WO2014113928A1 - 异频邻区接近检测及测量方法、无线网络控制器和用户设备 - Google Patents
异频邻区接近检测及测量方法、无线网络控制器和用户设备 Download PDFInfo
- Publication number
- WO2014113928A1 WO2014113928A1 PCT/CN2013/070856 CN2013070856W WO2014113928A1 WO 2014113928 A1 WO2014113928 A1 WO 2014113928A1 CN 2013070856 W CN2013070856 W CN 2013070856W WO 2014113928 A1 WO2014113928 A1 WO 2014113928A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- frequency
- inter
- information
- user equipment
- stamper
- Prior art date
Links
- 238000001514 detection method Methods 0.000 title claims abstract description 109
- 238000000691 measurement method Methods 0.000 title claims abstract description 29
- 238000013459 approach Methods 0.000 title claims abstract description 9
- 238000005259 measurement Methods 0.000 claims abstract description 346
- 238000000034 method Methods 0.000 claims abstract description 70
- 230000006835 compression Effects 0.000 claims description 138
- 238000007906 compression Methods 0.000 claims description 138
- 230000004913 activation Effects 0.000 claims description 50
- 230000004044 response Effects 0.000 claims description 20
- 238000011084 recovery Methods 0.000 claims description 19
- 230000003213 activating effect Effects 0.000 claims description 10
- 238000012545 processing Methods 0.000 claims description 5
- 230000000737 periodic effect Effects 0.000 claims 6
- 230000005540 biological transmission Effects 0.000 abstract description 74
- 238000010586 diagram Methods 0.000 description 20
- 230000000694 effects Effects 0.000 description 16
- 230000006854 communication Effects 0.000 description 11
- 238000004891 communication Methods 0.000 description 9
- 230000009849 deactivation Effects 0.000 description 2
- 230000001413 cellular effect Effects 0.000 description 1
- 239000003795 chemical substances by application Substances 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 230000009977 dual effect Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000002360 explosive Substances 0.000 description 1
- 230000000977 initiatory effect Effects 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000010295 mobile communication Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0083—Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
- H04W36/0085—Hand-off measurements
- H04W36/0094—Definition of hand-off measurement parameters
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0083—Determination of parameters used for hand-off, e.g. generation or modification of neighbour cell lists
- H04W36/0085—Hand-off measurements
- H04W36/0088—Scheduling hand-off measurements
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/04—Reselecting a cell layer in multi-layered cells
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
- H04W36/0061—Transmission or use of information for re-establishing the radio link of neighbour cell information
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/02—Terminal devices
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W88/00—Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
- H04W88/12—Access point controller devices
Definitions
- the present invention relates to the field of communications technologies, and in particular, to an inter-frequency neighbor proximity detection and measurement method, a radio network controller, and a user equipment. Background technique
- a heterogeneous network (referred to as Hetnet) is a network composed of cells of different sizes and types, such as a macro cell, a micro cell, a pico cell, a femto cell, and a cell in a radio remote mode.
- Hetnet a network composed of cells of different sizes and types, such as a macro cell, a micro cell, a pico cell, a femto cell, and a cell in a radio remote mode.
- the modulo can be enabled to measure the inter-frequency neighboring cell; the UE finds the micro-cell and reports it to the inter-cell.
- the network side sends a different frequency micro cell list and an inter-frequency compression mode configuration to the UE, and the UE measures the inter-frequency micro cell according to the inter-frequency micro cell list and the inter-frequency die configuration information.
- the embodiments of the present invention provide an inter-frequency neighbor detection and measurement method, a radio network controller, and a user equipment, which are used to solve the defects in the prior art inter-frequency detection.
- the embodiment of the present invention provides a method for detecting an inter-frequency neighboring cell, comprising: receiving, by a user equipment, proximity detection information of an inter-frequency neighboring cell sent by a radio network controller, and proximity detection information of the inter-frequency neighboring cell Standard information for indicating a signal measurement report of the same frequency cell; the user equipment performs signal measurement on the same frequency cell;
- the user equipment reports an indication message to the radio network controller, where the indication message is used to indicate that the user equipment is close to the inter-frequency neighboring cell.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, The hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration of the measurement report standard to be satisfied by the signal quality of the same-frequency cell.
- any one of the first possible implementations of the first aspect in a second possible implementation:
- the signal quality of the signal measurement report standard information that satisfies the same-frequency cell is represented by at least one of signal quality signal-to-noise ratio information, signal strength information, and path loss information of the same-frequency cell, or any two of the same-frequency signals At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of the cell is represented.
- the embodiment of the present invention provides a method for detecting an inter-frequency neighboring cell, comprising: a radio network controller transmitting, to a user equipment, proximity detection information of an inter-frequency neighboring cell, where the proximity detection information of the inter-frequency neighboring cell is used And indicating standard information of the signal measurement report of the same-frequency cell, so that the user equipment performs signal measurement on the same-frequency cell;
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, The hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration of the measurement report standard to be satisfied by the signal quality of the same-frequency cell.
- any one of the first possible implementations of the second aspect in a second possible implementation:
- the signal quality of the signal measurement report standard information that satisfies the same-frequency cell is represented by at least one of signal quality signal-to-noise ratio information, signal strength information, and path loss information of the same-frequency cell, or any two of the same-frequency signals At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of the cell is represented.
- an embodiment of the present invention provides a method for measuring inter-frequency neighboring cells, including: The user equipment sends the activated inter-frequency stamper measurement indication information to the radio network controller, where the activated inter-frequency stamper measurement indication information is used to instruct the radio network controller to activate the configuration of the inter-frequency stamper of the base station;
- the user equipment uses the inter-frequency compression mode measurement method to measure the inter-frequency neighboring area
- the user equipment reports the inter-frequency measurement result to the radio network controller.
- the activated inter-frequency-module measurement indication signal includes at least one of a frame number of the activated die and the following different-frequency die configuration parameter One: send compressed mode sequence identifier, send the number of repetitions of the stamp sequence, send the stamper measurement purpose, the slot number of the first transmit stamper slot, the slot length of the first transmit stamp slot, second The length of the time slot of the transmission die slot from the first transmission stamper slot, the length of the second transmission stamper slot, the duration of a transmission stamp mode, the recovery period power control mode, and the initial transmission.
- Power calculation mode uplink compression mode, downlink compression mode, downlink frame type, power control parameters.
- any one of the first to the second possible implementation manners of the third aspect in a second possible implementation manner, the user equipment sends an activated inter-frequency compression mode to the radio network controller Before measuring the instructions, it also includes:
- the user equipment receives the inter-frequency stamp configuration information sent by the radio network controller.
- the user equipment sends an activated inter-frequency compression mode to the radio network controller After measuring the indication information, it also includes:
- the user equipment receives a response message from the radio network controller to the activated inter-frequency stamper measurement indication information.
- the embodiment of the present invention provides a method for measuring an inter-frequency neighboring cell, including: receiving, by a radio network controller, an activation inter-frequency compression mode measurement indication information sent by a user equipment, where The activation inter-frequency compression mode measurement indication information is used to instruct the radio network controller to activate a configuration of the inter-frequency compression mode of the base station;
- the radio network controller activates a die configuration of the base station according to the inter-frequency compression mode measurement indication information
- the radio network controller receives the inter-frequency measurement result of the user equipment using the inter-frequency compression mode measurement method to measure the inter-frequency neighboring area.
- the method further includes:
- the wireless network controller sends the inter-frequency stamp configuration information to the user equipment.
- the radio network controller receives the activated inter-frequency compression mode measurement indication information sent by the user equipment After that, it also includes:
- the radio network controller sends a response message to the user equipment to activate the inter-frequency stamper measurement indication information.
- the activated inter-frequency compression mode measurement indication signal includes an activation-activated compression mode At least one of a frame number and a following inter-frequency stamp configuration parameter: a transmit compressed mode sequence identifier, a number of repetitions of transmitting a stamp sequence, a transmit stamper measurement destination, a slot number of the first transmit stamper slot, The length of the time slot of a transmission stamper slot, the length of the second transmission stamper slot from the first transmission stamp slot, the length of the second transmission stamp slot, and the transmission voltage.
- a fifth aspect of the present invention provides a user equipment, including:
- a receiving module configured to receive proximity detection information of the inter-frequency neighboring cell sent by the radio network controller, where the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of the signal measurement report of the intra-frequency cell;
- a measuring module configured to perform signal measurement on the same-frequency cell
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, The hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration of the measurement report standard to be satisfied by the signal quality of the same-frequency cell.
- the signal quality of the signal measurement report standard information that satisfies the same-frequency cell is represented by at least one of signal quality signal-to-noise ratio information, signal strength information, and path loss information of the same-frequency cell, or any two of the same-frequency signals At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of the cell is represented.
- an embodiment of the present invention provides a radio network controller, including:
- a sending module configured to send the proximity detection information of the inter-frequency neighboring cell to the user equipment, where the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of the signal measurement report of the same-frequency cell, so that the user equipment Performing signal measurement on the same frequency cell;
- a receiving module configured to receive an indication message sent by the user equipment when the signal quality of the same-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, where the indication message is used to indicate that the user equipment is in proximity The inter-frequency neighboring area.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, The hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration of the measurement report standard to be satisfied by the signal quality of the same-frequency cell.
- the signal quality of the signal measurement report standard information that satisfies the same-frequency cell is represented by at least one of signal quality signal-to-noise ratio information, signal strength information, and path loss information of the same-frequency cell, or any two of the same-frequency signals At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of the cell is represented.
- the embodiment of the present invention provides a user equipment, including: a sending module, configured to send, to a radio network controller, an activated inter-frequency compression mode measurement indication information, where the activation inter-frequency compression mode measurement indication information is Used to instruct the radio network controller to activate a base station Configuration of the different frequency stamper;
- the measuring module is configured to measure the inter-frequency neighboring area by using the inter-frequency compression mode measurement manner; and the sending module is further configured to report the inter-frequency measurement result to the radio network controller.
- the user equipment further includes: a determining module, configured to determine, when determining that a signal quality of the same-frequency cell meets standard information of a signal measurement report of the same-frequency cell, The user equipment is close to the inter-frequency neighboring area; or the signal quality of the inter-frequency neighboring area used to determine the current location of the user equipment is within a preset range, and the user equipment is determined to be close to the inter-frequency neighboring area; or, for determining When the current location of the user equipment and the neighboring base station are within a preset range, it is determined that the user equipment is close to the inter-frequency neighboring area.
- a determining module configured to determine, when determining that a signal quality of the same-frequency cell meets standard information of a signal measurement report of the same-frequency cell, The user equipment is close to the inter-frequency neighboring area; or the signal quality of the inter-frequency neighboring area used to determine the current location of the user equipment is within a preset range, and the user equipment is determined to be close to the inter-frequency neighboring
- the activating inter-frequency-module measurement indication signal includes at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameter One: send compressed mode sequence identifier, send the number of repetitions of the stamp sequence, send the stamper measurement purpose, the slot number of the first transmit stamper slot, the slot length of the first transmit stamp slot, second The length of the time slot of the transmission die slot from the first transmission stamper slot, the length of the second transmission stamper slot, the duration of a transmission stamp mode, the recovery period power control mode, and the initial transmission. Power calculation mode, uplink compression mode, downlink compression mode, downlink frame type, power control parameters.
- the method further includes: a receiving module, configured to receive the radio network controller Transmitted analog die configuration information.
- the receiving module is further configured to receive the wireless network controller pair
- the activation inter-frequency stamper measures a response message indicating information.
- the eighth aspect of the present invention provides a radio network controller, including:
- a receiving module configured to receive an activated inter-frequency stamper measurement indication information sent by the user equipment, where the activated inter-frequency-module measurement indication information is used to instruct the radio network controller to activate a configuration of the inter-frequency compression mode of the base station;
- the method further includes:
- a sending module configured to send the inter-frequency stamp configuration information to the user equipment.
- the sending module is further configured to send, to the user equipment, an activated inter-frequency compression mode A response message to measure the indication letter.
- the activated inter-frequency-module measurement indication signal includes an activation-activated compression mode At least one of a frame number and a following inter-frequency stamp configuration parameter: a transmit compressed mode sequence identifier, a number of repetitions of transmitting a stamp sequence, a transmit stamper measurement destination, a slot number of the first transmit stamper slot, The length of the time slot of a transmission stamper slot, the length of the second transmission stamper slot from the first transmission stamp slot, the length of the second transmission stamp slot, and the transmission voltage.
- a ninth aspect, the embodiment of the present invention provides a user equipment, including:
- a receiver configured to receive proximity detection information of the inter-frequency neighboring cell sent by the radio network controller, where the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of the signal measurement report of the intra-frequency cell;
- a processor configured to perform signal measurement on the same-frequency cell
- a transmitter configured to report an indication message to the radio network controller, where the signal quality of the same-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, where the indication message is used to indicate the user
- the device is close to the inter-frequency neighboring cell.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, The hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration of the measurement report standard to be satisfied by the signal quality of the same-frequency cell.
- the signal quality of the signal measurement report standard information that satisfies the same-frequency cell is represented by at least one of signal quality signal-to-noise ratio information, signal strength information, and path loss information of the same-frequency cell, or any two of the same-frequency signals Cell signal quality signal to noise ratio difference information, signal strength At least one of the difference information and the road loss difference information is represented.
- the tenth aspect of the present invention provides a radio network controller, including:
- a transmitter configured to send the proximity detection information of the inter-frequency neighboring cell to the user equipment, where the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of the signal measurement report of the same-frequency cell, so that the user equipment Performing signal measurement on the same frequency cell;
- a receiver configured to receive an indication message sent by the user equipment when the signal quality of the same-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, where the indication message is used to indicate that the user equipment is in proximity The inter-frequency neighboring area.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, The hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration of the measurement report standard to be satisfied by the signal quality of the same-frequency cell.
- the first possible implementation of the tenth aspect in a second possible implementation:
- the signal quality of the signal measurement report standard information that satisfies the same-frequency cell is represented by at least one of signal quality signal-to-noise ratio information, signal strength information, and path loss information of the same-frequency cell, or any two of the same-frequency signals At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of the cell is represented.
- an embodiment of the present invention provides a user equipment, including:
- a transmitter configured to send, to the radio network controller, the activated inter-frequency compression mode measurement indication information, where the activation inter-frequency compression mode measurement indication information is used to instruct the radio network controller to activate a configuration of the inter-frequency compression mode of the base station;
- the processor is configured to measure the inter-frequency neighboring area by using the inter-frequency compression mode measurement method, and report the inter-frequency measurement result to the radio network controller.
- the processor is further configured to: when determining that the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, determining that the user equipment is close to And the signal quality of the inter-frequency neighboring cell used to determine the current location of the user equipment is within a preset range, determining that the user equipment is close to the inter-frequency neighboring cell; or, determining the user When the current location of the device and the neighboring base station are within a preset range, it is determined that the user equipment is close to the inter-frequency neighboring cell.
- the activated inter-frequency stamper measurement indication signal includes a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameter. At least one of: transmitting a compressed mode sequence identifier, transmitting a number of repetitions of the stamp sequence, transmitting a stamper measurement purpose, a slot number of the first transmitting stamper slot, and a slot length of the first transmitting stamper slot, The length of the second transmission stamper slot from the first transmission stamp slot, the length of the second transmission stamp slot, the duration of a transmission stamp mode, and the recovery period power control mode.
- Initial transmission power calculation mode uplink compression mode, downlink compression mode, downlink frame type, power control parameters.
- the second possible implementation manner further includes:
- a receiver configured to receive the inter-frequency die configuration information sent by the radio network controller.
- the receiver is further configured to receive the wireless network control And a response message to the activated inter-frequency stamper measurement indication information.
- the embodiment of the present invention provides a radio network controller, including: a receiver, configured to receive an activated inter-frequency stamper measurement indication information sent by a user equipment, where the activated inter-frequency stamper measurement indication information is used Instructing the radio network controller to activate a configuration of a different frequency stamper of the base station;
- a processor configured to activate a stamper configuration according to the inter-frequency stamper measurement indication information; the receiver is further configured to receive, by the user equipment, the inter-frequency measurement by using the inter-frequency compression mode measurement method to measure the inter-frequency neighboring region result.
- the method further includes:
- a transmitter configured to send the inter-frequency stamp configuration information to the user equipment.
- the transmitter is further configured to send, to the user equipment, an activated inter-frequency
- the stamper measures a response message indicating the information.
- any one of the first to second possible implementations of the twelfth aspect in a third possible implementation:
- the activation inter-frequency stamper measurement indication signal includes at least one of a frame number of the activation-activated stamper and the following inter-frequency stamper configuration parameter: transmitting the compressed mode sequence identifier, and transmitting the repeat of the stamper sequence The number of times, the purpose of the transmission die measurement, the slot number of the first transmission stamper slot, the length of the first transmission stamp slot, and the second transmission stamp slot distance from the first transmission stamper.
- the UE sends the proximity detection information of the inter-frequency neighboring cell to the user equipment, and is used to indicate the signal of the same-frequency cell. Standard information for measurement reports.
- the user equipment may measure the signal of the cell of the current serving cell at the same frequency according to the proximity detection information of the inter-frequency neighboring cell, and compare the measurement result with the proximity detection information of the inter-frequency neighboring cell, and report the wireless network when the information is satisfied.
- the controller is close to the inter-frequency neighboring area, so that the user equipment can determine the proximity to the inter-frequency neighboring cell without using the inter-frequency compression mode measurement inter-frequency cell, save the power consumption of the user equipment, and improve the data transmission performance of the user equipment.
- FIG. 1 is a flowchart of a method for detecting proximity of an inter-frequency neighboring cell according to Embodiment 1 of the present invention
- FIG. 2 is a flowchart of a method for detecting proximity of an inter-frequency neighboring cell according to Embodiment 2 of the present invention
- FIG. 4 is a schematic diagram of a coverage of a heterogeneous network cell with different frequency according to an embodiment of the present invention
- FIG. 4 is a schematic diagram of a different frequency neighboring cell provided by Embodiment 4 of the present invention
- FIG. 6 is a flowchart of a method for measuring inter-frequency neighboring cells according to Embodiment 5 of the present invention
- FIG. 7 is a flowchart of a method for measuring inter-frequency neighboring cells according to Embodiment 6 of the present invention
- FIG. 8 is a schematic structural diagram of a user equipment according to Embodiment 7 of the present invention.
- FIG. 9 is a schematic structural diagram of a radio network controller according to Embodiment 8 of the present invention
- FIG. 10 is a schematic structural diagram of a user equipment according to Embodiment 9 of the present invention
- FIG. 11 is a schematic structural diagram of a radio network controller according to Embodiment 10 of the present invention
- FIG. 12 is a schematic structural diagram of a user equipment according to Embodiment 11 of the present invention
- FIG. 13 is a schematic structural diagram of a radio network controller according to Embodiment 12 of the present invention
- FIG. 14 is a schematic diagram of a user equipment according to Embodiment 13 of the present invention. Schematic;
- FIG. 15 is a schematic structural diagram of a radio network controller according to Embodiment 14 of 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.
- the method of the present embodiment described herein is applicable to a heterogeneous heterogeneous network, which may be composed of various communication systems, such as current 2G, 3G communication systems, and next generation communication systems, such as global mobile.
- Communication System GSM, Global System for Mobile communications
- CDMA Code Division Multiple Access
- TDMA Time Division Multiple Access
- WCDMA Wideband Code Division Multiple
- FDMA Frequency Division Multiple Addressing
- OFDMA Orthogonal Frequency-Division Multiple Access
- SC-FDMA single carrier FDMA
- GPRS General Packet Radio Service
- LTE Long Term Evolution
- the user equipment involved in the present application may be a wireless terminal or a wired terminal, and the wireless terminal may be a device that provides voice and/or data connectivity to the user, a handheld device with wireless connectivity, or a wireless modem. Other processing equipment.
- the wireless terminal can communicate with one or more core networks via a radio access network (eg, RAN, Radio Access Network), which can be a mobile terminal, such as a mobile phone (or "cellular" phone) and with a mobile terminal
- RAN Radio Access Network
- the computers for example, can be portable, pocket-sized, handheld, computer-integrated or in-vehicle mobile devices that exchange language and/or data with the wireless access network.
- a wireless terminal may also be called a system, a Subscriber Unit, a Subscriber Station, a Mobile Station, a Mobile, a Remote Station, an Access Point, Remote Terminal, Access Terminal, User Terminal, User Agent, User Device, or User Equipment.
- the radio network controller involved in the present application may specifically include a base station (for example, an access point), and may refer to a device in the access network that communicates with the wireless terminal through one or more sectors on the air interface.
- the base station can be used to convert the received air frame to the IP packet as a router between the wireless terminal and the rest of the access network, wherein the remainder of the access network can include an Internet Protocol (IP) network.
- IP Internet Protocol
- the base station can also coordinate attribute management of the air interface.
- the base station may be a base station (BTS, Base Transceiver Station) in GSM or CDMA, or may be a base station (NodeB) in WCDMA, or may be an evolved base station in LTE (NodeB or eNB or e-NodeB, evolutional Node B), this application is not limited.
- BTS Base Transceiver Station
- NodeB base station
- NodeB evolved base station in LTE
- LTE NodeB or eNB or e-NodeB, evolutional Node B
- FIG. 1 is a flowchart of a method for detecting proximity of an inter-frequency neighboring cell according to Embodiment 1 of the present invention.
- the method provided in this embodiment mainly relates to a heterogeneous network scenario of different frequencies.
- a heterogeneous network is a network composed of cells of different sizes and types.
- the cells of the heterogeneous network may include a macro cell, a micro cell, a pico cell, and a femto cell. And types such as cells in the form of Remote Radio Head (RRH).
- RRH Remote Radio Head
- some inter-frequency micro-class cells may be deployed in the macro cell.
- the method in this embodiment may include the following steps:
- the user equipment receives the proximity detection information of the inter-frequency neighboring area sent by the radio network controller.
- the proximity refers to that the signal quality of the inter-frequency neighboring cell where the user equipment is located is within a predefined range or the location of the user equipment and the location of the inter-frequency neighboring base station are within a predefined range, or the user The signal quality of the co-frequency neighbors where the device is located is within a predefined range.
- the radio network controller may determine proximity detection information of the inter-frequency neighboring area of the current serving cell of the user equipment, and then send the proximity detection information of the inter-frequency neighboring area. Send to user equipment.
- the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of a signal measurement report of a cell of the same frequency.
- the same-frequency cell may include a current serving cell of the user equipment, and may further include other cells that are in the same frequency as the current serving cell of the user equipment; the proximity detection information of the inter-frequency neighboring cell may include the signal quality of the same-frequency cell.
- the threshold value or the threshold range information of the signal strength or the path loss may also include a difference threshold or a threshold range of the measurement result between any two cells; and further, the proximity detection information of the inter-frequency neighboring area is further
- the information of the inter-frequency neighboring cell that the signal quality of the same-frequency cell meets the threshold may be included, such as a scrambling code or a cell identifier, and may also include a duration that meets the threshold.
- the user equipment may report the capability of the user equipment to support the proximity detection of the inter-frequency neighboring cell, so that the radio network controller determines whether the UE supports the capability, and thus only The proximity detection indication is sent to the UE supporting the capability.
- S102 The user equipment performs signal measurement on the same frequency cell.
- the user equipment after receiving the proximity detection information of the inter-frequency neighboring cell sent by the radio network controller, the user equipment measures the signal of the intra-frequency cell according to the standard information of the signal measurement report of the intra-frequency cell indicated by the information. It can be understood that, if only the current serving cell of the user equipment is included in the same-frequency cell, the user equipment may measure the signal of the current serving cell; if the same-frequency cell further includes other cells of the same frequency as the current serving cell, In addition to measuring the signal of the current serving cell, the user equipment may also measure signals of other cells that are in the same frequency as the current serving cell.
- the measurement result is compared with the standard information of the signal measurement report of the same-frequency cell indicated by the proximity detection information of the received inter-frequency neighboring area, to see whether the information is satisfied.
- Standard information for signal measurement reports of co-frequency cells When the signal quality of the same-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, the user equipment reports an indication message to the radio network controller, where the indication message can be used to indicate that the user equipment is close to the cell that is different from the current serving cell. That is, the user equipment approaches the inter-frequency neighboring area.
- the measurement report indication message may include at least one of the following information: proximity to the inter-frequency neighboring cell, signal measurement of the same-frequency cell The measurement result when the standard information of the signal measurement report of the same frequency cell is satisfied, the information of the adjacent inter-frequency neighboring area, such as the scrambling code or the cell identifier.
- the user equipment may report the indication message to the radio network controller when the signal quality of the current serving cell satisfies the standard information of the signal measurement report of the same-frequency cell. If the same-frequency cell further includes other cells in the same frequency as the current serving cell, the user equipment may satisfy the signal measurement report of the same-frequency cell in the current serving cell and other cells in the same frequency as the current serving cell. The standard information is reported to the radio network controller.
- the inter-frequency neighboring cell proximity detection method provided by the embodiment sends the proximity detection information of the inter-frequency neighboring cell to the user equipment by the radio network controller, and is used to indicate the standard information of the signal measurement report of the intra-frequency cell.
- the user equipment may measure the signal of the cell of the current serving cell at the same frequency according to the proximity detection information of the inter-frequency neighboring cell, and compare the measurement result with the proximity detection information of the inter-frequency neighboring cell, and report the wireless network when the information is satisfied.
- the controller is close to the inter-frequency neighboring cell, so that the user equipment can determine the proximity to the inter-frequency neighboring cell without using the inter-frequency compression mode measurement inter-frequency cell, save the power consumption of the user equipment, and improve the data transmission performance of the user equipment.
- FIG. 2 is a flowchart of a method for detecting proximity of an inter-frequency neighboring cell according to Embodiment 2 of the present invention.
- the method provided in this embodiment mainly relates to a heterogeneous network scenario of different frequencies.
- a heterogeneous network is a network composed of cells of different sizes and types.
- the cells of the heterogeneous network may include a macro cell, a micro cell, a pico cell, and a femto cell. And types such as cells in the form of Remote Radio Head (RRH).
- RRH Remote Radio Head
- the method in this embodiment may include the following steps:
- the radio network controller sends the proximity detection information of the inter-frequency neighboring area to the user equipment.
- the proximity detection information of the inter-frequency neighboring cell is used to indicate the standard information of the signal measurement report of the intra-frequency cell, so that the user equipment performs signal measurement on the same-frequency cell.
- the radio network controller may determine proximity detection information of the inter-frequency neighboring cell of the current serving cell of the user equipment, and then send the proximity detection information of the inter-frequency neighboring cell to the user equipment.
- the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of a signal measurement report of the same-frequency cell, so that the user equipment performs signal measurement on the same-frequency cell.
- the intra-frequency cell may include a current serving cell of the user equipment, and may also And further comprising: another cell that is in the same frequency as the current serving cell of the user equipment; the proximity detection information of the inter-frequency neighboring cell may include threshold value or threshold range information of a signal quality, a signal strength, or a path loss of the same-frequency cell, and may also include The difference threshold or threshold range of the measurement result between any two co-frequency cells. Further, the proximity detection information of the inter-frequency neighboring cell may further include information about an inter-frequency neighboring cell that is close to the threshold when the signal of the same-frequency cell meets the threshold, such as a scrambling code or a cell identifier, and may also include the threshold that meets the foregoing threshold. duration.
- the radio network controller sends the proximity detection information of the inter-frequency neighboring cell to the user equipment
- the capability of the user equipment to support the proximity detection of the inter-frequency neighboring cell may be received, so that the radio network controller determines whether the UE supports the capability
- the proximity detection indication is sent to the UE that supports the capability.
- the radio network controller receives an indication message sent by the user equipment when the signal quality of the intra-frequency cell satisfies the standard information of the signal measurement report of the same-frequency cell.
- the user equipment after receiving the proximity detection information of the inter-frequency neighboring cell sent by the radio network controller, the user equipment measures the signal of the intra-frequency cell of the cell where the user equipment is located. It can be understood that, if only the current serving cell of the user equipment is included in the same-frequency cell, the user equipment may measure the signal of the current serving cell; if the same-frequency cell further includes other cells of the same frequency as the current serving cell, Then, the user equipment measures the signal of the current serving cell, and can also measure the signals of other cells that are in the same frequency as the current serving cell.
- the measurement result is compared with the standard information of the signal measurement report of the same-frequency cell indicated by the proximity detection information of the received inter-frequency neighboring cell, to see whether the same-frequency is satisfied.
- Standard information for the signal measurement report of the cell When the signal quality of the same-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, the user equipment reports an indication message to the radio network controller, and the radio network controller receives the indication message.
- the indication message may be used to indicate that the user equipment is close to a cell that is different from the current serving cell, that is, the user equipment is close to the inter-frequency neighboring area.
- the user equipment may report the indication message to the radio network controller when the signal quality of the current serving cell satisfies the standard information of the signal measurement report of the same-frequency cell. If the same-frequency cell further includes other cells in the same frequency as the current serving cell, the user equipment may satisfy the signal measurement report standard of the same-frequency cell in the current serving cell and other cells in the same frequency as the current serving cell. The information message is reported to the radio network controller.
- the indication message may include at least one of the following information: a near-inter-frequency neighboring area, a measurement result when the signal of the same-frequency cell satisfies the standard information of the signal measurement report of the same-frequency cell, and information of the adjacent inter-frequency neighboring area, such as a scrambling code Or cell identification.
- the inter-frequency neighboring cell proximity detection method provided by the embodiment sends the proximity detection information of the inter-frequency neighboring cell to the user equipment by the radio network controller, and is used to indicate the standard information of the signal measurement report of the intra-frequency cell.
- the user equipment may measure the signal of the cell of the current serving cell at the same frequency according to the proximity detection information of the inter-frequency neighboring cell, and compare the measurement result with the proximity detection information of the inter-frequency neighboring cell, and report the wireless network when the information is satisfied.
- the controller is close to the inter-frequency neighboring area, so that the user equipment can determine the proximity to the inter-frequency neighboring cell without using the inter-frequency compression mode measurement inter-frequency cell, save the power consumption of the user equipment, and improve the data transmission performance of the user equipment.
- the detection method of the above-mentioned inter-frequency neighboring cell proximity can also be applied to the proximity detection of the intra-frequency micro-neighbor region.
- the detection is different from the foregoing method in that: the indication message is the same-frequency micro-j, the detection message of the neighboring cell, and the indication message is sent by the neighboring cell information of the intra-frequency micro-neighboring area, and the indication message is reported. That is, it indicates that it is close to the same frequency micro neighbor.
- FIG. 3 is a flowchart of a method for detecting proximity of an inter-frequency neighboring cell according to Embodiment 3 of the present invention
- FIG. 4 is a schematic diagram of coverage of a heterogeneous network cell with different frequency according to an embodiment of the present invention.
- this embodiment provides a scenario in which the user equipment performs the same-frequency measurement and discovers the inter-frequency neighboring area according to the proximity detection information of the inter-frequency neighboring area sent by the radio network controller.
- the macro cell may include only CELL1, CELL1 and CELL2, and CELL1 and CELL2. And being the same frequency cell; and including at least one inter-frequency neighboring cell CELL3 in the coverage of the at least one macro cell.
- the following description is only made with the case of including two macro cells of the same frequency of CELL1 and CELL2 and a cell CELL3 of an inter-frequency, and the other cases are similar.
- the coverage of CELL3 is smaller than the coverage of CELL1.
- the communication process between the user equipment and the radio network controller can be as follows:
- S301 The user equipment receives the proximity detection information of the inter-frequency neighboring area sent by the radio network controller.
- the radio network controller may determine the proximity detection information of the inter-frequency neighboring cell of the cell where the user equipment is located, and then send the proximity detection information of the inter-frequency neighboring cell to the user equipment, where the user equipment receives the Proximity detection information.
- the user equipment is currently in the macro cell CELL1, and when the user equipment is in the connected state, the proximity detection information of the inter-frequency neighboring area sent by the radio network controller may be received.
- the foregoing connection state may be a state in which the user equipment is communicating with the radio network controller, for example, a state such as a call or an Internet access.
- the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of a signal measurement report of the same-frequency cell
- the standard information of the signal measurement report of the same-frequency cell may include at least one of the following information: The threshold information to be satisfied by the signal quality of the cell, the hysteresis information to be satisfied by the signal quality of the same-frequency cell, and the duration information of the measurement report standard to be satisfied by the signal quality of the same-frequency cell. That is, the threshold information, the hysteresis information, and the duration information of the measurement report standard to be satisfied by the signal quality of CELL1 and/or CELL2 may be included.
- threshold information can be included: ThresholdlA, ThresholdlB, Threshold 2A, and Threshold 2B.
- the method further includes: the signal of the same-frequency cell is measured by the inter-frequency neighboring cell that is close to the threshold, such as the scrambling code or the cell identifier of the CELL3.
- the measurement threshold information of the same-frequency cell can be set lower, for example, lower than the signal quality threshold of the cell that can provide normal access of the user.
- S302 The user equipment performs signal measurement on the same frequency cell.
- the user equipment receives the proximity detection information of the inter-frequency neighboring cell of CELL1 and/or CELL2 sent by the radio network controller, according to the standard information of the signal measurement report of the intra-frequency cell indicated by the information, the same frequency
- the signals of the cells CELL 1 and/or CELL2 are measured.
- the measurement result is compared with the standard information of the signal measurement report of the same-frequency cell indicated by the received proximity detection information of the inter-frequency neighboring cell. , to see if the standard information of the signal measurement report of the same frequency cell is satisfied.
- the signal of the same frequency cell CELL1 and/or CELL2 may pass the signal quality signal to noise ratio information, the signal strength information, and the path loss information of the same frequency cell.
- At least one of the representations, or the signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference of any two co-frequency cells At least one representation in the message.
- at least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of the same frequency cell CELL1 and/or CELL2 may be used.
- the user equipment When the signal quality of the CELL 1 and/or CELL2 of the same-frequency cell satisfies the standard information of the signal measurement report of the same-frequency cell, the user equipment reports an indication message to the radio network controller, where the indication message can be used to indicate that the user equipment is close to the current
- the cell of the serving cell is different frequency, that is, the user equipment is close to the inter-frequency neighboring area.
- the indication message may include a measurement result of CELL1 and/or CELL2, information of the adjacent inter-frequency neighboring cell CELL3, such as a scrambling code or a cell identifier.
- the radio network controller sets the standard information that meets the duration of the threshold, and the user equipment maintains the duration of the threshold set by the radio network controller when the intra-frequency cell satisfies the standard information of the signal measurement report. After that, the indication message is reported to the network.
- the inter-frequency neighboring cell proximity detection method provided by the embodiment sends the proximity detection information of the inter-frequency neighboring cell to the user equipment by the radio network controller, and is used to indicate the standard information of the signal measurement report of the intra-frequency cell.
- the user equipment may measure the signal of the cell of the current serving cell at the same frequency according to the proximity detection information of the inter-frequency neighboring cell, and compare the measurement result with the proximity detection information of the inter-frequency neighboring cell, and report the wireless network when the information is satisfied.
- the controller is close to the inter-frequency neighboring area, so that the user equipment can determine the proximity to the inter-frequency neighboring cell without using the inter-frequency compression mode measurement inter-frequency cell, save the power consumption of the user equipment, and improve the data transmission performance of the user equipment.
- FIG. 5 is a flowchart of a method for measuring inter-frequency neighboring cells according to Embodiment 4 of the present invention.
- the method provided in this embodiment mainly relates to a heterogeneous network scenario of different frequencies.
- a heterogeneous network is a network composed of cells of different sizes and types.
- a cell of a heterogeneous network may include a macro cell, a micro cell, a pico cell, and a femto cell. And types such as cells in the form of Remote Radio Head (RRH).
- RRH Remote Radio Head
- a small number of inter-frequency micro-class cells may be deployed in the macro cell.
- the method in this embodiment may include the following steps:
- S401 The user equipment determines that the inter-frequency neighboring area is close.
- the user equipment determines that the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, determining that the user equipment is close to the inter-frequency neighboring cell; or, the user equipment determines the difference of its current location.
- the signal quality of the frequency neighboring area is within a preset range, and the user equipment is determined to be close to the inter-frequency neighboring area; or, the user equipment determines the distance between the current location and the neighboring base station. When it is within the preset range, it is determined that the user equipment is close to the inter-frequency neighboring area.
- the user equipment first determines the proximity to the inter-frequency neighbor.
- the user equipment may determine the proximity inter-frequency neighboring area by using the inter-frequency neighboring area proximity detection method shown in FIG. 1 to FIG. 4, that is, the user equipment first receives the difference sent by the radio network controller. Proximity detection information of the frequency neighboring area, and then performing signal measurement on the same frequency cell. If the signal quality of the same frequency cell satisfies the standard information of the signal measurement report of the same frequency cell, the indication message is reported to the radio network controller, indicating that the user equipment is close to For the specific process of the inter-frequency neighboring cell, refer to the related description of the embodiment shown in FIG. 1 to FIG. 4.
- the user equipment may further be based on the internal fingerprint information, where the fingerprint information may be the current intra-frequency position information, the signal quality information, the network code, and the threshold range of the same-frequency cell quality stored by the user equipment. And the like, the user equipment can determine whether the condition of approaching the micro cell is satisfied according to the fingerprint information.
- the S401 is optional. In another embodiment of the present invention, when the user equipment does not approach the inter-frequency neighboring cell, the S402 and subsequent steps may also be performed.
- the user equipment sends the inter-frequency compression mode measurement indication information of the activated base station to the radio network controller.
- the user equipment can start the inter-frequency compression mode. To perform inter-frequency neighbor measurement.
- the user equipment may send the inter-frequency compression mode measurement indication information of the activation base station to the radio network controller, where the activation inter-frequency compression mode measurement indication information is used to instruct the radio network controller to activate the inter-frequency compression mode configuration wireless network.
- the controller activates the configuration of the inter-frequency stamp of the base station.
- the activated inter-frequency stamper measurement indication information may include at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the number of repetitions of the stamper sequence, and transmitting the stamper measurement
- the purpose is: a slot number of the first transmitting stamper slot, a slot length of the first transmitting stamper slot, and a slot length of the second transmitting stamp slot from the first transmitting stamp slot.
- Another method of activation is immediate activation.
- the activation of the inter-frequency stamper measurement indication may not include the frame number of the active stamper, and the radio network controller activates the base station in the next frame of the radio frame after receiving the indication message. Die configuration.
- the user equipment sends the activated inter-frequency compression mode measurement indication information to the base station, and after receiving the base station, the inter-frequency compression mode configuration is enabled at the activation time, and the base station notifies the radio network controller of the activated inter-frequency transmission. Stamper measurement indication information.
- the inter-frequency stamper is activated in the next frame of the radio frame after receiving the indication message.
- S403 The user equipment measures the inter-frequency neighboring area by using the inter-frequency compression mode measurement method.
- the user equipment may receive the message at the activation time set in the inter-frequency compression mode measurement indication information or at the radio network controller.
- the next radio frame is measured by the inter-frequency differential mode measurement method.
- S404 The user equipment reports the inter-frequency measurement result to the radio network controller.
- the user equipment performs the inter-frequency compression mode measurement on the inter-frequency neighboring area, and then reports the inter-frequency compression mode measurement result to the radio network controller.
- the user equipment when it determines to leave the inter-frequency neighboring cell, it may send an indication message to the wireless network controller to notify the radio network controller to deactivate the inter-frequency die configuration of the base station. And the indication message includes at least a deactivation time, and the user equipment stops the inter-frequency compression mode at the deactivation time.
- the inter-frequency neighboring cell measurement method provided by the foregoing embodiment sends the proximity detection information of the inter-frequency neighboring cell to the user equipment by using the radio network controller, and the user equipment can perform the same-frequency of the current serving cell according to the proximity detection information of the inter-frequency neighboring cell.
- the signal of the cell is measured, and the measurement result is compared with the proximity detection information of the inter-frequency neighboring area.
- the radio network controller reports the proximity to the inter-frequency neighboring area, and the user equipment instructs the radio network controller to activate the base station.
- the frequency-modulation mode is configured, and the inter-frequency cell measurement method is used to measure the inter-frequency cell and report the inter-frequency measurement result to the radio network controller, so that the user equipment does not need to enable the inter-frequency compression mode to measure the inter-frequency neighboring area, saving The power consumption of the user equipment improves the data transmission performance of the user equipment.
- FIG. 6 is a flowchart of a method for measuring inter-frequency neighboring cells according to Embodiment 5 of the present invention.
- the method provided in this embodiment mainly relates to a heterogeneous network scenario of different frequencies.
- a heterogeneous network is a network composed of cells of different sizes and types.
- a cell of a heterogeneous network may include a macro cell, a micro cell, a pico cell, and a femto cell. ) and types of cells in the form of RRH.
- a small number of inter-frequency micro-class cells may be deployed in the macro cell.
- the method in this embodiment may include the following steps: S501: The radio network controller receives an activated inter-frequency compression mode measurement indication message sent by the user equipment. Interest.
- the user equipment since only one set of transceivers is generally designed on the user equipment, only one carrier can be measured at the same time. Therefore, when the user equipment determines that the inter-frequency neighboring area is close, the user equipment can start the inter-frequency compression mode. Perform inter-frequency neighbor measurement.
- the user equipment may send the activated inter-frequency stamper measurement indication information to the radio network controller, and the radio network controller receives the activated inter-frequency stamper measurement indication information.
- the activation inter-frequency compression mode measurement indication information is used to instruct the radio network controller to activate the configuration of the inter-frequency compression mode of the base station.
- the activated inter-frequency stamper measurement indication information may include at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the number of repetitions of the stamper sequence, and transmitting the stamper measurement
- the purpose is: a slot number of the first transmitting stamper slot, a slot length of the first transmitting stamper slot, and a slot length of the second transmitting stamp slot from the first transmitting stamp slot.
- the radio network controller activates the compression mode configuration of the base station according to the inter-frequency compression mode measurement indication information.
- the radio-mode compression measurement indication information may be used to deactivate the compression mode configuration of the base station, so as to cooperate with the user equipment to the inter-frequency neighboring area. Different frequency stamper measurement.
- the radio network controller receives the inter-frequency measurement result of the user equipment using the inter-frequency compression mode measurement method to measure the inter-frequency neighboring area.
- the user equipment can directly measure the inter-frequency neighboring region by using the inter-frequency stamper measurement method, and then measure the inter-frequency stamper. The result is reported to the radio network controller, and the radio network controller receives the inter-frequency measurement result.
- the inter-frequency neighboring cell measurement method provided by the foregoing embodiment sends the proximity detection information of the inter-frequency neighboring cell to the user equipment by using the radio network controller, and the user equipment can perform the same-frequency of the current serving cell according to the proximity detection information of the inter-frequency neighboring cell.
- the signal of the cell is measured, and the measurement result is compared with the proximity detection information of the inter-frequency neighboring area.
- the radio network controller reports the proximity to the inter-frequency neighboring area, and the user equipment instructs the radio network controller to activate the base station.
- Frequency mode configuration, and ⁇ Using the different-frequency compression mode measurement method to measure the inter-frequency neighboring area and report the inter-frequency measurement result to the radio network controller, so that the user equipment does not need to enable the inter-frequency compression mode to measure the inter-frequency neighboring area, saving the power consumption of the user equipment. , improve user equipment data transmission performance.
- FIG. 7 is a flowchart of a method for measuring an inter-frequency neighboring cell according to Embodiment 6 of the present invention
- FIG. 4 is a schematic diagram of coverage of a hetero-frequency heterogeneous network cell according to an embodiment of the present invention.
- the embodiment provides a scenario in which the user equipment determines the proximity of the micro cell and instructs the radio network controller to activate the inter-frequency compression mode of the base station to perform inter-frequency measurement.
- the user equipment is in the coverage of at least one macro cell.
- the macro cell may include only CELL1, CELL1 and CELL2, and CELL1 and CELL2.
- the at least one inter-frequency neighboring cell CELL3 is included in the coverage of the at least one macro cell.
- the following description is only made with the case where the CELL1 and CELL2 two-frequency macro cells and one inter-frequency cell CELL3 are included, and the other cases are similar.
- the coverage of CELL3 is smaller than the coverage of CELL1.
- the communication process between the user equipment and the radio network controller can be as follows:
- S601 The user equipment determines that the inter-frequency neighboring area is close to.
- the user equipment determines that the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, determining that the user equipment is close to the inter-frequency neighboring cell; or, the user equipment determines the difference of its current location.
- the signal quality of the frequency neighboring area is within a preset range, and the user equipment is determined to be close to the inter-frequency neighboring area; or, when the user equipment determines that the distance between the current location and the neighboring base station is within a preset range, determining the user The device is close to the inter-frequency neighboring area.
- the user equipment first determines the proximity to the inter-frequency neighbor.
- the user equipment first receives the proximity detection information of the inter-frequency neighboring area sent by the radio network controller, and then performs signal measurement on the same frequency 'J, the area, if the signal quality of the same-frequency cell satisfies the same-frequency cell. And the standard information of the signal measurement report, reporting an indication message to the radio network controller, indicating that the user equipment is close to the inter-frequency neighboring area;
- the user equipment may also be based on internal fingerprint information, such as location information of the current intra-frequency information stored by the user equipment, signal quality information, network code, threshold range of the same-frequency cell quality, and the like. To determine whether the conditions close to the micro cell are met.
- the current serving cell of the user equipment is the macro cell CELL1
- the proximity detection of the inter-frequency neighboring cell CELL3 sent by the radio network controller may be received.
- Information, the user equipment determines whether the micro cell is close to by the proximity detection information.
- the foregoing connection state may be a state in which the user equipment is communicating with the radio network controller, for example, a state such as a call or an Internet access. Or, according to the current serving cell stored before the user equipment
- This step S601 is optional.
- the S602 may be directly executed.
- S602 The user equipment receives the inter-frequency stamp configuration information sent by the radio network controller.
- the radio network controller may send the inter-frequency compression mode configuration information to the user equipment, and the user equipment receives the inter-frequency compression mode configuration information.
- the user equipment sends the activated inter-frequency stamper measurement indication information to the radio network controller. Specifically, since only one set of transceivers is generally designed on the user equipment, only one carrier can be measured at the same time, that is, only the cells CELL1 and CELL2 of the same serving cell in the same serving cell can be measured. Therefore, after the user equipment determines that the inter-frequency neighboring cell CELL3 is approached, the user equipment can initiate the inter-frequency compression mode to perform the inter-frequency neighboring cell measurement, that is, start the inter-frequency compression mode to measure the CELL3.
- the user equipment may send the activated inter-frequency stamper measurement indication information to the radio network controller.
- the activation inter-frequency compression mode measurement indication information is used to instruct the radio network controller to activate the configuration of the inter-frequency compression mode of the base station.
- the activated inter-frequency stamper measurement indication information may include at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the number of repetitions of the stamper sequence, and transmitting the stamper measurement
- the purpose is: a slot number of the first transmitting stamper slot, a slot length of the first transmitting stamper slot, and a slot length of the second transmitting stamp slot from the first transmitting stamp slot.
- the radio network controller activates the compression mode configuration of the base station according to the inter-frequency compression mode measurement indication information.
- the radio-mode compression measurement indication information may be used to deactivate the compression mode configuration of the base station to match The inter-frequency compression mode measurement of the inter-cell neighboring cell CELL3 by the user equipment.
- S605 The user equipment receives a response message of the radio network controller to activate the inter-frequency stamper measurement indication information.
- the radio network controller after the radio network controller activates the stamper configuration according to the inter-frequency stamper measurement indication information, before the user equipment measures the inter-frequency neighboring cell CELL3 by using the inter-frequency compression mode measurement manner, the radio network controller further A response message for activating the inter-frequency compression mode measurement indication information may be sent to the user equipment, and the user equipment receives a response message of the radio network controller to activate the inter-frequency compression mode measurement indication information.
- S606 The user equipment uses the inter-frequency compression mode measurement method to measure the inter-frequency neighboring area.
- the user equipment can directly measure the inter-frequency neighboring cell CELL3 by using the inter-frequency compression mode measurement mode.
- S607 The user equipment reports the inter-frequency measurement result to the radio network controller.
- the user equipment performs inter-frequency compression mode measurement on the inter-frequency neighboring cell CELL3, and then reports the inter-frequency compression mode measurement result to the radio network controller.
- the inter-frequency neighboring cell measurement method provided by the foregoing embodiment sends the proximity detection information of the inter-frequency neighboring cell to the user equipment by using the radio network controller, and the user equipment can perform the same-frequency of the current serving cell according to the proximity detection information of the inter-frequency neighboring cell.
- the signal of the cell is measured, and the measurement result is compared with the proximity detection information of the inter-frequency neighboring area.
- the radio network controller reports the proximity to the inter-frequency neighboring area, and the user equipment instructs the radio network controller to activate the base station.
- the configuration of the frequency-modulation mode, and the inter-frequency differential mode measurement method is used to measure the inter-frequency neighboring area and report the inter-frequency measurement result to the radio network controller, so that the user equipment does not need to enable the inter-frequency compression mode to measure the inter-frequency neighboring area. It saves power consumption of user equipment and improves data transmission performance of user equipment.
- FIG. 8 is a schematic structural diagram of a user equipment according to Embodiment 7 of the present invention.
- the user equipment may include: a receiving module 701, a measuring module 702, and a sending module 703.
- the receiving module 701 can be configured to receive proximity detection information of the inter-frequency neighboring cell sent by the radio network controller, where the proximity detection information of the inter-frequency neighboring cell is used to indicate standard information of the signal measurement report of the intra-frequency cell.
- Measurement module 702 can be used to perform signal measurements on co-frequency cells.
- the sending module 703 can be configured to: the signal quality of the same-frequency cell meets the signal measurement of the same-frequency cell When the standard information is reported, an indication message is reported to the radio network controller, where the indication message is used to indicate that the user equipment is close to the inter-frequency neighboring area.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 1.
- the implementation principle and technical effects are similar, and details are not described herein again.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, and the signal quality of the same-frequency cell is satisfied.
- the signal quality of the signal measurement report standard information that satisfies the same frequency cell is represented by at least one of signal quality signal to noise ratio information, signal strength information, and path loss information of the same frequency cell, or At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of any two co-frequency cells is represented.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 3 and FIG. 4, and the implementation principle and the technical effect are similar, and details are not described herein again.
- FIG. 9 is a schematic structural diagram of a radio network controller according to Embodiment 8 of the present invention.
- the radio network controller may include: a sending module 801 and a receiving module 802.
- the sending module 801 can be configured to send the proximity detection information of the inter-frequency neighboring cell to the user equipment, where the proximity detection information of the inter-frequency neighboring cell is used to indicate the standard information of the signal measurement report of the same-frequency cell, so that the user equipment is the same.
- the frequency cell performs signal measurement.
- the receiving module 802 can be configured to receive an indication message sent by the user equipment when the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, where the indication message is used to indicate that the user equipment is close to the inter-frequency neighboring cell.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 2, and the implementation principle and technical effects are similar, and details are not described herein again.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, and the signal quality of the same-frequency cell is satisfied.
- the signal quality of the signal measurement report standard information that satisfies the same frequency cell is stronger than the signal quality signal to noise ratio information of the same frequency cell, and the signal is strong.
- At least one of the degree information and the path loss information is represented by at least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information of any two of the same frequency cells.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 3 and FIG. 4, and the implementation principle and technical effects are similar, and details are not described herein again.
- FIG. 10 is a schematic structural diagram of a user equipment according to Embodiment 9 of the present invention.
- the user equipment may include: a determining module 901, a sending module 902, and a measuring module 903.
- the determining module 901 is configured to determine that the user equipment is close to the inter-frequency neighboring area when the signal quality of the same-frequency cell meets the standard information of the signal measurement report of the same-frequency cell; or, The signal quality of the inter-frequency neighboring area of the current location is within a preset range, and the user equipment is determined to be close to the inter-frequency neighboring area; or, the distance between the current location of the user equipment and the neighboring base station is determined to be preset. Within the range, it is determined that the user equipment is close to the inter-frequency neighboring area.
- the sending module 902 can be configured to send the activated inter-frequency compression mode measurement indication information to the radio network controller, and activate the inter-frequency compression mode measurement indication information to instruct the radio network controller to activate the configuration of the inter-frequency compression mode of the base station.
- the measurement module 903 can be used to measure the inter-frequency neighboring area by using the inter-frequency compression mode measurement method.
- the sending module 902 is further configured to report the inter-frequency measurement result to the radio network controller.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 5, and the implementation principle and technical effects are similar, and details are not described herein again.
- the activated inter-frequency stamper measurement indication signal includes at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the stamper The number of repetitions of the sequence, the purpose of the transmission mode measurement, the slot number of the first transmission stamper slot, the length of the first transmission stamp slot, and the second transmission stamp slot distance.
- the user equipment further includes:
- the receiving module 904 can be configured to receive the inter-frequency stamp configuration information sent by the radio network controller.
- the receiving module 904 is further configured to receive the radio network controller to activate the inter-frequency voltage
- the modulo measures a response message indicating the information.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 5 and FIG. 7.
- the implementation principle and technical effects are similar, and details are not described herein again.
- FIG. 1 is a schematic structural diagram of a radio network controller according to Embodiment 10 of the present invention. As shown in FIG. 11, the radio network controller may include: a receiving module 1 11 and a processing module 112.
- the receiving module 11 1 may be configured to receive the activated inter-frequency stamper measurement indication information sent by the user equipment, and the activated inter-frequency stamper measurement indication information is used to instruct the radio network controller to activate the configuration of the inter-frequency stamper of the base station.
- the processing module 112 can be configured to activate the stamper configuration according to the inter-frequency stamper measurement indication information.
- the receiving module 11 can also be configured to receive the inter-frequency measurement of the inter-frequency neighboring region measured by the user equipment by using the inter-frequency compression mode measurement manner. result.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 6.
- the implementation principle and technical effects are similar, and details are not described herein again.
- the wireless network controller may further include: a sending module 113, configured to send the inter-frequency stamp configuration information to the user equipment.
- the sending module 113 is further configured to send, to the user equipment, a response message to activate the inter-frequency impression measurement indication information.
- the activated inter-frequency stamper measurement indication signal includes at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the stamper The number of repetitions of the sequence, the purpose of the transmission mode measurement, the slot number of the first transmission stamper slot, the length of the first transmission stamp slot, and the second transmission stamp slot distance.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 6 and FIG. 7.
- the implementation principle and technical effects are similar, and details are not described herein again.
- FIG. 12 is a schematic structural diagram of a user equipment according to Embodiment 11 of the present invention.
- the user equipment may include: a receiver 121, a processor 122, and a transmitter 123.
- the receiver 121 may be configured to receive proximity detection information of the inter-frequency neighboring cell sent by the radio network controller, where the proximity detection information of the inter-frequency neighboring cell is used to indicate the signal measurement report of the intra-frequency cell. Standard information for the report.
- the processor 122 can be used to perform signal measurements on co-frequency cells.
- the transmitter 123 may be configured to report an indication message to the radio network controller when the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the intra-frequency cell, where the indication message is used to indicate that the user equipment is close to the inter-frequency neighboring cell.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 1.
- the implementation principle and technical effects are similar, and details are not described herein again.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, and the signal quality of the same-frequency cell is satisfied.
- the signal quality of the signal measurement report standard information that satisfies the same frequency cell is represented by at least one of signal quality signal to noise ratio information, signal strength information, and path loss information of the same frequency cell, or is any two of the same frequency cells. At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information is represented.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 3 and FIG. 4, and the implementation principle and the technical effect are similar, and details are not described herein again.
- FIG. 13 is a schematic structural diagram of a radio network controller according to Embodiment 12 of the present invention.
- the user equipment may include: a transmitter 131 and a receiver 132.
- the transmitter 131 may be configured to send the proximity detection information of the inter-frequency neighboring cell to the user equipment, where the proximity detection information of the inter-frequency neighboring cell is used to indicate the standard information of the signal measurement report of the same-frequency cell, so that the user equipment is the same.
- the frequency cell performs signal measurement.
- the receiver 132 may be configured to receive an indication message sent by the user equipment when the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the same-frequency cell, where the indication message is used to indicate that the user equipment is close to the inter-frequency neighboring cell.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 2, and the implementation principle and technical effects are similar, and details are not described herein again.
- the standard information of the signal measurement report of the same-frequency cell includes at least one of the following information: threshold information to be satisfied by the signal quality of the same-frequency cell, and the signal quality of the same-frequency cell is satisfied.
- threshold information to be satisfied by the signal quality of the same-frequency cell
- the signal quality of the same-frequency cell is satisfied.
- Hysteresis information the signal quality of the same frequency cell should be met
- the duration information of the volume report standard is the following information.
- the signal quality of the signal measurement report standard information that satisfies the same frequency cell is represented by at least one of signal quality signal to noise ratio information, signal strength information, and path loss information of the same frequency cell, or is any two of the same frequency cells. At least one of signal quality signal to noise ratio difference information, signal strength difference information, and path loss difference information is represented.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 3 and FIG. 4, and the implementation principle and technical effects are similar, and details are not described herein again.
- FIG. 14 is a schematic structural diagram of a user equipment according to Embodiment 13 of the present invention.
- the user equipment may include: a processor 141 and a transmitter 142.
- the processor 141 is configured to determine that the user equipment is close to the inter-frequency neighboring area when the signal quality of the intra-frequency cell meets the standard information of the signal measurement report of the intra-frequency cell; or, to determine the current location of the user equipment.
- the signal quality of the inter-frequency neighboring area is within a preset range, and the user equipment is determined to be close to the inter-frequency neighboring area; or, when it is determined that the distance between the current location of the user equipment and the neighboring base station is within a preset range, It is determined that the user equipment is close to the inter-frequency neighboring area.
- the transmitter 142 can be configured to send the activated inter-frequency stamper measurement indication information to the radio network controller, and the activated inter-frequency stamper measurement indication information is used to instruct the radio network controller to activate the configuration of the inter-frequency stamper of the base station.
- the processor 141 can also be used to measure inter-frequency neighbors using inter-frequency compression mode measurements.
- Transmitter 142 can also be used to report inter-frequency measurements to the radio network controller.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 5, and the implementation principle and technical effects are similar, and details are not described herein again.
- the activated inter-frequency stamper measurement indication signal includes at least one of a frame number of the activation-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the stamper The number of repetitions of the sequence, the purpose of the transmission mode measurement, the slot number of the first transmission stamper slot, the length of the first transmission stamp slot, and the second transmission stamp slot distance.
- the user equipment may further include: a receiver 143, configured to receive the inter-frequency compression mode configuration information sent by the radio network controller.
- the receiver 143 is further configured to receive, by the radio network controller, a response message to activate the inter-frequency compression mode measurement indication information.
- the user equipment in this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 5 and FIG. 7.
- the implementation principle and technical effects are similar, and details are not described herein again.
- FIG. 15 is a schematic structural diagram of a radio network controller according to Embodiment 14 of the present invention.
- the user equipment may include: a receiver 151 and a processor 152.
- the receiver 151 may be configured to receive the activated inter-frequency compression mode measurement indication information sent by the user equipment, and the activated inter-frequency compression mode measurement indication information is used to instruct the radio network controller to activate the configuration of the inter-frequency compression mode of the base station.
- the processor 152 can be configured to activate the stamper configuration based on the inter-frequency stamper measurement indication information.
- the receiver 151 can also be configured to receive the inter-frequency measurement result of the user equipment using the inter-frequency compression mode measurement method to measure the inter-frequency neighboring area.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 6.
- the implementation principle and technical effects are similar, and details are not described herein again.
- the radio network controller may further include: a transmitter 153, configured to send the inter-frequency compression mode configuration information to the user equipment.
- the transmitter 153 is further configured to send a response message to the user equipment to activate the inter-frequency stamper measurement indication information.
- the activated inter-frequency stamper measurement indication signal includes at least one of a frame number of the activated-activated stamper and the following different-frequency stamper configuration parameters: sending the compressed mode sequence identifier, transmitting the number of repetitions of the stamp sequence, and transmitting the stamper
- sending the compressed mode sequence identifier transmitting the number of repetitions of the stamp sequence
- transmitting the stamper The purpose of the measurement, the first slot number of the transmission modulo slot, the length of the first transmission modulo slot, and the second transmission modulo slot from the length of the first transmission modulo slot , the length of the second transmission stamp slot, the duration of a transmission mode, the recovery period power control mode, the initial transmission power calculation mode, the uplink compression mode, the downlink compression mode, and the downlink frame type. Power control parameters.
- the radio network controller of this embodiment may be used to implement the technical solution of the method embodiment shown in FIG. 6 and FIG. 7.
- the implementation principle and technical effects are similar, and details are not described herein again.
- the storage medium includes: ROM, RAM, disk or optical disc, and other media that can store program codes.
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Mobile Radio Communication Systems (AREA)
Abstract
本发明提供一种异频邻区接近检测及测量方法、无线网络控制器和用户设备,包括:用户设备接收无线网络控制器发送的异频邻区的接近检测信息,异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息;用户设备对同频小区进行信号测量;若同频小区的信号质量满足同频小区的信号测量报告的标准信息,则用户设备向无线网络控制器上报指示消息,指示消息用于指示用户设备接近异频邻区。该方法通过对用户当前服务小区同频小区信号的测量,并将测量结果与异频邻区的接近检测信息对比,在满足该信息的时候即可上报,可节省用户设备的耗电量,提高用户设备数据传输性能。
Description
异频邻区接近检测及测量方法、 无线网络控制器和用户设备 技术领域
本发明涉及通信技术领域,尤其涉及一种异频邻区接近检测及测量方法、 无线网络控制器和用户设备。 背景技术
无线通信已经进入数据业务爆炸增长的时期,运营商同时面临"提供更高 网络容量"和"降低每比特传输成本"的双重压力。 异构网络(简称 Hetnet )是 由不同大小、 类型的小区一起构成的网络, 比如宏小区、 微小区、 微微小区、 毫微微小区和射频拉远形态的小区等。 通过部署宏小区和微类小区, 可以为 话务密集区域提供成 10倍的系统容量。 在异频的异构网络, 通过部署少量的 异频微小区可获得可观的容量和吞吐量增益, 且相比同频部署场景, 没有干 扰问题。
现有技术中, 在异频的异构网络中, 对于依赖异频压模测量异频的用户 设备(UE ) , 可以启用压模来测量发现异频邻区; UE发现接近微小区后上报 给网络侧, 网络侧再向 UE下发异频微小区列表以及异频压模配置, UE根据异 频微小区列表以及异频压模配置信息对测量异频微小区。
然而, 上述方法中, 若 UE需要一直启用异频压模测量异频小区, 以 发现 UE接近异频邻区, 这导致 UE的耗电量大, 数据传输性能受到影响。 发明内容
本发明实施例提供一种异频邻区接近检测及测量方法、 无线网络控制器 和用户设备, 用以解决现有技术中异频检测所存在的缺陷。
第一方面, 本发明实施例提供一种异频邻区接近检测的方法, 包括: 用户设备接收无线网络控制器发送的异频邻区的接近检测信息, 所述 异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息; 所述用户设备对所述同频小区进行信号测量;
若所述同频小区的信号质量满足所述同频小区的信号测量报告的标
准信息, 则所述用户设备向所述无线网络控制器上报指示消息, 所述指示 消息用于指示所述用户设备接近所述异频邻区。
在第一方面的第一种可能的实现方式中, 所述同频小区的信号测量报 告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质量要满 足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述同频小 区的信号质量要满足的测量报告标准的持续时间信息。
根据第一方面、 第一方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中:
满足所述同频小区的信号测量报告标准信息的信号质量通过所述同 频小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表 示, 或者为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度 差值信息、 路损差值信息中的至少一个表示。
第二方面, 本发明实施例提供一种异频邻区接近检测的方法, 包括: 无线网络控制器向用户设备发送异频邻区的接近检测信息, 所述异频 邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息, 以使 所述用户设备对所述同频小区进行信号测量;
所述无线网络控制器接收所述用户设备在所述同频小区的信号质量 满足所述同频小区的信号测量报告的标准信息时发送的指示消息, 所述指 示消息用于指示所述用户设备接近所述异频邻区。
在第二方面的第一种可能的实现方式中, 所述同频小区的信号测量报 告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质量要满 足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述同频小 区的信号质量要满足的测量报告标准的持续时间信息。
根据第二方面、 第二方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中:
满足所述同频小区的信号测量报告标准信息的信号质量通过所述同 频小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表 示, 或者为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度 差值信息、 路损差值信息中的至少一个表示。
第三方面, 本发明实施例提供一种异频邻区测量的方法, 包括:
所述用户设备向无线网络控制器发送激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
所述用户设备釆用异频压模测量方式对异频邻区进行测量;
所述用户设备向所述无线网络控制器上报异频测量结果。
在第三方面的第一种可能的实现方式中, 所述用户设备确定同频小区 的信号质量满足所述同频小区的信号测量报告的标准信息时, 确定该用户 设备接近异频邻区; 或, 所述用户设备确定其当前位置的异频邻区的信号 质量在预设置的范围内, 确定该用户设备接近异频邻区; 或, 所述用户设 备确定其当前位置与邻区基站的距离在预设置的范围内时, 确定该用户设 备接近异频邻区。
根据第三方面、 第三方面的第一种可能的实现方式的任意一种, 所述 激活异频压模测量指示信包含启激活压模的帧号和以下异频压模配置参 数中的至少一个: 发送压缩模式序列标识, 发送压模序列的重复次数, 发 送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙的 时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第 二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期 功率控制模式,初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
根据第三方面、 第三方面的第一种至第二种可能的实现方式的任意一 种, 在第二种可能的实现方式中: 所述用户设备向无线网络控制器发送激 活异频压模测量指示信息之前, 还包括:
所述用户设备接收所述无线网络控制器发送的异频压模配置信息。 根据第三方面、 第三方面的第一种至第三种可能的实现方式的任意一 种, 在第三种可能的实现方式中, 所述用户设备向无线网络控制器发送激 活异频压模测量指示信息之后, 还包括:
所述用户设备接收所述无线网络控制器对所述激活异频压模测量指 示信息的响应消息。
第四方面, 本发明实施例提供一种异频邻区测量的方法, 包括: 无线网络控制器接收用户设备发送的激活异频压模测量指示信息, 所
述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
所述无线网络控制器根据所述异频压模测量指示信息, 激活基站的压 模配置;
所述无线网络控制器接收用户设备釆用异频压模测量方式对异频邻 区进行测量的异频测量结果。
在第四方面的第一种可能的实现方式中, 所述无线网络控制器接收用 户设备发送的激活异频压模测量指示信息之后, 还包括:
所述无线网络控制器向所述用户设备发送异频压模配置信息。
根据第四方面、 第四方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中: 所述无线网络控制器接收用户设备发送的激活异 频压模测量指示信息之后, 还包括:
所述无线网络控制器向所述用户设备发送对激活异频压模测量指示 信息的响应消息。
根据第四方面、 第四方面的第一种至第二种可能的实现方式的任意一 种, 在第三种可能的实现方式中, 所述激活异频压模测量指示信包含启激 活压模的帧号和以下异频压模配置参数中的至少一个: 发送压缩模式序列 标识, 发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时 隙的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离 第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个 发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算 模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
第五方面, 本发明实施例一种用户设备, 包括:
接收模块, 用于接收无线网络控制器发送的异频邻区的接近检测信 息, 所述异频邻区的接近检测信息用于指示同频小区的信号测量报告的标 准信息;
测量模块, 用于对所述同频小区进行信号测量;
发送模块, 用于在所述同频小区的信号质量满足所述同频小区的信号 测量报告的标准信息时, 向所述无线网络控制器上报指示消息, 所述指示 消息用于指示所述用户设备接近所述异频邻区。
在第五方面的第一种可能的实现方式中, 所述同频小区的信号测量报 告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质量要满 足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述同频小 区的信号质量要满足的测量报告标准的持续时间信息。
根据第五方面、 第五方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中:
满足所述同频小区的信号测量报告标准信息的信号质量通过所述同 频小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表 示, 或者为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度 差值信息、 路损差值信息中的至少一个表示。
第六方面, 本发明实施例提供一种无线网络控制器, 包括:
发送模块, 用于向用户设备发送异频邻区的接近检测信息, 所述异频 邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息, 以使 所述用户设备对所述同频小区进行信号测量;
接收模块, 用于接收所述用户设备在所述同频小区的信号质量满足所 述同频小区的信号测量报告的标准信息时发送的指示消息, 所述指示消息 用于指示所述用户设备接近所述异频邻区。
在第六方面的第一种可能的实现方式中, 所述同频小区的信号测量报 告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质量要满 足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述同频小 区的信号质量要满足的测量报告标准的持续时间信息。
根据第六方面、 第六方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中:
满足所述同频小区的信号测量报告标准信息的信号质量通过所述同 频小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表 示, 或者为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度 差值信息、 路损差值信息中的至少一个表示。
第七方面, 本发明实施例提供一种用户设备, 其特征在于, 包括: 发送模块, 用于向无线网络控制器发送激活异频压模测量指示信息, 所述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站
的异频压模的配置;
测量模块, 用于釆用异频压模测量方式对异频邻区进行测量; 所述发送模块还用于向所述无线网络控制器上报异频测量结果。
在第七方面的第一种可能的实现方式中, 所述用户设备还包括: 确定 模块, 用于确定同频小区的信号质量满足所述同频小区的信号测量报告的 标准信息时, 确定该用户设备接近异频邻区; 或, 用于确定所述用户设备 的当前位置的异频邻区的信号质量在预设置的范围内, 确定该用户设备接 近异频邻区; 或, 用于确定所述用户设备的当前位置与邻区基站的距离在 预设置的范围内时, 确定该用户设备接近异频邻区。
根据第七方面、 第七方面的第一种可能的实现方式的任意一种, 所述 激活异频压模测量指示信包含启激活压模的帧号和以下异频压模配置参 数中的至少一个: 发送压缩模式序列标识, 发送压模序列的重复次数, 发 送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙的 时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第 二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期 功率控制模式,初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
根据第七方面、 第七方面的第一种至第二种可能的实现方式的任意一 种, 在第二种可能的实现方式中, 还包括: 接收模块, 用于接收所述无线 网络控制器发送的异频压模配置信息。
根据第七方面、 第七方面的第一种至第三种可能的实现方式的任意一 种, 在第三种可能的实现方式中, 所述接收模块还用于接收所述无线网络 控制器对所述激活异频压模测量指示信息的响应消息。
第八方面, 本发明实施例提供一种无线网络控制器, 包括:
接收模块, 用于接收用户设备发送的激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
处理模块, 用于根据所述异频压模测量指示信息, 激活压模配置; 所述接收模块还用于接收用户设备釆用异频压模测量方式对异频邻 区进行测量的异频测量结果。
在第八方面的第一种可能的实现方式中, 还包括:
发送模块, 用于向所述用户设备发送异频压模配置信息。
根据第八方面、 第八方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中: 所述发送模块还用于向所述用户设备发送对激活 异频压模测量指示信, 的响应消息。
根据第八方面、 第八方面的第一种至第二种可能的实现方式的任意一 种, 在第三种可能的实现方式中, 所述激活异频压模测量指示信包含启激 活压模的帧号和以下异频压模配置参数中的至少一个: 发送压缩模式序列 标识, 发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时 隙的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离 第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个 发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算 模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
第九方面, 本发明实施例提供一种用户设备, 包括:
接收器, 用于接收无线网络控制器发送的异频邻区的接近检测信息, 所述异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准 信息;
处理器, 用于对所述同频小区进行信号测量;
发送器, 用于在所述同频小区的信号质量满足所述同频小区的信号测 量报告的标准信息时, 向所述无线网络控制器上报指示消息, 所述指示消 息用于指示所述用户设备接近所述异频邻区。
在第九方面的第一种可能的实现方式中, 所述同频小区的信号测量报 告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质量要满 足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述同频小 区的信号质量要满足的测量报告标准的持续时间信息。
根据第九方面、 第九方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中:
满足所述同频小区的信号测量报告标准信息的信号质量通过所述同 频小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表 示, 或者为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度
差值信息、 路损差值信息中的至少一个表示。
第十方面, 本发明实施例提供一种无线网络控制器, 包括:
发送器, 用于向用户设备发送异频邻区的接近检测信息, 所述异频邻 区的接近检测信息用于指示同频小区的信号测量报告的标准信息, 以使所 述用户设备对所述同频小区进行信号测量;
接收器, 用于接收所述用户设备在所述同频小区的信号质量满足所述 同频小区的信号测量报告的标准信息时发送的指示消息, 所述指示消息用 于指示所述用户设备接近所述异频邻区。
在第十方面的第一种可能的实现方式中, 所述同频小区的信号测量报 告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质量要满 足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述同频小 区的信号质量要满足的测量报告标准的持续时间信息。
根据第十方面、 第十方面的第一种可能的实现方式的任意一种, 在第 二种可能的实现方式中:
满足所述同频小区的信号测量报告标准信息的信号质量通过所述同 频小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表 示, 或者为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度 差值信息、 路损差值信息中的至少一个表示。
第十一方面, 本发明实施例提供一种用户设备, 包括:
发送器, 用于向无线网络控制器发送激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
处理器, 用于釆用异频压模测量方式对异频邻区进行测量; 用于向所 述无线网络控制器上报异频测量结果。
在第十一方面的第一种可能的实现方式中, 所述处理器, 还用于确定 同频小区的信号质量满足所述同频小区的信号测量报告的标准信息时, 确 定该用户设备接近异频邻区; 或, 用于确定所述用户设备的当前位置的异 频邻区的信号质量在预设置的范围内,确定该用户设备接近异频邻区;或, 用于确定所述用户设备的当前位置与邻区基站的距离在预设置的范围内 时, 确定该用户设备接近异频邻区。
根据第十一方面、 第十一方面的第一种可能的实现方式的任意一种, 所述激活异频压模测量指示信包含启激活压模的帧号和以下异频压模配 置参数中的至少一个:发送压缩模式序列标识,发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙 的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周 期功率控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模 式, 下行帧的类型, 功率控制参数。
根据第十一方面、 第十一方面的第一种至第二种可能的实现方式的任 意一种, 在第二种可能的实现方式中, 还包括:
接收器, 用于接收所述无线网络控制器发送的异频压模配置信息。 根据第十一方面、 第十一方面的第一种至第三种可能的实现方式的任 意一种, 在第三种可能的实现方式中, 所述接收器还用于接收所述无线网 络控制器对所述激活异频压模测量指示信息的响应消息。
第十二方面, 本发明实施例提供一种无线网络控制器, 包括: 接收器, 用于接收用户设备发送的激活异频压模测量指示信息, 所述 激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的异 频压模的配置;
处理器, 用于根据所述异频压模测量指示信息, 激活压模配置; 所述接收器还用于接收用户设备釆用异频压模测量方式对异频邻区 进行测量的异频测量结果。
在第十二方面的第一种可能的实现方式中, 还包括:
发送器, 用于向所述用户设备发送异频压模配置信息。
根据第十二方面、 第十二方面的第一种可能的实现方式的任意一种, 在第二种可能的实现方式中: 所述发送器还用于向所述用户设备发送对激 活异频压模测量指示信息的响应消息。
根据第十二方面、 第十二方面的第一种至第二种可能的实现方式的任 意一种, 在第三种可能的实现方式中:
所述激活异频压模测量指示信包含启激活压模的帧号和以下异频压 模配置参数中的至少一个: 发送压缩模式序列标识, 发送压模序列的重复
次数, 发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压 模时隙的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙 长度, 第二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算模式, 上行压模模式, 下行 压缩模式, 下行帧的类型, 功率控制参数。
本发明实施例提供的异频邻区接近检测及测量方法、无线网络控制器和 用户设备, 通过无线网络控制器向用户设备发送异频邻区的接近检测信息, 用于指示同频小区的信号测量报告的标准信息。 用户设备可以根据该异频 邻区的接近检测信息对当前服务小区同频的小区的信号进行测量,并将测量 结果与异频邻区的接近检测信息对比, 在满足该信息的时候上报无线网络 控制器接近异频邻区, 从而用户设备无需启用异频压模测量异频小区即可 确定接近异频邻区, 节省用户设备的耗电量, 提高用户设备数据传输性能。 附图说明 为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对 实施例或现有技术描述中所需要使用的附图做一简单地介绍, 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为本发明实施例一提供的异频邻区接近检测的方法的流程图; 图 2为本发明实施例二提供的异频邻区接近检测的方法的流程图; 图 3为本发明实施例三提供的异频邻区接近检测的方法的流程图; 图 4为本发明实施例提供的异频的异构网络小区覆盖范围示意图; 图 5为本发明实施例四提供的异频邻区测量的方法的流程图; 图 6为本发明实施例五提供的异频邻区测量的方法的流程图; 图 7为本发明实施例六提供的异频邻区测量方法的流程图;
图 8为本发明实施例七提供的用户设备的结构示意图;
图 9为本发明实施例八提供的无线网络控制器的结构示意图; 图 10为本发明实施例九提供的用户设备的结构示意图;
图 1 1为本发明实施例十提供的无线网络控制器的结构示意图;
图 12为本发明实施例十一提供的用户设备的结构示意图; 图 13为本发明实施例十二提供的无线网络控制器的结构示意图; 图 14为本发明实施例十三提供的用户设备的结构示意图;
图 15为本发明实施例十四提供的无线网络控制器的结构示意图。 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。
本文中描述的本实施例的方法适用于异频的异构网络, 该异频的异构 网络可以由各种通信系统所构成, 例如当前 2G, 3G通信系统和下一代通 信系统, 例如全球移动通信系统 ( GSM , Global System for Mobile communications ) , 码分多址 ( CDMA, Code Division Multiple Access ) 系 统, 时分多址 (TDMA, Time Division Multiple Access ) 系统, 宽带码分 址 ( WCDMA, Wideband Code Division Multiple Access Wireless ) , 频 分多址 ( FDMA, Frequency Division Multiple Addressing ) 系统, 正交频 分多址 ( OFDMA, Orthogonal Frequency-Division Multiple Access ) 系统, 单载波 FDMA( SC-FDMA )系统,通用分组无线业务( GPRS , General Packet Radio Service ) 系统, 长期演进 ( LTE, Long Term Evolution ) 系统, 以及 其他此类通信系统。
本申请中涉及的用户设备, 可以是无线终端也可以是有线终端, 无线 终端可以是指向用户提供语音和 /或数据连通性的设备,具有无线连接功能 的手持式设备、 或连接到无线调制解调器的其他处理设备。 无线终端可以 经无线接入网 (例如, RAN, Radio Access Network )与一个或多个核心网 进行通信, 无线终端可以是移动终端, 如移动电话 (或称为"蜂窝"电话) 和具有移动终端的计算机, 例如, 可以是便携式、 袖珍式、 手持式、 计算 机内置的或者车载的移动装置, 它们与无线接入网交换语言和 /或数据。例 口, 个人通信业务(PCS , Personal Communication Service ) 电话、 无绳电
话、会话发起协议 ( SIP )话机、无线本地环路( WLL, Wireless Local Loop ) 站、 个人数字助理 (PDA, Personal Digital Assistant ) 等设备。 无线终端 也可以称为系统、订户单元( Subscriber Unit )、订户站( Subscriber Station ) , 移动站( Mobile Station )、 移动台 (Mobile )、 远程站( Remote Station ) 、 接入点( Access Point )、 远程终端( Remote Terminal )、接入终端( Access Terminal ) 、 用户终端 ( User Terminal ) 、 用户代理(User Agent ) 、 用户 设备 ( User Device ) 、 或用户装备 ( User Equipment ) 。
本申请中涉及的无线网络控制器,具体可以包括基站(例如,接入点), 可以是指接入网中在空中接口上通过一个或多个扇区与无线终端通信的 设备。 基站可用于将收到的空中帧与 IP 分组进行相互转换, 作为无线终 端与接入网的其余部分之间的路由器, 其中接入网的其余部分可包括网际 协议(IP ) 网络。 基站还可协调对空中接口的属性管理。 例如, 基站可以 是 GSM或 CDMA中的基站 ( BTS , Base Transceiver Station ) , 也可以是 WCDMA 中的基站 (NodeB ) , 还可以是 LTE 中的演进型基站 ( NodeB 或 eNB或 e-NodeB , evolutional Node B ) , 本申请并不限定。
图 1 为本发明实施例一提供的异频邻区接近检测的方法的流程图。 本 实施例提供的方法主要涉及异频的异构网络场景。 异构网络是由不同大 小、类型的小区共同构成的网络,异构网络的小区可以包括宏小区(Macro Cell )、微小区 ( Micro Cell )、微微小区 ( Pico Cell )、 毫微微小区 ( Femto Cell ) 和远程无线电头端(Remote Radio Head, 简称 RRH)形态的小区等类 型。 本发明实施例的场景中, 可在宏小区中部署一些异频微类小区。 如图 1所示, 本实施例的方法可以包括如下步骤:
S101: 用户设备接收无线网络控制器发送的异频邻区的接近检测信 息。
本文中, 所述接近是指用户设备的所在位置的异频邻区的信号质量在 预定义的范围内或用户设备的所在位置和异频邻区基站的位置在预定义 的范围内, 或者用户设备的所在位置的同频邻区的信号质量在预定义的范 围内。
当用户设备处于某个小区,无线网络控制器可以确定该用户设备当前服 务小区的异频邻区的接近检测信息, 然后将该异频邻区的接近检测信息发
送给用户设备。 具体地, 该异频邻区的接近检测信息用于指示同频的小区 的信号测量报告的标准信息。
具体地, 上述的同频小区可以包括用户设备的当前服务小区, 还可以 进一步包括与用户设备当前服务小区同频的其他小区; 该异频邻区的接近 检测信息可以包括同频小区的信号质量、 信号强度或路损等的门限值或门 限范围信息, 也可以包括任意 2个小区之间的测量结果的差值门限或门限 范围等; 进一步地, 该异频邻区的接近检测信息还可以包括同频小区的信 号质量满足上述门限时所接近的异频邻区的信息, 比如扰码或小区标识 等, 还可以包括满足上述门限的持续时间。
另外, 用户设备接收无线网络控制器发送的异频邻区的接近检测信息 之前, 可以上报用户设备支持异频邻区的接近检测的能力, 使得无线网络 控制器判断 UE是否支持该能力, 进而只向支持该能力的 UE下发上述接 近检测指示。
S102: 用户设备对同频小区进行信号测量。
具体地, 当用户设备接收到无线网络控制器发送的异频邻区的接近检 测信息后, 根据该信息所指示的同频小区的信号测量报告的标准信息, 对 同频小区的信号进行测量。 可以理解的是, 如果同频小区中仅包括用户设 备的当前服务小区, 则用户设备可以对当前服务小区的信号进行测量; 如 果同频小区中还进一步包括与当前服务小区同频的其他小区, 则用户设备 除了对当前服务小区的信号进行测量之外, 还可以对与当前服务小区同频 的其他小区的信号进行测量。
S103 : 若同频小区的信号质量满足同频小区的信号测量报告的标准信 息, 则用户设备向无线网络控制器上报指示消息。
具体地, 用户设备对同频小区进行信号测量后, 将测量结果与所收到 的异频邻区的接近检测信息所指示的同频小区的信号测量报告的标准信 息相对比, 看是否满足该同频小区的信号测量报告的标准信息。 当同频小 区的信号质量满足同频小区的信号测量报告的标准信息, 则用户设备向无 线网络控制器上报指示消息, 该指示消息可以用于指示用户设备接近与当 前服务小区异频的小区, 亦即用户设备接近异频邻区。 其中, 测量报告指 示消息可以包括以下至少一个信息: 接近异频邻区, 同频小区的信号测量
满足同频小区的信号测量报告的标准信息时的测量结果, 所接近的异频邻 区的信息, 比如扰码或小区标识。
可以理解的是, 如果同频小区中仅包括用户设备的当前服务小区, 则 用户设备可以在当前服务小区的信号质量满足同频小区的信号测量报告 的标准信息时向无线网络控制器上报指示消息; 如果上述同频小区中还进 一步包括与当前服务小区同频的其他小区, 则用户设备可以在当前服务小 区和与当前服务小区同频的其他小区的信号都满足同频小区的信号测量 报告的标准信息时向无线网络控制器上报指示消息。
本实施例提供的异频邻区接近检测方法, 通过无线网络控制器向用户 设备发送异频邻区的接近检测信息,用于指示同频小区的信号测量报告的标 准信息。用户设备可以根据该异频邻区的接近检测信息对当前服务小区同频 的小区的信号进行测量, 并将测量结果与异频邻区的接近检测信息对比, 在满足该信息的时候上报无线网络控制器接近异频邻区, 从而用户设备无 需启用异频压模测量异频小区即可确定接近异频邻区, 节省用户设备的耗 电量, 提高用户设备数据传输性能。
图 2为本发明实施例二提供的异频邻区接近检测的方法的流程图。 本 实施例提供的方法主要涉及异频的异构网络场景。 异构网络是由不同大 小、类型的小区共同构成的网络,异构网络的小区可以包括宏小区(Macro Cell )、微小区 ( Micro Cell )、微微小区 ( Pico Cell )、 毫微微小区 ( Femto Cell ) 和远程无线电头端(Remote Radio Head, 简称 RRH)形态的小区等类 型。 如图 2所示, 本实施例的方法可以包括如下步骤:
S201 : 无线网络控制器向用户设备发送异频邻区的接近检测信息。 异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准 信息, 以使用户设备对上述同频小区进行信号测量。
具体地, 当用户设备处于某个小区, 无线网络控制器可以确定该用户 设备当前服务小区的异频邻区的接近检测信息,然后将该异频邻区的接近检 测信息发送给用户设备。 其中, 该异频邻区的接近检测信息用于指示同频 小区的信号测量报告的标准信息, 以使用户设备对上述同频小区进行信号 测量。
具体地, 上述的同频小区可以包括用户设备的当前服务小区, 还可以
进一步包括与用户设备当前服务小区同频的其他小区; 该异频邻区的接近 检测信息可以包括同频小区的信号质量、 信号强度或路损等的门限值或门 限范围信息, 也可以包括任意 2个同频小区之间的测量结果的差值门限或 门限范围等。 进一步地, 该异频邻区的接近检测信息还可以包括同频小区 的信号测量满足上述门限时所接近的异频邻区的信息, 比如扰码或小区标 识等, 还可以包括满足上述门限的持续时间。
另外, 在无线网络控制器向用户设备发送异频邻区的接近检测信息之 前, 可接收用户设备发送的支持异频邻区的接近检测的能力, 使得无线网 络控制器判断 UE是否支持该能力, 进而只向支持该能力的 UE下发上述 接近检测指示。
S202: 无线网络控制器接收用户设备在同频小区的信号质量满足同频 小区的信号测量报告的标准信息时发送的指示消息。
具体地, 当用户设备接收到无线网络控制器发送的异频邻区的接近检 测信息后, 会对用户设备所处小区的同频小区的信号进行测量。 可以理解 的是, 如果同频小区中仅包括用户设备的当前服务小区, 则用户设备可以 对当前服务小区的信号进行测量; 如果同频小区中还进一步包括与当前服 务小区同频的其他小区, 则用户设备出了对当前服务小区的信号进行测量 之外, 还可以对与当前服务小区同频的其他小区的信号进行测量。
用户设备在对同频小区进行信号测量后, 将测量结果与所收到的异频 邻区的接近检测信息所指示的同频小区的信号测量报告的标准信息相对 比, 看是否满足该同频小区的信号测量报告的标准信息。 当同频小区的信 号质量满足同频小区的信号测量报告的标准信息, 则用户设备向无线网络 控制器上报指示消息, 无线网络控制器接收该指示消息。 其中, 该指示消 息可以用于指示用户设备接近与当前服务小区异频的小区, 亦即用户设备 接近异频邻区。 可以理解的是, 如果同频小区中仅包括用户设备的当前服 务小区, 则用户设备可以在当前服务小区的信号质量满足同频小区的信号 测量报告的标准信息时向无线网络控制器上报指示消息; 如果同频小区中 还进一步包括与当前服务小区同频的其他小区, 则用户设备可以在当前服 务小区和与当前服务小区同频的其他小区的信号都满足同频小区的信号 测量报告的标准信息时向无线网络控制器上报指示消息。 其中, 测量报告
指示消息可以包括以下至少一个信息: 接近异频邻区, 同频小区的信号测 量满足同频小区的信号测量报告的标准信息时的测量结果, 所接近的异频 邻区的信息, 比如扰码或小区标识。
本实施例提供的异频邻区接近检测方法, 通过无线网络控制器向用户 设备发送异频邻区的接近检测信息,用于指示同频小区的信号测量报告的标 准信息。用户设备可以根据该异频邻区的接近检测信息对当前服务小区同频 的小区的信号进行测量, 并将测量结果与异频邻区的接近检测信息对比, 在满足该信息的时候上报无线网络控制器接近异频邻区, 从而用户设备无 需启用异频压模测量异频小区即可确定接近异频邻区, 节省用户设备的耗 电量, 提高用户设备数据传输性能。
上述异频邻区接近的检测方法,还可以应用于同频微小邻区的接近检测。 该检测与上述方法的不同之处在于: 指示消息是同频微' j、邻区的检测消息, 且该指示消息下发的是所接近的同频微小邻区的小区信息, 上报该指示消息 即是指示接近同频微小邻区。
图 3为本发明实施例三提供的异频邻区接近检测的方法的流程图,图 4 为本发明实施例提供的异频的异构网络小区覆盖范围示意图。 如图 3所示, 本实施例提供了用户设备进行同频测量, 并根据无线网络控制器发送的异 频邻区的接近检测信息发现异频邻区的场景。
本实施例提供了一种具体的实施场景, 用户设备处在至少一个宏小区 覆盖的范围内, 如图 4 所示, 该宏小区可以只包括 CELL1 , 也可以包括 CELL1和 CELL2, 且 CELL1与 CELL2为同频小区; 在该至少一个宏小 区覆盖范围内, 包含至少一个异频邻区 CELL3。 以下仅以包括 CELL1和 CELL2两个同频的宏小区和一个异频的小区 CELL3的情况进行说明, 其 他情况类似。 其中 CELL3的覆盖范围小于 CELL1的覆盖范围。 用户设备 与无线网络控制器间的通信过程具体可以如下:
S301: 用户设备接收无线网络控制器发送的异频邻区的接近检测信 息。
当用户设备处于某个小区,无线网络控制器可以确定该用户设备所处小 区的异频邻区的接近检测信息, 然后将该异频邻区的接近检测信息发送给 用户设备, 用户设备接收该接近检测信息。
具体地, 设用户设备当前处于宏小区 CELL1 中, 在用户设备处于 连接状态时, 可接收无线网络控制器发送的异频邻区的接近检测信息。 其 中, 上述连接状态可以是用户设备正在与无线网络控制器进行通信的状 态, 例如: 通话或上网等状态。
具体地, 该异频邻区的接近检测信息用于指示同频的小区的信号测量 报告的标准信息, 且该同频小区的信号测量报告的标准信息可以包括以下 信息中的至少一个: 同频小区的信号质量要满足的门限信息, 同频小区的 信号质量要满足的迟滞信息, 同频小区的信号质量要满足的测量报告标准 的持续时间信息。 即, 可以包括 CELL1和 /或 CELL2的信号质量要满足的 门限信息、 迟滞信息和测量报告标准的持续时间信息。 如图 4所示, 可以 包括门限(简称 Threshold )信息: ThresholdlA, ThresholdlB, Threshold 2A和 Threshold 2B等。 或者, 也还可以包括: 同频小区的信号测量满足 上述门限时所接近的异频邻区的信息, 比如 CELL3 的扰码或小区标识。 另外, 同频小区的测量门限信息可以设置的比较低, 比如低于能提供用户 正常接入的小区的信号质量门限值。
S302: 用户设备对同频小区进行信号测量。
具体地, 当用户设备接收到无线网络控制器发送的 CELL1 和 /或 CELL2的异频邻区的接近检测信息后,根据该信息所指示的同频小区的信 号测量报告的标准信息,对同频小区 CELL 1和 /或 CELL2的信号进行测量。
S303 : 若同频小区的信号质量满足同频小区的信号测量报告的标准信 息, 则用户设备向无线网络控制器上报指示消息, 指示消息用于指示用户 设备接近异频邻区。
具体地, 用户设备对同频小区 CELL1和 /或 CELL2进行信号测量后, 将测量结果与所收到的异频邻区的接近检测信息所指示的同频小区的信 号测量报告的标准信息相对比, 看是否满足该同频小区的信号测量报告的 标准信息。
具体地,看同频小区 CELL1和 /或 CELL2的信号是否满足同频小区的 信号测量报告标准信息的信号质量, 可以通过同频小区的信号质量信噪比 信息、 信号强度信息和路损信息中的至少一个来表示, 或者也可以用任意 两个同频小区的信号质量信噪比差值信息、 信号强度差值信息、 路损差值
信息中的至少一个表示。如可以用同频小区 CELL1和 /或 CELL2的信号质 量信噪比差值信息、 信号强度差值信息、 路损差值信息中的至少一个来表 示。
当同频小区 CELL 1和 /或 CELL2的信号质量满足同频小区的信号测量 报告的标准信息, 则用户设备向无线网络控制器上报指示消息, 该指示消 息具体可以用于指示用户设备接近与当前服务小区异频的小区, 亦即用户 设备接近异频邻区。 进一步, 该指示消息可以包括 CELL1 和 /或 CELL2 的测量结果, 所接近的异频邻区 CELL3 的信息, 比如扰码或小区标识。 另外, 无线网络控制器设定了满足门限的持续时间的标准信息, 则用户设 备在上述同频小区满足信号测量报告的标准信息时, 在保持了无线网络控 制器设定的满足门限的持续时间后, 才向网络上报指示消息。
本实施例提供的异频邻区接近检测方法, 通过无线网络控制器向用户 设备发送异频邻区的接近检测信息,用于指示同频小区的信号测量报告的标 准信息。用户设备可以根据该异频邻区的接近检测信息对当前服务小区同频 的小区的信号进行测量, 并将测量结果与异频邻区的接近检测信息对比, 在满足该信息的时候上报无线网络控制器接近异频邻区, 从而用户设备无 需启用异频压模测量异频小区即可确定接近异频邻区, 节省用户设备的耗 电量, 提高用户设备数据传输性能。
图 5为本发明实施例四提供的异频邻区测量的方法的流程图。 本实施 例提供的方法主要涉及异频的异构网络场景。 异构网络是由不同大小、 类 型的小区共同构成的网络,异构网络的小区可以包括宏小区( Macro Cell )、 微小区 ( Micro Cell ) 、 微微小区 ( Pico Cell ) 、 毫微微小区 ( Femto Cell ) 和远程无线电头端(Remote Radio Head, 简称 RRH)形态的小区等类型。 本 发明实施例的场景中, 可在宏小区中部署少量的异频微类小区。 如图 5所 示, 本实施例的方法可以包括如下步骤:
S401 : 用户设备确定接近异频邻区。
例如, 所述用户设备确定同频小区的信号质量满足所述同频小区的信 号测量报告的标准信息时, 确定该用户设备接近异频邻区; 或, 所述用户 设备确定其当前位置的异频邻区的信号质量在预设置的范围内, 确定该用 户设备接近异频邻区; 或, 所述用户设备确定其当前位置与邻区基站的距
离在预设置的范围内时, 确定该用户设备接近异频邻区。
用户设备首先确定接近异频邻区。 作为一种可行的实施方式, 用户设 备可以釆用图 1-图 4所示的异频邻区接近检测的方法来确定接近异频邻区, 即, 用户设备首先接收无线网络控制器发送的异频邻区的接近检测信息, 然后对同频小区进行信号测量, 若同频小区的信号质量满足同频小区的信 号测量报告的标准信息, 则向无线网络控制器上报指示消息, 指示用户设 备接近异频邻区, 其具体过程可参见图 1-图 4所示实施例的相关描述。 作 为另一种可行的实施方式, 用户设备还可以根据内部的指纹信息, 该指纹 信息可以是用户设备之前存储的当前同频的位置信息、 信号质量信息、 网 码、 同频小区质量的门限范围等信息, 用户设备可以根据上述指纹信息来 确定是否满足接近微小区的条件。
所述 S401 是可选的, 在本发明的另一实施例中, 用户设备未接近异 频邻区时, 也可以进行 S402以及后续步骤。
S402: 用户设备向无线网络控制器发送激活基站的异频压模测量指示 信息。
具体地, 由于用户设备上一般只设计有一套收发信机, 所以在同一时 间只能对一个载波展开测量, 因此, 当用户设备确定已接近异频邻区后, 用户设备可以启动异频压缩模式来进行异频邻区测量。
具体地, 用户设备可以向无线网络控制器发送激活基站的异频压模测 量指示信息, 其中, 该激活异频压模测量指示信息用于指示无线网络控制 器激活异频压模的配置无线网络控制器激活基站的异频压模的配置。 且该 激活异频压模测量指示信息可以包含启激活压模的帧号和以下异频压模 配置参数中的至少一个: 发送压缩模式序列标识, 发送压模序列的重复次 数, 发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模 时隙的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长 度, 第二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢 复周期功率控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压 缩模式, 下行帧的类型, 功率控制参数等。 另一种激活的方式是立即激活, 此时激活异频压模测量指示可以不包含激活压模的帧号, 无线网络控制器 在收到该指示消息后的无线帧的下一帧激活基站的压模配置。
或者, 另一种具体的实施方式为, 用户设备向基站发送激活异频压模 测量指示信息, 基站收到后在激活时间启用异频压模配置, 基站通知无线 网络控制器发送的激活异频压模测量指示信息。 同样地, 若不包含激活压 模的帧号, 则在收到该指示消息后的无线帧的下一帧激活异频压模。
S403 : 用户设备釆用异频压模测量方式对异频邻区进行测量。
具体地, 在用户设备向无线网络控制器发送激活异频压模测量指示信 息之后, 用户设备可以在异频压模测量指示信息中所设定的激活时间或在 无线网络控制器收到该消息的下一个无线帧, 釆用异频压模测量方式对异 频邻区进行测量。
S404: 用户设备向无线网络控制器上报异频测量结果。
具体地, 用户设备对异频邻区进行异频压模测量, 然后将异频压模测 量结果上报给无线网络控制器。
另外, 当用户设备在确定离开异频邻区时, 可发送指示消息给无线网 络控制器, 通知无线网络控制器去激活基站的异频压模配置。 且该指示消 息中至少包含去激活时间, 用户设备在去激活时间停止异频压模。
上述实施例提供的异频邻区测量方法, 通过无线网络控制器向用户设 备发送异频邻区的接近检测信息, 用户设备可以根据该异频邻区的接近检测 信息对当前服务小区同频的小区的信号进行测量, 并将测量结果与异频邻 区的接近检测信息对比, 在满足该信息的时候上报无线网络控制器接近异 频邻区, 由用户设备指示无线网络控制器激活基站的异频压模的配置, 并 釆用异频压模测量方式对异频小区进行测量并向无线网络控制器上报异 频测量结果, 从而用户设备无需一直启用异频压模测量异频邻区, 节省用 户设备的耗电量, 提高用户设备数据传输性能。
图 6为本发明实施例五提供的异频邻区测量的方法的流程图。 本实施 例提供的方法主要涉及异频的异构网络场景。 异构网络是由不同大小、 类 型的小区共同构成的网络,异构网络的小区可以包括宏小区( Macro Cell )、 微小区 ( Micro Cell ) 、 微微小区 ( Pico Cell ) 、 毫微微小区 ( Femto Cell ) 和 RRH形态的小区等类型。 本发明实施例的场景中, 可在宏小区中部署 少量的异频微类小区。 如图 6所示, 本实施例的方法可以包括如下步骤: S501 : 无线网络控制器接收用户设备发送的激活异频压模测量指示信
息。
具体地, 由于用户设备上一般只设计有一套收发信机, 所以在同一时 间只能对一个载波展开测量, 因此, 在用户设备确定接近异频邻区时, 用 户设备可以启动异频压缩模式来进行异频邻区测量。
具体地, 用户设备可以向无线网络控制器发送激活异频压模测量指示 信息, 无线网络控制器接收该激活异频压模测量指示信息。 其中, 该激活 异频压模测量指示信息用于指示无线网络控制器激活基站的异频压模的 配置。 且该激活异频压模测量指示信息可以包含启激活压模的帧号和以下 异频压模配置参数中的至少一个: 发送压缩模式序列标识, 发送压模序列 的重复次数, 发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个 发送压模时隙的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙 的时隙长度, 第二个发送压模时隙的时隙长度, 一个发送压模模式的持续 时间, 恢复周期功率控制模式,初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数等。
S502: 无线网络控制器根据异频压模测量指示信息, 激活基站的压模 配置。
具体地, 在无线网络控制器接收到用户设备发送的激活异频压模测量 指示信息后, 可根据异频压模测量指示信息去激活基站的压模配置, 以配 合用户设备对异频邻区的异频压模测量。
S503 : 无线网络控制器接收用户设备釆用异频压模测量方式对异频邻 区进行测量的异频测量结果。
具体地, 在无线网络控制器根据异频压模测量指示信息, 激活压模配 置之后, 用户设备可以直接釆用异频压模测量方式对异频邻区进行测量, 然后将异频压模测量结果上报给无线网络控制器, 无线网络控制器接收该 异频测量结果。
上述实施例提供的异频邻区测量方法, 通过无线网络控制器向用户设 备发送异频邻区的接近检测信息, 用户设备可以根据该异频邻区的接近检测 信息对当前服务小区同频的小区的信号进行测量, 并将测量结果与异频邻 区的接近检测信息对比, 在满足该信息的时候上报无线网络控制器接近异 频邻区, 由用户设备指示无线网络控制器激活基站的异频压模的配置, 并
釆用异频压模测量方式对异频邻区进行测量并向无线网络控制器上报异 频测量结果, 从而用户设备无需一直启用异频压模测量异频邻区, 节省用 户设备的耗电量, 提高用户设备数据传输性能。
图 7为本发明实施例六提供的异频邻区测量方法的流程图, 图 4为本 发明实施例提供的异频异构网络小区覆盖范围示意图。如图 7所示,本实施 例提供了用户设备在确定接近微小区, 并指示无线网络控制器激活基站的 异频压模的配置, 进行异频测量的场景。
本实施例提供了一种具体的实施场景, 用户设备处在至少一个宏小区 覆盖的范围内, 如图 4 所示, 该宏小区可以只包括 CELL1 , 也可以包括 CELL1和 CELL2, 且 CELL1与 CELL2同频; 且在该至少一个宏小区覆 盖范围内,包含至少一个异频邻区 CELL3。以下仅以包括 CELL1和 CELL2 两个同频的宏小区和一个异频的小区 CELL3 的情况进行说明, 其他情况 类似。 其中 CELL3的覆盖范围小于 CELL1的覆盖范围。 用户设备与无线 网络控制器间的通信过程具体可以如下:
S601 : 用户设备确定接近异频邻区。
例如, 所述用户设备确定同频小区的信号质量满足所述同频小区的信 号测量报告的标准信息时, 确定该用户设备接近异频邻区; 或, 所述用户 设备确定其当前位置的异频邻区的信号质量在预设置的范围内, 确定该用 户设备接近异频邻区; 或, 所述用户设备确定其当前位置与邻区基站的距 离在预设置的范围内时, 确定该用户设备接近异频邻区。
用户设备首先确定接近异频邻区。 作为一种可行的实施方式, 用户设 备首先接收无线网络控制器发送的异频邻区的接近检测信息, 然后对同频 'J、区进行信号测量, 若同频小区的信号质量满足同频小区的信号测量报告 的标准信息, 则向无线网络控制器上报指示消息, 指示用户设备接近异频 邻区;
作为另一种可行的实施方式, 用户设备还可以根据内部的指纹信息, 比如可以是用户设备之前存储的当前同频的位置信息、 信号质量信息、 网 码、 同频小区质量的门限范围等信息来确定是否满足接近微小区的条件。
具体地,假设用户设备当前服务小区为宏小区 CELL1 , 在用户设备处 于连接状态时,可接收无线网络控制器发送的异频邻区 CELL3的接近检测
信息, 用户设备通过该接近检测信息来判定是否接近微小区。 其中, 上述 连接状态可以是用户设备正在与无线网络控制器进行通信的状态, 例如: 通话或上网等状态。 或者, 还可以根据用户设备之前存储的当前服务小区
CELL1 , 以及与 CELL1同频的 CELL2的位置信息、信号质量信息、 网码、 同频小区质量的门限范围等信息来确定是否满足接近微小区的条件。
本步骤 S601 是可选的, 在本发明的另一实施例中, 也可以用户设备 确定未接近异频邻区时, 直接执行 S602。
S602: 用户设备接收无线网络控制器发送的异频压模配置信息。
可选地, 在用户设备向无线网络控制器发送激活异频压模测量指示信 息之前, 无线网络控制器可以向用户设备发送异频压模配置信息, 用户设 备接收该异频压模配置信息。
S603 : 用户设备向无线网络控制器发送激活异频压模测量指示信息。 具体地, 由于用户设备上一般只设计有一套收发信机, 所以在同一时 间只能对一个载波展开测量, 即只能对当前服务小区同频的小区 CELL1 和 CELL2进行测量。 因此, 当用户设备确定已接近异频邻区 CELL3后, 用户设备可以启动异频压缩模式来进行异频邻区测量, 即启动异频压缩模 式来对 CELL3进行测量。
具体地, 用户设备可以向无线网络控制器发送激活异频压模测量指示 信息。 其中, 该激活异频压模测量指示信息用于指示无线网络控制器激活 基站的异频压模的配置。 且该激活异频压模测量指示信息可以包含启激活 压模的帧号和以下异频压模配置参数中的至少一个: 发送压缩模式序列标 识, 发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时隙 的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离第 一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个发 送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算模 式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数等。
S604: 无线网络控制器根据异频压模测量指示信息, 激活基站的压模 配置。
具体地, 在无线网络控制器接收到用户设备发送的激活异频压模测量 指示信息后, 可根据异频压模测量指示信息去激活基站的压模配置, 以配
合用户设备对异频邻区 CELL3的异频压模测量。
S605 : 用户设备接收无线网络控制器对激活异频压模测量指示信息的 响应消息。
可选地, 在无线网络控制器根据异频压模测量指示信息, 激活压模配 置之后, 在用户设备釆用异频压模测量方式对异频邻区 CELL3进行测量之 前, 无线网络控制器还可以向用户设备发送一个激活异频压模测量指示信 息的响应消息, 用户设备接收无线网络控制器对激活异频压模测量指示信 息的响应消息。
S606: 用户设备釆用异频压模测量方式对异频邻区进行测量。
具体地, 在用户设备向无线网络控制器发送激活异频压模测量指示信 息之后, 用户设备可以直接釆用异频压模测量方式对异频邻区 CELL3 进 行测量。
S607: 用户设备向无线网络控制器上报异频测量结果。
具体地, 用户设备对异频邻区 CELL3 进行异频压模测量, 然后将异 频压模测量结果上报给无线网络控制器。
上述实施例提供的异频邻区测量方法, 通过无线网络控制器向用户设 备发送异频邻区的接近检测信息, 用户设备可以根据该异频邻区的接近检测 信息对当前服务小区同频的小区的信号进行测量, 并将测量结果与异频邻 区的接近检测信息对比, 在满足该信息的时候上报无线网络控制器接近异 频邻区, 由用户设备指示无线网络控制器激活基站的异频压模的配置, 并 釆用异频压模测量方式对异频邻区进行测量并向无线网络控制器上报异 频测量结果, 从而用户设备无需一直启用异频压模测量异频邻区, 节省用 户设备的耗电量, 提高用户设备数据传输性能。
图 8为本发明实施例七提供的用户设备的结构示意图。 如图 8所示, 该用户设备可以包括: 接收模块 701、 测量模块 702和发送模块 703。
具体地, 接收模块 701可以用于接收无线网络控制器发送的异频邻区 的接近检测信息, 异频邻区的接近检测信息用于指示同频小区的信号测量 报告的标准信息。
测量模块 702可以用于对同频小区进行信号测量。
发送模块 703可以用于在同频小区的信号质量满足同频小区的信号测
量报告的标准信息时, 向无线网络控制器上报指示消息, 指示消息用于指 示用户设备接近异频邻区。
本实施例的用户设备,可以用于执行图 1所示方法实施例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 可选地, 同频小区的信号测量报告的标准信 息包括以下信息中的至少一个: 同频小区的信号质量要满足的门限信息, 同频小区的信号质量要满足的迟滞信息, 同频小区的信号质量要满足的测 量报告标准的持续时间信息。
进一步地, 在上述实施例的基础上, 满足同频小区的信号测量报告标 准信息的信号质量通过同频小区的信号质量信噪比信息、 信号强度信息和 路损信息中至少一个表示, 或者为任意两个同频小区的信号质量信噪比差 值信息、 信号强度差值信息、 路损差值信息中的至少一个表示。
本实施例的用户设备, 可以用于执行图 3和图 4所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 9为本发明实施例八提供的无线网络控制器的结构示意图。 如图 9 所示, 该无线网络控制器可以包括: 发送模块 801和接收模块 802。
具体地, 发送模块 801可以用于向用户设备发送异频邻区的接近检测 信息, 异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准 信息, 以使用户设备对同频小区进行信号测量。
接收模块 802可以用于接收用户设备在同频小区的信号质量满足同频 小区的信号测量报告的标准信息时发送的指示消息, 指示消息用于指示用 户设备接近异频邻区。
本实施例的无线网络控制器, 可以用于执行图 2所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 可选地, 同频小区的信号测量报告的标准信 息包括以下信息中的至少一个: 同频小区的信号质量要满足的门限信息, 同频小区的信号质量要满足的迟滞信息, 同频小区的信号质量要满足的测 量报告标准的持续时间信息。
进一步地, 在上述实施例的基础上, 可选地, 满足同频小区的信号测 量报告标准信息的信号质量通过同频小区的信号质量信噪比信息、 信号强
度信息和路损信息中至少一个表示, 或者为任意两个同频小区的信号质量 信噪比差值信息、 信号强度差值信息、 路损差值信息中的至少一个表示。
本实施例的无线网络控制器, 可以用于执行图 3和图 4所示方法实施 例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 10为本发明实施例九提供的用户设备的结构示意图。如图 10所示, 该用户设备可以包括: 确定模块 901、 发送模块 902和测量模块 903。
具体地, 确定模块 901 , 用于确定同频小区的信号质量满足所述同频 小区的信号测量报告的标准信息时, 确定该用户设备接近异频邻区; 或, 用于确定所述用户设备的当前位置的异频邻区的信号质量在预设置的范 围内, 确定该用户设备接近异频邻区; 或, 用于确定所述用户设备的当前 位置与邻区基站的距离在预设置的范围内时, 确定该用户设备接近异频邻 区。
发送模块 902可以用于向无线网络控制器发送激活异频压模测量指示 信息, 激活异频压模测量指示信息用于指示无线网络控制器激活基站的异 频压模的配置。
测量模块 903可以用于釆用异频压模测量方式对异频邻区进行测量。 发送模块 902还用于向无线网络控制器上报异频测量结果。
本实施例的用户设备,可以用于执行图 5所示方法实施例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 可选地, 激活异频压模测量指示信包含启激 活压模的帧号和以下异频压模配置参数中的至少一个: 发送压缩模式序列 标识, 发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时 隙的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离 第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个 发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算 模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
进一步地, 在上述实施例的基础上, 用户设备还包括:
接收模块 904 可以用于接收无线网络控制器发送的异频压模配置信 息。
可选地, 接收模块 904还可以用于接收无线网络控制器对激活异频压
模测量指示信息的响应消息。
本实施例的用户设备, 可以用于执行图 5和图 7所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 1 1 为本发明实施例十提供的无线网络控制器的结构示意图。 如图 1 1所示, 该无线网络控制器可以包括: 接收模块 1 11和处理模块 112。
具体地, 接收模块 11 1可以用于接收用户设备发送的激活异频压模测 量指示信息, 激活异频压模测量指示信息用于指示无线网络控制器激活基 站的异频压模的配置。
处理模块 112可以用于根据异频压模测量指示信息, 激活压模配置; 接收模块 1 11还可以用于接收用户设备釆用异频压模测量方式对异频 邻区进行测量的异频测量结果。
本实施例的无线网络控制器, 可以用于执行图 6所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 进一步地, 无线网络控制器, 还可以包括: 发送模块 113 , 可以用于向用户设备发送异频压模配置信息。
可选地, 发送模块 113还可以还用于向用户设备发送对激活异频压模 测量指示信息的响应消息。
在上述实施例的基础上, 可选地, 激活异频压模测量指示信包含启激 活压模的帧号和以下异频压模配置参数中的至少一个: 发送压缩模式序列 标识, 发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时 隙的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离 第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个 发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算 模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
本实施例的无线网络控制器, 可以用于执行图 6和图 7所示方法实施 例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 12为本发明实施例十一提供的用户设备的结构示意图。 如图 12所 示, 该用户设备可以包括: 接收器 121、 处理器 122和发送器 123。
具体地, 接收器 121可以用于接收无线网络控制器发送的异频邻区的 接近检测信息, 异频邻区的接近检测信息用于指示同频小区的信号测量报
告的标准信息。
处理器 122可以用于对同频小区进行信号测量。
发送器 123可以用于在同频小区的信号质量满足同频小区的信号测量 报告的标准信息时, 向无线网络控制器上报指示消息, 指示消息用于指示 用户设备接近异频邻区。
本实施例的用户设备,可以用于执行图 1所示方法实施例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 可选地, 同频小区的信号测量报告的标准信 息包括以下信息中的至少一个: 同频小区的信号质量要满足的门限信息, 同频小区的信号质量要满足的迟滞信息, 同频小区的信号质量要满足的测 量报告标准的持续时间信息。
可选地, 满足同频小区的信号测量报告标准信息的信号质量通过同频 小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表示, 或者为任意两个同频小区的信号质量信噪比差值信息、 信号强度差值信 息、 路损差值信息中的至少一个表示。
本实施例的用户设备, 可以用于执行图 3和图 4所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 13 为本发明实施例十二提供的无线网络控制器的结构示意图。 如 图 13所示, 该用户设备可以包括: 发送器 131和接收器 132。
具体地, 发送器 131可以用于向用户设备发送异频邻区的接近检测信 息, 异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准信 息, 以使用户设备对同频小区进行信号测量。
接收器 132可以用于接收用户设备在同频小区的信号质量满足同频小 区的信号测量报告的标准信息时发送的指示消息, 指示消息用于指示用户 设备接近异频邻区。
本实施例的无线网络控制器, 可以用于执行图 2所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 可选地, 同频小区的信号测量报告的标准信 息包括以下信息中的至少一个: 同频小区的信号质量要满足的门限信息, 同频小区的信号质量要满足的迟滞信息, 同频小区的信号质量要满足的测
量报告标准的持续时间信息。
可选地, 满足同频小区的信号测量报告标准信息的信号质量通过同频 小区的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表示, 或者为任意两个同频小区的信号质量信噪比差值信息、 信号强度差值信 息、 路损差值信息中的至少一个表示。
本实施例的无线网络控制器, 可以用于执行图 3和图 4所示方法实施 例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 14为本发明实施例十三提供的用户设备的结构示意图。 如图 14所 示, 该用户设备可以包括: 处理器 141和发送器 142。
处理器 141用于确定同频小区的信号质量满足所述同频小区的信号测 量报告的标准信息时, 确定该用户设备接近异频邻区; 或, 用于确定所述 用户设备的当前位置的异频邻区的信号质量在预设置的范围内, 确定该用 户设备接近异频邻区; 或, 用于确定所述用户设备的当前位置与邻区基站 的距离在预设置的范围内时, 确定该用户设备接近异频邻区。
发送器 142可以用于向无线网络控制器发送激活异频压模测量指示信 息, 激活异频压模测量指示信息用于指示无线网络控制器激活基站的异频 压模的配置。
处理器 141还可以用于釆用异频压模测量方式对异频邻区进行测量。 发送器 142还可以用于向无线网络控制器上报异频测量结果。
本实施例的用户设备,可以用于执行图 5所示方法实施例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 可选地, 激活异频压模测量指示信包含启激 活压模的帧号和以下异频压模配置参数中的至少一个: 发送压缩模式序列 标识, 发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时 隙的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离 第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个 发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算 模式, 上行压模模式, 下行压缩模式, 下行帧的类型, 功率控制参数。
进一步地, 在上述实施例的基础上, 该用户设备还可以包括: 接收器 143 ,可以用于接收无线网络控制器发送的异频压模配置信息。
可选地, 接收器 143还可以用于接收无线网络控制器对激活异频压模 测量指示信息的响应消息。
本实施例的用户设备, 可以用于执行图 5和图 7所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
图 15 为本发明实施例十四提供的无线网络控制器的结构示意图。 如 图 15所示, 该用户设备可以包括: 接收器 151和处理器 152。
具体地, 接收器 151可以用于接收用户设备发送的激活异频压模测量 指示信息, 激活异频压模测量指示信息用于指示无线网络控制器激活基站 的异频压模的配置。
处理器 152可以用于根据异频压模测量指示信息, 激活压模配置。 接收器 151还可以用于接收用户设备釆用异频压模测量方式对异频邻 区进行测量的异频测量结果。
本实施例的无线网络控制器, 可以用于执行图 6所示方法实施例的技 术方案, 其实现原理和技术效果类似, 此处不再赘述。
在上述实施例的基础上, 进一步地, 该无线网络控制器,还可以包括: 发送器 153 , 可以用于向用户设备发送异频压模配置信息。
可选地, 发送器 153还可以用于向用户设备发送对激活异频压模测量 指示信息的响应消息。
可选地, 激活异频压模测量指示信包含启激活压模的帧号和以下异频 压模配置参数中的至少一个: 发送压缩模式序列标识, 发送压模序列的重 复次数, 发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送 压模时隙的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时 隙长度,第二个发送压模时隙的时隙长度,一个发送压模模式的持续时间, 恢复周期功率控制模式, 初始发送功率的计算模式, 上行压模模式, 下行 压缩模式, 下行帧的类型, 功率控制参数。
本实施例的无线网络控制器, 可以用于执行图 6和图 7所示方法实施 例的技术方案, 其实现原理和技术效果类似, 此处不再赘述。
本领域普通技术人员可以理解: 实现上述方法实施例的全部或部分步骤 可以通过程序指令相关的硬件来完成, 前述的程序可以存储于一计算机可读 取存储介质中, 该程序在执行时, 执行包括上述方法实施例的步骤; 而前述
的存储介质包括: ROM, RAM, 磁碟或者光盘等各种可以存储程序代码的介 质。
最后应说明的是: 以上各实施例仅用以说明本发明的技术方案, 而非对 其限制; 尽管参照前述各实施例对本发明进行了详细的说明, 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, 或者对其中部分或者全部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发明各实施例技术方案的范围。
Claims
1、 一种异频邻区接近检测的方法, 其特征在于, 包括:
用户设备接收无线网络控制器发送的异频邻区的接近检测信息, 所述 异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息; 所述用户设备对所述同频小区进行信号测量;
若所述同频小区的信号质量满足所述同频小区的信号测量报告的标 准信息, 则所述用户设备向所述无线网络控制器上报指示消息, 所述指示 消息用于指示所述用户设备接近所述异频邻区。
2、 根据权利要求 1 所述的方法, 其特征在于, 所述同频小区的信号 测量报告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质 量要满足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述 同频小区的信号质量要满足的测量报告标准的持续时间信息。
3、 根据权利要求 1或 2所述的方法, 其特征在于, 满足所述同频小 区的信号测量报告标准信息的信号质量通过所述同频小区的信号质量信 噪比信息、 信号强度信息和路损信息中至少一个表示, 或者为任意两个所 述同频小区的信号质量信噪比差值信息、 信号强度差值信息、 路损差值信 息中的至少一个表示。
4、 一种异频邻区接近检测的方法, 其特征在于, 包括:
无线网络控制器向用户设备发送异频邻区的接近检测信息, 所述异频 邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息, 以使 所述用户设备对所述同频小区进行信号测量;
所述无线网络控制器接收所述用户设备在所述同频小区的信号质量 满足所述同频小区的信号测量报告的标准信息时发送的指示消息, 所述指 示消息用于指示所述用户设备接近所述异频邻区。
5、 根据权利要求 4所述的方法, 其特征在于, 所述同频小区的信号 测量报告的标准信息包括以下信息中的至少一个: 所述同频小区的信号质 量要满足的门限信息, 所述同频小区的信号质量要满足的迟滞信息, 所述 同频小区的信号质量要满足的测量报告标准的持续时间信息。
6、 根据权利要求 4或 5所述的方法, 其特征在于, 满足所述同频小 区的信号测量报告标准信息的信号质量通过所述同频小区的信号质量信
噪比信息、 信号强度信息和路损信息中至少一个表示, 或者为任意两个所 述同频小区的信号质量信噪比差值信息、 信号强度差值信息、 路损差值信 息中的至少一个表示。
7、 一种异频邻区测量的方法, 其特征在于, 包括:
所述用户设备向无线网络控制器发送激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
所述用户设备釆用异频压模测量方式对异频邻区进行测量;
所述用户设备向所述无线网络控制器上报异频测量结果。
8、 根据权利要求 7所述的方法, 其特征在于, 所述方法进一步包括: 所述用户设备确定同频小区的信号质量满足所述同频小区的信号测 量报告的标准信息时, 确定该用户设备接近异频邻区; 或
所述用户设备确定其当前位置的异频邻区的信号质量在预设置的范 围内, 确定该用户设备接近异频邻区; 或
所述用户设备确定其当前位置与邻区基站的距离在预设置的范围内 时, 确定该用户设备接近异频邻区。
9、 根据权利要求 7或 8所述的方法, 其特征在于, 所述激活异频压 模测量指示信包含启激活压模的帧号和以下异频压模配置参数中的至少 一个: 发送压缩模式序列标识, 发送压模序列的重复次数, 发送压模测量 目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个发送压 模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期功率控制模 式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下行帧的 类型, 功率控制参数。
10、 根据权利要求 7-9任一项所述的方法, 其特征在于, 所述用户设 备向无线网络控制器发送激活异频压模测量指示信息之前, 还包括:
所述用户设备接收所述无线网络控制器发送的异频压模配置信息。
1 1、根据权利要求 7-10任一项所述的方法, 其特征在于, 所述用户设 备向无线网络控制器发送激活异频压模测量指示信息之后, 还包括:
所述用户设备接收所述无线网络控制器对所述激活异频压模测量指
示信息的响应消息。
12、 一种异频邻区测量的方法, 其特征在于, 包括:
无线网络控制器接收用户设备发送的激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
所述无线网络控制器根据所述异频压模测量指示信息, 激活基站的压 模配置;
所述无线网络控制器接收用户设备釆用异频压模测量方式对异频邻 区进行测量的异频测量结果。
13、 根据权利要求 12所述的方法, 其特征在于, 所述无线网络控制 器接收用户设备发送的激活异频压模测量指示信息之后, 还包括:
所述无线网络控制器向所述用户设备发送异频压模配置信息。
14、 根据权利要求 12或 13所述的方法, 其特征在于, 所述无线网络 控制器接收用户设备发送的激活异频压模测量指示信息之后, 还包括: 所述无线网络控制器向所述用户设备发送对激活异频压模测量指示 信息的响应消息。
15、 根据权利要求 12-14任一项所述的方法, 其特征在于, 所述激活 异频压模测量指示信包含启激活压模的帧号和以下异频压模配置参数中 的至少一个: 发送压缩模式序列标识, 发送压模序列的重复次数, 发送压 模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙的时隙 长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个 发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期功率 控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下 行帧的类型, 功率控制参数。
16、 一种用户设备, 其特征在于, 包括:
接收模块, 用于接收无线网络控制器发送的异频邻区的接近检测信 息, 所述异频邻区的接近检测信息用于指示同频小区的信号测量报告的标 准信息;
测量模块, 用于对所述同频小区进行信号测量;
发送模块, 用于在所述同频小区的信号质量满足所述同频小区的信号
测量报告的标准信息时, 向所述无线网络控制器上报指示消息, 所述指示 消息用于指示所述用户设备接近所述异频邻区。
17、 根据权利要求 16所述的用户设备, 其特征在于, 所述同频小区 的信号测量报告的标准信息包括以下信息中的至少一个: 所述同频小区的 信号质量要满足的门限信息, 所述同频小区的信号质量要满足的迟滞信 息, 所述同频小区的信号质量要满足的测量报告标准的持续时间信息。
18、 根据权利要求 16或 17所述的用户设备, 其特征在于, 满足所述 同频小区的信号测量报告标准信息的信号质量通过所述同频小区的信号 质量信噪比信息、 信号强度信息和路损信息中至少一个表示, 或者为任意 两个所述同频小区的信号质量信噪比差值信息、 信号强度差值信息、 路损 差值信息中的至少一个表示。
19、 一种无线网络控制器, 其特征在于, 包括:
发送模块, 用于向用户设备发送异频邻区的接近检测信息, 所述异频 邻区的接近检测信息用于指示同频小区的信号测量报告的标准信息, 以使 所述用户设备对所述同频小区进行信号测量;
接收模块, 用于接收所述用户设备在所述同频小区的信号质量满足所 述同频小区的信号测量报告的标准信息时发送的指示消息, 所述指示消息 用于指示所述用户设备接近所述异频邻区。
20、 根据权利要求 19所述的无线网络控制器, 其特征在于, 所述同 频小区的信号测量报告的标准信息包括以下信息中的至少一个: 所述同频 小区的信号质量要满足的门限信息, 所述同频小区的信号质量要满足的迟 滞信息, 所述同频小区的信号质量要满足的测量报告标准的持续时间信 息。
21、 根据权利要求 19或 20所述的无线网络控制器, 其特征在于, 满 足所述同频小区的信号测量报告标准信息的信号质量通过所述同频小区 的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表示, 或者 为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度差值信 息、 路损差值信息中的至少一个表示。
22、 一种用户设备, 其特征在于, 包括:
发送模块, 用于向无线网络控制器发送激活异频压模测量指示信息, 所述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站 的异频压模的配置;
测量模块, 用于釆用异频压模测量方式对异频邻区进行测量; 所述发送模块还用于向所述无线网络控制器上报异频测量结果。
23、 根据权利要求 22所述的用户设备, 其特征在于, 还包括: 确定模块, 用于确定同频小区的信号质量满足所述同频小区的信号测 量报告的标准信息时, 确定该用户设备接近异频邻区; 或, 用于确定所述 用户设备的当前位置的异频邻区的信号质量在预设置的范围内, 确定该用 户设备接近异频邻区; 或, 用于确定所述用户设备的当前位置与邻区基站 的距离在预设置的范围内时, 确定该用户设备接近异频邻区。
24、 根据权利要求 22或 23所述的用户设备, 其特征在于, 所述激活 异频压模测量指示信包含启激活压模的帧号和以下异频压模配置参数中 的至少一个: 发送压缩模式序列标识, 发送压模序列的重复次数, 发送压 模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙的时隙 长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个 发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期功率 控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下 行帧的类型, 功率控制参数。
25、 根据权利要求 22-24任一项所述的用户设备, 其特征在于, 还包 括:
接收模块, 用于接收所述无线网络控制器发送的异频压模配置信息。
26、 根据权利要求 22-25任一项所述的用户设备, 其特征在于: 所述接收模块还用于接收所述无线网络控制器对所述激活异频压模 测量指示信息的响应消息。
27、 一种无线网络控制器, 其特征在于, 包括:
接收模块, 用于接收用户设备发送的激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
处理模块, 用于根据所述异频压模测量指示信息, 激活压模配置;
所述接收模块还用于接收用户设备釆用异频压模测量方式对异频邻 区进行测量的异频测量结果。
28、 根据权利要求 27所述的无线网络控制器, 其特征在于, 还包括: 发送模块, 用于向所述用户设备发送异频压模配置信息。
29、 根据权利要求 27或 28所述的无线网络控制器, 其特征在于: 所述发送模块还用于向所述用户设备发送对激活异频压模测量指示 信息的响应消息。
30、根据权利要求 27-29任一项所述的无线网络控制器,其特征在于, 所述激活异频压模测量指示信包含启激活压模的帧号和以下异频压模配 置参数中的至少一个:发送压缩模式序列标识,发送压模序列的重复次数, 发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙 的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周 期功率控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模 式, 下行帧的类型, 功率控制参数。
31、 一种用户设备, 其特征在于, 包括:
接收器, 用于接收无线网络控制器发送的异频邻区的接近检测信息, 所述异频邻区的接近检测信息用于指示同频小区的信号测量报告的标准 信息;
处理器, 用于对所述同频小区进行信号测量;
发送器, 用于在所述同频小区的信号质量满足所述同频小区的信号测 量报告的标准信息时, 向所述无线网络控制器上报指示消息, 所述指示消 息用于指示所述用户设备接近所述异频邻区。
32、 根据权利要求 31 所述的用户设备, 其特征在于, 所述同频小区 的信号测量报告的标准信息包括以下信息中的至少一个: 所述同频小区的 信号质量要满足的门限信息, 所述同频小区的信号质量要满足的迟滞信 息, 所述同频小区的信号质量要满足的测量报告标准的持续时间信息。
33、 根据权利要求 31或 32所述的用户设备, 其特征在于, 满足所述 同频小区的信号测量报告标准信息的信号质量通过所述同频小区的信号 质量信噪比信息、 信号强度信息和路损信息中至少一个表示, 或者为任意
两个所述同频小区的信号质量信噪比差值信息、 信号强度差值信息、 路损 差值信息中的至少一个表示。
34、 一种无线网络控制器, 其特征在于, 包括:
发送器, 用于向用户设备发送异频邻区的接近检测信息, 所述异频邻 区的接近检测信息用于指示同频小区的信号测量报告的标准信息, 以使所 述用户设备对所述同频小区进行信号测量;
接收器, 用于接收所述用户设备在所述同频小区的信号质量满足所述 同频小区的信号测量报告的标准信息时发送的指示消息, 所述指示消息用 于指示所述用户设备接近所述异频邻区。
35、 根据权利要求 34所述的无线网络控制器, 其特征在于, 所述同 频小区的信号测量报告的标准信息包括以下信息中的至少一个: 所述同频 小区的信号质量要满足的门限信息, 所述同频小区的信号质量要满足的迟 滞信息, 所述同频小区的信号质量要满足的测量报告标准的持续时间信 息。
36、 根据权利要求 34或 35所述的无线网络控制器, 其特征在于, 满 足所述同频小区的信号测量报告标准信息的信号质量通过所述同频小区 的信号质量信噪比信息、 信号强度信息和路损信息中至少一个表示, 或者 为任意两个所述同频小区的信号质量信噪比差值信息、 信号强度差值信 息、 路损差值信息中的至少一个表示。
37、 一种用户设备, 其特征在于, 包括:
发送器, 用于向无线网络控制器发送激活异频压模测量指示信息, 所 述激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的 异频压模的配置;
处理器, 用于釆用异频压模测量方式对异频邻区进行测量; 用于向所 述无线网络控制器上报异频测量结果。
38、 根据权利要求 37 所述的用户设备, 其特征在于, 所述处理器, 还用于确定同频小区的信号质量满足所述同频小区的信号测量报告的标 准信息时, 确定该用户设备接近异频邻区; 或, 用于确定所述用户设备的 当前位置的异频邻区的信号质量在预设置的范围内, 确定该用户设备接近 异频邻区; 或, 用于确定所述用户设备的当前位置与邻区基站的距离在预
设置的范围内时, 确定该用户设备接近异频邻区。
39、 根据权利要求 37或 38所述的用户设备, 其特征在于, 所述激活 异频压模测量指示信包含启激活压模的帧号和以下异频压模配置参数中 的至少一个: 发送压缩模式序列标识, 发送压模序列的重复次数, 发送压 模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙的时隙 长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个 发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周期功率 控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模式, 下 行帧的类型, 功率控制参数。
40、 根据权利要求 37-39任一项所述的用户设备, 其特征在于, 还包 括:
接收器, 用于接收所述无线网络控制器发送的异频压模配置信息。
41、 根据权利要求 37-40任一项所述的用户设备, 其特征在于: 所述接收器还用于接收所述无线网络控制器对所述激活异频压模测 量指示信息的响应消息。
42、 一种无线网络控制器, 其特征在于, 包括:
接收器, 用于接收用户设备发送的激活异频压模测量指示信息, 所述 激活异频压模测量指示信息用于指示所述无线网络控制器激活基站的异 频压模的配置;
处理器, 用于根据所述异频压模测量指示信息, 激活压模配置; 所述接收器还用于接收用户设备釆用异频压模测量方式对异频邻区 进行测量的异频测量结果。
43、 根据权利要求 42所述的无线网络控制器, 其特征在于, 还包括: 发送器, 用于向所述用户设备发送异频压模配置信息。
44、 根据权利要求 42或 43所述的无线网络控制器, 其特征在于: 所述发送器还用于向所述用户设备发送对激活异频压模测量指示信 息的响应消息。
45、根据权利要求 42-44任一项所述的无线网络控制器,其特征在于, 所述激活异频压模测量指示信包含启激活压模的帧号和以下异频压模配 置参数中的至少一个:发送压缩模式序列标识,发送压模序列的重复次数,
发送压模测量目的, 第一个发送压模时隙的时隙号, 第一个发送压模时隙 的时隙长度, 第二个发送压模时隙距离第一个发送压模时隙的时隙长度, 第二个发送压模时隙的时隙长度, 一个发送压模模式的持续时间, 恢复周 期功率控制模式, 初始发送功率的计算模式, 上行压模模式, 下行压缩模 式, 下行帧的类型, 功率控制参数。
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/CN2013/070856 WO2014113928A1 (zh) | 2013-01-22 | 2013-01-22 | 异频邻区接近检测及测量方法、无线网络控制器和用户设备 |
EP13872881.1A EP2943010A4 (en) | 2013-01-22 | 2013-01-22 | METHOD OF APPARATUS DETECTION AND MEASUREMENT FOR INTER-FREQUENCY NEIGHBORING CELLS, RADIO NETWORK CONTROLLER AND USER EQUIPMENT |
CN201380000059.4A CN104137610A (zh) | 2013-01-22 | 2013-01-22 | 异频邻区接近检测及测量方法、无线网络控制器和用户设备 |
US14/806,397 US9877244B2 (en) | 2013-01-22 | 2015-07-22 | Inter-frequency neighboring cell proximity detection method, inter-frequency neighboring cell measurement method, radio network controller, and user equipment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/CN2013/070856 WO2014113928A1 (zh) | 2013-01-22 | 2013-01-22 | 异频邻区接近检测及测量方法、无线网络控制器和用户设备 |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US14/806,397 Continuation US9877244B2 (en) | 2013-01-22 | 2015-07-22 | Inter-frequency neighboring cell proximity detection method, inter-frequency neighboring cell measurement method, radio network controller, and user equipment |
Publications (1)
Publication Number | Publication Date |
---|---|
WO2014113928A1 true WO2014113928A1 (zh) | 2014-07-31 |
Family
ID=51226812
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
PCT/CN2013/070856 WO2014113928A1 (zh) | 2013-01-22 | 2013-01-22 | 异频邻区接近检测及测量方法、无线网络控制器和用户设备 |
Country Status (4)
Country | Link |
---|---|
US (1) | US9877244B2 (zh) |
EP (1) | EP2943010A4 (zh) |
CN (1) | CN104137610A (zh) |
WO (1) | WO2014113928A1 (zh) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115347995A (zh) * | 2022-08-11 | 2022-11-15 | 哲库科技(北京)有限公司 | 测量位置的配置方法、装置、终端及存储介质 |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9438406B1 (en) * | 2014-09-09 | 2016-09-06 | Sprint Spectrum L.P. | Methods and systems for implementing an inter-frequency measurement procedure in the presence of a closed access node |
BR112019009622A2 (pt) * | 2016-11-14 | 2019-08-13 | Ericsson Telefon Ab L M | dispositivos sem fio capazes de realizar pelo menos uma medição de rádio de intrafrequência, método em um dispositivo sem fio, nós de rede capazes de operar em uma rede com um dispositivo sem fio e método em um nó de rede |
WO2019242722A1 (zh) * | 2018-06-21 | 2019-12-26 | Oppo广东移动通信有限公司 | 一种测量控制方法及装置、终端设备 |
US11844041B2 (en) | 2018-11-12 | 2023-12-12 | Telefonaktiebolaget Lm Ericsson (Publ) | Method and apparatus for fingerprinting positioning |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1764315A (zh) * | 2004-10-22 | 2006-04-26 | 华为技术有限公司 | 一种异频和异系统切换并行控制方法 |
CN101827412A (zh) * | 2009-03-04 | 2010-09-08 | 华为技术有限公司 | 一种小区切换的方法及装置 |
CN102869025A (zh) * | 2011-07-06 | 2013-01-09 | 中兴通讯股份有限公司 | 一种测量处理方法及系统 |
Family Cites Families (22)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US6615044B2 (en) * | 2001-06-06 | 2003-09-02 | Nokia Mobile Phones, Ltd. | Method of WCDMA coverage based handover triggering |
ATE371305T1 (de) * | 2004-06-11 | 2007-09-15 | Geolink | Mobile kommunikationsanordnung für schiffe mit einer satellitenverbindung |
JP4720977B2 (ja) * | 2005-02-14 | 2011-07-13 | 日本電気株式会社 | 基地局制御装置、移動体通信システム、および近隣セルリストフィルタリング方法 |
KR101358469B1 (ko) * | 2006-02-07 | 2014-02-06 | 엘지전자 주식회사 | 무선 네트워크(network) 안에서 상향(uplink)및 하향(downlink) 대역폭(bandwidth)의선택 및 신호 방법 |
EP2782394B1 (en) * | 2007-06-18 | 2021-04-07 | InterDigital Technology Corporation | Method for inter-radio access technology cell reselection in a wireless transmit/receive unit and wireless transmit/receive unit |
US8355721B2 (en) * | 2008-05-08 | 2013-01-15 | Research In Motion Limited | Method and apparatus for managing communication of compressed mode capabilities |
KR101374404B1 (ko) * | 2009-06-19 | 2014-03-17 | 인터디지탈 패튼 홀딩스, 인크 | 홈 노드 b를 탐지하고 측정하기 위한 방법 및 장치 |
CN102014422A (zh) * | 2009-09-08 | 2011-04-13 | 中兴通讯股份有限公司 | 测量处理方法和装置 |
US20130077601A1 (en) * | 2009-09-18 | 2013-03-28 | Qualcomm Incorporated | Method and apparatus for facilitating compressed mode communications |
WO2011043710A1 (en) * | 2009-10-05 | 2011-04-14 | Telefonaktiebolaget L M Ericsson (Publ) | Method and arrangement in a telecommunication system |
US8804634B2 (en) * | 2010-01-08 | 2014-08-12 | Interdigital Patent Holdings, Inc. | Method and apparatus for managing CSG priorities in idle and connected modes |
WO2011082988A1 (en) * | 2010-01-11 | 2011-07-14 | Telefonaktiebolaget L M Ericsson (Publ) | Measurement handling with carrier aggregation |
RU2554078C2 (ru) * | 2010-02-19 | 2015-06-27 | Леново Груп Лимитед | Межчастотные измерения позиционирования |
WO2011110566A1 (en) * | 2010-03-10 | 2011-09-15 | Nokia Siemens Networks Oy | A method of switching between a data exchange mode and a measurement mode in a communications system |
JP5738974B2 (ja) | 2010-04-02 | 2015-06-24 | ノキア コーポレイション | 限定加入者グループセルを含む仮想アクティブセットを保持するための方法および装置 |
WO2011142710A1 (en) * | 2010-05-10 | 2011-11-17 | Telefonaktiebolaget Lm Ericsson (Publ) | Methods and apparatus for supporting inter-frequency measurements |
JP5759472B2 (ja) * | 2010-09-30 | 2015-08-05 | シャープ株式会社 | ホームセルを含む無線通信システムに向けられた移動局 |
WO2012125103A1 (en) * | 2011-03-15 | 2012-09-20 | Telefonaktiebolaget L M Ericsson (Publ) | Method and node supporting cell reselection in load balanced network |
EP2698009A1 (en) * | 2011-04-13 | 2014-02-19 | Interdigital Patent Holdings, Inc. | Method and apparatus for small cell discovery in heterogeneous networks |
US9253713B2 (en) * | 2011-09-26 | 2016-02-02 | Blackberry Limited | Method and system for small cell discovery in heterogeneous cellular networks |
EP2621242A1 (en) * | 2012-01-26 | 2013-07-31 | Panasonic Corporation | Improved discontinuous reception operation with additional wake up opportunities |
US9014004B2 (en) * | 2012-12-04 | 2015-04-21 | Cisco Technology, Inc. | Method for managing load balance in a cellular heterogeneous network |
-
2013
- 2013-01-22 WO PCT/CN2013/070856 patent/WO2014113928A1/zh active Application Filing
- 2013-01-22 EP EP13872881.1A patent/EP2943010A4/en not_active Withdrawn
- 2013-01-22 CN CN201380000059.4A patent/CN104137610A/zh active Pending
-
2015
- 2015-07-22 US US14/806,397 patent/US9877244B2/en active Active
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1764315A (zh) * | 2004-10-22 | 2006-04-26 | 华为技术有限公司 | 一种异频和异系统切换并行控制方法 |
CN101827412A (zh) * | 2009-03-04 | 2010-09-08 | 华为技术有限公司 | 一种小区切换的方法及装置 |
CN102869025A (zh) * | 2011-07-06 | 2013-01-09 | 中兴通讯股份有限公司 | 一种测量处理方法及系统 |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115347995A (zh) * | 2022-08-11 | 2022-11-15 | 哲库科技(北京)有限公司 | 测量位置的配置方法、装置、终端及存储介质 |
CN115347995B (zh) * | 2022-08-11 | 2023-10-27 | 哲库科技(北京)有限公司 | 测量位置的配置方法、装置、终端及存储介质 |
Also Published As
Publication number | Publication date |
---|---|
US9877244B2 (en) | 2018-01-23 |
EP2943010A4 (en) | 2016-03-16 |
CN104137610A (zh) | 2014-11-05 |
EP2943010A1 (en) | 2015-11-11 |
US20150327134A1 (en) | 2015-11-12 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
KR102300494B1 (ko) | 새로운 라디오에서의 셀 재선택 측정 윈도우 | |
EP3324674B1 (en) | Configuration of suitable rrm parameters for communications in a high-speed mobility scenario | |
EP2720487B1 (en) | Cell information reporting | |
US9414268B2 (en) | User equipment and a radio network node, and methods therein for device-to-device communication | |
US10805814B2 (en) | Signal measurement method and apparatus | |
US9854586B2 (en) | Method and apparatus for supporting user equipment in task execution | |
WO2014012222A1 (zh) | 一种上行干扰管理方法、节点及系统 | |
US9877244B2 (en) | Inter-frequency neighboring cell proximity detection method, inter-frequency neighboring cell measurement method, radio network controller, and user equipment | |
EP2962489B1 (en) | Delivery of measurements | |
EP2750443A1 (en) | Radio connection reestablishment method, user equipment and enb | |
WO2018059151A1 (zh) | 资源管理指示方法及装置 | |
WO2013166729A1 (zh) | 一种信号质量测量结果的上报方法、设备及系统 | |
WO2016107232A1 (zh) | 一种多点协作传输的实现方法及装置 | |
CN104641689B (zh) | 用户设备接入网络的方法和接入设备 | |
WO2014023016A1 (zh) | 移动性控制的方法和装置 | |
US10057917B2 (en) | Uplink scheduling method and control node | |
US10674482B2 (en) | Resource allocation method, base station, and user equipment | |
WO2022057520A1 (zh) | 一种配置载波的方法和装置 | |
WO2014113926A1 (zh) | 小区测量方法、无线网络控制器和用户设备 | |
WO2017148379A1 (zh) | 应用于超级小区的通信方法和装置 | |
AU2019276336B2 (en) | Information reporting method, information reporting configuration method, user equipment and network side device | |
CN105611977B (zh) | 一种信息上报、接收方法、ue及网络设备 |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 13872881 Country of ref document: EP Kind code of ref document: A1 |
|
NENP | Non-entry into the national phase |
Ref country code: DE |
|
WWE | Wipo information: entry into national phase |
Ref document number: 2013872881 Country of ref document: EP |