by the terminal, and according to the detected wireless signal and the transmit power information. The corresponding relationship determines the transmit power information when the terminal transmits the wireless signal.
  • Step 65 The small power base station performs processing according to the first access device receiving the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal.
  • the first access device receives the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal, and the subsequent application content, refer to the content corresponding to FIG. 3, where No longer.
  • This embodiment is exemplified by a small power base station, and may also be executed by a macro base station or a network entity.
  • the execution entity is a macro base station, that is, when the network device is the second access device, the second access device determines, according to the received wireless signal, that the terminal sends a wireless signal. Transmit power information; or,
  • the network entity When the network device is the network entity, the network entity receives the transmit power information when the terminal determined by the first access device or the second access device sends a wireless signal; or Receiving, by the network entity, the information about the wireless signal sent by the first access device or the second access device, and determining, according to the correspondence relationship and information about the wireless signal, a transmit power when the terminal sends a wireless signal information.
  • the corresponding relationship between the wireless signal and the transmit power information may be pre-agreed by the network side and the terminal side, or the macro base station may be configured to other devices, such as a MUE, a small power base station, or a network entity.
  • the wireless signal is sent by the MUE, and the wireless signal has a corresponding relationship with the transmit power information.
  • the network device can determine, according to the wireless signal, the transmit power information when the terminal sends the wireless signal, and the transmit power when the terminal sends the wireless signal.
  • the information and the first access device receive the received power information of the wireless signal sent by the terminal for processing, thereby providing a basis for subsequent wake-up or uplink cell selection.
  • FIG. 7 is a schematic flowchart of another embodiment of a method for processing uplink detection according to the present invention.
  • the transmit power information of the MUE transmitted by the MUE is configured by the macro base station, and the embodiment includes: Step 71: The macro base station sends the MUE to the MUE. Sending a configuration message (UL transmission configuration), where the configuration message carries the feature information of the MUE and the transmit function when the terminal sends the wireless signal Rate information.
  • UL transmission configuration UL transmission configuration
  • Step 72 The macro base station interacts with the small power base station to transmit the feature information and the UL transmission configuration transfer when the terminal sends the wireless signal.
  • the small power base station can determine the transmit power information when the terminal transmits the wireless signal and the feature information of the MUE.
  • Step 73 The MUE sends a radio signal (UL transmission) according to the transmit power information and the feature information when the terminal carried in the configuration message sends the wireless signal.
  • Step 74 The small power base station detects the wireless signal sent by the MUE according to the feature information, and obtains, by the first access device, the received power information (UL detection) of the wireless signal sent by the terminal.
  • Step 75 The small power base station performs processing according to the received first access device receiving the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends a wireless signal when the terminal interacts with the macro base station.
  • the first access device receives the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal, and the subsequent application content, refer to the content corresponding to FIG. 3, where No longer.
  • the main body of the processing in this embodiment is a power base station, and the execution entity may also be a macro base station or a network entity.
  • the small power base station may send, by the first access device, the received power information of the wireless signal sent by the terminal to the macro base station, where the macro base station configures the terminal according to the MUE. And transmitting, by the first access device that is sent by the small power base station, the received power information of the wireless signal sent by the terminal, for processing;
  • the small power base station may send, by the determined first access device, the received power information of the wireless signal sent by the terminal to the macro base station, where the macro base station may configure the MUE
  • the transmit power information when the terminal sends the wireless signal is sent to the network entity, and the network entity performs the transmit power information when the received terminal sends the wireless signal and the received power information of the wireless signal sent by the first access device by the terminal. deal with.
  • the macro base station configures, for the MUE, the transmit power information when the terminal sends the wireless signal, and the network side may obtain the transmit power information when the terminal sends the wireless signal according to the configuration of the macro base station.
  • the small power base station may receive the transmit power information when the terminal sends the wireless signal, and the first access device receives the The received power information of the wireless signal is processed, and the processing based on the uplink detection is completed, thereby providing a basis for subsequent wake-up or uplink cell selection.
  • FIG. 8 is a schematic flowchart of another embodiment of the method for uplink detection according to the present invention.
  • the network side and the terminal side pre-agreed the transmission power information, and the embodiment includes:
  • Step 81 The macro base station sends a configuration message (UL transmission configuration) to the MUE, where the configuration message carries the feature information of the MUE.
  • Step 82 The macro base station interacts with the small power base station (UL transmission configuration transfer).
  • Step 83 The MUE transmits the wireless signal by using the pre-agreed transmission power information when the terminal transmits the wireless signal.
  • Step 84 The small power base station detects the wireless signal sent by the MUE according to the characteristic information, and obtains, by the first access device, the received power information (UL detection) of the wireless signal sent by the terminal.
  • steps 81 to 84 For details of the above steps 81 to 84, refer to steps 31 to 34.
  • Step 85 The small power base station performs processing according to the pre-agreed transmission power information when the terminal sends the wireless signal, and the obtained first access device receives the received power information of the wireless signal sent by the terminal.
  • the first access device receives the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal
  • the application content refer to the content corresponding to FIG. 3, where not Let me repeat.
  • the processing entity is a small power base station, and the execution entity may also be a macro base station or a network entity.
  • the small power base station sends, by the first access device, the received power information of the wireless signal sent by the terminal to the macro base station, where the macro base station sends the wireless signal according to the pre-agreed terminal.
  • the transmit power information and the first access device receive the received power information of the wireless signal sent by the terminal for processing.
  • the small power base station sends, by the first access device, the received power information of the wireless signal sent by the terminal to the network entity, and the network entity according to the pre-agreed The transmitting power information when the terminal transmits the wireless signal and the first access device receive the received power information of the wireless signal sent by the terminal for processing.
  • the device obtains the transmit power information when the terminal sends the wireless signal by using the pre-agreed manner, and after the small power base station determines that the first access device receives the received power information of the wireless signal sent by the terminal, according to the terminal.
  • the transmitting power information when the wireless signal is sent and the receiving power information of the wireless signal sent by the first access device are processed, and the processing based on the uplink detection is completed, thereby providing a basis for subsequent wake-up or uplink cell selection. .
  • FIG. 9 is a schematic flowchart of another embodiment of a method for processing an uplink detection according to the present invention.
  • the wireless signal is pre-agreed by the network side and the terminal side, and the embodiment includes:
  • Step 91 The MUE sends a pre-agreed wireless signal.
  • Step 92 After detecting the pre-agreed wireless signal, the small power base station determines that the first access device receives the received power information of the wireless signal sent by the terminal.
  • Step 93 The small power base station acquires the transmit power information when the terminal sends the wireless signal.
  • the small power base station may obtain the transmit power information when the terminal sends the wireless signal by using any one of the following items:
  • the MUE is reported to the macro base station and sent by the macro base station to the small power base station;
  • the MUE reports the measurement information to the macro base station, and the macro base station calculates, according to the measurement information, the second access device receives the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device, The transmission power information of the wireless signal is sent to the small power base station;
  • the MUE reports the measurement information to the macro base station, and the macro base station sends the measurement information, the second access device receives the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device to the low power.
  • a base station calculated by the small power base station according to the measurement information, the second access device receiving the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device;
  • the macro base station calculates, according to the second access device, the received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal, and calculates the transmit power information when the terminal sends the wireless signal, and Sent to d, power base station;
  • the base station calculates, according to the received power information of the wireless signal sent by the terminal, and the path loss information of the second access device to the terminal, the transmit power information when the terminal sends the wireless signal;
  • the small power base station determines the transmit power information when the terminal sends the wireless signal according to the correspondence between the wireless signal and the transmit power information and the received wireless signal;
  • the transmitting power information when the terminal transmits the wireless signal is the transmitting power information when the terminal side pre-agreed by the network side and the terminal side transmits the wireless signal;
  • the transmission power information when the terminal transmits the wireless signal is configured by the macro base station to the MUE, and is sent by the macro base station to the d, the power base station.
  • Step 94 The small power base station performs processing according to the transmit power information when the terminal sends the wireless signal and the first access device receives the received power information of the wireless signal sent by the terminal.
  • the first access device receives the received power information of the wireless signal sent by the terminal and the transmit power information when the terminal sends the wireless signal, and the subsequent application content, refer to the content corresponding to FIG. 3, where No longer.
  • the processing is performed by a small power base station, and the execution entity may also be a macro base station or a small power base station.
  • the small power base station sends the received power information to the macro base station, where the macro base station determines the transmit power information by using any one of the following items, and then processes the data according to the transmit power information and the received power information.
  • the MUE is reported to the macro base station
  • the MUE reports the measurement information to the macro base station, and the macro base station calculates, according to the measurement information, the second access device receives the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device, Transmit power information when the signal is wireless;
  • the macro base station determines, according to the correspondence between the wireless signal and the transmit power information and the received wireless signal, the transmit power information when the terminal sends the wireless signal;
  • the transmitting power information when the terminal transmits the wireless signal is the pre-agreed transmission power information of the network side and the terminal side;
  • the transmitting power information when the terminal transmits the wireless signal is configured by the macro base station to the MUE, and the macro base station is configured, and the macro base station can be informed;
  • the macro base station receives, according to the second access device, the received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal, and calculates that the terminal sends the wireless signal. Transmit power information at the time of the number.
  • the small power base station sends, by the first access device, the received power information of the wireless signal sent by the terminal to the network entity, where the network entity adopts any one of the following items: Determining the transmit power information when the terminal sends the wireless signal, and then processing according to the transmit power information when the terminal sends the wireless signal and the received power information of the wireless signal sent by the first access device by the terminal:
  • the MUE is reported to the macro base station and sent by the macro base station to the network entity;
  • the MUE reports the measurement information to the macro base station, and the macro base station calculates, according to the measurement information, the second access device receives the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device, The transmit power information of the wireless signal is sent to the network entity;
  • the MUE reports the macro base station measurement information, and the macro base station sends the measurement information, the second access device receives the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device to the network entity. And being calculated by the network entity according to the measurement information, the second access device receiving the received power information of the wireless signal sent by the terminal, and the transmit power information of the second access device;
  • the network entity receives the transmit power information when the terminal sent by the macro base station or the small power base station transmits the wireless signal, and the transmit power information when the terminal sends the wireless signal is the correspondence between the macro base station or the small power base station according to the wireless signal and the transmit power information, and the receiving Wireless signal determined;
  • the network entity receives the wireless signal sent by the macro base station or the small power base station, and the network entity determines the transmit power information when the terminal sends the wireless signal according to the correspondence between the wireless signal and the transmit power information and the received wireless signal;
  • the transmitting power information when the terminal transmits the wireless signal is the transmitting power information when the terminal side pre-agreed by the network side and the terminal side transmits the wireless signal;
  • the transmitting power information when the terminal sends the wireless signal is configured by the macro base station to the MUE, and is sent by the macro base station to the network entity;
  • the macro base station calculates, according to the second access device, the received power information of the wireless signal sent by the terminal and the path loss information of the second access device to the terminal, and calculates the transmit power information when the terminal sends the wireless signal, and Sent to the network entity;
  • the processing based on the uplink detection can be performed when the feature information is not configured, and the basis for the subsequent wake-up or uplink cell selection can be provided.
  • FIG. 10 is a schematic flowchart of another embodiment of a method for processing an uplink detection according to the present invention.
  • the processing includes not only the transmit power information but also the interference power information, and the embodiment includes:
  • Step 101 The network device acquires the first information, where the first information is the transmit power information when the terminal sends the wireless signal, or the first information includes the second access device receiving the wireless signal sent by the terminal. Receiving the power information and the path loss information of the second access device to the terminal; or the first information includes receiving, by the second access device, the received power information of the wireless signal sent by the terminal, Transmit power information of the second access device and measurement information of the second access device by the terminal;
  • Step 102 The network device acquires, by the first access device, received power information of the wireless signal sent by the terminal.
  • Step 103 The network device acquires interference power information, where the interference power information is interference power information received by the first access device or interference power information received by the terminal reported by the terminal;
  • Step 104 The network device determines, according to the first information, that the first access device receives the received power information of the wireless signal and the interference power information that are sent by the terminal, The first access device services.
  • step 104 may include:
  • the network device receives the wireless signal sent by the terminal according to the first information, and the first access device The received power information and the interference signal power information received by the first access device and the terminal transmit power information when the terminal is served by the first access device determine a signal quality, and the terminal is determined according to the signal quality. Whether it can be served by the first access device; or
  • the interference signal power information and the terminal transmit power information when the terminal is served by the first access device determine the signal quality; according to the path loss between the terminal and the first access device and the signal quality, Determining whether the terminal can be served by the first access device;
  • interference power information is interference power information received by the terminal
  • the first access device transmits the power information to determine the signal quality, and determines whether the terminal can be served by the first access device according to the signal quality;
  • the signal quality may be calculated as follows:
  • the signal quality is a signal to interference and noise ratio, where the interference information is interference power information received by the first access device, and the signal information is when the terminal is served by the first access device.
  • the difference between the terminal transmit power information and the path loss between the first access device and the terminal, and the path loss between the first access device and the terminal may be referred to the foregoing embodiment, for example, the transmit power when the terminal sends the wireless signal.
  • the information and the first access device receive a difference between the received power information of the wireless signal sent by the terminal.
  • the methods for obtaining the received power information and the transmit power information may be respectively referred to the foregoing for the small power base station, the macro base station, and the network entity. Description, no longer repeat here.
  • the network device obtains interference power information, including:
  • the first access device determines the received interference power information
  • the second access device or the network entity receives the first access device that is sent by the first access device to receive Interference power information.
  • the acquiring, by the network device, the interference power information includes:
  • the second access device receives the interference power information sent by the terminal.
  • the first access device or the network entity receives the interference power information received by the terminal that is sent by the second receiving device.
  • the processing based on the uplink detection can be completed according to the interference power information, and the basis for the subsequent wake-up or uplink cell selection can be provided.
  • FIG. 11 is a schematic flowchart of another embodiment of an uplink detection method according to the present invention.
  • the processing is based on not transmitting power information, and the embodiment includes:
  • Step 111 The network device acquires the first information, where the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, and the path loss of the second access device to the terminal Or the first information includes: the second access device receives the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, and the terminal to the second Measurement information of the access device;
  • Step 112 The network device acquires, by the first access device, the received power information of the wireless signal.
  • Step 113 The network device performs processing according to the first information and the first access device receiving the received power information of the wireless signal.
  • the network device is the first access device, the second access device, or the network entity, where the network entity is a network device different from the first access device and the second access device, and the second The access device is an access device currently serving the terminal.
  • the acquiring, by the network device, the first information includes: When the network device is the second access device, the second access device acquires received power information of the wireless signal sent by the terminal, and the second access device acquires the measurement reported by the terminal Information, the second access device acquires the transmit power information of the second access device; for example, the second access device may detect the wireless signal sent by the terminal, and obtain the second receive access to receive the wireless sent by the terminal.
  • the received power information of the signal, the transmit power information of the second access device is the information of the second access device itself, and may be acquired; the measurement information may be reported by the terminal to the second access device. or,
  • the second access device acquires the received power information of the wireless signal sent by the terminal, and the second access device acquires the path loss information of the second access device to the terminal; for example, the second access The ingress device can detect the wireless signal sent by the terminal, and obtain the received power information of the second receiving access and receiving the wireless signal sent by the terminal.
  • the first access device or the network entity receives the first information sent by the second access device.
  • processing may include:
  • the measurement information may be reference signal received power
  • the second access device may determine the path loss between the terminal and the second access device according to the received power of the reference signal and the transmit power when the reference signal is sent.
  • the terminal transmits the wireless signal
  • the received power information when the second access device receives the wireless signal the received power information when the first access device receives the wireless signal
  • the path loss between the terminal and the second access device The path loss between the terminal and the first access device can be determined according to the measurement information or directly obtained by the second access device.
  • P1-P2 L1-L2
  • P1 and P2 are respectively received power information when the first access device receives the wireless signal and received power information when the second access device receives the wireless signal
  • L1 and L2 is the path loss between the terminal and the first access device and the path loss between the terminal and the second access device, respectively.
  • the path loss between the terminal and the first access device is determined to be served by the first access device for the terminal; or the transmitter of the first access device is turned on according to the path loss between the terminal and the first access device.
  • the embodiment may further include: according to the interference power information, the method further includes: acquiring, by the network device, the interference power information;
  • the processing may specifically include:
  • the network device determines, according to the first information, the received power information, and the interference power information, that the first access device serves the terminal.
  • the network device receives the wireless signal sent by the terminal according to the first information, and the first access device The received power information and the interference signal power information received by the first access device and the terminal transmit power information when the terminal is served by the first access device determine a signal quality, and the terminal is determined according to the signal quality. Whether it can be served by the first access device; or
  • interference power information is interference power information received by the terminal
  • the first access device transmits the power information to determine the signal quality, and determines whether the terminal can be served by the first access device according to the signal quality;
  • the processing based on the uplink detection may be completed according to the first information of the terminal that is not the transmit power information, and the basis for the subsequent wake-up or uplink cell selection may be provided.
  • FIG. 12 is a schematic structural diagram of a network device according to an embodiment of the present invention.
  • the device 120 includes a first obtaining module 121, a second obtaining module 122, and a processing module 123.
  • the first acquiring module 121 is configured to acquire first information, where the first The information is the transmit power information when the terminal sends the wireless signal, or the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, and the second access device to the The path loss information of the terminal; or the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, and the terminal pair
  • the second access module 122 is configured to acquire the received power information of the wireless signal that is sent by the terminal by the first access device, and the processing module 123 is configured to use, according to the first a message, and the first access device receives the received power information of the wireless signal sent by the terminal, and performs processing;
  • processing module is specifically configured to:
  • the device further includes:
  • a third acquiring module configured to acquire interference power information, where the interference power information is interference power information received by the first access device or interference power information received by the terminal reported by the terminal;
  • the processing module is specifically configured to: determine, according to the first information, that the first access device receives the received power information of the wireless signal and the interference power information sent by the terminal, Whether the terminal can be served by the first access device.
  • processing module is specifically configured to:
  • processing module is specifically configured to:
  • the network device receives the wireless signal sent by the terminal according to the first information, and the first access device The received power information and the interference signal power information received by the first access device and the terminal transmit power information when the terminal is served by the first access device determine a signal quality, and the terminal is determined according to the signal quality. Whether it can be served by the first access device; or
  • interference power information is interference power information received by the terminal
  • the first access device transmits the power information to determine the signal quality, and determines whether the terminal can be served by the first access device according to the signal quality;
  • the network device Determining, by the network device, the path loss between the terminal and the first access device according to the first information, and the first access device receiving the received power information of the wireless signal sent by the terminal And the network device is configured according to the first information, and the first access device Receiving, by the receiving terminal, the received power information of the wireless signal and the interference signal power information received by the terminal, and the first access device transmitting power information when the terminal is served by the first access device, determining a signal quality And determining, according to the path loss between the terminal and the first access device, and the signal quality, whether the terminal can be served by the first access device.
  • processing module is specifically configured to:
  • the transmitter of the first access device is turned on according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal;
  • the first information is transmit power information when the terminal sends a wireless signal
  • the first acquiring module is specifically configured to:
  • the network device When the network device is the second access device, receiving, by the terminal, transmit power information when the terminal sends a wireless signal; or receiving measurement information reported by the terminal, and according to the second Transmit power information of the access device, the second access device receiving the received power information of the wireless signal sent by the terminal, and the measurement information, determining transmit power information when the terminal sends a wireless signal; or determining Transmit power information when the terminal sends a wireless signal, and the transmit power information when the terminal sends the wireless signal is configured by the second access device to the terminal or the second access device and the terminal are pre- Agreed; or,
  • the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the first information includes: the second access device receives the received power information of the wireless signal sent by the terminal, and the path loss information of the second access device to the terminal; or
  • the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, and the measurement information of the second access device by the terminal
  • the first acquiring module is specifically configured to:
  • the network device When the network device is the second access device, acquiring, by the second access device, the received power information of the wireless signal sent by the terminal, acquiring the measurement information reported by the terminal, and acquiring the second And obtaining, by the second access device, the received power information of the wireless signal sent by the terminal, and acquiring path loss information of the second access device to the terminal; And when the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the first information is the transmit power information when the terminal sends the wireless signal, and the transmit power information when the terminal sends the wireless signal has a corresponding relationship with the wireless signal, where the first acquiring module is specifically configured to:
  • the network device When the network device is the first access device or the second access device, determining, according to the received wireless signal, transmit power information when the terminal sends a wireless signal; or
  • the network device And receiving, when the network device is the network entity, the transmit power information when the terminal determined by the first access device or the second access device sends a wireless signal; or receiving the first connection And the information about the wireless signal sent by the device or the second access device, determining, according to the correspondence relationship and the information of the wireless signal, a transmit power signal when the terminal sends a wireless signal
  • the second acquiring module is specifically configured to:
  • the network device is the first access device, receiving the wireless signal or receiving the pre-agreed wireless signal according to the feature information of the terminal, and acquiring, by the first access device, the received power information of the wireless signal sent by the terminal;
  • the third acquiring module is specifically configured to:
  • the processing module is specifically configured to:
  • Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the first access device, and the terminal is configured by the first a terminal transmitting power information when the access device is in service, determining whether the terminal can be The first access device service.
  • the third acquiring module is specifically configured to:
  • the processing module is specifically configured to:
  • the first access device Receiving, according to the first information, the first access device, the received power information of the wireless signal sent by the terminal, and the interference power information received by the terminal, and the terminal is used by the first access device
  • the first access device at the time of service transmits power information, and determines whether the terminal can be served by the first access device.
  • the wireless signal is sent by the terminal according to the feature information
  • the feature information includes at least one of the following items:
  • the configuration message that the second access device sends the wireless signal configured by the terminal includes at least one of the following items:
  • Time domain resource information frequency domain resource information, code domain resource information, spatial domain resource information.
  • the first information may be obtained, and then, according to the first information and the received power information when the first access device receives the wireless signal, the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • FIG. 13 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • the terminal 130 includes a first sending module 131 or a second sending module 132.
  • the first sending module 131 is configured to send a wireless signal and report the second information to the second access device.
  • the wireless signal causes the first access device to acquire the received power information of the wireless signal that is sent by the terminal, and the second information is the transmit power when the terminal sends the wireless signal Information, or the second information is the end And measuring information about the second access device, when the second information is the transmit power information when the terminal sends the wireless signal, according to the transmitting when the terminal sends the wireless signal
  • the power information and the first access device receive the received power information of the wireless signal sent by the terminal, or when the second information is the measurement information of the second access device by the terminal Receiving, according to the second access device, the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, and the measurement information of the second access device by the terminal
  • the first access device receives the received power information of the wireless signal sent by the terminal for processing;
  • the second sending module 132 is configured to send a wireless signal, where the wireless signal enables the first access device to obtain the first connection.
  • the ingress device receives the received power information of the wireless signal sent by the terminal, and the second access device acquires, by the second access device, the terminal that is sent by the terminal.
  • Receiving power information of the wireless signal so that the network device receives the received power information of the wireless signal sent by the terminal according to the first access device, and the second access device receives the wireless signal sent by the terminal.
  • the received power information and the path loss information of the second access device to the terminal are processed; the network device is the first access device, the second access device or a network entity, and the network entity is a network device different from the first access device and the second access device, where the second access device is an access device currently serving the terminal.
  • the device further includes:
  • a third sending module configured to report, to the second access device, the interference power information received by the terminal, so that the network device sends the power information when the second information is the terminal sending the wireless signal Transmit power information when the terminal sends the wireless signal, the first access device receives the received power information of the wireless signal sent by the terminal, the interference power information received by the terminal, and the terminal
  • the first access device that is served by the first access device transmits power information, determines whether the terminal can be served by the first access device, or causes the network device to be in the second information
  • the interference power information received by the terminal and the first access device transmit power information when the terminal is served by the first access device, determining whether the terminal can be served by the first access device
  • the first sending module is specifically configured to:
  • the first sending module is specifically configured to:
  • the first information may be obtained, and then, according to the first information and the received power information when the first access device receives the wireless signal, the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • FIG. 14 is a schematic structural diagram of another embodiment of a network device according to the present invention.
  • the device 140 includes a transceiver 141 and a processor 142.
  • the transceiver 141 is configured to acquire first information, where the first information is a transmission when the terminal sends a wireless signal.
  • the power information, or the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, and the path loss information of the second access device to the terminal; or
  • the first information includes the second access device receiving the received power information of the wireless signal sent by the terminal, the transmit power information of the second access device, and the measurement by the terminal to the second access device.
  • the processor 142 is configured to receive, according to the first information, the first access device, Receiving, by the terminal, the received power information of the wireless signal, where the network device is the first access device, the second access device or a network entity, the network entity is a network device different from the first access device and the second access device, and the second access device is an access device currently serving the terminal.
  • the processor is configured to determine, according to the first information, that the first access device receives the received power information of the wireless signal that is sent by the terminal, whether the terminal is configured by the first Access device service.
  • the transceiver is further configured to acquire interference power information, where the interference power information is interference power information received by the first access device or interference power information received by the terminal reported by the terminal; And determining, according to the first information, that the first access device receives the received power information of the wireless signal sent by the terminal, and the interference power information, whether the terminal is connected by the first connection Into the device service.
  • the interference power information is interference power information received by the first access device or interference power information received by the terminal reported by the terminal.
  • the processor is configured to determine, according to the first information, that the first access device receives the received power information of the wireless signal sent by the terminal, the terminal and the first access device.
  • the path loss between the terminals determines whether the terminal can be served by the first access device according to a path loss between the terminal and the first access device.
  • the processor is specifically configured to: when the interference power information is the interference power information received by the first access device, the network device receives, according to the first information, the first access device And determining, by the terminal, the received power information of the wireless signal, the interference signal power information received by the first access device, and the terminal transmit power information when the terminal is served by the first access device, Determining, according to the signal quality, whether the terminal can be served by the first access device; or, the network device receiving, according to the first information, the first access device, the The received power information of the wireless signal determines a path loss between the terminal and the first access device; and the network device receives the terminal according to the first information and the first access device Received power information of the wireless signal and interference signal power information received by the first access device, and when the terminal is served by the first access device Determining, by the terminal, the power information, the signal quality, determining, according to the path loss between the terminal and the first access device, the signal quality, whether the terminal can be served by the first access device; or When the interference
  • the processor is configured to: according to the first information, and the first access device receives the received power information of the wireless signal sent by the terminal, and send the transmitter of the first access device Or, according to the first information, and the first access device receiving the received power information of the wireless signal sent by the terminal, determining a path between the terminal and the first access device damage.
  • the transceiver is specifically configured to: when the network device is the second access device, receive the transmit power information when the terminal sends the wireless signal sent by the terminal; or receive the reported by the terminal Measuring information, and determining, according to the transmit power information of the second access device, the second access device receiving the received power information of the wireless signal sent by the terminal, and the measurement information, determining that the terminal sends a wireless signal Transmit power information; or, determining transmit power information when the terminal sends a wireless signal, and transmitting power information when the terminal sends a wireless signal is configured by the second access device to the terminal or the The second access device is pre-agreed with the terminal; or, when the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the transceiver is specifically configured to: when the network device is the second access device, obtain, by the second access device, the received power information of the wireless signal sent by the terminal, where Obtaining the measurement information reported by the terminal, acquiring the transmit power information of the second access device; or acquiring, by the second access device, the received power information of the wireless signal sent by the terminal, acquiring the second access The path loss information sent by the device to the terminal; when the network device is the first access device or the network entity, receiving the first information sent by the second access device.
  • the processor is specifically configured to: when the network device is the first access device or the second access device, determine, according to the received wireless signal, when the terminal sends a wireless signal Or transmitting power information; or, when the network device is the network entity, determining transmit power information when the terminal sends a wireless signal; or receiving the first access device or the second access device And transmitting the information about the wireless signal, and determining, according to the correspondence relationship and the information of the wireless signal, transmit power information when the terminal sends a wireless signal.
  • the transceiver is specifically configured to: when the network device is the first access device, receive a wireless signal according to the feature information of the terminal, or receive a pre-agreed wireless signal, and obtain, by the first access device, the receiving terminal, Receiving power information of the wireless signal; or, when the network device is the second access device or the network entity, receiving, by the first access device, the first access device Received power information of the wireless signal.
  • the transceiver is specifically configured to acquire the first when the network device is the first access device.
  • the interference power information received by the access device; or, when the network device is the second access device or the network entity, receiving, by the first access device, the first access device receives Interference power information.
  • the processor is configured to receive, according to the first information, the first access device, the terminal, Determining whether the terminal can be used by the received power information of the wireless signal and the interference power information received by the first access device, and the terminal transmitting power information when the terminal is served by the first access device The first access device service.
  • the transceiver is specifically configured to: when the network device is the second access device, receive the terminal sent by the terminal Receiving the interference power information; or, when the network device is the first access device or the network entity, receiving the interference power signal received by the terminal sent by the second receiving device
  • the processor is configured to receive, according to the first information, the first access device, the wireless signal sent by the terminal.
  • the received power information and the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access device, determining whether the terminal can be connected by the first connection Into the device service.
  • the wireless signal is sent by the terminal according to the feature information, and the feature information is And including at least one of the following: a cell identifier; a terminal identifier; a configuration message that is sent by the second access device to the terminal to send a wireless signal.
  • the configuration message that the second access device sends the radio signal configured by the terminal includes at least one of the following items: time domain resource information, frequency domain resource information, code domain resource information, and spatial domain resource. information.
  • the first information may be obtained, and then, according to the first information and the received power information when the first access device receives the wireless signal, the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • FIG. 15 is a schematic structural diagram of a terminal according to an embodiment of the present invention.
  • the terminal 150 includes a processor 151 and a transceiver 152.
  • the processor 151 is configured to generate a wireless signal, or generate a wireless signal and second information.
  • the transceiver 152 is configured to use a wireless signal. And reporting the second information to the second access device, where the wireless signal causes the first access device to obtain, by the first access device, the received power information of the wireless signal sent by the terminal, where the second information is The transmitting power information when the terminal sends the wireless signal, or the second information is the measurement information of the terminal to the second access device, so that the network device sends the second information to the terminal.
  • the wireless signal is transmitting power information, processing according to the transmitting power information when the terminal sends the wireless signal, and the receiving power information of the wireless signal sent by the first access device by the terminal, Or when the second information is the measurement information of the second access device by the terminal, receiving the end according to the second access device
  • the received power information of the wireless signal, the transmit power information of the second access device, and the measurement information of the second access device by the terminal, and the first access device receiving the terminal The receiving power information of the wireless signal is processed; or the transceiver 152 is configured to send a wireless signal, where the wireless signal causes the first access device to acquire, by the first access device, the wireless signal that is sent by the terminal.
  • the second access device acquiring, by the second access device, the received power information of the wireless signal sent by the terminal, so that the network device receives, according to the first access device, the wireless Receiving power information of the signal, the second access device receiving the received power information of the wireless signal sent by the terminal, and the path loss information of the second access device to the terminal;
  • the network entity is the first access device and the second access The device is different from the network device, and the second access device is currently the end device. Access device for the end service.
  • the transceiver 152 is further configured to report the interference power information received by the terminal to the second access device, where the network device is configured to send the wireless signal to the terminal. Transmit power information according to the transmission power information when the terminal transmits the wireless signal, the first access device receives the received power information of the wireless signal sent by the terminal, the interference power information received by the terminal, and The first access device, when the terminal is served by the first access device, transmits power information, determines whether the terminal can be served by the first access device, or causes the network device to be in the When the second information is the measurement information of the second access device by the terminal, the second access device receives the received power information of the wireless signal sent by the terminal, and the second access device Transmit power information, measurement information of the terminal to the second access device, and receiving, by the first access device, a received power of the radio signal sent by the terminal Information, the interference power information received by the terminal, and the first access device transmit power information when the terminal is served by the first access device, determining whether the terminal can be served by the first
  • the transceiver 152 is specifically configured to: send, by using the configured transmit power information, the wireless signal according to the transmit power information configured by the second access device; or, according to the corresponding relationship between the wireless signal and the transmit power information, Transmitting, by the second access device, the transmit power information that is pre-agreed by the second access device and the terminal, using the pre-agreed transmit power information, to send the wireless signal.
  • the transceiver 152 is configured to send the wireless signal by using the configured feature information according to the feature information configured by the second access device, or pre-arrange according to the second access device and the terminal.
  • the wireless signal sends a pre-agreed wireless signal.
  • the first information may be obtained, and then, according to the first information and the received power information when the first access device receives the wireless signal, the processing based on the uplink detection may be implemented, and the terminal may be determined according to the processing result.
  • the above transceiver may be an independent transmitter and receiver, respectively performing a transmitting function and a receiving function, or may be a device that is combined to specifically transmit a function and a receiving function.
  • the cable can be implemented by using a network cable, an optical fiber, or an antenna.
  • the antenna can be a linear antenna, a loop antenna, an array antenna, or the like.
  • the above processor may be a general purpose processor, a digital signal processor (DSP), an application specific integrated circuit (ASIC), an off-the-shelf programmable gate array (FPGA) or other programmable logic device, a discrete gate or transistor logic device, or a discrete hardware component.
  • DSP digital signal processor
  • ASIC application specific integrated circuit
  • FPGA off-the-shelf programmable gate array
  • a general purpose processor can be a microprocessor or any conventional processor.
  • the device may also include a memory, and the memory may be a random storage memory, a flash memory, a read only memory, a programmable read only memory or an electrically erasable programmable memory, a register, and the like.
  • a bus system may be included, and the bus system includes, for example, a data bus, a power bus, a control bus, or a status signal bus.
  • the disclosed systems, devices, and methods may be implemented in other ways.
  • the device embodiments described above are merely illustrative.
  • the division of the modules or units is only a logical function division.
  • there may be another division manner for example, multiple units or components may be used. Combined or can be integrated into another system, or some features can be ignored, or not executed.
  • the coupling or direct coupling or communication connection between the various components shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be electrical, mechanical or otherwise.
  • 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 objectives of the solution of the embodiment.
  • each functional unit in each embodiment of the present application 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 above integrated unit can be implemented in the form of hardware or a software function list. The realization of the form of the yuan.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the instructions include a plurality of instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to perform all or part of the steps of the methods described in various embodiments of the present application.
  • the foregoing storage medium includes: a U disk, a removable hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and the like, which can store program code. .

Abstract

本发明提供一种基于上行检测的处理方法、网络设备和终端。该方法包括获取第一信息;获取第一接入设备接收终端发送的无线信号的接收功率信息;根据所述第一信息,以及所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息,进行处理。本发明实施例可以完成基于上行的检测。

Description

基于上行检测的处理方法、 网絡设备和终端
技术领域
本发明涉及无线通信技术, 尤其涉及一种基于上行检测的处理方法、 网 络设备和终端。 背景技术
异构网络( Heterogeneous Network, HetNet )中包括不同的无线网络, 例 如宏小区 (Macro cell )、 微微蜂窝小区 (Pico cell )、 毫微微蜂窝小区 ( Femto cell )等, 不同基站的发射功率、 覆盖范围各不相同。 其中, 大功率基站(如 宏基站)的发射功率及覆盖范围相对较大, 小功率基站(如 Femto基站、 Pico 基站)的发射功率及覆盖范围相对较小。 典型的 HetNet场景为单个大功率基 站覆盖范围内存在多个小功率基站提供热点覆盖。
在自组织网络( Self-Organizing Network, SON )的一类节能用例( Energy Saving, ES ) 中, 用于热点覆盖的小功率基站在没有高速数据业务时 (如夜 间) 关闭以进行节能, 由宏基站提供基本覆盖和基础业务的支撑。 随着宏小 区内负载的升高, 网络侧需要唤醒合适的小功率基站, 为其覆盖范围内的用 户设备 ( User Equipment, UE )提供服务以减轻宏小区内的负载。 或者, 在 上下行分离的小区选择方案中, UE的上下行需要根据最优信道条件接入, 例 如, UE的下行接入宏基站, 上行接入小功率基站。 在上述场景下, 都需要小 功率基站识别原本由宏基站服务的 UE (这些 UE可以称为 MUE )是否在其 覆盖范围内。
现有技术中, 小功率基站可以通过主动监听 MUE 的上行传输来识别 MUE及其干扰情况, 但是仅根据干扰情况并不能准确确定 MUE是否在小功 率基站的覆盖范围内, 例如, 非覆盖范围内的 MUE可能由于发射功率较大 使得小功率基站在接收时的接收功率也较大, 如果按照干扰情况可能误将其 确定为在覆盖范围内。 发明内容 有鉴于此, 本发明实施例提供了一种基于上行检测的处理方法、 网络设 备和终端, 用以完成基于上行检测的处理, 进而可以为小功率基站识别其覆 盖范围内的 MUE提供依据。
第一方面, 提供了一种基于上行检测的处理方法, 包括:
网络设备获取第一信息, 所述第一信息为终端发送无线信号时的发射功 率信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无 线信号的接收功率信息和所述第二接入设备到所述终端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信号的接收功 率信息、 所述第二接入设备的发射功率信息和所述终端对所述第二接入设备 的测量信息。
所述网络设备获取所述第一接入设备接收所述终端发送的所述无线信号 的接收功率信息;
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
结合第一方面, 在第一方面的第一种可能的实现方式中, 所述网络设备 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息, 进行处理, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 确定所述终端能否由所述第一接入设 备服务。
结合第一方面, 在第一方面的第二种可能的实现方式中, 还包括: 所述网络设备获取干扰功率信息, 所述干扰功率信息为所述第一接入设 备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰功率信息; 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 进行处理, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所述终端能 否由所述第一接入设备服务。
结合第一方面的第一种可能的实现方式, 在第一方面的第三种可能的实 现方式中, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息, 确定所述终端能否由所述第一 接入设备服务, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损, 根据所述终端与所述第一接入设备之间的路损确定所述终端能否由 所述第一接入设备服务。
结合第一方面的第二种可能的实现方式, 在第一方面的第四种可能的实 现方式中, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所述 终端能否由所述第一接入设备服务, 包括:
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端能否由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端能否由所述第一接入设备服务。
结合第一方面, 在第一方面的第五种可能的实现方式中, 所述网络设备 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息, 进行处理, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 确定所述终端与所述第一接入设备之 间的路损。
结合第一方面或第一方面的第一种至第五种任一种可能的实现方式, 在 第一方面的第六种可能的实现方式中, 所述第一信息为终端发送无线信号时 的发射功率信息, 所述获取第一信息, 包括:
当所述网络设备为所述第二接入设备时, 所述第二接入设备接收所述终 端发送的所述终端发送无线信号时的发射功率信息; 或者, 所述第二接入设 备接收所述终端上报的测量信息 ,并根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息和所述 测量信息确定所述终端发送无线信号时的发射功率信息; 或者, 所述第二接 入设备确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信 号时的发射功率信息是所述第二接入设备配置给所述终端的或者所述第二接 入设备与所述终端预先约定的; 或者, 当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接入设备发送的所述第一信息。
结合第一方面或第一方面的第一种至第五种任一种可能的实现方式, 在 第一方面的第七种可能的实现方式中, 所述第一信息包括第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终 端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的 所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息和所述终 端对所述第二接入设备的测量信息。 , 所述获取第一信息, 包括:
当所述网络设备为所述第二接入设备时, 所述第二接入设备获取所述第 二接入设备接收所述终端发送的所述无线信号的接收功率信息, 所述第二接 入设备获取所述终端上报的测量信息, 所述第二接入设备获取第二接入设备 的发射功率信息; 或者,
所述第二接入设备获取所述第二接入设备接收所述终端发送的所述无线 信号的接收功率信息, 所述第二接入设备获取所述第二接入设备到所述终端 的路损信息;
当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接入设备发送的所述第一信息。
结合第一方面或第一方面的第一种至第五种任一种可能的实现方式, 在 第一方面的第八种可能的实现方式中, 所述第一信息为终端发送无线信号时 的发射功率信息, 所述终端发送无线信号时的发射功率信息与所述无线信号 存在对应关系, 所述获取第一信息, 包括:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 所述第一 接入设备或所述第二接入设备根据接收的所述无线信号确定所述终端发送无 线信号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 所述网络实体接收所述第一接入设 备或所述第二接入设备确定的所述终端发送无线信号时的发射功率信息; 或 者, 所述网络实体接收所述第一接入设备或所述第二接入设备发送的所述无 线信号的信息, 根据所述对应关系和所述无线信号的信息确定所述终端发送 无线信号时的发射功率信息。
结合第一方面或第一方面的第一种至第五种任一种可能的实现方式, 在 第一方面的第九种可能的实现方式中, 所述网络设备获取第一接入设备接收 终端发送的无线信号的接收功率信息, 包括:
当所述网络设备为第一接入设备时, 所述第一接入设备根据所述终端的 特征信息接收无线信号或者接收预先约定的无线信号, 获取第一接入设备接 收终端发送的无线信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 所述第二接入 设备或所述网络实体接收所述第一接入设备发送的所述第一接入设备接收终 端发送的无线信号的接收功率信息。
结合第一方面的第二种可能的实现方式, 在第一方面的第十种可能的实 现方式中, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备获取第一接入设备接收的干扰功率信息, 包括:
当所述网络设备为所述第一接入设备时, 所述第一接入设备获取所述第 一接入设备接收的干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 所述第二接入 设备或所述网络实体接收所述第一接入设备发送的所述第一接入设备接收的 干扰功率信息。
结合第一方面的第二种可能的实现方式, 在第一方面的第十一种可能的 实现方式中, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所述终端能 否由所述第一接入设备服务, 包括:
所述网络设备根据所述第一信息、 所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端被所述第一接入设备服务时的终端发射功率信息, 确定所述终 端能否由所述第一接入设备服务。
结合第一方面的第二种可能的实现方式, 在第一方面的第十二种可能的 实现方式中, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 网络设备获取干扰功率信息, 包括:
当所述网络设备为所述第二接入设备时, 所述第二接入设备接收所述终 端发送的所述终端接收的干扰功率信息; 或者, 当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接收设备发送的所述终端接收的干扰功率 信息。
结合第一方面的第二种可能的实现方式, 在第一方面的第十三种可能的 实现方式中, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所 述无线信号的接收功率信息和所述干扰功率信息, 确定所述终端能否由所述 第一接入设备服务, 包括:
所述网络设备根据所述第一信息、 所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述终端接收的干扰功率信息, 以及所述 终端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定所述终 端能否由所述第一接入设备服务。
结合第一方面或第一方面的第一种至第五种任一种可能的实现方式, 在 第一方面的第十四种可能的实现方式中, 所述无线信号是所述终端根据特征 信息发送的, 所述特征信息包括如下项中的至少一项:
小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
结合第一方面的第十四种可能的实现方式, 在第一方面的第十五种可能 的实现方式中, 所述第二接入设备给所述终端配置的发送无线信号的配置消 息包括如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
第二方面, 提供了一种基于上行检测的处理方法, 包括:
终端发送无线信号以及向第二接入设备上报第二信息, 所述无线信号使 得第一接入设备获取第一接入设备接收所述终端发送的所述无线信号的接收 功率信息, 所述第二信息为所述终端发送所述无线信号时的发射功率信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量信息, 使得网络 设备在所述第二信息为所述终端发送所述无线信号时的发射功率信息时, 根 据所述终端发送所述无线信号时的发射功率信息和所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息进行处理, 或者在所述第二信息 为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设备接收 所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的发射功 率信息和所述终端对所述第二接入设备的测量信息以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息进行处理;
或者,
终端发送无线信号, 所述无线信号使得第一接入设备获取第一接入设备 接收所述终端发送的所述无线信号的接收功率信息以及第二接入设备获取第 二接入设备接收所述终端发送的所述无线信号的接收功率信息, 使得网络设 备根据所述第一接入设备接收所述终端发送的所述无线信号的接收功率信 息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息和 所述第二接入设备到所述终端的路损信息进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
结合第二方面, 在第二方面的第一种可能的实现方式中, 还包括: 所述终端向所述第二接入设备上报所述终端接收的干扰功率信息, 使得 所述网络设备在所述第二信息为所述终端发送所述无线信号时的发射功率信 息时根据所述终端发送所述无线信号时的发射功率信息、 所述第一接入设备 接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功 率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所述网络设备 在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第 二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接 入设备的发射功率信息、 所述终端对所述第二接入设备的测量信息、 所述第 一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接 收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备 发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所 述网络设备根据所述第一接入设备接收所述终端发送的所述无线信号的接收 功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率 信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收的干扰功率 信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端能否由所述第一接入设备服务。
结合第二方面或第二方面的第一种可能的实现方式, 在第二方面的第二 种可能的实现方式中, 所述终端发送无线信号, 包括:
所述终端根据所述第二接入设备配置的发射功率信息, 采用配置的发射 功率信息发送所述无线信号; 或者,
所述终端根据无线信号与发射功率信息的对应关系, 采用与所述无线信 号对应的发射功率信息发送所述无线信号; 或者,
所述终端根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先约定的发射功率信息发送所述无线信号。
结合第二方面或第二方面的第一种可能的实现方式, 在第二方面的第三 种可能的实现方式中, 所述终端发送无线信号, 包括:
所述终端根据所述第二接入设备配置的特征信息, 采用配置的特征信息 发送所述无线信号; 或者,
所述终端根据所述第二接入设备与所述终端预先约定的无线信号, 发送 预先约定的无线信号。
第三方面, 提供了一种网络设备, 包括:
第一获取模块, 用于获取第一信息, 所述第一信息为终端发送无线信号 时的发射功率信息; 或者, 所述第一信息包括第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信 息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信 号的接收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第 二接入设备的测量信息。
第二获取模块, 用于获取所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息;
处理模块, 用于根据所述第一信息, 以及所述第一接入设备接收所述终 端发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。 结合第三方面, 在第三方面的第一种可能的实现方式中, 所述处理模块 具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端能否由所述第一接入设备服务。
结合第三方面, 在第三方面的第二种可能的实现方式中, 还包括: 第三获取模块, 用于获取干扰功率信息, 所述干扰功率信息为所述第一 接入设备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰功率 信息;
所述处理模块具体用于: 根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定 所述终端能否由所述第一接入设备服务。
结合第三方面的第一种可能的实现方式, 在第三方面的第三种可能的实 现方式中, 所述处理模块具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损, 根据 所述终端与所述第一接入设备之间的路损确定所述终端能否由所述第一接 入设备服务。
结合第三方面的第二种可能的实现方式, 在第三方面的第四种可能的实 现方式中, 所述处理模块具体用于:
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能够由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端能否由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端能否由所述第一接入设备服务。
结合第三方面, 在第三方面的第五种可能的实现方式中, 所述处理模块 具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端与所述第一接入设备之间的路损。
结合第三方面或第三方面的第一种至第五种任一种可能的实现方式, 在 第三方面的第六种可能的实现方式中, 所述第一信息为终端发送无线信号时 的发射功率信息, 所述第一获取模块具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 发送无线信号时的发射功率信息; 或者, 接收所述终端上报的测量信息, 并 根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述测量信息确定所述终端发送无线信 号时的发射功率信息; 或者, 确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射功率信息是所述第二接入设备配置给所述终 端的或者所述第二接入设备与所述终端预先约定的; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
结合第三方面或第三方面的第一种至第五种任一种可能的实现方式, 在 第三方面的第七种可能的实现方式中, 所述第一信息包括第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终 端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的 所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息和所述终 端对所述第二接入设备的测量信息。 , 所述第一获取模块具体用于:
当所述网络设备为所述第二接入设备时, 获取所述第二接入设备接收所 述终端发送的所述无线信号的接收功率信息,获取所述终端上报的测量信息, 获取第二接入设备的发射功率信息; 或者, 获取所述第二接入设备接收所述 终端发送的所述无线信号的接收功率信息, 获取所述第二接入设备到所述终 端的路损信息;
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
结合第三方面或第三方面的第一种至第五种任一种可能的实现方式, 在 第三方面的第八种可能的实现方式中, 所述第一信息为终端发送无线信号时 的发射功率信息, 所述终端发送无线信号时的发射功率信息与所述无线信号 存在对应关系, 所述第一获取模块具体用于:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 根据接收 的所述无线信号确定所述终端发送无线信号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 接收所述第一接入设备或所述第二 接入设备确定的所述终端发送无线信号时的发射功率信息; 或者, 接收所述 第一接入设备或所述第二接入设备发送的所述无线信号的信息, 根据所述对 应关系和所述无线信号的信息确定所述终端发送无线信号时的发射功率信 结合第三方面或第三方面的第一种至第五种任一种可能的实现方式, 在 第三方面的第九种可能的实现方式中, 所述第二获取模块具体用于: 当所述网络设备为第一接入设备时, 根据所述终端的特征信息接收无线 信号或者接收预先约定的无线信号, 获取第一接入设备接收终端发送的无线 信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收终端发送的无线信号的接收功率信 自
结合第三方面的第二种可能的实现方式, 在第三方面的第十种可能的实 现方式中, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述第三获取模块具体用于:
当所述网络设备为所述第一接入设备时, 获取所述第一接入设备接收的 干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收的干扰功率信息。
结合第三方面的第二种可能的实现方式, 在第三方面的第十一种可能的 实现方式中, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 所述处理模块具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端 被所述第一接入设备服务时的终端发射功率信息, 确定所述终端能否由所述 第一接入设备服务。
结合第三方面的第二种可能的实现方式, 在第三方面的第十二种可能的 实现方式中, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 第三获取模块具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 接收的干扰功率信息; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接收设备发送的所述终端接收的干扰功率信息。
结合第三方面的第二种可能的实现方式, 在第三方面的第十三种可能的 实现方式中, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 处理模块具体用于: 根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述终端接收的干扰功率信息, 以及所述终端被所述第 一接入设备服务时的第一接入设备发射功率信息, 确定所述终端能否由所述 第一接入设备服务。
结合第三方面或第三方面的第一种至第五种任一种可能的实现方式, 在 第三方面的第十四种可能的实现方式中, 所述无线信号是所述终端根据特征 信息发送的, 所述特征信息包括如下项中的至少一项:
小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
结合第三方面的第十四种可能的实现方式, 在第三方面的第十五种可能 的实现方式中, 所述第二接入设备给所述终端配置的发送无线信号的配置消 息包括如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
第四方面, 提供了一种终端, 包括:
第一发送模块, 用于发送无线信号以及向第二接入设备上报第二信息, 所述无线信号使得第一接入设备获取第一接入设备接收所述终端发送的所述 无线信号的接收功率信息, 所述第二信息为所述终端发送所述无线信号时的 发射功率信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量 信息, 使得网络设备在所述第二信息为所述终端发送所述无线信号时的发射 功率信息时, 根据所述终端发送所述无线信号时的发射功率信息和所述第一 接入设备接收所述终端发送的所述无线信号的接收功率信息进行处理, 或者 在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第 二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接 入设备的发射功率信息和所述终端对所述第二接入设备的测量信息以及所述 第一接入设备接收所述终端发送的所述无线信号的接收功率信息进行处理; 或者,
第二发送模块, 用于发送无线信号, 所述无线信号使得第一接入设备获 取第一接入设备接收所述终端发送的所述无线信号的接收功率信息以及第二 接入设备获取第二接入设备接收所述终端发送的所述无线信号的接收功率信 息, 使得网络设备根据所述第一接入设备接收所述终端发送的所述无线信号 的接收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接 收功率信息和所述第二接入设备到所述终端的路损信息进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
结合第四方面, 在第四方面的第一种可能的实现方式中, 还包括: 第三发送模块, 用于向所述第二接入设备上报所述终端接收的干扰功率 信息, 使得所述网络设备在所述第二信息为所述终端发送所述无线信号时的 发射功率信息时根据所述终端发送所述无线信号时的发射功率信息、 所述第 一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接 收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备 发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所 述网络设备在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息、 所述终端对所述第二接入设备的测量信 息、 所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功率信息以及所述终端被所述第一接入设备服务时的第 一接入设备发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或 者, 使得所述网络设备根据所述第一接入设备接收所述终端发送的所述无线 信号的接收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号 的接收功率信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收 的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发 射功率信息, 确定所述终端能否由所述第一接入设备服务。
结合第四方面或第四方面的第一种可能的实现方式, 在第四方面的第二 种可能的实现方式中, 所述第一发送模块具体用于:
根据所述第二接入设备配置的发射功率信息, 采用配置的发射功率信息 发送所述无线信号; 或者,
根据无线信号与发射功率信息的对应关系, 采用与所述无线信号对应的 发射功率信息发送所述无线信号; 或者, 根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先 约定的发射功率信息发送所述无线信号。
结合第四方面或第四方面的第一种可能的实现方式, 在第四方面的第三 种可能的实现方式中, 所述第一发送模块具体用于:
根据所述第二接入设备配置的特征信息, 采用配置的特征信息发送所述 无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的无线信号, 发送预先约定 的无线信号。
第五方面, 提供了一种网络设备, 包括:
收发器, 用于获取第一信息, 所述第一信息为终端发送无线信号时的发 射功率信息, 或者, 所述第一信息包括第二接入设备接收所述终端发送的所 述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信息; 或 者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信号的接 收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第二接入 设备的测量信息; 以及, 获取所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息;
处理器, 用于根据所述第一信息, 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
结合第五方面, 在第五方面的第一种可能的实现方式中, 所述处理器具 体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端能否由所述第一接入设备服务。
结合第五方面, 在第五方面的第二种可能的实现方式中, 所述收发器还 用于:
获取干扰功率信息, 所述干扰功率信息为所述第一接入设备接收的干扰 功率信息或者所述终端上报的所述终端接收的干扰功率信息;
所述处理器具体用于: 根据所述第一信息, 以及所述第一接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所 述终端能否由所述第一接入设备服务。
结合第五方面的第一种可能的实现方式, 在第五方面的第三种可能的实 现方式中, 所述处理器具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损, 根据 所述终端与所述第一接入设备之间的路损确定所述终端能否由所述第一接 入设备服务。
结合第五方面的第二种可能的实现方式, 在第五方面的第四种可能的实 现方式中, 所述处理器具体用于:
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息和所述第一接入设备接收的干扰信号功率信息以及所 述终端被所述第一接入设备服务时的终端发射功率信息确定信号质量, 根据 所述信号质量确定所述终端能否由所述第一接入设备服务; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端的发 送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功率 信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信号 质量; 根据所述终端与所述第一接入设备之间的路损和所述信号质量, 确定 所述终端能否由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息和所述终端接收的干扰信号功率信息以及所述终端被 所述第一接入设备服务时的第一接入设备发射功率信息确定信号质量, 根据 所述信号质量确定所述终端能否由所述第一接入设备服务; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以及所 述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信号质 量; 根据所述终端与所述第一接入设备之间的路损和所述信号质量, 确定所 述终端能否由所述第一接入设备服务。
结合第五方面, 在第五方面的第五种可能的实现方式中, 所述处理器具 体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端与所述第一接入设备之间的路损。
结合第五方面或第五方面的第一种至第五种任一种可能的实现方式, 在 第五方面的第六种可能的实现方式中, 所述第一信息为终端发送无线信号时 的发射功率信息, 所述收发器具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 发送无线信号时的发射功率信息; 或者, 接收所述终端上报的测量信息, 并 根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述测量信息确定所述终端发送无线信 号时的发射功率信息; 或者, 确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射功率信息是所述第二接入设备配置给所述终 端的或者所述第二接入设备与所述终端预先约定的; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
结合第五方面或第五方面的第一种至第五种任一种可能的实现方式, 在 第五方面的第七种可能的实现方式中, 所述第一信息包括第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终 端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的 所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息和所述终 端对所述第二接入设备的测量信息, 所述收发器具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述无线 信号的接收功率信息, 所述第二接入设备获取所述终端上报的测量信息, 所 述第二接入设备获取第二接入设备的发射功率信息; 或者, 获取所述第二接 入设备接收所述终端发送的所述无线信号的接收功率信息, 所述第二接入设 备获取所述第二接入设备到所述终端的路损信息;
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
结合第五方面或第五方面的第一种至第五种任一种可能的实现方式, 在 第五方面的第八种可能的实现方式中, 所述第一信息为终端发送无线信号时 的发射功率信息, 所述终端发送无线信号时的发射功率信息与所述无线信号 存在对应关系, 所述收发器具体用于:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 根据接收 的所述无线信号确定所述终端发送无线信号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 接收所述第一接入设备或所述第二 接入设备确定的所述终端发送无线信号时的发射功率信息; 或者, 接收所述 第一接入设备或所述第二接入设备发送的所述无线信号的信息, 根据所述对 应关系和所述无线信号的信息确定所述终端发送无线信号时的发射功率信 自
结合第五方面或第五方面的第一种至第五种任一种可能的实现方式, 在 第五方面的第九种可能的实现方式中, 所述收发器具体用于:
当所述网络设备为第一接入设备时, 根据所述终端的特征信息接收无线 信号或者接收预先约定的无线信号, 获取第一接入设备接收终端发送的无线 信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收终端发送的无线信号的接收功率信 自
结合第五方面的第二种可能的实现方式, 在第五方面的第十种可能的实 现方式中, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述收发器具体用于:
当所述网络设备为所述第一接入设备时, 获取所述第一接入设备接收的 干扰功率信息; 或者, 当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收的干扰功率信息。
结合第五方面的第二种可能的实现方式, 在第五方面的第十一种可能的 实现方式中, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 所述处理器具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端 被所述第一接入设备服务时的终端发射功率信息, 确定所述终端能否由所述 第一接入设备服务。
结合第五方面的第二种可能的实现方式, 在第五方面的第十二种可能的 实现方式中, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 收发器具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 接收的干扰功率信息; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接收设备发送的所述终端接收的干扰功率信息。
结合第五方面的第二种可能的实现方式, 在第五方面的第十三种可能的 实现方式中, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 处理器具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述终端接收的干扰功率信息, 以及所述终端被所述第 一接入设备服务时的第一接入设备发射功率信息, 确定所述终端能否由所述 第一接入设备服务。
结合第五方面或第五方面的第一种至第五种任一种可能的实现方式, 在 第五方面的第十四种可能的实现方式中, 所述无线信号是所述终端根据特征 信息发送的, 所述特征信息包括如下项中的至少一项:
小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
结合第五方面的第十四种可能的实现方式, 在第五方面的第十五种可能 的实现方式中, 所述第二接入设备给所述终端配置的发送无线信号的配置消 息包括如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
第六方面, 提供了一种终端, 包括:
收发器, 用于发送无线信号以及向第二接入设备上报第二信息, 所述无 线信号使得第一接入设备获取第一接入设备接收所述终端发送的所述无线信 号的接收功率信息, 所述第二信息为所述终端发送所述无线信号时的发射功 率信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量信息, 使得网络设备在所述第二信息为所述终端发送所述无线信号时的发射功率信 息时, 根据所述终端发送所述无线信号时的发射功率信息和所述第一接入设 备接收所述终端发送的所述无线信号的接收功率信息进行处理, 或者在所述 第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入 设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备 的发射功率信息和所述终端对所述第二接入设备的测量信息以及所述第一接 入设备接收所述终端发送的所述无线信号的接收功率信息进行处理; 或者, 所述收发器用于发送无线信号, 所述无线信号使得第一接入设备获取第 一接入设备接收所述终端发送的所述无线信号的接收功率信息以及第二接入 设备获取第二接入设备接收所述终端发送的所述无线信号的接收功率信息, 使得网络设备根据所述第一接入设备接收所述终端发送的所述无线信号的接 收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功 率信息和所述第二接入设备到所述终端的路损信息进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
结合第六方面, 在第六方面的第一种可能的实现方式中, 所述收发器还 用于:
向所述第二接入设备上报所述终端接收的干扰功率信息, 使得所述网络 设备在所述第二信息为所述终端发送所述无线信号时的发射功率信息时根据 所述终端发送所述无线信号时的发射功率信息、 所述第一接入设备接收所述 终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定 所述终端能否由所述第一接入设备服务, 或者, 使得所述网络设备在所述第 二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设 备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的 发射功率信息、 所述终端对所述第二接入设备的测量信息、 所述第一接入设 备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所述网络设 备根据所述第一接入设备接收所述终端发送的所述无线信号的接收功率信 息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收的干扰功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定 所述终端能否由所述第一接入设备服务。
结合第六方面或第六方面的第一种可能的实现方式, 在第六方面的第二 种可能的实现方式中, 所述收发器具体用于:
根据所述第二接入设备配置的发射功率信息, 采用配置的发射功率信息 发送所述无线信号; 或者,
根据无线信号与发射功率信息的对应关系, 采用与所述无线信号对应的 发射功率信息发送所述无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先 约定的发射功率信息发送所述无线信号。
结合第六方面或第六方面的第一种可能的实现方式, 在第六方面的第三 种可能的实现方式中, 所述收发器具体用于:
根据所述第二接入设备配置的特征信息, 采用配置的特征信息发送所述 无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的无线信号, 发送预先约定 的无线信号。
通过上述技术方案, 网络设备可以获取第一信息, 之后可以根据该第一 信息以及第一接入设备接收该无线信号时的接收功率信息, 可以实现基于上 行检测的处理, 进而可以根据处理结果确定终端是否在小功率基站的覆盖范 围内, 或者确定路损以及开启发射机等。 附图说明 为了更清楚地说明本发明实施例中的技术方案, 下面将对实施例描述中 所需要使用的附图作一简单地介绍, 显而易见地, 下面描述中的附图是本发 明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动性的 前提下, 还可以根据这些附图获得其他的附图。
图 1为本发明基于上行检测的方法一实施例的流程示意图;
图 2为本发明基于上行检测的方法另一实施例的流程示意图;
图 3为本发明基于上行检测的方法另一实施例的流程示意图;
图 4为本发明基于上行检测的方法另一实施例的流程示意图;
图 5为本发明基于上行检测的方法另一实施例的流程示意图;
图 6为本发明基于上行检测的方法另一实施例的流程示意图;
图 7为本发明基于上行检测的方法另一实施例的流程示意图;
图 8为本发明基于上行检测的方法另一实施例的流程示意图;
图 9为本发明基于上行检测的方法另一实施例的流程示意图;
图 10为本发明基于上行检测的方法另一实施例的流程示意图; 图 11为本发明基于上行检测的方法另一实施例的流程示意图; 图 12为本发明网络设备一实施例的结构示意图;
图 13为本发明终端一实施例的结构示意图;
图 14为本发明网络设备另一实施例的结构示意图;
图 15为本发明终端另一实施例的结构示意图。 具体实施方式 为使本发明实施例的目的、 技术方案和优点更加清楚, 下面将结合本发 明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 所描述的实施例是本发明一部分实施例, 而不是全部的实施例。 基于 本发明中的实施例, 本领域普通技术人员在没有做出创造性劳动前提下所获 得的所有其他实施例, 都属于本发明保护的范围。
图 1为本发明基于上行检测的方法一实施例的流程示意图, 包括: 步骤 11 : 网络设备获取第一信息, 所述第一信息为终端发送无线信号时 的发射功率信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信 息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信 号的接收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第 二接入设备的测量信息。
步骤 12: 所述网络设备获取所述第一接入设备接收所述终端发送的所述 无线信号的接收功率信息;
步骤 13: 所述网络设备根据所述第一信息, 以及所述第一接入设备接收 所述终端发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
上述的接入设备(第一接入设备或者第二接入设备)可以具体为宏基站, 如 Macro eNB; 小功率基站, 如 Pico eNB、 Femto eNB; 或者其它类型的接入 节点, 如, 家庭基站(Home eNB )、 低移动性基站( Low Mobility, LoMo ) 、 本地无线接入点 ( Access Point, AP ) 、 低功率发射节点 ( Low Power Node, LPN )或射频拉远单元 ( Radio Remote Unit, RRU ) 。
本发明实施例以第一接入设备为小功率基站、 第二接入设备为宏基站为 例。
上述的网络实体可以是控制器, 如基站控制器(Base Station Control, BSC ) 、 无线网络控制器(Radio Network Control, RNC ) 、 集中控制器等。
上述的处理可以包括: 确定所述终端能否由所述第一接入设备服务; 或 者, 将所述第一接入设备的发射机开启; 或者, 确定所述终端与所述第一接 入设备之间的路损。
通过上述处理可以实现接入设备的节能或者终端的服务切换。
上述的功率信息(包括发射功率信息或者接收功率信息)可以是功率值, 或者功率值的索引, 根据索引可以确定功率值。
上述的测量信息是所述终端接收第二接入设备发送无线信号的接收功 率; 或者, 所述终端接收第二接入设备发送无线信号的信号质量。 例如, 参 考信号的接收功率, 导频信号的接收功率, CSI-RS的接收功率, 参考信号的 质量, 导频信号的质量。
相应的, 终端侧执行的步骤可以参见图 2, 包括:
步骤 21 : 终端发送无线信号, 所述无线信号使得第一接入设备获取第一 接入设备接收所述终端发送的所述无线信号的接收功率信息;
步骤 22: 终端向第二接入设备上报第二信息, 所述第二信息为所述终端 发送所述无线信号时的发射功率信息, 或者, 所述第二信息为所述终端对所 述第二接入设备的测量信息, 使得网络设备在所述第二信息为所述终端发送 所述无线信号时的发射功率信息时, 根据所述终端发送所述无线信号时的发 射功率信息和所述第一接入设备接收所述终端发送的所述无线信号的接收功 率信息进行处理, 或者在所述第二信息为所述终端对所述第二接入设备的测 量信息时, 根据所述第二接入设备接收所述终端发送的所述无线信号的接收 功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第二接入设 备的测量信息以及所述第一接入设备接收所述终端发送的所述无线信号的接 收功率信息进行处理。
可选的, 替代步骤 21-22 还可以包括: 终端发送无线信号, 所述无线信 号使得第一接入设备获取第一接入设备接收所述终端发送的所述无线信号的 接收功率信息以及第二接入设备获取第二接入设备接收所述终端发送的所述 无线信号的接收功率信息, 使得网络设备根据所述第一接入设备接收所述终 端发送的所述无线信号的接收功率信息、 所述第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信 息进行处理。
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
该终端是宏基站服务下的终端, 例如上述的 MUE。
可选的, 该方法还可以包括:
所述终端向所述第二接入设备上报所述终端接收的干扰功率信息, 使得 所述网络设备在所述第二信息为所述终端发送所述无线信号时的发射功率信 息时根据所述终端发送所述无线信号时的发射功率信息、 所述第一接入设备 接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功 率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所述网络设备 在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第 二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接 入设备的发射功率信息、 所述终端对所述第二接入设备的测量信息、 所述第 一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接 收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备 发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所 述网络设备根据所述第一接入设备接收所述终端发送的所述无线信号的接收 功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率 信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收的干扰功率 信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端能否由所述第一接入设备服务。
可选的, 所述终端发送无线信号, 包括:
所述终端根据所述第二接入设备配置的发射功率信息, 采用配置的发射 功率信息发送所述无线信号; 或者,
所述终端根据无线信号与发射功率信息的对应关系, 采用与所述无线信 号对应的发射功率信息发送所述无线信号; 或者,
所述终端根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先约定的发射功率信息发送所述无线信号。
可选的, 所述终端发送无线信号, 包括:
所述终端根据所述第二接入设备配置的特征信息, 采用配置的特征信息 发送所述无线信号; 或者,
所述终端根据所述第二接入设备与所述终端预先约定的无线信号, 发送 预先约定的无线信号。
本实施例中, 网络设备可以获取与上行相关的第一信息, 之后可以根据 该第一信息以及第一接入设备接收该无线信号时的接收功率信息, 可以实现 基于上行检测的处理, 进而可以根据处理结果确定终端是否在小功率基站的 覆盖范围内, 或者确定路损以及开启发射机等。 图 3为本发明基于上行检测的处理方法另一实施例的流程示意图, 本实 施例以小功率基站进行处理为例。 本实施例包括:
步骤 31: 宏基站向 MUE发送配置消息 ( UL transmission configuration ), 该配置消息中携带 MUE的特征信息。
该特征信息可以包括:
小区标识;
终端标识;
第二接入设备给终端配置的发送无线信号的配置消息。
可选的, 所述第二接入设备给终端配置的发送无线信号的配置消息包括 如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
步骤 32: 宏基站与小功率基站交互该特征信息 ( UL transmission configuration transfer )。
通过交互配置消息, 小功率基站可以获知每个 MUE 的特征信息, 之后 在检测到无线信号时, 可以根据无线信号对应的特征信息确定该无线信号来 自的 MUE。
步骤 33: MUE根据特性信息发送无线信号 (UL transmission )。
以 LTE系统为例, 假设 MUE发送的无线信号为探测 (sounding )信号, sounding信号的特征信息如时频资源位置信息、 序列的循环移位方式, 那么 宏基站在配置时, 可以将 sounding信号对应的时频资源位置信息、 序列的循 环移位方式等发送给 MUE, 之后, MUE按照对应的序列的循环移位方式在 对应的时频资源位置上发送 sounding信号。 或者,
MUE发送的无线信号也可以为随机接入信道( Random Access Channel, RACH )信号, RACH信号对应的特征信息包括时域位置、 随机接入前导序 列等, 因此, 宏基站在配置时, 可以将 RACH信号对应的时域位置、 随机接 入前导序列等发送给 MUE, 之后, MUE在对应的时域位置以及根据对应的 随机接入前导序列发送 RACH信号。
步骤 34: 小功率基站根据特征信息, 检测 MUE发送的无线信号, 并得 到第一接入设备接收所述终端发送的所述无线信号的接收功率信息 ( UL detection )。 例如, MUE在宏基站配置的时频资源位置上发送无线信号, 小功率基站 可以在该时频资源位置上侦听上行信号,对侦听到的无线信号进行功率检测, 得到第一接入设备接收所述终端发送的所述无线信号的接收功率信息。
步骤 35 : MUE 将终端发送无线信号时的发射功率信息发送给宏基站 ( transmission power indication )。
步骤 35与步骤 34无时序限制关系。
步骤 36: 宏基站将 MUE上报的终端发送无线信号时的发射功率信息发 送给小功率基站 ( transmission power notification )。
步骤 36与步骤 34无时序限制关系。
步骤 37: 小功率基站根据检测得到的第一接入设备接收所述终端发送的 所述无线信号的接收功率信息以及宏基站发送的终端发送无线信号时的发射 功率信息, 进行处理。
该处理可以包括: 根据所述终端发送无线信号时的发射功率信息和所述 第一接入设备接收所述终端发送的所述无线信号的接收功率信息确定所述终 端与所述第一接入设备之间的路损; 例如, 小功率基站将终端发送无线信号 时的发射功率信息与第一接入设备接收所述终端发送的所述无线信号的接收 功率信息的差值确定为该路损, 或者, 将上述的差值根据设定的策略进行修 正后确定为该路损, 此时用相减方式得到路损的计算方式中终端发送无线信 号时的发射功率信息和第一接入设备接收所述终端发送的所述无线信号的接 收功率信息都以分贝 (dB ) 为单位。 或者,
在确定上述路损之后, 根据路损确定该 MUE 由小功率基站; 例如, 当 路损值小于设定的阈值时, 确定由小功率基站为 MUE服务; 或者,
根据终端发送无线信号时的发射功率信息和第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 开启小功率基站的发射机; 例如, 根 据终端发送无线信号时的发射功率信息和第一接入设备接收所述终端发送的 所述无线信号的接收功率信息确定路损, 在路损小于设定的阈值的 MUE 的 个数大于设定值时则开启该发射机。
通过上述处理可以实现如下应用: 在 SON场景下, 可以根据小功率基站 覆盖范围内的终端的个数确定是否唤醒对应的小功率基站, 例如, 当小功率 基站覆盖范围内的终端的个数达到设定的阈值后就唤醒该小功率基站, 避免 小功率基站覆盖范围内并不存在或仅存在少量 UE或数据业务时唤醒小功率 基站造成的能量浪费。 而 MUE是否在小功率基站的覆盖范围之内就可以根 据该 MUE 与小功率基站之间的路损确定, 当路损小于设定的值时就可以确 定在其覆盖范围之内。 或者,
在上下行分离场景下, 可以根据 MUE 与小功率基站之间的路损选择合 适的小区, 例如, 选择路损较小的小功率基站为终端提供上行接入服务。
本实施例中,终端将终端发送无线信号时的发射功率信息发送给宏基站, 可选的, 终端也可以不上报终端发送无线信号时的发射功率信息, 而是将测 量信息发送给宏基站, 由宏基站根据测量信息、 所述第二接入设备的发射功 率信息和第二接入设备接收所述终端发送的所述无线信号的接收功率信息计 算得到终端发送无线信号时的发射功率信息, 之后宏基站将计算得到的终端 发送无线信号时的发射功率信息发送给小功率基站; 或者, 终端将测量信息 发送给宏基站, 宏基站再将测量信息、 所述第二接入设备的发射功率信息和 第二接入设备接收所述终端发送的所述无线信号的接收功率信息发送给小功 率基站, 由小功率基站根据测量信息、 所述第二接入设备的发射功率信息和 第二接入设备接收所述终端发送的所述无线信号的接收功率信息计算得到终 端发送无线信号时的发射功率信息。
其中, 根据测量信息、 所述第二接入设备的发射功率信息和第二接入设 备接收所述终端发送的所述无线信号的接收功率信息计算得到终端发送无线 信号时的发射功率信息可以包括: 例如, 测量信息为参考信号接收功率, 第 二接入设备的发射功率信息为参考信号发射功率, 之后用参考信号发射功率 减去参考信号接收功率得到第二接入设备与终端之间的路损, 再用第二接入 设备接收所述终端发送的所述无线信号的接收功率信息加上第二接入设备与 终端之间的路损, 得到终端发送无线信号时的发射功率信息。
可选的, 终端也可以不上报终端发送无线信号时的发射功率信息, 也不 上报测量信息, 而是宏基站根据第二接入设备接收所述终端发送的所述无线 信号的接收功率信息和所述第二接入设备到所述终端的路损信息, 计算得到 终端发送无线信号时的发射功率信息, 之后由宏基站将终端发送无线信号时 的发射功率信息发送给小功率基站, 或者, 宏基站将第二接入设备接收所述 终端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的 路损信息发送给小功率基站, 由小功率基站根据第二接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损 信息, 计算得到终端发送无线信号时的发射功率信息。
另外, 宏基站将终端发送无线信号时的发射功率信息或测量信息, 或第 二接入设备接收所述终端发送的所述无线信号的接收功率信息和所述第二接 入设备到所述终端的路损信息发送给小功率基站可以是: 宏基站直接发送给 小功率基站, 或者, 宏基站将上述信息发送给网络实体, 再由网络实体发送 给小功率基站。 类似的, 本发明实施例中没有特别说明的发送可以是指直接 发送或者经由其它设备转发。
本实施例通过小功率基站相关信息并进行处理, 完成基于上行检测的处 理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 4为本发明基于上行检测的处理方法另一实施例的流程示意图, 本实 施例以宏基站进行处理为例。 本实施例包括:
步骤 41: 宏基站向 MUE发送配置消息 ( UL transmission configuration )。 步骤 42: 宏基站与小功率基站交互该特性信息 ( UL transmission configuration transfer )。
步骤 43: MUE根据配置消息发送无线信号 ( UL transmission )。
步骤 44: 小功率基站根据该特性信息, 检测 MUE发送的无线信号, 并 得到第一接入设备接收所述终端发送的所述无线信号的接收功率信息 ( UL detection )。
步骤 45 : MUE 将终端发送无线信号时的发射功率信息发送给宏基站 ( transmission power indication )。
上述的步骤 41〜45的具体内容可以参见步骤 31〜35。
步骤 46: 小功率基站将第一接入设备接收所述终端发送的所述无线信号 的接收功率信息发送给宏基站。
步骤 47: 宏基站根据小功率基站发送的第一接入设备接收所述终端发送 的所述无线信号的接收功率信息以及 MUE发送的终端发送无线信号时的发 射功率信息, 进行处理。
具体的根据第一接入设备接收所述终端发送的所述无线信号的接收功率 信息和终端发送无线信号时的发射功率信息进行处理的内容以及后续应用内 容可以参见图 3对应的内容, 在此不再赘述。
本实施例中,终端将终端发送无线信号时的发射功率信息发送给宏基站, 可选的, 终端也可以不上报终端发送无线信号时的发射功率信息, 而是将测 量信息发送给宏基站, 由宏基站根据测量信息、 所述第二接入设备的发射功 率信息和第二接入设备接收所述终端发送的所述无线信号的接收功率信息计 算得到发射功率信息。
其中, 根据测量信息、 所述第二接入设备的发射功率信息和第二接入设 备接收所述终端发送的所述无线信号的接收功率信息计算得到终端发送无线 信号时的发射功率信息可以具体参见上一实施例。
可选的, 终端也可以不上报终端发送无线信号时的发射功率信息, 也不 上报测量信息, 而是宏基站根据第二接入设备接收所述终端发送的所述无线 信号的接收功率信息和所述第二接入设备到所述终端的路损信息, 计算得到 终端发送无线信号时的发射功率信息。
另外, 小功率基站将第一接入设备接收所述终端发送的所述无线信号的 接收功率信息发送给宏基站可以是: 小功率基站直接发送给宏基站, 或者, 小功率基站将第一接入设备接收所述终端发送的所述无线信号的接收功率信 息发送给网络实体, 再由网络实体发送给宏基站。
本实施例通过宏基站获取相关信息并进行处理, 完成基于上行检测的处 理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 5为本发明基于上行检测的方法另一实施例的流程示意图, 本实施例 以不同于宏基站和小功率基站的网络实体进行处理为例。 本实施例包括: 步骤 51: 宏基站向 MUE发送配置消息 ( UL transmission configuration )。 步骤 52: 宏基站与小功率基站交互该特性信息 ( UL transmission configuration transfer )。
步骤 53: MUE根据配置消息进行上行传输( UL transmission )。
步骤 54: 小功率基站根据特征信息, 检测 MUE发送的无线信号, 并得 到第一接入设备接收所述终端发送的所述无线信号的接收功率信息 ( UL detection )。
步骤 55 : MUE 将终端发送无线信号时的发射功率信息发送给宏基站 ( transmission power indication )。 上述的步骤 51〜55的具体内容可以参见步骤 31〜35。
步骤 56:宏基站将终端发送无线信号时的发射功率信息发送给网络实体。 步骤 57: 小功率基站将第一接入设备接收所述终端发送的所述无线信号 的接收功率信息发送给同一个网络实体。
步骤 56和步骤 57无时序限制关系。
步骤 58: 该网络实体根据小功率基站发送的第一接入设备接收所述终端 发送的所述无线信号的接收功率信息以及宏基站发送的终端发送无线信号时 的发射功率信息, 进行处理。
具体的根据第一接入设备接收所述终端发送的所述无线信号的接收功率 信息和终端发送无线信号时的发射功率信息进行处理的内容以及后续应用内 容可以参见图 3对应的内容, 在此不再赘述。
本实施例中,终端将终端发送无线信号时的发射功率信息发送给宏基站, 可选的, 终端也可以不上报终端发送无线信号时的发射功率信息, 而是 将测量信息发送给宏基站, 由宏基站根据测量信息、 所述第二接入设备的发 射功率信息和第二接入设备接收所述终端发送的所述无线信号的接收功率信 息计算得到终端发送无线信号时的发射功率信息, 之后宏基站将计算得到的 终端发送无线信号时的发射功率信息发送给网络实体; 或者, 终端将测量信 息发送给宏基站, 宏基站再将测量信息、 所述第二接入设备的发射功率信息 和第二接入设备接收所述终端发送的所述无线信号的接收功率信息发送给网 络实体, 由网络实体根据测量信息、 所述第二接入设备的发射功率信息和第 二接入设备接收所述终端发送的所述无线信号的接收功率信息计算得到发射 功率信息。
其中, 根据测量信息、 所述第二接入设备的发射功率信息和第二接入设 备接收所述终端发送的所述无线信号的接收功率信息计算得到终端发送无线 信号时的发射功率信息可以包括: 例如, 测量信息为参考信号接收功率, 第 二接入设备的发射功率信息为参考信号发射功率, 之后用参考信号发射功率 减去参考信号接收功率得到第二接入设备与终端之间的路损, 再用第二接入 设备接收所述终端发送的所述无线信号的接收功率信息加上第二接入设备与 终端之间的路损, 得到终端发送无线信号时的发射功率信息。
可选的, 终端也可以不上报终端发送无线信号时的发射功率信息, 也不 上报测量信息, 而是宏基站根据第二接入设备接收所述终端发送的所述无线 信号的接收功率信息和所述第二接入设备到所述终端的路损信息, 计算得到 终端发送无线信号时的发射功率信息, 之后由宏基站将终端发送无线信号时 的发射功率信息发送给网络实体, 或者, 宏基站将第二接入设备接收所述终 端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路 损信息发送给网络实体, 由网络实体根据第二接入设备接收所述终端发送的 所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信息, 计算得到终端发送无线信号时的发射功率信息。
本实施例通过网络实体获取相关信息并进行处理, 完成基于上行检测的 处理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 6为本发明基于上行检测的方法另一实施例的流程示意图, 本实施例 与上述实施例不同的是, 本实施例可以根据 MUE发送的无线信号确定出终 端发送无线信号时的发射功率信息, 不需要再单独发送终端发送无线信号时 的发射功率信息。 本实施例包括:
步骤 61: 宏基站向 MUE发送配置消息 ( UL transmission configuration ) , 该配置消息中携带 MUE的特征信息以及指示给 MUE的无线信号信息。
该无线信号与终端发送无线信号时的发射功率信息存在对应关系。例如, LTE 系统中的伪随机序列信号有多个, 可以分为若干个分组, 每个分组内至 少有一个伪随机序列信号用于上行传输。 不同分组内的伪随机序列信号发射 时采用不同的发射功率, 之后, 当小功率基站检测到该伪随机序列信号后可 以根据其属于的分组确定出终端发送无线信号时的发射功率信息。 例如, 分 组 1对应发射功率 1 , 分组 2对应发射功率 2, 如果检测到的伪随机序列信号 属于分组 1 , 那么就可以确定出终端发送无线信号时的发射功率信息为发射 功率 1。
步骤 62: 宏基站与小功率基站交互该特性信息 ( UL transmission configuration transfer )。
步骤 63: MUE根据配置消息发送无线信号 ( UL transmission )。
例如, MUE确定要根据发射功率 1发送无线信号, 对应的选择发送分组
1内的伪随机序列信号,之后 MUE可以采用发射功率 1发送分组 1内的用于 上行的伪随机序列信号。 步骤 64: 小功率基站根据特征信息, 检测 MUE发送的无线信号, 得到 第一接入设备接收所述终端发送的所述无线信号的接收功率信息, 以及, 根 据检测到的无线信号与发射功率信息的对应关系, 确定出终端发送无线信号 时的发射功率信息。
步骤 65: 小功率基站根据第一接入设备接收所述终端发送的所述无线信 号的接收功率信息以及终端发送无线信号时的发射功率信息, 进行处理。
具体的根据第一接入设备接收所述终端发送的所述无线信号的接收功率 信息和终端发送无线信号时的发射功率信息进行处理的内容以及后续应用内 容可以参见图 3对应的内容, 在此不再赘述。
本实施例以小功率基站执行为例, 也可以由宏基站或网络实体执行。 可选的, 当执行主体为宏基站时, 即当所述网络设备为所述第二接入设 备时, 所述第二接入设备根据接收的所述无线信号确定所述终端发送无线信 号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 所述网络实体接收所述第一接入设 备或所述第二接入设备确定的所述终端发送无线信号时的发射功率信息; 或 者, 所述网络实体接收所述第一接入设备或所述第二接入设备发送的所述无 线信号的信息, 根据所述对应关系和所述无线信号的信息确定所述终端发送 无线信号时的发射功率信息。
另外, 上述的无线信号与发射功率信息的对应关系可以是网络侧和终端 侧预先约定的, 或者, 宏基站配置给其他设备, 如 MUE、 小功率基站、 网络 实体的。
本实施例通过 MUE发送无线信号, 该无线信号与发射功率信息存在对 应关系, 那么网络设备可以根据无线信号确定终端发送无线信号时的发射功 率信息, 也就可以根据终端发送无线信号时的发射功率信息和第一接入设备 接收所述终端发送的所述无线信号的接收功率信息进行处理, 进而可以为后 续的唤醒或上行小区选择提供依据。
图 7为本发明基于上行检测的处理方法另一实施例的流程示意图, 本实 施例中, MUE发送无线信号的发射功率信息是宏基站配置的,本实施例包括: 步骤 71: 宏基站向 MUE发送配置消息 ( UL transmission configuration ) , 该配置消息中携带 MUE 的特征信息以及终端发送无线信号时的发射功 率信息。
步骤 72: 宏基站与小功率基站交互该特征信息和终端发送无线信号时的 发射功率信息 ( UL transmission configuration transfer )。
通过交互, 小功率基站可以确定终端发送无线信号时的发射功率信息以 及 MUE的特征信息。
步骤 73: MUE根据配置消息中携带的终端发送无线信号时的发射功率 信息和特征信息, 发送无线信号 (UL transmission )。
步骤 74: 小功率基站根据特征信息, 检测 MUE发送的无线信号, 并得 到第一接入设备接收所述终端发送的所述无线信号的接收功率信息 ( UL detection )。
步骤 75: 小功率基站根据检测得到的第一接入设备接收所述终端发送的 所述无线信号的接收功率信息以及与宏基站交互时获取的终端发送无线信号 时的发射功率信息, 进行处理。
具体的根据第一接入设备接收所述终端发送的所述无线信号的接收功率 信息和终端发送无线信号时的发射功率信息进行处理的内容以及后续应用内 容可以参见图 3对应的内容, 在此不再赘述。
本实施例进行处理的主体以 、功率基站为例, 该执行主体也可以为宏基 站或者网络实体。
可选的, 当执行主体为宏基站时, 小功率基站可以将第一接入设备接收 所述终端发送的所述无线信号的接收功率信息发送给宏基站, 宏基站根据自 身为 MUE 配置的终端发送无线信号时的发射功率信息以及小功率基站发送 的第一接入设备接收所述终端发送的所述无线信号的接收功率信息, 进行处 理;
可选的, 当执行主体为网络实体时, 小功率基站可以将确定的第一接入 设备接收所述终端发送的所述无线信号的接收功率信息发送给宏基站, 宏基 站可以将配置给 MUE 的终端发送无线信号时的发射功率信息发送给网络实 体, 网络实体根据接收的终端发送无线信号时的发射功率信息和第一接入设 备接收所述终端发送的所述无线信号的接收功率信息进行处理。
本实施例中宏基站为 MUE 配置终端发送无线信号时的发射功率信息, 网络侧可以根据宏基站的配置获取终端发送无线信号时的发射功率信息, 在 小功率基站获取第一接入设备接收所述终端发送的所述无线信号的接收功率 信息后, 可以根据终端发送无线信号时的发射功率信息和第一接入设备接收 所述终端发送的所述无线信号的接收功率信息进行处理, 完成基于上行检测 的处理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 8为本发明基于上行检测的方法另一实施例的流程示意图, 本实施例 中, 网络侧与终端侧预先约定发射功率信息, 本实施例包括:
步骤 81: 宏基站向 MUE发送配置消息 ( UL transmission configuration ), 该配置消息中携带 MUE的特征信息。
步骤 82: 宏基站与小功率基站交互该特征信息 ( UL transmission configuration transfer )。
步骤 83: MUE采用预先约定的终端发送无线信号时的发射功率信息, 发送无线信号。
步骤 84: 小功率基站根据特性信息, 检测 MUE发送的无线信号, 并得 到第一接入设备接收所述终端发送的所述无线信号的接收功率信息 ( UL detection )。
上述的步骤 81〜84的具体内容可以参见步骤 31〜34。
步骤 85: 小功率基站根据预先约定的终端发送无线信号时的发射功率信 息, 以及获取的第一接入设备接收所述终端发送的所述无线信号的接收功率 信息, 进行处理。
具体的根据第一接入设备接收所述终端发送的所述无线信号的接收功率 信息和终端发送无线信号时的发射功率信息进行处理的内容以及应用内容可 以参见图 3对应的内容, 在此不再赘述。
本实施例以处理的执行主体为小功率基站为例, 执行主体也可以为宏基 站或者网络实体。
可选的, 当为宏基站时, 小功率基站将第一接入设备接收所述终端发送 的所述无线信号的接收功率信息发送给宏基站, 宏基站根据预先约定的终端 发送无线信号时的发射功率信息和第一接入设备接收所述终端发送的所述无 线信号的接收功率信息进行处理。
可选的, 当为网络实体时, 小功率基站将第一接入设备接收所述终端发 送的所述无线信号的接收功率信息发送给网络实体, 网络实体根据预先约定 的终端发送无线信号时的发射功率信息和第一接入设备接收所述终端发送的 所述无线信号的接收功率信息进行处理。
本实施例通过预先约定的方式使得各设备获取终端发送无线信号时的发 射功率信息, 在小功率基站确定第一接入设备接收所述终端发送的所述无线 信号的接收功率信息后, 根据终端发送无线信号时的发射功率信息和第一接 入设备接收所述终端发送的所述无线信号的接收功率信息进行处理, 完成基 于上行检测的处理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 9为本发明基于上行检测的处理方法另一实施例的流程示意图, 本实 施例中, 无线信号是网络侧和终端侧预先约定的, 本实施例包括:
步骤 91 : MUE发送预先约定的无线信号。
步骤 92: 小功率基站检测到预先约定的无线信号后, 确定第一接入设备 接收所述终端发送的所述无线信号的接收功率信息。
步骤 93: 小功率基站获取终端发送无线信号时的发射功率信息。
可选的, 小功率基站可以如下项中的任一项获取终端发送无线信号时的 发射功率信息:
MUE上报给宏基站并由宏基站发送给小功率基站的;
MUE上报给宏基站测量信息, 由宏基站根据测量信息、 第二接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射 功率信息计算得到终端发送无线信号时的发射功率信息并发送给小功率基 站;
MUE上报给宏基站测量信息, 宏基站再将测量信息、 第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射功 率信息发送给小功率基站, 由小功率基站根据测量信息、 第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射功 率信息计算得到的;
宏基站根据第二接入设备接收所述终端发送的所述无线信号的接收功率 信息和所述第二接入设备到所述终端的路损信息计算得到终端发送无线信号 时的发射功率信息并发送给 d、功率基站;
宏基站将第二接入设备接收所述终端发送的所述无线信号的接收功率信 息和所述第二接入设备到所述终端的路损信息发送给小功率基站, 由小功率 基站根据所述终端发送的所述无线信号的接收功率信息和所述第二接入设备 到所述终端的路损信息计算得到终端发送无线信号时的发射功率信息;
小功率基站根据无线信号与发射功率信息的对应关系以及接收的无线信 号, 确定终端发送无线信号时的发射功率信息;
该终端发送无线信号时的发射功率信息是网络侧和终端侧预先约定的终 端发送无线信号时的发射功率信息;
该终端发送无线信号时的发射功率信息是宏基站配置给 MUE 的, 并且 由宏基站发送给 d、功率基站。
步骤 94: 小功率基站根据终端发送无线信号时的发射功率信息和第一接 入设备接收所述终端发送的所述无线信号的接收功率信息进行处理。
具体的根据第一接入设备接收所述终端发送的所述无线信号的接收功率 信息和终端发送无线信号时的发射功率信息进行处理的内容以及后续应用内 容可以参见图 3对应的内容, 在此不再赘述。
本实施例以小功率基站进行处理为例, 执行主体也可以为宏基站或者小 功率基站。
可选的, 当执行主体为宏基站时, 小功率基站将接收功率信息发送给宏 基站, 宏基站采用如下项中的任一项确定发射功率信息, 之后根据发射功率 信息和接收功率信息进行处理:
MUE上报给宏基站的;
MUE上报给宏基站测量信息, 由宏基站根据测量信息、 第二接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射 功率信息计算得到终端发送无线信号时的发射功率信息;
宏基站根据无线信号与发射功率信息的对应关系以及接收的无线信号, 确定终端发送无线信号时的发射功率信息;
该终端发送无线信号时的发射功率信息是网络侧和终端侧预先约定的发 射功率信息;
该终端发送无线信号时的发射功率信息是宏基站配置给 MUE 的, 由于 是宏基站配置的, 宏基站可以获知;
宏基站根据第二接入设备接收所述终端发送的所述无线信号的接收功率 信息和所述第二接入设备到所述终端的路损信息, 计算得到终端发送无线信 号时的发射功率信息。
可选的, 当执行主体为网络实体时, 小功率基站将第一接入设备接收所 述终端发送的所述无线信号的接收功率信息发送给网络实体, 网络实体采用 如下项中的任一项确定终端发送无线信号时的发射功率信息, 之后根据终端 发送无线信号时的发射功率信息和第一接入设备接收所述终端发送的所述无 线信号的接收功率信息进行处理:
MUE上报给宏基站并由宏基站发送给网络实体的;
MUE上报给宏基站测量信息, 由宏基站根据测量信息、 第二接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射 功率信息计算得到终端发送无线信号时的发射功率信息并发送给网络实体;
MUE上报给宏基站测量信息, 宏基站再将测量信息、 第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射功 率信息发送给网络实体, 由网络实体根据测量信息、 第二接入设备接收所述 终端发送的所述无线信号的接收功率信息和所述第二接入设备的发射功率信 息计算得到的;
网络实体接收宏基站或者小功率基站发送的终端发送无线信号时的发射 功率信息, 该终端发送无线信号时的发射功率信息是宏基站或小功率基站根 据无线信号与发射功率信息的对应关系以及接收的无线信号确定的;
网络实体接收宏基站或小功率基站发送的无线信号, 网络实体根据无线 信号与发射功率信息的对应关系以及接收的无线信号确定终端发送无线信号 时的发射功率信息;
该终端发送无线信号时的发射功率信息是网络侧和终端侧预先约定的终 端发送无线信号时的发射功率信息;
该终端发送无线信号时的发射功率信息是宏基站配置给 MUE 的, 并且 由宏基站发送给网络实体;
宏基站根据第二接入设备接收所述终端发送的所述无线信号的接收功率 信息和所述第二接入设备到所述终端的路损信息计算得到终端发送无线信号 时的发射功率信息并发送给网络实体;
宏基站将第二接入设备接收所述终端发送的所述无线信号的接收功率信 息和所述第二接入设备到所述终端的路损信息发送给网络实体, 由网络实体 根据所述终端发送的所述无线信号的接收功率信息和所述第二接入设备到所 述终端的路损信息计算得到终端发送无线信号时的发射功率信息。
本实施例通过预先约定无线信号, 可以在不配置特征信息时进行基于上 行检测的处理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 10为本发明基于上行检测的处理方法另一实施例的流程示意图,本实 施例中, 进行处理时不仅根据发射功率信息, 还根据干扰功率信息, 本实施 例包括:
步骤 101 : 网络设备获取第一信息, 所述第一信息为终端发送无线信号 时的发射功率信息, 或者, 所述第一信息包括第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信 息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信 号的接收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第 二接入设备的测量信息;
步骤 102: 所述网络设备获取所述第一接入设备接收所述终端发送的所 述无线信号的接收功率信息;
步骤 103 : 所述网络设备获取干扰功率信息, 所述干扰功率信息为所述 第一接入设备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰 功率信息;
步骤 104: 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定 所述终端能否由所述第一接入设备服务。
可选的, 步骤 104可以包括:
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端能否由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端能否由所述第一接入设备服务。
其中, 信号质量可以如下计算: 假设信号质量为信干噪比, 其中的干扰 信息为第一接入设备接收的干扰功率信息, 信号信息为所述终端被所述第一 接入设备服务时的终端发射功率信息与第一接入设备与终端间的路损的差 值, 第一接入设备与终端间的路损的计算方式可以参见上述实施例, 例如为 终端发送无线信号时的发射功率信息与所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息的差值。
可选的, 当网络实体分别为第一接入设备、 第二接入设备和网络实体时, 接收功率信息和发射功率信息的获取方式可以分别参见上述对小功率基站、 宏基站和网络实体的描述, 在此不再赘述。
对于干扰功率信息的获取, 可以采用如下方式:
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述 网络设备获取干扰功率信息, 包括:
当所述网络设备为所述第一接入设备时, 所述第一接入设备确定接收的 干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 所述第二接入 设备或所述网络实体接收所述第一接入设备发送的所述第一接入设备接收的 干扰功率信息。
当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述网络设备 获取干扰功率信息, 包括:
当所述网络设备为所述第二接入设备时, 所述第二接入设备接收所述终 端发送的所述干扰功率信息; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接收设备发送的所述终端接收的干扰功率 信息。
本实施例可以再根据干扰功率信息完成基于上行检测的处理, 进而可以 为后续的唤醒或上行小区选择提供依据。
图 11为本发明基于上行检测的方法另一实施例的流程示意图,本实施例 中, 进行处理时根据的不是发射功率信息, 本实施例包括:
步骤 111 : 网络设备获取第一信息,所述第一信息包括第二接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终 端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的 所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息和所述终 端对所述第二接入设备的测量信息;
步骤 112: 所述网络设备获取第一接入设备接收所述无线信号的接收功 率信息;
步骤 113 : 所述网络设备根据所述第一信息和所述第一接入设备接收所 述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
可选的, 所述网络设备获取第一信息, 包括: 当所述网络设备为所述第二接入设备时, 所述第二接入设备获取接收所 述终端发送的无线信号的接收功率信息, 所述第二接入设备获取所述终端上 报的测量信息, 所述第二接入设备获取第二接入设备的发射功率信息; 例如, 第二接入设备可以对终端发送的无线信号进行检测, 得到第二接收接入接收 所述终端发送的无线信号的接收功率信息, 第二接入设备的发射功率信息是 第二接入设备自身的信息, 也可以获取; 该测量信息可以是由终端上报给第 二接入设备的。 或者,
所述第二接入设备获取接收所述终端发送的无线信号的接收功率信息, 所述第二接入设备获取所述第二接入设备到所述终端的路损信息; 例如, 第 二接入设备可以对终端发送的无线信号进行检测, 得到第二接收接入接收所 述终端发送的无线信号的接收功率信息。
当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接入设备发送的第一信息。
可选的, 该进行处理可以包括:
所述网络设备根据第一信息和所述第一接入设备接收所述无线信号的接 收功率信息, 确定所述终端能否由所述第一接入设备服务; 或者,
所述网络设备根据所述第一信息和所述第一接入设备接收所述无线信号 的接收功率信息, 确定开启所述第一接入设备的发射机; 或者,
所述网络设备根据所述第一信息和所述第一接入设备接收所述无线信号 的接收功率信息, 确定所述终端与所述第一接入设备之间的路损。
具体的, 测量信息可以是参考信号接收功率, 第二接入设备根据该参考 信号接收功率以及发送参考信号时的发射功率, 可以确定终端与第二接入设 备之间的路损。 终端在发送无线信号时, 根据第二接入设备接收无线信号时 的接收功率信息、 第一接入设备接收无线信号时的接收功率信息、 以及终端 与第二接入设备之间的路损 (根据测量信息得到的或者第二接入设备直接得 到的) , 就可以确定终端与第一接入设备之间的路损。 例如, 以 dB为单位, P1-P2=L1-L2, Pl、 P2 分别为第一接入设备接收无线信号时的接收功率信息 和第二接入设备接收无线信号时的接收功率信息, L1和 L2分别为终端与第 一接入设备之间的路损和终端与第二接入设备之间的路损。
在确定出终端与第一接入设备之间路损后, 如上述各实施例, 可以根据 终端与第一接入设备之间路损确定由第一接入设备为终端服务; 或者, 根据 终端与第一接入设备之间路损开启第一接入设备的发射机等。
可选的, 本实施例在处理时还可以根据干扰功率信息, 即还可以包括: 网络设备获取干扰功率信息;
进行处理可以具体包括:
所述网络设备根据第一信息、 接收功率信息和干扰功率信息, 确定由第 一接入设备为终端服务。
可选的,
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端能否由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端能否由所述第一接入设备服务。 具体确定信号质量的 内容可以参见上述实施例。
本实施例可以根据终端的不是发射功率信息的第一信息完成基于上行检 测的处理, 进而可以为后续的唤醒或上行小区选择提供依据。
图 12为本发明网络设备一实施例的结构示意图,该设备 120包括第一获 取模块 121、 第二获取模块 122和处理模块 123; 第一获取模块 121用于获取 第一信息, 所述第一信息为终端发送无线信号时的发射功率信息, 或者, 所 述第一信息包括第二接入设备接收所述终端发送的所述无线信号的接收功率 信息和所述第二接入设备到所述终端的路损信息; 或者, 所述第一信息包括 第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二 接入设备的发射功率信息和所述终端对所述第二接入设备的测量信息; 第二 获取模块 122用于获取所述第一接入设备接收所述终端发送的所述无线信号 的接收功率信息; 处理模块 123用于根据所述第一信息, 以及所述第一接入 设备接收所述终端发送的所述无线信号的接收功率信息, 进行处理; 所述网 络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实 体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接 入设备是当前为所述终端服务的接入设备。
可选的, 所述处理模块具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端能否由所述第一接入设备服务。
可选的, 该设备还包括:
第三获取模块, 用于获取干扰功率信息, 所述干扰功率信息为所述第一 接入设备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰功率 信息;
所述处理模块具体用于: 根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定 所述终端能否由所述第一接入设备服务。
可选的, 所述处理模块具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损, 根据 所述终端与所述第一接入设备之间的路损确定所述终端能否由所述第一接 入设备服务。
可选的, 所述处理模块具体用于:
当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端能否由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端能否由所述第一接入设备服务; 或 者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端能否由所述第一接入设备服务。
可选的, 所述处理模块具体用于:
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端与所述第一接入设备之间的路损。
可选的, 所述第一信息为终端发送无线信号时的发射功率信息, 所述第 一获取模块具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 发送无线信号时的发射功率信息; 或者, 接收所述终端上报的测量信息, 并 根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述测量信息确定所述终端发送无线信 号时的发射功率信息; 或者, 确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射功率信息是所述第二接入设备配置给所述终 端的或者所述第二接入设备与所述终端预先约定的; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
可选的, 所述第一信息包括第二接入设备接收所述终端发送的所述无线 信号的接收功率信息和所述第二接入设备到所述终端的路损信息; 或者, 所 述第一信息包括第二接入设备接收所述终端发送的所述无线信号的接收功率 信息、 所述第二接入设备的发射功率信息和所述终端对所述第二接入设备的 测量信息 , 所述第一获取模块具体用于:
当所述网络设备为所述第二接入设备时, 获取所述第二接入设备接收所 述终端发送的所述无线信号的接收功率信息,获取所述终端上报的测量信息, 获取第二接入设备的发射功率信息; 或者, 获取所述第二接入设备接收所述 终端发送的所述无线信号的接收功率信息, 获取所述第二接入设备到所述终 端的路损信息; 当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
可选的, 所述第一信息为终端发送无线信号时的发射功率信息, 所述终 端发送无线信号时的发射功率信息与所述无线信号存在对应关系, 所述第一 获取模块具体用于:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 根据接收 的所述无线信号确定所述终端发送无线信号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 接收所述第一接入设备或所述第二 接入设备确定的所述终端发送无线信号时的发射功率信息; 或者, 接收所述 第一接入设备或所述第二接入设备发送的所述无线信号的信息, 根据所述对 应关系和所述无线信号的信息确定所述终端发送无线信号时的发射功率信 自
可选的, 所述第二获取模块具体用于:
当所述网络设备为第一接入设备时, 根据所述终端的特征信息接收无线 信号或者接收预先约定的无线信号, 获取第一接入设备接收终端发送的无线 信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收终端发送的无线信号的接收功率信 息。
可选的, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 所述第三获取模块具体用于:
当所述网络设备为所述第一接入设备时, 获取所述第一接入设备接收的 干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收的干扰功率信息。
可选的, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 所述处理模块具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端 被所述第一接入设备服务时的终端发射功率信息, 确定所述终端能否由所述 第一接入设备服务。
可选的, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 第三获取模块具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 接收的干扰功率信息; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接收设备发送的所述终端接收的干扰功率信息。
可选的, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述 处理模块具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述终端接收的干扰功率信息, 以及所述终端被所述第 一接入设备服务时的第一接入设备发射功率信息, 确定所述终端能否由所述 第一接入设备服务。
可选的, 所述无线信号是所述终端根据特征信息发送的, 所述特征信息 包括如下项中的至少一项:
小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
可选的, 所述第二接入设备给所述终端配置的发送无线信号的配置消息 包括如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
本实施例可以获取第一信息, 之后可以根据该第一信息以及第一接入设 备接收该无线信号时的接收功率信息, 可以实现基于上行检测的处理, 进而 可以根据处理结果确定终端是否在小功率基站的覆盖范围内, 或者确定路损 以及开启发射机等。
图 13为本发明终端一实施例的结构示意图,该终端 130包括第一发送模 块 131或者第二发送模块 132; 第一发送模块 131用于发送无线信号以及向 第二接入设备上报第二信息, 所述无线信号使得第一接入设备获取第一接入 设备接收所述终端发送的所述无线信号的接收功率信息, 所述第二信息为所 述终端发送所述无线信号时的发射功率信息, 或者, 所述第二信息为所述终 端对所述第二接入设备的测量信息, 使得网络设备在所述第二信息为所述终 端发送所述无线信号时的发射功率信息时, 根据所述终端发送所述无线信号 时的发射功率信息和所述第一接入设备接收所述终端发送的所述无线信号的 接收功率信息进行处理, 或者在所述第二信息为所述终端对所述第二接入设 备的测量信息时, 根据所述第二接入设备接收所述终端发送的所述无线信号 的接收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第二 接入设备的测量信息以及所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息进行处理; 第二发送模块 132用于发送无线信号, 所述无 线信号使得第一接入设备获取第一接入设备接收所述终端发送的所述无线信 号的接收功率信息以及第二接入设备获取第二接入设备接收所述终端发送的 所述无线信号的接收功率信息, 使得网络设备根据所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息、 所述第二接入设备接收所述终 端发送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路 损信息进行处理; 所述网络设备为所述第一接入设备, 第二接入设备或者网 络实体, 所述网络实体是与所述第一接入设备和第二接入设备不同的网络设 备, 所述第二接入设备是当前为所述终端服务的接入设备。
可选的, 该设备还包括:
第三发送模块, 用于向所述第二接入设备上报所述终端接收的干扰功率 信息, 使得所述网络设备在所述第二信息为所述终端发送所述无线信号时的 发射功率信息时根据所述终端发送所述无线信号时的发射功率信息、 所述第 一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接 收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备 发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所 述网络设备在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息、 所述终端对所述第二接入设备的测量信 息、 所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功率信息以及所述终端被所述第一接入设备服务时的第 一接入设备发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或 者, 使得所述网络设备根据所述第一接入设备接收所述终端发送的所述无线 信号的接收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号 的接收功率信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收 的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发 射功率信息, 确定所述终端能否由所述第一接入设备服务。
可选的, 所述第一发送模块具体用于:
根据所述第二接入设备配置的发射功率信息, 采用配置的发射功率信息 发送所述无线信号; 或者,
根据无线信号与发射功率信息的对应关系, 采用与所述无线信号对应的 发射功率信息发送所述无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先 约定的发射功率信息发送所述无线信号。
可选的, 所述第一发送模块具体用于:
根据所述第二接入设备配置的特征信息, 采用配置的特征信息发送所述 无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的无线信号, 发送预先约定 的无线信号。
本实施例可以获取第一信息, 之后可以根据该第一信息以及第一接入设 备接收该无线信号时的接收功率信息, 可以实现基于上行检测的处理, 进而 可以根据处理结果确定终端是否在小功率基站的覆盖范围内, 或者确定路损 以及开启发射机等。
图 14为本发明网络设备另一实施例的结构示意图,该设备 140包括收发 器 141和处理器 142; 收发器 141用于获取第一信息, 所述第一信息为终端 发送无线信号时的发射功率信息, 或者, 所述第一信息包括第二接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述第二接入设备到所述 终端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送 的所述无线信号的接收功率信息、 所述第二接入设备的发射功率信息和所述 终端对所述第二接入设备的测量信息; 以及, 获取所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息; 处理器 142用于根据所述第一 信息, 以及所述第一接入设备接收所述终端发送的所述无线信号的接收功率 信息, 进行处理; 所述网络设备为所述第一接入设备, 所述第二接入设备或 者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同 的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
可选的, 处理器具体用于根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息, 确定所述终端能否由所述 第一接入设备服务。
可选的, 收发器还用于获取干扰功率信息, 所述干扰功率信息为所述第 一接入设备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰功 率信息; 处理器具体用于根据所述第一信息, 以及所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所述 终端能否由所述第一接入设备服务。
可选的, 处理器具体用于根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息确定所述终端与所述第一接 入设备之间的路损, 根据所述终端与所述第一接入设备之间的路损确定所述 终端能否由所述第一接入设备服务。
可选的, 处理器具体用于当所述干扰功率信息为所述第一接入设备接收 的干扰功率信息时, 所述网络设备根据所述第一信息, 以及所述第一接入设 备接收所述终端发送的所述无线信号的接收功率信息和所述第一接入设备接 收的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射 功率信息确定信号质量, 根据所述信号质量确定所述终端能否由所述第一接 入设备服务; 或者, 所述网络设备根据所述第一信息, 以及所述第一接入设 备接收所述终端发送的所述无线信号的接收功率信息确定所述终端与所述第 一接入设备之间的路损; 以及, 所述网络设备根据所述第一信息, 以及所述 第一接入设备接收所述终端的发送的所述无线信号的接收功率信息和所述第 一接入设备接收的干扰信号功率信息以及所述终端被所述第一接入设备服务 时的终端发射功率信息确定信号质量; 根据所述终端与所述第一接入设备之 间的路损和所述信号质量, 确定所述终端能否由所述第一接入设备服务; 或 者, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 所述网络设备 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述终端接收的干扰信号功率信息以及所述终端被所述 第一接入设备服务时的第一接入设备发射功率信息确定信号质量, 根据所述 信号质量确定所述终端能否由所述第一接入设备服务; 或者, 所述网络设备 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息确定所述终端与所述第一接入设备之间的路损; 以及, 所 述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端发送的 所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以及所述 终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信号质 量; 根据所述终端与所述第一接入设备之间的路损和所述信号质量, 确定所 述终端能否由所述第一接入设备服务。
可选的, 处理器具体用于根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息, 将所述第一接入设备的发 射机开启; 或者, 根据所述第一信息, 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 确定所述终端与所述第一接入设备之 间的路损。
可选的, 收发器具体用于当所述网络设备为所述第二接入设备时, 接收 所述终端发送的所述终端发送无线信号时的发射功率信息; 或者, 接收所述 终端上报的测量信息, 并根据所述第二接入设备的发射功率信息、 所述第二 接入设备接收所述终端发送的所述无线信号的接收功率信息和所述测量信息 确定所述终端发送无线信号时的发射功率信息; 或者, 确定所述终端发送无 线信号时的发射功率信息, 所述终端发送无线信号时的发射功率信息是所述 第二接入设备配置给所述终端的或者所述第二接入设备与所述终端预先约定 的; 或者, 当所述网络设备为所述第一接入设备或所述网络实体时, 接收所 述第二接入设备发送的所述第一信息。
可选的, 收发器具体用于: 当所述网络设备为所述第二接入设备时, 获 取所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息, 获 取所述终端上报的测量信息, 获取第二接入设备的发射功率信息; 或者, 获 取所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息, 获 取所述第二接入设备到所述终端的路损信息; 当所述网络设备为所述第一接 入设备或所述网络实体时, 接收所述第二接入设备发送的所述第一信息。
可选的, 处理器具体用于当所述网络设备为所述第一接入设备或所述第 二接入设备时, 根据接收的所述无线信号确定所述终端发送无线信号时的发 射功率信息; 或者, 当所述网络设备为所述网络实体时, 确定的所述终端发 送无线信号时的发射功率信息; 或者, 接收所述第一接入设备或所述第二接 入设备发送的所述无线信号的信息, 根据所述对应关系和所述无线信号的信 息确定所述终端发送无线信号时的发射功率信息。
可选的, 收发器具体用于当所述网络设备为第一接入设备时, 根据所述 终端的特征信息接收无线信号或者接收预先约定的无线信号, 获取第一接入 设备接收终端发送的无线信号的接收功率信息; 或者, 当所述网络设备为所 述第二接入设备或所述网络实体时, 接收所述第一接入设备发送的所述第一 接入设备接收终端发送的无线信号的接收功率信息。
可选的, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 收发器具体用于当所述网络设备为所述第一接入设备时, 获取所述第一 接入设备接收的干扰功率信息; 或者, 当所述网络设备为所述第二接入设备 或所述网络实体时, 接收所述第一接入设备发送的所述第一接入设备接收的 干扰功率信息。
可选的, 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息 时, 处理器具体用于根据所述第一信息、 所述第一接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰功率信 息, 以及所述终端被所述第一接入设备服务时的终端发射功率信息, 确定所 述终端能否由所述第一接入设备服务。
可选的, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 收发 器具体用于当所述网络设备为所述第二接入设备时, 接收所述终端发送的所 述终端接收的干扰功率信息; 或者, 当所述网络设备为所述第一接入设备或 所述网络实体时, 接收所述第二接收设备发送的所述终端接收的干扰功率信 自
可选的, 当所述干扰功率信息为所述终端接收的干扰功率信息时, 处理 器具体用于根据所述第一信息、 所述第一接入设备接收所述终端发送的所述 无线信号的接收功率信息和所述终端接收的干扰功率信息, 以及所述终端被 所述第一接入设备服务时的第一接入设备发射功率信息, 确定所述终端能否 由所述第一接入设备服务。
可选的, 所述无线信号是所述终端根据特征信息发送的, 所述特征信息 包括如下项中的至少一项: 小区标识; 终端标识; 所述第二接入设备给所述 终端配置的发送无线信号的配置消息。
可选的, 所述第二接入设备给所述终端配置的发送无线信号的配置消息 包括如下项中的至少一项: 时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
本实施例可以获取第一信息, 之后可以根据该第一信息以及第一接入设 备接收该无线信号时的接收功率信息, 可以实现基于上行检测的处理, 进而 可以根据处理结果确定终端是否在小功率基站的覆盖范围内, 或者确定路损 以及开启发射机等。
图 15为本发明终端一实施例的结构示意图, 该终端 150包括处理器 151 和收发器 152; 处理器 151 用于生成无线信号, 或者生成无线信号和第二信 息; 收发器 152用于无线信号以及向第二接入设备上报第二信息, 所述无线 信号使得第一接入设备获取第一接入设备接收所述终端发送的所述无线信号 的接收功率信息, 所述第二信息为所述终端发送所述无线信号时的发射功率 信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量信息, 使 得网络设备在所述第二信息为所述终端发送所述无线信号时的发射功率信息 时, 根据所述终端发送所述无线信号时的发射功率信息和所述第一接入设备 接收所述终端发送的所述无线信号的接收功率信息进行处理, 或者在所述第 二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设 备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的 发射功率信息和所述终端对所述第二接入设备的测量信息以及所述第一接入 设备接收所述终端发送的所述无线信号的接收功率信息进行处理; 或者, 收 发器 152用于发送无线信号, 所述无线信号使得第一接入设备获取第一接入 设备接收所述终端发送的所述无线信号的接收功率信息以及第二接入设备获 取第二接入设备接收所述终端发送的所述无线信号的接收功率信息, 使得网 络设备根据所述第一接入设备接收所述终端发送的所述无线信号的接收功率 信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息 和所述第二接入设备到所述终端的路损信息进行处理; 所述网络设备为所述 第一接入设备, 第二接入设备或者网络实体, 所述网络实体是与所述第一接 入设备和第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终 端服务的接入设备。
可选的, 收发器 152还用于向所述第二接入设备上报所述终端接收的干 扰功率信息, 使得所述网络设备在所述第二信息为所述终端发送所述无线信 号时的发射功率信息时根据所述终端发送所述无线信号时的发射功率信息、 所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述 终端接收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接 入设备发射功率信息, 确定所述终端能否由所述第一接入设备服务, 或者, 使得所述网络设备在所述第二信息为所述终端对所述第二接入设备的测量信 息时, 根据所述第二接入设备接收所述终端发送的所述无线信号的接收功率 信息、 所述第二接入设备的发射功率信息、 所述终端对所述第二接入设备的 测量信息、 所述第一接入设备接收所述终端发送的所述无线信号的接收功率 信息、 所述终端接收的干扰功率信息以及所述终端被所述第一接入设备服务 时的第一接入设备发射功率信息, 确定所述终端能否由所述第一接入设备服 务, 或者, 使得所述网络设备根据所述第一接入设备接收所述终端发送的所 述无线信号的接收功率信息、 所述第二接入设备接收所述终端发送的所述无 线信号的接收功率信息、 所述第二接入设备到所述终端的路损信息、 所述终 端接收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入 设备发射功率信息, 确定所述终端能否由所述第一接入设备服务。
可选的, 收发器 152具体用于根据所述第二接入设备配置的发射功率信 息, 采用配置的发射功率信息发送所述无线信号; 或者, 根据无线信号与发 射功率信息的对应关系, 采用与所述无线信号对应的发射功率信息发送所述 无线信号; 或者, 根据所述第二接入设备与所述终端预先约定的发射功率信 息, 采用预先约定的发射功率信息发送所述无线信号。
可选的, 收发器 152具体用于根据所述第二接入设备配置的特征信息, 采用配置的特征信息发送所述无线信号; 或者, 根据所述第二接入设备与所 述终端预先约定的无线信号, 发送预先约定的无线信号。
本实施例可以获取第一信息, 之后可以根据该第一信息以及第一接入设 备接收该无线信号时的接收功率信息, 可以实现基于上行检测的处理, 进而 可以根据处理结果确定终端是否在小功率基站的覆盖范围内, 或者确定路损 以及开启发射机等。 上述的收发器可以是独立的发送器和接收器, 分别执行发送功能和接收 功能, 也可以为合设在一起具体发送功能和接收功能的设备。 具体可以采用 网线、 光纤或天线实现, 天线可以是线性天线、 环形天线、 阵列天线等。
上述的处理器可以是通用处理器、 数字信号处理器(DSP ) 、 专用集成 电路(ASIC ) 、 现成可编程门阵列 (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。 通用处理器可以是微处理器或者 任何常规的处理器。
另外, 该设备中还可以包括存储器、 存储器可以是随机存储器, 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。 以及, 还可以包括总线系统, 总线系统例如包括数据总 线、 电源总线、 控制总线或状态信号总线等。
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, 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。
在本申请所提供的几个实施例中, 应该理解到, 所揭露的系统, 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, 所述模块或单元的划分, 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。
另夕卜,在本申请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。 上述集成的单元既可以采用硬件的形式实现, 也可以采用软件功能单 元的形式实现。
所述集成的单元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 申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的 全部或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)或处理器(processor )执行本申请各个实施例所 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、 只读 存储器(ROM, Read-Only Memory ),随机存取存储器(RAM, Random Access Memory )、 磁碟或者光盘等各种可以存储程序代码的介质。
以上所述, 以上实施例仅用以说明本申请的技术方案, 而非对其限制; 尽管参照前述实施例对本申请进行了详细的说明, 本领域的普通技术人员应 当理解: 其依然可以对前述各实施例所记载的技术方案进行修改, 或者对其 中部分技术特征进行等同替换; 而这些修改或者替换, 并不使相应技术方案 的本质脱离本申请各实施例技术方案的精神和范围。

Claims

权 利 要求 书
1、 一种基于上行检测的处理方法, 其特征在于, 包括:
网络设备获取第一信息, 所述第一信息为终端发送无线信号时的发射功 率信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无 线信号的接收功率信息和所述第二接入设备到所述终端的路损信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信号的接收功 率信息、 所述第二接入设备的发射功率信息和所述终端对所述第二接入设备 的测量信息;
所述网络设备获取所述第一接入设备接收所述终端发送的所述无线信号 的接收功率信息;
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
2、 根据权利要求 1所述的方法, 其特征在于, 所述网络设备根据所述第 一信息, 以及所述第一接入设备接收所述终端发送的所述无线信号的接收功 率信息, 进行处理, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 确定所述终端由所述第一接入设备服 务。
3、 根据权利要求 1所述的方法, 其特征在于, 还包括:
所述网络设备获取干扰功率信息, 所述干扰功率信息为所述第一接入设 备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰功率信息; 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 进行处理, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所述终端由 所述第一接入设备服务。
4、 根据权利要求 2所述的方法, 其特征在于, 所述网络设备根据所述第 一信息, 以及所述第一接入设备接收所述终端发送的所述无线信号的接收功 率信息, 确定所述终端由所述第一接入设备服务, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损, 根据所述终端与所述第一接入设备之间的路损确定所述终端由所述 第一接入设备服务。
5、 根据权利要求 3所述的方法, 其特征在于, 所述网络设备根据所述第 一信息, 以及所述第一接入设备接收所述终端发送的所述无线信号的接收功 率信息和所述干扰功率信息,确定所述终端由所述第一接入设备服务, 包括: 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端由所述第一接入设备服务; 或者, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端由所述第一接入设备服务; 或者, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端由所述第一接入设备服务。
6、 根据权利要求 1所述的方法, 其特征在于, 所述网络设备根据所述第 一信息, 以及所述第一接入设备接收所述终端发送的所述无线信号的接收功 率信息, 进行处理, 包括:
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 确定所述终端与所述第一接入设备之 间的路损。
7、 根据权利要求 1-6任一项所述的方法, 其特征在于, 所述第一信息为 终端发送无线信号时的发射功率信息, 所述获取第一信息, 包括:
当所述网络设备为所述第二接入设备时, 所述第二接入设备接收所述终 端发送的所述终端发送无线信号时的发射功率信息; 或者, 所述第二接入设 备接收所述终端上报的测量信息 ,并根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息和所述 测量信息确定所述终端发送无线信号时的发射功率信息; 或者, 所述第二接 入设备确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信 号时的发射功率信息是所述第二接入设备配置给所述终端的或者所述第二接 入设备与所述终端预先约定的; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接入设备发送的所述第一信息。
8、 根据权利要求 1-6任一项所述的方法, 其特征在于, 所述第一信息包 括第二接入设备接收所述终端发送的所述无线信号的接收功率信息和所述第 二接入设备到所述终端的路损信息; 或者, 所述第一信息包括第二接入设备 接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的发 射功率信息和所述终端对所述第二接入设备的测量信息,所述获取第一信息, 包括:
当所述网络设备为所述第二接入设备时, 所述第二接入设备获取所述第 二接入设备接收所述终端发送的所述无线信号的接收功率信息, 所述第二接 入设备获取所述终端上报的测量信息, 所述第二接入设备获取第二接入设备 的发射功率信息; 或者,
所述第二接入设备获取所述第二接入设备接收所述终端发送的所述无线 信号的接收功率信息, 所述第二接入设备获取所述第二接入设备到所述终端 的路损信息;
当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接入设备发送的所述第一信息。
9、 根据权利要求 1-6任一项所述的方法, 其特征在于, 所述第一信息为 终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射功率 信息与所述无线信号存在对应关系, 所述获取第一信息, 包括:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 所述第一 接入设备或所述第二接入设备根据接收的所述无线信号确定所述终端发送无 线信号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 所述网络实体接收所述第一接入设 备或所述第二接入设备确定的所述终端发送无线信号时的发射功率信息; 或 者, 所述网络实体接收所述第一接入设备或所述第二接入设备发送的所述无 线信号的信息, 根据所述对应关系和所述无线信号的信息确定所述终端发送 无线信号时的发射功率信息。
10、 根据权利要求 1-6任一项所述的方法, 其特征在于, 所述网络设备 获取第一接入设备接收终端发送的无线信号的接收功率信息, 包括:
当所述网络设备为第一接入设备时, 所述第一接入设备根据所述终端的 特征信息接收无线信号或者接收预先约定的无线信号, 获取第一接入设备接 收终端发送的无线信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 所述第二接入 设备或所述网络实体接收所述第一接入设备发送的所述第一接入设备接收终 端发送的无线信号的接收功率信息。
11、 根据权利要求 3所述的方法, 其特征在于, 当所述干扰功率信息为 所述第一接入设备接收的干扰功率信息时, 所述网络设备获取第一接入设备 接收的干扰功率信息, 包括:
当所述网络设备为所述第一接入设备时, 所述第一接入设备获取所述第 一接入设备接收的干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 所述第二接入 设备或所述网络实体接收所述第一接入设备发送的所述第一接入设备接收的 干扰功率信息。
12、 根据权利要求 3所述的方法, 其特征在于, 当所述干扰功率信息为 所述第一接入设备接收的干扰功率信息时,所述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息和 所述干扰功率信息, 确定所述终端由所述第一接入设备服务, 包括:
所述网络设备根据所述第一信息、 所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端被所述第一接入设备服务时的终端发射功率信息, 确定所述终 端由所述第一接入设备服务。
13、 根据权利要求 3所述的方法, 其特征在于, 当所述干扰功率信息为 所述终端接收的干扰功率信息时, 所述网络设备获取干扰功率信息, 包括: 当所述网络设备为所述第二接入设备时, 所述第二接入设备接收所述终 端发送的所述终端接收的干扰功率信息; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 所述第一接入 设备或所述网络实体接收所述第二接收设备发送的所述终端接收的干扰功率 信息。
14、 根据权利要求 3所述的方法, 其特征在于, 当所述干扰功率信息为 所述终端接收的干扰功率信息时, 所述网络设备根据所述第一信息, 以及所 述第一接入设备接收所述终端发送的所述无线信号的接收功率信息和所述干 扰功率信息, 确定所述终端由所述第一接入设备服务, 包括:
所述网络设备根据所述第一信息、 所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述终端接收的干扰功率信息, 以及所述 终端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定所述终 端由所述第一接入设备服务。
15、 根据权利要求 1-6任一项所述的方法, 其特征在于, 所述无线信号 是所述终端根据特征信息发送的, 所述特征信息包括如下项中的至少一项: 小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
16、 根据权利要求 15所述的方法, 其特征在于, 所述第二接入设备给所 述终端配置的发送无线信号的配置消息包括如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
17、 一种基于上行检测的处理方法, 其特征在于, 包括:
终端发送无线信号以及向第二接入设备上报第二信息, 所述无线信号使 得第一接入设备获取第一接入设备接收所述终端发送的所述无线信号的接收 功率信息, 所述第二信息为所述终端发送所述无线信号时的发射功率信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量信息, 使得网络 设备在所述第二信息为所述终端发送所述无线信号时的发射功率信息时, 根 据所述终端发送所述无线信号时的发射功率信息和所述第一接入设备接收所 述终端发送的所述无线信号的接收功率信息进行处理, 或者在所述第二信息 为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设备接收 所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的发射功 率信息和所述终端对所述第二接入设备的测量信息以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息进行处理;
或者,
终端发送无线信号, 所述无线信号使得第一接入设备获取第一接入设备 接收所述终端发送的所述无线信号的接收功率信息以及第二接入设备获取第 二接入设备接收所述终端发送的所述无线信号的接收功率信息, 使得网络设 备根据所述第一接入设备接收所述终端发送的所述无线信号的接收功率信 息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息和 所述第二接入设备到所述终端的路损信息进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
18、 根据权利要求 17所述的方法, 其特征在于, 还包括: 所述终端向所述第二接入设备上报所述终端接收的干扰功率信息, 使得 所述网络设备在所述第二信息为所述终端发送所述无线信号时的发射功率信 息时根据所述终端发送所述无线信号时的发射功率信息、 所述第一接入设备 接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功 率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端由所述第一接入设备服务, 或者, 使得所述网络设备在所 述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接 入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设 备的发射功率信息、 所述终端对所述第二接入设备的测量信息、 所述第一接 入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的 干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射 功率信息, 确定所述终端由所述第一接入设备服务, 或者, 使得所述网络设 备根据所述第一接入设备接收所述终端发送的所述无线信号的接收功率信 息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收的干扰功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定 所述终端由所述第一接入设备服务。
19、 根据权利要求 17或 18所述的方法, 其特征在于, 所述终端发送无 线信号, 包括:
所述终端根据所述第二接入设备配置的发射功率信息, 采用配置的发射 功率信息发送所述无线信号; 或者,
所述终端根据无线信号与发射功率信息的对应关系, 采用与所述无线信 号对应的发射功率信息发送所述无线信号; 或者,
所述终端根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先约定的发射功率信息发送所述无线信号。
20、 根据权利要求 17或 18所述的方法, 其特征在于, 所述终端发送无 线信号, 包括:
所述终端根据所述第二接入设备配置的特征信息, 采用配置的特征信息 发送所述无线信号; 或者, 所述终端根据所述第二接入设备与所述终端预先约定的无线信号, 发送 预先约定的无线信号。
21、 一种网络设备, 其特征在于, 包括:
第一获取模块, 用于获取第一信息, 所述第一信息为终端发送无线信号 时的发射功率信息, 或者, 所述第一信息包括第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信 息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信 号的接收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第 二接入设备的测量信息;
第二获取模块, 用于获取所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息;
处理模块, 用于根据所述第一信息, 以及所述第一接入设备接收所述终 端发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
22、根据权利要求 21所述的设备,其特征在于,所述处理模块具体用于: 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端由所述第一接入设备服务。
23、 根据权利要求 21所述的设备, 其特征在于, 还包括:
第三获取模块, 用于获取干扰功率信息, 所述干扰功率信息为所述第一 接入设备接收的干扰功率信息或者所述终端上报的所述终端接收的干扰功率 信息;
所述处理模块具体用于: 根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定 所述终端由所述第一接入设备服务。
24、根据权利要求 22所述的设备,其特征在于,所述处理模块具体用于: 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损, 根据 所述终端与所述第一接入设备之间的路损确定所述终端由所述第一接入设备 服务。
25、根据权利要求 23所述的设备,其特征在于,所述处理模块具体用于: 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功 率信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信 号质量, 根据所述信号质量确定所述终端由所述第一接入设备服务; 或者, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端的发送的所述无线信号的接收功率信息和所述第一接入设备接收 的干扰信号功率信息以及所述终端被所述第一接入设备服务时的终端发射功 率信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述 信号质量, 确定所述终端由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信 号质量, 根据所述信号质量确定所述终端由所述第一接入设备服务; 或者, 所述网络设备根据所述第一信息 , 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息确定所述终端与所述第一接入设备之间 的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息和所述终端接收的干扰信号 功率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率 信息确定信号质量; 根据所述终端与所述第一接入设备之间的路损和所述信 号质量, 确定所述终端由所述第一接入设备服务。
26、根据权利要求 21所述的设备,其特征在于,所述处理模块具体用于: 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者, 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端与所述第一接入设备之间的路损。
27、 根据权利要求 21-26任一项所述的设备, 其特征在于, 所述第一信 息为终端发送无线信号时的发射功率信息, 所述第一获取模块具体用于: 当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 发送无线信号时的发射功率信息; 或者, 接收所述终端上报的测量信息, 并 根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述测量信息确定所述终端发送无线信 号时的发射功率信息; 或者, 确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射功率信息是所述第二接入设备配置给所述终 端的或者所述第二接入设备与所述终端预先约定的; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
28、 根据权利要求 21-26任一项所述的设备, 其特征在于, 所述第一信 息包括第二接入设备接收所述终端发送的所述无线信号的接收功率信息和所 述第二接入设备到所述终端的路损信息; 或者, 所述第一信息包括第二接入 设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备 的发射功率信息和所述终端对所述第二接入设备的测量信息, 所述第一获取 模块具体用于:
当所述网络设备为所述第二接入设备时, 获取所述第二接入设备接收所 述终端发送的所述无线信号的接收功率信息,获取所述终端上报的测量信息, 获取第二接入设备的发射功率信息; 或者, 获取所述第二接入设备接收所述 终端发送的所述无线信号的接收功率信息, 获取所述第二接入设备到所述终 端的路损信息;
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
29、 根据权利要求 21-26任一项所述的设备, 其特征在于, 所述第一信 息为终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射 功率信息与所述无线信号存在对应关系, 所述第一获取模块具体用于:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 根据接收 的所述无线信号确定所述终端发送无线信号时的发射功率信息; 或者, 当所述网络设备为所述网络实体时, 接收所述第一接入设备或所述第二 接入设备确定的所述终端发送无线信号时的发射功率信息; 或者, 接收所述 第一接入设备或所述第二接入设备发送的所述无线信号的信息, 根据所述对 应关系和所述无线信号的信息确定所述终端发送无线信号时的发射功率信 自
30、 根据权利要求 21-26任一项所述的设备, 其特征在于, 所述第二获 取模块具体用于:
当所述网络设备为第一接入设备时, 根据所述终端的特征信息接收无线 信号或者接收预先约定的无线信号, 获取第一接入设备接收终端发送的无线 信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收终端发送的无线信号的接收功率信 自
31、 根据权利要求 23所述的设备, 其特征在于, 当所述干扰功率信息为 所述第一接入设备接收的干扰功率信息时, 所述第三获取模块具体用于: 当所述网络设备为所述第一接入设备时, 获取所述第一接入设备接收的 干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收的干扰功率信息。
32、 根据权利要求 23所述的设备, 其特征在于, 当所述干扰功率信息为 所述第一接入设备接收的干扰功率信息时, 所述处理模块具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端 被所述第一接入设备服务时的终端发射功率信息, 确定所述终端由所述第一 接入设备服务。
33、 根据权利要求 23所述的设备, 其特征在于, 当所述干扰功率信息为 所述终端接收的干扰功率信息时, 所述第三获取模块具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 接收的干扰功率信息; 或者, 当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接收设备发送的所述终端接收的干扰功率信息。
34、 根据权利要求 23所述的设备, 其特征在于, 当所述干扰功率信息为 所述终端接收的干扰功率信息时, 所述处理模块具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述终端接收的干扰功率信息, 以及所述终端被所述第 一接入设备服务时的第一接入设备发射功率信息, 确定所述终端由所述第一 接入设备服务。
35、 根据权利要求 21-26任一项所述的设备, 其特征在于, 所述无线信 号是所述终端根据特征信息发送的,所述特征信息包括如下项中的至少一项: 小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
36、 根据权利要求 35所述的设备, 其特征在于, 所述第二接入设备给所 述终端配置的发送无线信号的配置消息包括如下项中的至少一项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
37、 一种终端, 其特征在于, 包括:
第一发送模块, 用于发送无线信号以及向第二接入设备上报第二信息, 所述无线信号使得第一接入设备获取第一接入设备接收所述终端发送的所述 无线信号的接收功率信息, 所述第二信息为所述终端发送所述无线信号时的 发射功率信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量 信息, 使得网络设备在所述第二信息为所述终端发送所述无线信号时的发射 功率信息时, 根据所述终端发送所述无线信号时的发射功率信息和所述第一 接入设备接收所述终端发送的所述无线信号的接收功率信息进行处理, 或者 在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第 二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接 入设备的发射功率信息和所述终端对所述第二接入设备的测量信息以及所述 第一接入设备接收所述终端发送的所述无线信号的接收功率信息进行处理; 或者,
第二发送模块, 用于发送无线信号, 所述无线信号使得第一接入设备获 取第一接入设备接收所述终端发送的所述无线信号的接收功率信息以及第二 接入设备获取第二接入设备接收所述终端发送的所述无线信号的接收功率信 息, 使得网络设备根据所述第一接入设备接收所述终端发送的所述无线信号 的接收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接 收功率信息和所述第二接入设备到所述终端的路损信息进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
38、 根据权利要求 37所述的终端, 其特征在于, 还包括:
第三发送模块, 用于向所述第二接入设备上报所述终端接收的干扰功率 信息, 使得所述网络设备在所述第二信息为所述终端发送所述无线信号时的 发射功率信息时根据所述终端发送所述无线信号时的发射功率信息、 所述第 一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述终端接 收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接入设备 发射功率信息, 确定所述终端由所述第一接入设备服务, 或者, 使得所述网 络设备在所述第二信息为所述终端对所述第二接入设备的测量信息时, 根据 所述第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述 第二接入设备的发射功率信息、 所述终端对所述第二接入设备的测量信息、 所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述 终端接收的干扰功率信息以及所述终端被所述第一接入设备服务时的第一接 入设备发射功率信息, 确定所述终端由所述第一接入设备服务, 或者, 使得 所述网络设备根据所述第一接入设备接收所述终端发送的所述无线信号的接 收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功 率信息、 所述第二接入设备到所述终端的路损信息、 所述终端接收的干扰功 率信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端由所述第一接入设备服务。
39、 根据权利要求 37或 38所述的终端, 其特征在于, 所述第一发送模 块具体用于:
根据所述第二接入设备配置的发射功率信息, 采用配置的发射功率信息 发送所述无线信号; 或者, 根据无线信号与发射功率信息的对应关系, 采用与所述无线信号对应的 发射功率信息发送所述无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先 约定的发射功率信息发送所述无线信号。
40、 根据权利要求 37或 38所述的终端, 其特征在于, 所述第一发送模 块具体用于:
根据所述第二接入设备配置的特征信息, 采用配置的特征信息发送所述 无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的无线信号, 发送预先约定 的无线信号。
41、 一种网络设备, 其特征在于, 包括:
收发器, 用于获取第一信息, 所述第一信息为终端发送无线信号时的发 射功率信息; 或者, 所述第一信息包括第二接入设备接收所述终端发送的所 述无线信号的接收功率信息和所述第二接入设备到所述终端的路损信息; 或 者, 所述第一信息包括第二接入设备接收所述终端发送的所述无线信号的接 收功率信息、 所述第二接入设备的发射功率信息和所述终端对所述第二接入 设备的测量信息; 以及, 获取所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息;
处理器, 用于根据所述第一信息, 以及所述第一接入设备接收所述终端 发送的所述无线信号的接收功率信息, 进行处理;
所述网络设备为所述第一接入设备, 所述第二接入设备或者网络实体, 所述网络实体是与所述第一接入设备和所述第二接入设备不同的网络设备, 所述第二接入设备是当前为所述终端服务的接入设备。
42、 根据权利要求 41所述的设备, 其特征在于, 所述处理器具体用于: 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端由所述第一接入设备服务。
43、 根据权利要求 41所述的设备, 其特征在于, 所述收发器还用于: 获取干扰功率信息, 所述干扰功率信息为所述第一接入设备接收的干扰 功率信息或者所述终端上报的所述终端接收的干扰功率信息;
所述处理器具体用于: 根据所述第一信息, 以及所述第一接入设备接收 所述终端发送的所述无线信号的接收功率信息和所述干扰功率信息, 确定所 述终端由所述第一接入设备服务。
44、 根据权利要求 42所述的设备, 其特征在于, 所述处理器具体用于: 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损, 根据 所述终端与所述第一接入设备之间的路损确定所述终端由所述第一接入设备 服务。
45、 根据权利要求 43所述的设备, 其特征在于, 所述处理器具体用于: 当所述干扰功率信息为所述第一接入设备接收的干扰功率信息时, 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息和所述第一接入设备接收的干扰信号功率信息以及所 述终端被所述第一接入设备服务时的终端发射功率信息确定信号质量, 根据 所述信号质量确定所述终端由所述第一接入设备服务; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端的发 送的所述无线信号的接收功率信息和所述第一接入设备接收的干扰信号功率 信息以及所述终端被所述第一接入设备服务时的终端发射功率信息确定信号 质量; 根据所述终端与所述第一接入设备之间的路损和所述信号质量, 确定 所述终端由所述第一接入设备服务;
或者,
当所述干扰功率信息为所述终端接收的干扰功率信息时,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息和所述终端接收的干扰信号功率信息以及所述终端被 所述第一接入设备服务时的第一接入设备发射功率信息确定信号质量, 根据 所述信号质量确定所述终端由所述第一接入设备服务; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息确定所述终端与所述第一接入设备之间的路损; 以及, 所述网络设备根据所述第一信息, 以及所述第一接入设备接收所述终端发送 的所述无线信号的接收功率信息和所述终端接收的干扰信号功率信息以及所 述终端被所述第一接入设备服务时的第一接入设备发射功率信息确定信号质 量; 根据所述终端与所述第一接入设备之间的路损和所述信号质量, 确定所 述终端由所述第一接入设备服务。
46、 根据权利要求 41所述的设备, 其特征在于, 所述处理器具体用于: 根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 将所述第一接入设备的发射机开启; 或者,
根据所述第一信息, 以及所述第一接入设备接收所述终端发送的所述无 线信号的接收功率信息, 确定所述终端与所述第一接入设备之间的路损。
47、 根据权利要求 41-46任一项所述的设备, 其特征在于, 所述第一信 息为终端发送无线信号时的发射功率信息, 所述收发器具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 发送无线信号时的发射功率信息; 或者, 接收所述终端上报的测量信息, 并 根据所述第二接入设备的发射功率信息、 所述第二接入设备接收所述终端发 送的所述无线信号的接收功率信息和所述测量信息确定所述终端发送无线信 号时的发射功率信息; 或者, 确定所述终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射功率信息是所述第二接入设备配置给所述终 端的或者所述第二接入设备与所述终端预先约定的; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
48、 根据权利要求 41-46任一项所述的设备, 其特征在于, 所述第一信 息包括第二接入设备接收所述终端发送的所述无线信号的接收功率信息和所 述第二接入设备到所述终端的路损信息; 或者, 所述第一信息包括第二接入 设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备 的发射功率信息和所述终端对所述第二接入设备的测量信息, 所述收发器具 体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述无线 信号的接收功率信息, 所述第二接入设备获取所述终端上报的测量信息, 所 述第二接入设备获取第二接入设备的发射功率信息; 或者, 获取所述第二接 入设备接收所述终端发送的所述无线信号的接收功率信息, 所述第二接入设 备获取所述第二接入设备到所述终端的路损信息; 当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接入设备发送的所述第一信息。
49、 根据权利要求 41-46任一项所述的设备, 其特征在于, 所述第一信 息为终端发送无线信号时的发射功率信息, 所述终端发送无线信号时的发射 功率信息与所述无线信号存在对应关系, 所述收发器具体用于:
当所述网络设备为所述第一接入设备或所述第二接入设备时, 根据接收 的所述无线信号确定所述终端发送无线信号时的发射功率信息; 或者,
当所述网络设备为所述网络实体时, 接收所述第一接入设备或所述第二 接入设备确定的所述终端发送无线信号时的发射功率信息; 或者, 接收所述 第一接入设备或所述第二接入设备发送的所述无线信号的信息, 根据所述对 应关系和所述无线信号的信息确定所述终端发送无线信号时的发射功率信 自
50、 根据权利要求 41-46任一项所述的设备, 其特征在于, 所述收发器 具体用于:
当所述网络设备为第一接入设备时, 根据所述终端的特征信息接收无线 信号或者接收预先约定的无线信号, 获取第一接入设备接收终端发送的无线 信号的接收功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收终端发送的无线信号的接收功率信 自
51、 根据权利要求 43所述的设备, 其特征在于, 当所述干扰功率信息为 所述第一接入设备接收的干扰功率信息时, 所述收发器具体用于:
当所述网络设备为所述第一接入设备时, 获取所述第一接入设备接收的 干扰功率信息; 或者,
当所述网络设备为所述第二接入设备或所述网络实体时, 接收所述第一 接入设备发送的所述第一接入设备接收的干扰功率信息。
52、 根据权利要求 43所述的设备, 其特征在于, 当所述干扰功率信息为 所述第一接入设备接收的干扰功率信息时, 所述处理器具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述第一接入设备接收的干扰功率信息, 以及所述终端 被所述第一接入设备服务时的终端发射功率信息, 确定所述终端由所述第一 接入设备服务。
53、 根据权利要求 43所述的设备, 其特征在于, 当所述干扰功率信息为 所述终端接收的干扰功率信息时, 所述收发器具体用于:
当所述网络设备为所述第二接入设备时, 接收所述终端发送的所述终端 接收的干扰功率信息; 或者,
当所述网络设备为所述第一接入设备或所述网络实体时, 接收所述第二 接收设备发送的所述终端接收的干扰功率信息。
54、 根据权利要求 43所述的设备, 其特征在于, 当所述干扰功率信息为 所述终端接收的干扰功率信息时, 所述处理器具体用于:
根据所述第一信息、 所述第一接入设备接收所述终端发送的所述无线信 号的接收功率信息和所述终端接收的干扰功率信息, 以及所述终端被所述第 一接入设备服务时的第一接入设备发射功率信息, 确定所述终端由所述第一 接入设备服务。
55、 根据权利要求 41-46任一项所述的设备, 其特征在于, 所述无线信 号是所述终端根据特征信息发送的,所述特征信息包括如下项中的至少一项: 小区标识;
终端标识;
所述第二接入设备给所述终端配置的发送无线信号的配置消息。
56、 根据权利要求 41-46任一项所述的设备, 其特征在于, 所述第二接 入设备给所述终端配置的发送无线信号的配置消息包括如下项中的至少一 项:
时域资源信息, 频域资源信息, 码域资源信息, 空间域资源信息。
57、 一种终端, 其特征在于, 包括:
收发器, 用于发送无线信号以及向第二接入设备上报第二信息, 所述无 线信号使得第一接入设备获取第一接入设备接收所述终端发送的所述无线信 号的接收功率信息, 所述第二信息为所述终端发送所述无线信号时的发射功 率信息, 或者, 所述第二信息为所述终端对所述第二接入设备的测量信息, 使得网络设备在所述第二信息为所述终端发送所述无线信号时的发射功率信 息时, 根据所述终端发送所述无线信号时的发射功率信息和所述第一接入设 备接收所述终端发送的所述无线信号的接收功率信息进行处理, 或者在所述 第二信息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入 设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备 的发射功率信息和所述终端对所述第二接入设备的测量信息以及所述第一接 入设备接收所述终端发送的所述无线信号的接收功率信息进行处理; 或者, 所述收发器用于发送无线信号, 所述无线信号使得第一接入设备获取第 一接入设备接收所述终端发送的所述无线信号的接收功率信息以及第二接入 设备获取第二接入设备接收所述终端发送的所述无线信号的接收功率信息, 使得网络设备根据所述第一接入设备接收所述终端发送的所述无线信号的接 收功率信息、 所述第二接入设备接收所述终端发送的所述无线信号的接收功 率信息和所述第二接入设备到所述终端的路损信息进行处理;
所述网络设备为所述第一接入设备, 第二接入设备或者网络实体, 所述 网络实体是与所述第一接入设备和第二接入设备不同的网络设备, 所述第二 接入设备是当前为所述终端服务的接入设备。
58、 根据权利要求 57所述的终端, 其特征在于, 所述收发器还用于: 向所述第二接入设备上报所述终端接收的干扰功率信息, 使得所述网络 设备在所述第二信息为所述终端发送所述无线信号时的发射功率信息时根据 所述终端发送所述无线信号时的发射功率信息、 所述第一接入设备接收所述 终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功率信息以 及所述终端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定 所述终端由所述第一接入设备服务, 或者, 使得所述网络设备在所述第二信 息为所述终端对所述第二接入设备的测量信息时, 根据所述第二接入设备接 收所述终端发送的所述无线信号的接收功率信息、 所述第二接入设备的发射 功率信息、 所述终端对所述第二接入设备的测量信息、 所述第一接入设备接 收所述终端发送的所述无线信号的接收功率信息、 所述终端接收的干扰功率 信息以及所述终端被所述第一接入设备服务时的第一接入设备发射功率信 息, 确定所述终端由所述第一接入设备服务, 或者, 使得所述网络设备根据 所述第一接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述 第二接入设备接收所述终端发送的所述无线信号的接收功率信息、 所述第二 接入设备到所述终端的路损信息、 所述终端接收的干扰功率信息以及所述终 端被所述第一接入设备服务时的第一接入设备发射功率信息, 确定所述终端 由所述第一接入设备服务。
59、 根据权利要求 57或 58所述的终端, 其特征在于, 所述收发器具体 用于:
根据所述第二接入设备配置的发射功率信息, 采用配置的发射功率信息 发送所述无线信号; 或者,
根据无线信号与发射功率信息的对应关系, 采用与所述无线信号对应的 发射功率信息发送所述无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的发射功率信息, 采用预先 约定的发射功率信息发送所述无线信号。
60、 根据权利要求 57或 58所述的终端, 其特征在于, 所述收发器具体 用于:
根据所述第二接入设备配置的特征信息, 采用配置的特征信息发送所述 无线信号; 或者,
根据所述第二接入设备与所述终端预先约定的无线信号, 发送预先约定 的无线信号。
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US20150201319A1 (en) 2015-07-16
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US20170265054A1 (en) 2017-09-14
US9693216B2 (en) 2017-06-27

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