WO2015032071A1 - 一种干扰检测方法及系统、管理方法及系统、用户设备及基站 - Google Patents

一种干扰检测方法及系统、管理方法及系统、用户设备及基站 Download PDF

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Publication number
WO2015032071A1
WO2015032071A1 PCT/CN2013/083062 CN2013083062W WO2015032071A1 WO 2015032071 A1 WO2015032071 A1 WO 2015032071A1 CN 2013083062 W CN2013083062 W CN 2013083062W WO 2015032071 A1 WO2015032071 A1 WO 2015032071A1
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Prior art keywords
detection
access point
detected
point device
information
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PCT/CN2013/083062
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English (en)
French (fr)
Inventor
李秉肇
陈燕燕
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华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to PCT/CN2013/083062 priority Critical patent/WO2015032071A1/zh
Priority to CN201380002765.2A priority patent/CN104620622B/zh
Publication of WO2015032071A1 publication Critical patent/WO2015032071A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/10Scheduling measurement reports ; Arrangements for measurement reports

Definitions

  • Interference detection method and system management method and system, user equipment and base station
  • the present invention relates to the field of communications technologies, and in particular, to an interference detection method and system, a management method and system, a user equipment, and a base station.
  • Wireless network (Wi les s Loca l Area Networks, WLAN for short) is a convenient data transmission system.
  • WLAN uses radio frequency technology to replace the old wired communication, and its flexibility and mobility are substantially improved compared with wired communication; and WLAN is easier to install, plan, adjust and expand than wired LAN, and the fault is easier to locate; Therefore, WLAN has become the trend of the times to replace the traditional wired local area network.
  • WLAN is a widely used public technology
  • the WLAN network spectrum is generally a public free spectrum; users such as individuals, enterprises, and operators can create WLANs by setting up different levels of access point devices in the public free spectrum. . Different access point devices may select the same channel in the common spectrum for information transmission, which brings unavoidable mutual interference between WLANs.
  • the WLAN access point device first selects a channel for information transmission, and detects interference of the channel, if the channel is on the channel. If there is serious interference, the channel is reselected to continue to transmit information.
  • the existing method for detecting interference uses the location of the access point device antenna (generally, the center of the WLAN coverage) as a detection point, and the detected interference result may be actually interfered with the user equipment connected to the WLAN. The situation does not match.
  • the solid circular area represents the signal coverage of the WLAN established by the access point device 1
  • the A point is the location of the antenna of the access point device 1
  • the dotted circular area represents the established by the access point device 2.
  • WLAN signal coverage, point B is the location of the access point device 2 antenna; two circular intersections are simultaneously covered by two WLANs, so they will interfere with each other in the same channel or similar channels;
  • the interference detection is performed at point A, since the point A is outside the dotted circle, the interference of the access point device 2 is not detected. But in fact, the user equipment at point C is in the WLAN of the access point device 1, but because it is in the area where the coverage is crossed, and the straight line distance of point C from point B is obviously smaller than the straight line distance from point A. . That is to say, because the distance is closer, if the two access point devices select the same channel or similar channel, the signal received by the C point to the access point device 2 will be stronger, and the interference will be very serious; Interference detection at point A cannot be found.
  • the existing WLAN interference detection and management has the defect that the detection result of the access point device is inaccurately matched with the interference actually received by the user equipment.
  • the invention provides an interference detection method and system, a management method and system, a user equipment and a base station, so as to solve the existing WLAN interference detection and management detection through the central point of the access point device, and the detection result cannot be accurately related to the user equipment.
  • the technical problem that the actual interference is consistent with.
  • the technical solution adopted by the present invention is:
  • the present invention provides an interference detection method, where the method specifically includes the following steps:
  • the user equipment receives the detection instruction of the base station
  • the user equipment detects the detection index in the communication channel of the access point device to be detected according to the detection instruction, and obtains the detection indicator information;
  • the detection index information and the preset reporting threshold it is determined whether the detection report needs to be reported; when the report needs to be reported, the user equipment reports the detection report.
  • the device information and the reporting threshold of the access point to be detected.
  • the information about the access point device to be detected includes:
  • the detecting instruction further includes a trigger threshold
  • the method further includes:
  • the user equipment detects whether the signal strength of the device to be detected reaches the trigger threshold, if When detected, the detection indicator in the communication channel of the access point device to be detected is detected.
  • the user equipment receiving the detection instruction of the base station and reporting the detection report by the user equipment is specifically:
  • the user equipment receives the detection instruction or reports the detection report by using the cellular network provided by the base station.
  • the detecting indicator includes:
  • Signal strength ratio or difference Signal strength ratio or difference, signal quality ratio or difference, path loss or effective frame ratio.
  • the detection indicator is a signal strength ratio or a difference, or a signal quality ratio or a difference
  • the detecting the detection indicator in the communication channel and obtaining the detection indicator information Specifically:
  • Detecting a ratio or difference between a signal strength or a signal quality from an access point device to be detected in the communication channel, and a signal strength or signal quality from an access point device other than the device to be detected, to the ratio Or the difference is used as the detection index information.
  • the detection indicator is a valid frame number ratio
  • the detecting the indicator in the communication channel and obtaining the detection indicator information, specifically:
  • the number of frames from the access point device to be detected in the communication channel is taken as the effective frame number, and the ratio of the effective frame number to the total number of frames in the channel is taken as the effective frame number ratio, and the effective frame number ratio is used as the detection index information;
  • the number of frames from the device to be detected in the channel is taken as the number of effective frames, and the number of other frames in the channel is used as the number of non-effective frames, and the ratio of the number of valid frames to the number of non-effective frames is taken as the effective frame ratio.
  • the effective frame number ratio is used as the detection index information.
  • the detection report includes:
  • User equipment location, detection index and detection index information information of the access point device to be detected, relational access point device information, actual detected value information, and/or idle channel information;
  • the information about the access point device is determined by the reporting threshold and the detection indicator information, and the name and address of the access point device that does not meet the reporting threshold limit.
  • the present invention provides an interference management method, where the method specifically includes the following steps:
  • the base station sends a detection instruction to the user equipment, causing the user equipment to perform interference detection and report detection.
  • Report
  • the base station performs interference processing analysis according to the detection report.
  • the analyzing, by the base station, the interference processing according to the detection report is specifically:
  • the base station analyzes the detection report to determine whether it is necessary to replace the channel for the access point device to be detected. When the channel needs to be replaced, the base station selects the idle channel to be changed to the communication channel of the device to be detected.
  • the performing, by the base station, the interference processing analysis further includes:
  • the present invention provides an interference detection system, the system comprising:
  • a triggering module configured to receive a detection instruction of the base station, and trigger interference detection
  • a detecting module configured to detect, according to the detection instruction, a detection indicator in a communication channel of the access point device to be detected, and obtain detection indicator information
  • the feedback module is configured to determine whether the detection report needs to be reported according to the detection index information and the preset reporting threshold; and report the detection report when the report needs to be reported.
  • the device information and the reporting threshold of the access point to be detected.
  • the information about the access point device to be detected includes:
  • the triggering module specifically includes: an instruction receiving unit, configured to receive a detection instruction of the base station; and the detection instruction further includes a trigger threshold;
  • the determining triggering unit is configured to detect whether the signal strength of the device to be detected reaches the trigger threshold, and if yes, detect the detection index in the communication channel of the device to be detected.
  • system further includes:
  • the detection indicator includes: a signal strength ratio or a difference, a signal quality ratio or a difference, a path loss or a valid frame ratio.
  • the detection indicator is a signal strength ratio or a difference, or a signal quality ratio or a difference
  • the detecting the detection indicator in the communication channel and obtaining the detection indicator information Specifically:
  • Detecting a ratio or difference between a signal strength or a signal quality from an access point device to be detected in the communication channel, and a signal strength or signal quality from an access point device other than the device to be detected, to the ratio Or the difference is used as the detection index information.
  • the detection indicator is a valid frame number ratio
  • the detecting the indicator in the communication channel and obtaining the detection indicator information, specifically:
  • the number of frames from the access point device to be detected in the communication channel is taken as the effective frame number, and the ratio of the effective frame number to the total number of frames in the channel is taken as the effective frame number ratio, and the effective frame number ratio is used as the detection index information;
  • the number of frames from the device to be detected in the channel is taken as the number of effective frames, and the number of other frames in the channel is used as the number of non-effective frames, and the ratio of the number of valid frames to the number of non-effective frames is taken as the effective frame ratio.
  • the effective frame number ratio is used as the detection index information.
  • the detection report includes:
  • User equipment location, detection index and detection index information information of the access point device to be detected, relational access point device information, actual detected value information, and/or idle channel information;
  • the information about the access point device is determined by the reporting threshold and the detection indicator information, and the name and address of the access point device that does not meet the reporting threshold limit.
  • the present invention provides an interference management system, where the system includes:
  • the instruction module is configured to send a detection instruction to the user equipment, so that the user equipment performs interference detection and reports the detection report;
  • a processing module configured to perform interference processing analysis according to the detection report.
  • the processing module specifically includes: a detection and analysis unit, configured to analyze the detection report, and determine whether the channel needs to be replaced.
  • a channel changing unit configured to change the idle channel to be detected when the channel needs to be replaced The communication channel of the inbound device.
  • the processing module further includes: a change notification unit, configured to notify the adjacent base station of the replaced channel number after the channel is replaced.
  • a change notification unit configured to notify the adjacent base station of the replaced channel number after the channel is replaced.
  • the first processor is configured to receive a detection instruction of the base station, detect a detection indicator in a communication channel of the device to be detected according to the detection instruction, obtain detection indicator information, and determine whether it is needed according to the detection indicator information and a preset reporting threshold. Report the test report; when the report needs to be reported, the user device reports the test report.
  • the first memory is configured to store a preset reporting threshold.
  • the device information and the reporting threshold of the access point to be detected.
  • the information about the access point device to be detected includes:
  • the detecting instruction further includes a trigger threshold
  • the method further includes:
  • the detecting, by the first processor, the detecting instruction of the base station, and the detecting report by the first processor are:
  • the first processor receives the detection instruction or reports the detection report by using the cellular network provided by the base station.
  • the detecting indicator includes:
  • Signal strength ratio or difference Signal strength ratio or difference, signal quality ratio or difference, path loss or effective frame ratio.
  • the detection indicator is a signal strength ratio or a difference, or a signal quality ratio or a difference
  • the detecting the detection indicator in the communication channel and obtaining the detection indicator information Specifically:
  • Detecting signal strength or signal quality from the access point device to be detected in the communication channel The ratio or difference between the signal strength or the signal quality of the access point device from the device other than the access point device to be detected, and the ratio or difference is used as the detection index information.
  • the detection indicator is a valid frame number ratio
  • the detecting the indicator in the communication channel and obtaining the detection indicator information, specifically:
  • the number of frames from the access point device to be detected in the communication channel is taken as the effective frame number, and the ratio of the effective frame number to the total number of frames in the channel is taken as the effective frame number ratio, and the effective frame number ratio is used as the detection index information;
  • the number of frames from the device to be detected in the channel is taken as the number of effective frames, and the number of other frames in the channel is used as the number of non-effective frames, and the ratio of the number of valid frames to the number of non-effective frames is taken as the effective frame ratio.
  • the effective frame number ratio is used as the detection index information.
  • the detection report includes:
  • User equipment location, detection index and detection index information information of the access point device to be detected, relational access point device information, actual detected value information, and/or idle channel information;
  • the information about the access point device is determined by the reporting threshold and the detection indicator information, and the name and address of the access point device that does not meet the reporting threshold limit.
  • the present invention provides a base station, where the base station includes:
  • the second processor is configured to send a detection instruction to the user equipment, so that the user equipment performs the interference detection and reports the detection report, and performs interference processing analysis according to the detection report.
  • the second storage is configured to store a detection report reported by the user equipment.
  • the analyzing, by the second processor, the interference processing according to the detection report is specifically:
  • the second processor analyzes the detection report to determine whether it is necessary to replace the channel for the access point device to be detected; when the channel needs to be replaced, the base station selects the idle channel to be changed to the communication channel of the device to be detected.
  • the performing, by the second processor, the interference processing analysis further includes:
  • the base station After the base station replaces the channel, the base station notifies the adjacent base station of the replaced channel number.
  • the beneficial effects of the present invention are as follows:
  • the device directly performs WLAN interference detection, which replaces the interference detection mode of the antenna of the conventional access point device, and the detection result accurately reflects the interference situation actually experienced by the user equipment, and solves the access point device in the prior art.
  • the detection result cannot accurately relate to the technical problem that the user equipment is actually interfered with; the interference detection by the cellular network avoids the impact on the normal use of the WLAN; and by setting the trigger threshold, and specifying the device to be detected and
  • the channel to be detected improves the pertinence and purpose of the interference detection, and improves the detection efficiency.
  • the detection report reported by the user equipment is analyzed and processed; When interference occurs, change to the idle channel in time to eliminate interference.
  • FIG. 1 is a schematic diagram of a WLAN interference situation in the prior art
  • FIG. 3 is a schematic structural diagram of an interference detection system according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of an interference detection system according to another embodiment of the present invention.
  • FIG. 6 is a flowchart of an interference management method according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of an interference management system according to an embodiment of the present invention.
  • the invention mainly detects and manages interference of an access point device set up by an operator.
  • the access point device set up by the operator is highly likely to be interfered by other access point devices, and the existing interference detection is not accurate enough in some specific cases.
  • the object of the present invention is to solve the above problems. Several of the following embodiments are placed under this application scenario. An interference detection method is disclosed in this embodiment.
  • the method is to solve the technical problem that the interference detection is performed at the access point device, and the detection result cannot be accurately matched with the interference situation actually received by the user equipment, and the technical solution for directly performing the interference detection by using the user equipment is adopted.
  • the user equipment needs to cooperate with the cellular network and the base station of the cellular network to complete the detection process. Referring to FIG. 2, the method in this embodiment specifically includes the following steps:
  • Step 201 The user equipment receives a detection instruction of the base station.
  • the user equipment is located at a specific location, and the interference detection is directly performed at the location, so the measured detection result accurately represents the actual interference situation at the location.
  • the base station is a cellular network base station, and the cellular network also refers to a 2G/3G/4G network provided by a current operator, such as a GSM network or a CDMA network, or an LTE network.
  • the base station in this embodiment may be understood as a base station in a broad sense, such as an evolved base station in an LTE network, and a base station or a base station controller in a 2G/3G/4G network, which are all within the range of the base station in this embodiment.
  • Within the cellular network provided by a base station there may be multiple access point devices under the service provider, and interference detection for these access point devices needs to be completed with the base station.
  • the communication between the base station and the user equipment is implemented by using a cellular network provided by the base station; this also avoids the existing interference detection process, using WLAN to complete related communication, and affecting the defect of normal use of the WLAN. . That is to say, the method described in this embodiment does not affect the normal operation of the WLAN at all in the detection.
  • the detection instruction includes information about the access point device to be detected; specifically, the device name of the access point to be detected, the access point device ID to be detected, or the channel number to be detected.
  • the channel to be detected is the channel used by the access point to be detected. If the channel number to be detected is not included, the user equipment searches for the number of the channel used by the device to be detected by the access point device ID.
  • the detection command may also set a reporting threshold of the detection indicator to define whether the communication of the device to be detected is interfered. The reporting threshold for the detection index will be described in detail later.
  • the core idea of the present embodiment is to implement the interference detection process by using the user equipment itself.
  • the base station only plays a role in controlling the user equipment during the detection process, and does not participate in the actual detection. Therefore, in step 201, the user equipment receives the detection instruction of the base station, and then starts the subsequent detection process.
  • Step 202 The user equipment detects, according to the detection instruction, a communication channel of the device to be detected The detection index is obtained and the detection index information is obtained.
  • the user equipment After receiving the detection instruction, the user equipment starts the detection process according to the detection instruction. Specifically, the user equipment searches for the channel to be detected according to the information of the device to be detected and the information about the channel to be detected included in the detection instruction, and detects the communication condition in the channel to be detected.
  • the interference in the channel to be detected may not only come from the channel to be detected itself, but also from adjacent channels. Therefore, the user equipment also detects the adjacent channel overlapping the frequency of the channel to be detected; to ensure the comprehensiveness and accuracy of the interference detection.
  • the specific definition of whether there is interference in the detection process will be based on the detection index information.
  • the user equipment searches for other access point devices or channels in the vicinity that may generate interference, and measures the detection indicators from the device to be detected and the possible detection in the channel to be detected.
  • the detection indicator of the access point device or channel that generates interference finally obtains the detection indicator information, and determines whether the access point device or channel that may generate interference actually interferes with the detection of the access point device and the channel to be detected.
  • the detection index will be used as a quantitative parameter for measuring the interference situation; indicators such as signal strength ratio or difference, signal quality ratio or difference, path loss or effective frame number ratio may be used as detection indicators.
  • the signal strength ratio or the signal quality ratio is used as a detection index, that is, detecting the ratio of the signal strength (or quality) from the access point device to be detected in the channel to the signal strength (or quality) from other access point devices or
  • the difference the ratio or the difference is used as the detection index information, and the detection index information defines the degree of interference from other access point devices.
  • the effective frame number ratio has the following two calculation methods: First, the number of frames from the device to be detected in the channel is taken as the effective frame number, and the effective frame number is in the channel. The ratio of the total number of frames is taken as the effective frame number ratio, and the ratio is used as the detection index information to define the degree of interference. The other is to use the number of frames from the device to be detected in the channel as the effective number of frames, the number of other frames in the channel as the number of non-effective frames, and the ratio of the number of valid frames to the number of non-effective frames as the effective frame ratio. The ratio is used as the detection index information to define the degree of interference.
  • Step 203 Determine, according to the detection index information and the preset reporting threshold, whether the detection report needs to be reported; when the report needs to be reported, the user equipment reports the detection report.
  • the reporting threshold is preset in the detection command, and the user equipment compares the reporting gate.
  • the limit and the detection indicator information determine whether to report the detection report, for example, the reporting threshold indicates that when the detection indicator information exceeds or falls below the threshold, it is considered that there is interference in the to-be-detected access point device and the to-be-detected channel, and the user equipment
  • the detection result needs to be reported to the base station, so that the base station performs subsequent processing.
  • the corresponding reporting thresholds also need to be set separately.
  • one or more detection indicators may be selected in advance, and the threshold is reported according to the corresponding setting of the different detection indicators, and the detection index information is separately determined according to the corresponding reporting threshold.
  • the different detection indicators correspond to different reporting thresholds, so the reporting threshold may be an upper threshold or a lower threshold.
  • the reporting threshold may be an upper threshold or a lower threshold.
  • the detection report is reported when the reporting threshold is exceeded.
  • the detection report is reported when the threshold is lower than the reported threshold. In short, as long as the detection index information does not meet the limit of the reporting threshold, the detection report is reported.
  • the reporting threshold is the upper threshold
  • the detection indicator information detected by the user equipment exceeds the preset reporting threshold
  • the result of the judgment is reported to the base station in the form of a test report.
  • the communication process for reporting the detection report is still completed by the cellular network provided by the base station.
  • the detection may include the following contents:
  • the location information of the user equipment may be absolute location information, such as latitude and longitude information; or relative location information, such as location relative to the cellular network; the user may measure the signal of the cellular network, and determine the Relative location in a cellular network.
  • the information of the access point device to be detected is consistent with the information of the access point to be detected included in the detection command.
  • the detection data of the device to be detected is included in the detection index information.
  • the information about the access point device is known by the foregoing description of the reporting threshold.
  • the detection index information does not meet the limit of the reporting threshold (beyond or reaching the threshold)
  • the detection report is reported.
  • the access signal or the data frame from the access point device causes the detection index information not to meet the reporting threshold.
  • the detection indicator information does not meet the threshold.
  • the restricted access point device has interference with the device that detects the access point.
  • the user equipment determines the cause of the check according to the detection index information and the preset reporting threshold.
  • the access point device After the access point device whose measurement information does not meet the threshold is used, it is used as a relational access point device and reports information about the access point device, such as the name and address of the relational access point device.
  • the specific detection data of the related access point device will be included in the actual detection value information.
  • the base station can learn, according to the relationship node device information, which access point devices in the vicinity of the user equipment are more likely to interfere with the detection device.
  • the actual detection value refers to an actual data value obtained by detecting the detection index
  • the actual measured detection value information may include a measurement value for the detection index of the access point device to be detected, and may also include The measured value of the access point device detection indicator.
  • the information of the idle channel is reported, and the information of the idle channel without interference is reported at the same time, so that the base station makes subsequent channel change adjustments if the access point device to be detected has interference.
  • the present invention further correspondingly discloses an interference detection system, wherein the interference detection system is generally disposed in a user equipment.
  • the system structure is as follows: a trigger module 301, configured to Receiving a detection command from the base station and triggering interference detection.
  • the user equipment is located at a specific location, and the system described in this embodiment is directly used for interference detection at the location, so the measured detection result accurately represents the actual interference situation at the location.
  • the base station is a cellular network base station, and the cellular network is also provided by a current stage operator.
  • 2G/3G/4G networks such as GSM networks or CDMA networks, or LTE networks.
  • the base station in this embodiment may be understood as a base station in a broad sense, such as an evolved base station in an LTE network, and a base station or a base station controller in a 2G/3G/4G network, which are all within the range of the base station in this embodiment. .
  • Within the range of the cellular network provided by a base station there may be multiple access point devices set up by the operator, and interference detection for these access point devices needs to be completed in conjunction with the base station.
  • the communication between the base station and the user equipment is implemented by the cellular network provided by the base station; this also avoids the existing interference detection process, using the WLAN to complete the related communication, and affecting the defects of the normal use of the WLAN.
  • the detection instruction includes information about the device to be detected, and specifically includes the device to be detected. Incoming device name, device ID to be detected, or channel number to be detected. Generally, the channel to be detected is the channel used by the access point to be detected. If the channel number to be detected is not included, the user equipment searches for the number of the channel used by the device to be detected by the access point device ID.
  • the reporting threshold of the detection indicator may also be set in the detection instruction to define whether the communication of the device to be detected is interfered. The reporting threshold for the detection index will be described in detail later.
  • the core idea of the present embodiment is to implement the interference detection process by using the user equipment itself.
  • the base station only plays a role in controlling the user equipment during the detection process, and does not participate in the actual detection. Therefore, the triggering module 301 receives the detection instruction of the base station, and then starts the subsequent detection process.
  • the detecting module 302 is configured to detect a detection indicator in a communication channel of the access point device to be detected according to the detection instruction, and obtain detection indicator information.
  • the detection process is started according to the detection instruction. Specifically, the detecting module 302 searches for the channel to be detected according to the information of the access point device to be detected and the channel information to be detected included in the detection instruction, and detects the communication condition in the channel to be detected.
  • the interference in the channel to be detected may not only come from the channel to be detected itself, but may also come from an adjacent channel. Therefore, the detecting module 302 also detects adjacent channels overlapping with the channel frequency to be detected; to ensure the comprehensiveness and accuracy of the interference detection.
  • the detecting module 302 searches for other access point devices or channels in the vicinity thereof that may generate interference, and measures the detection index from the device to be detected and the device from the channel to be detected.
  • the detection indicator of the access point device or channel that may cause interference finally obtain the detection indicator information, and determine whether the access point device or channel that may generate interference actually interferes with the detection of the access point device and the channel to be detected.
  • the detection index will be used as a quantitative parameter for measuring the interference situation; indicators such as signal strength ratio or difference, signal quality ratio or difference, path loss or effective frame number ratio may be used as detection indicators.
  • the signal strength ratio or the signal quality ratio is used as a detection index, that is, detecting the ratio of the signal strength (or quality) from the access point device to be detected in the channel to the signal strength (or quality) from other access point devices or Difference
  • the ratio or difference is used as the detection index information to detect the indicator information. Define the level of interference from other access point devices.
  • the effective frame number ratio has the following two calculation methods: First, the number of frames from the device to be detected in the channel is taken as the effective frame number, and the effective frame number is in the channel. The ratio of the total number of frames is taken as the effective frame number ratio, and the ratio is used as the detection index information to define the degree of interference. The other is to use the number of frames from the device to be detected in the channel as the effective number of frames, the number of other frames in the channel as the number of non-effective frames, and the ratio of the number of valid frames to the number of non-effective frames as the effective frame ratio. The ratio is used as the detection index information to define the degree of interference.
  • the feedback module 303 is configured to determine whether the detection report needs to be reported according to the detection index information and the preset reporting threshold; and report the detection report when the report needs to be reported.
  • the reporting threshold is set in advance in the detection command, and the feedback module 303 determines whether to report the detection report by comparing the reporting threshold and the detection index information, for example, the reporting threshold indicates that when the detection index information exceeds or falls below the threshold, It is considered that there is interference in the access point device to be detected and the channel to be detected at this time, and the feedback module 303 needs to report the detection result to the base station, so that the base station performs subsequent processing.
  • the corresponding reporting thresholds also need to be set separately.
  • one or more detection indicators may be selected in advance, and the threshold is reported according to the corresponding setting of the different detection indicators, and the detection index information is separately determined according to the corresponding reporting threshold.
  • the different detection indicators correspond to different reporting thresholds, so the reporting threshold may be an upper threshold or a lower threshold.
  • the reporting threshold may be an upper threshold or a lower threshold.
  • the detection report is reported when the reporting threshold is exceeded.
  • the detection report is reported when the threshold is lower than the reported threshold. In short, as long as the detection index information does not meet the limit of the reporting threshold, the detection report is reported.
  • the reporting threshold is the upper threshold
  • the detection indicator information detected by the feedback module 303 exceeds the preset reporting threshold, it is considered that there is interference on the communication channel of the access point device to be detected; the feedback module 303 uses this as a detection criterion.
  • the judgment result is reported to the base station in the form of a test report.
  • the communication process for reporting the detection report is still completed by the cellular network provided by the base station.
  • the detection report may include the following contents:
  • the location information of the user equipment may be absolute location information, such as latitude and longitude information; or relative location information, such as location relative to the cellular network; the user may measure the signal of the cellular network, and determine the Relative location in a cellular network.
  • the detection index and the detection index information; the information about the detection index and the detection index have been explained in the foregoing content, and will not be repeated here.
  • the information of the access point device to be detected is consistent with the information of the access point to be detected included in the detection command.
  • the detection data of the device to be detected is included in the detection index information.
  • the information about the access point device is known by the foregoing description of the reporting threshold.
  • the detection indicator information does not meet the limit of the reporting threshold (beyond or reaching the threshold)
  • the detection report is reported.
  • the access signal or the data frame from the access point device causes the detection index information not to meet the reporting threshold.
  • the detection indicator information does not meet the threshold.
  • the restricted access point device has interference with the device that detects the access point.
  • the feedback module 303 determines, according to the detection index information and the preset reporting threshold, the access point device that causes the detection indicator information not to meet the threshold, and then uses the information as the relationship access point device and reports the relationship access point device.
  • the base station can learn, according to the relationship node device information, which access point devices in the vicinity of the user equipment are more likely to interfere with the detection device.
  • the actual detection value refers to an actual data value obtained by detecting the detection index
  • the actual measured detection value information may include a measurement value for the detection index of the access point device to be detected, and may also include The measured value of the access point device detection indicator.
  • the information of the idle channel is reported, and the information of the idle channel without interference is reported at the same time, so that the base station makes subsequent channel change adjustments if the access point device to be detected has interference.
  • the system in this embodiment completes the interference detection process of the WLAN, and accurately obtains the interference situation at a specific location.
  • the system in this embodiment is placed in the user equipment described in the embodiment shown in FIG. 2, and is a virtual system required for the user equipment to implement interference detection according to the foregoing method.
  • the embodiments of the interference detection method and system disclosed in FIG. 2-3 are the cornerstone embodiments.
  • the method and system have the beneficial effects that: the method and system implement the WLAN interference detection directly by using the user equipment. , replacing the traditional way of detecting interference at the access point device center, The detection result accurately reflects the interference situation actually experienced by the user equipment, and solves the technical problem that the detection result of the base station in the prior art cannot be accurately matched with the interference situation actually experienced by the user equipment; and in the detection process, the user equipment and the Communication between the base stations using the cellular network does not affect the normal operation of the WLAN.
  • FIG. 4 it is another specific embodiment of the interference detecting method of the present invention.
  • the present embodiment provides a further optimization and a more detailed disclosure on the basis of the embodiment shown in FIG. 2.
  • the method in this embodiment specifically includes the following steps:
  • Step 401 The user equipment receives a detection instruction of the base station, where the detection instruction includes information about the device to be detected, the reporting threshold, and the trigger threshold.
  • the detection instruction includes information about the access point device to be detected; specifically, the device name of the access point to be detected, the access point device ID to be detected, and the channel number to be detected.
  • the reporting threshold of the detection indicator may also be set in the detection instruction to define whether the communication of the device to be detected is interfered.
  • the detection instruction in the embodiment additionally includes a trigger threshold.
  • the trigger threshold is described in detail in subsequent steps.
  • Step 402 The user equipment detects whether the signal strength of the device to be detected reaches the trigger threshold. If yes, the process proceeds to step 403. Otherwise, step 402 is repeated.
  • the user equipment needs to be located within the WLAN range provided by the access point device to be detected, and then the detection of the device to be detected is meaningful. If a user equipment is not covered by the access point device to be detected at all, it is inevitable that no signal is received from the access point device to be detected, and it is not necessary to start the subsequent detection process.
  • the device to be detected specified for a user equipment should be overwritten by the user equipment.
  • the user equipment when a user equipment group of a plurality of different locations set down by the base station sends a detection command, or detects an instruction error, the user equipment is not excluded from receiving an instruction of the access point device that does not cover its location.
  • the user equipment may first detect whether the signal strength of the device to be detected reaches the trigger threshold. If the device detects that the access device covers the user equipment, it is necessary to enable the subsequent detection process; otherwise, the user equipment Step 402 is repeated, that is, the signal strength of the device to be detected is continuously detected until the signal strength reaches the trigger threshold.
  • Step 403 The user equipment detects, according to the detection instruction, a communication channel of the device to be detected The detection index, get the detection index information.
  • the user equipment finds that the signal strength of the device to be detected is returned to the trigger threshold, the user equipment ends the detection and returns to step 402.
  • Step 404 Determine, according to the detection indicator information and the preset reporting threshold, whether the detection report needs to be reported; when the report needs to be reported, the user equipment reports the detection report.
  • step 403-step 404 is the same as that in the method embodiment shown in FIG. 2.
  • an interference detection system is also disclosed in the present invention. Referring to FIG. 5, the system specifically includes:
  • the triggering module 501 is configured to receive a detection instruction of the base station, and trigger interference detection.
  • the trigger module 501 specifically includes:
  • the instruction receiving unit 511 is configured to receive a detection instruction of the base station, where the detection instruction includes information of the access point device to be detected and information of the channel to be detected, a reporting threshold and a trigger threshold.
  • the detection instruction includes information about the access point device to be detected; specifically, the device name of the access point to be detected, the access point device ID to be detected, and the channel number to be detected.
  • the reporting threshold of the detection indicator may also be set in the detection instruction to define whether the communication of the device to be detected is interfered.
  • the detection instruction in the embodiment additionally includes a trigger threshold.
  • the trigger threshold is described in detail in subsequent steps.
  • the determining trigger unit 512 is configured to detect whether the signal strength of the access point device to be detected reaches a trigger threshold, and if yes, detect a detection indicator in a communication channel of the device to be detected.
  • the user equipment needs to be located within the WLAN range provided by the access point device to be detected, and then the detection of the device to be detected is meaningful. If a user equipment is not covered by the access point device to be detected at all, it is inevitable that no signal is received from the access point device to be detected, and it is not necessary to start the subsequent detection process.
  • the device to be detected specified for a user equipment should be covered by the user equipment.
  • the determining trigger unit 512 can detect the access to be detected first. Whether the signal strength of the point device reaches the trigger threshold. If it is reached, it indicates that the access point device covers the user equipment, and it is necessary to start the subsequent detection process. Otherwise, the trigger unit 512 repeatedly determines whether the signal strength of the device to be detected is detected. The trigger threshold is reached until the signal strength reaches the trigger threshold.
  • the detecting module 502 is configured to detect a detection indicator in a communication channel of the access point device to be detected according to the detection instruction, and obtain detection indicator information.
  • the detection is terminated, and the return judgment trigger unit 512 detects the to-be-detected. Whether the signal strength of the access point device reaches the trigger threshold.
  • the feedback module 503 is configured to report the detection report when the detection indicator information exceeds a preset reporting threshold.
  • the interference detection method and system embodiment shown in FIG. 4-5 is based on the foundation of the foregoing embodiment, and further has the beneficial effects that: the method and the system improve the pertinence and purpose of the interference detection by setting a trigger threshold. The detection efficiency is improved, and the unnecessary startup detection process of the user equipment is avoided.
  • an interference management method and system are also correspondingly disclosed in this embodiment.
  • the interference management method mainly discloses a subsequent processing procedure after the base station receives the detection report from the perspective of the base station. Referring to Figure 6, the method in this embodiment includes the following steps:
  • Step 601 The base station sends a detection instruction to the user equipment, so that the user equipment performs interference detection and reports the detection report.
  • Step 602 The base station performs interference processing analysis according to the detection report.
  • the process analysis process of the base station may be specifically as follows:
  • the base station analyzes the detection report to determine whether it is necessary to replace the channel for the access point device to be detected. When the channel needs to be replaced, the base station selects the idle channel to be changed to the communication channel of the device to be detected.
  • the base station and the access point device belong to the same operator, so the base station can easily control the access point device.
  • the content included in the detection command and the detection report is the same as the foregoing embodiment. This is not repeated here.
  • the interference processing analysis performed by the base station may include other ranges in addition to changing the communication channel.
  • the base station can connect multiple user equipments and receive detection reports reported by different user equipments.
  • the detection report may include user equipment location, detection index, and detection index information, information of the access point device to be detected and the channel to be detected, information about the access point device and the interference channel, and idle. Channel information; so the base station can perform comprehensive analysis and judgment on a large amount of information.
  • a dedicated interference analysis server may be configured for the base station to analyze the detection reports reported by different user equipments. For example, the base station can determine the interference that is most likely to be in the coverage of the access point device according to the location information and the detection indicator information provided by multiple user equipments, and make adaptive adjustment.
  • the base station can also perform other similar data analysis, which is not listed here.
  • the preferred method in this embodiment may further include:
  • Step 603 After replacing the access point device channel, the base station notifies the adjacent base station of the replaced channel number.
  • the base station In order to facilitate interference detection and management under other base stations, the base station notifies the neighboring base stations of the channel number occupied by the access point device, which may help to avoid the use of the occupied channel.
  • the present invention further includes an interference management system, and the interference management system is generally placed at a base station. Referring to Figure 7, the system includes the following:
  • the instruction module 701 is configured to send a detection instruction to the user equipment, so that the user equipment performs interference detection and reports the detection report.
  • the processing module 702 is configured to perform interference processing analysis according to the detection report.
  • the processing module 702 specifically includes:
  • the detection and analysis unit 721 is configured to analyze the detection report and determine whether the channel needs to be replaced.
  • the channel changing unit 722 is configured to: when the channel needs to be replaced, select the idle channel to be changed to the communication channel of the device to be detected.
  • the processing analysis process of the processing module 702 may specifically be as follows: The processing module 702 analyzes the detection report to determine whether the channel needs to be replaced for the access point device to be detected. When the channel needs to be replaced, the processing module 702 selects the idle channel to be changed to the communication channel of the device to be detected. The processing module 702 can easily control the access point device because the base station and the access point device that the processing module 702 are placed in belong to the same operator in the application scenario of the embodiment.
  • the content included in the detection command and the detection report is the same as the foregoing embodiment. This is not repeated here.
  • the interference processing analysis performed by the processing module 702 may include other ranges in addition to changing the communication channel.
  • the base station can connect multiple user equipments and receive detection reports reported by different user equipments.
  • the detection report may include user equipment location, detection index, and detection index information, information of the access point device to be detected and the channel to be detected, information about the access point device and the interference channel, and idle. Channel information; therefore, processing module 702 can perform comprehensive analysis and determination for a variety of information.
  • the processing module 702 may be a dedicated interference analysis server on the hardware to analyze the detection reports reported by different user equipments. For example, the processing module 702 can determine, according to the location information and the detection indicator information provided by the multiple user equipments, the interference that is probably in the coverage of the access point device is the strongest, and adapts the adjustment.
  • the base station can also perform other similar data analysis, which is not listed here.
  • the processing module further includes:
  • the change notification unit 723 is configured to notify the neighboring base station of the replaced channel number after the channel is replaced.
  • the change notification unit 723 notifies the neighboring base stations of the channel number occupied by the access point device, which may help avoid the use of the occupied channel.
  • the above system will be placed in the base station described in the embodiment shown in FIG. 6, and the virtual system needed for the base station to implement interference management according to the above method.
  • the beneficial effects of the embodiments of the interference management method and system disclosed in Figures 6-7 are: The method and the system are used to implement the interference detection on the user equipment, and then analyze and process the detection report reported by the user equipment; when there is interference in the communication channel, timely change to the idle channel to eliminate interference; and make the overall technical solution of the present invention More complete and more open.
  • the present invention also includes a user equipment, the user equipment is a physical device on which the method in the corresponding embodiment of FIG. 2 or FIG. 4 is implemented, and the user equipment includes:
  • a first processor configured to receive a detection instruction of the base station, and detect a detection indicator in a communication channel of the device to be detected according to the detection instruction, to obtain detection index information, and report the detection index information when the detection index information exceeds a preset reporting threshold Test Report.
  • the first memory is configured to store a preset reporting threshold.
  • the detection instruction includes:
  • the device information and the reporting threshold of the access point to be detected.
  • the information about the access point device to be detected includes:
  • the detection instruction further includes a trigger threshold, and the method further includes:
  • the first processor receives the detection instruction of the base station and the first processor reports the detection report, specifically:
  • the first processor receives the detection instruction or reports the detection report by using the cellular network provided by the base station.
  • the detection indicators include:
  • Signal strength ratio or difference Signal strength ratio or difference, signal quality ratio or difference, path loss or effective frame ratio.
  • the detecting indicator in the detecting communication channel obtains the detection index information as follows:
  • Detecting a ratio or difference between a signal strength or a signal quality from an access point device to be detected in the communication channel, and a signal strength or signal quality from an access point device other than the device to be detected, to the ratio Or the difference is used as the detection index information.
  • the detecting the indicator in the communication channel When the detection index is a valid frame number ratio, the detecting the indicator in the communication channel, and obtaining the detection index information, specifically: Taking the number of frames from the access point device to be detected in the communication channel as the effective frame number, using the ratio of the effective frame number to the total number of frames in the channel as the effective frame number ratio, and using the effective frame number ratio as the detection index information;
  • the number of frames from the device to be detected in the channel is taken as the number of effective frames, and the number of other frames in the channel is used as the number of non-effective frames, and the ratio of the number of valid frames to the number of non-effective frames is taken as the effective frame ratio.
  • the effective frame number ratio is used as the detection index information.
  • the test report includes:
  • User equipment location, detection index and detection index information information of the access point device to be detected, relational access point device information, actual detected value information, and/or idle channel information;
  • the information about the access point device is determined by the reporting threshold and the detection indicator information, and the name and address of the access point device that does not meet the reporting threshold limit.
  • the user equipment has the beneficial effects of: directly performing WLAN interference detection by using the user equipment, instead of the traditional interference detection method at the center of the access point device, and the detection result accurately reflects the interference situation actually experienced by the user equipment.
  • the technical problem that the detection result of the base station in the prior art cannot be accurately matched with the interference situation actually received by the user equipment is solved; and in the detection process, the communication between the user equipment and the base station by using the cellular network does not affect the normality of the WLAN. jobs.
  • the present invention also includes a base station, where the base station is a physical device on which the method in the corresponding embodiment of FIG. 6 is implemented, and the base station includes:
  • the second processor is configured to send a detection instruction to the user equipment, so that the user equipment performs the interference detection and reports the detection report, and performs interference processing analysis according to the detection report.
  • the second storage is configured to store a detection report reported by the user equipment.
  • the analyzing, by the second processor, the interference processing according to the detection report is specifically:
  • the second processor analyzes the detection report to determine whether it is necessary to replace the channel for the access point device to be detected; when the channel needs to be replaced, the base station selects the idle channel to be changed to the communication channel of the device to be detected.
  • the second processor performing interference processing analysis further includes:
  • the base station After the base station replaces the channel, the base station notifies the adjacent base station of the replaced channel number.
  • the base station performs interference detection on the user equipment, Furthermore, the detection report reported by the user equipment is analyzed and processed; when there is interference in the communication channel, the interference is changed to the idle channel in time to eliminate interference; and the overall technical solution of the present invention is more complete and more fully disclosed. It can be clearly understood by those skilled in the art that all or part of the steps in the foregoing embodiment may be implemented by means of software plus a necessary general hardware platform. Based on such understanding, the technical solution of the present invention, which is essential or contributes to the prior art, may be embodied in the form of a software product, which may be stored in a storage medium such as a ROM/RAM, a disk.
  • an optical disk etc., comprising instructions for causing a computer device (which may be a personal computer, a server, or a network communication device such as a media gateway, etc.) to perform the various embodiments of the present invention or portions of the embodiments described herein. method.
  • a computer device which may be a personal computer, a server, or a network communication device such as a media gateway, etc.

Abstract

本发明实施例提供一种干扰检测方法及系统、管理方法及系统、用户设备及基站;所述干扰检测方法包括以下步骤:用户设备接收基站的检测指令;用户设备根据检测指令检测待检测接入点设备的通信信道中的检测指标,得到检测指标信息;根据检测指标信息和预设的上报门限,判断是否需要上报检测报告;当需要上报则用户设备上报检测报告;所述干扰检测系统包括:触发模块,用于接收基站的检测指令,并触发干扰检测;检测模块,用于根据检测指令检测待检测接入点设备的通信信道中的检测指标,得到检测指标信息;反馈模块,用于根据检测指标信息和预设的上报门限,判断是否需要上报检测报告;当需要上报则上报检测报告。

Description

一种干扰检测方法及系统、 管理方法及系统、 用户设备及基站 技术领域
本发明涉及通信技术领域, 特别涉及一种干扰检测方法及系统、 管理方 法及系统、 用户设备及基站。
背景技术
无线局域网络 ( Wi re les s Loca l Area Networks , 简称 WLAN )是一种便 利的数据传输系统。 WLAN利用射频技术取代旧式的有线通信, 其灵活性和移 动性相比有线通信均有着实质性的提高; 并且 WLAN相比有线的局域网更方 便安装、 规划、 调整和扩展, 故障也更容易定位; 所以 WLAN取代传统的有线 局域网络已成为大势所趋。
鉴于 WLAN是一种被广泛普及的公用技术, 所以 WLAN的网络频谱一般是 公用免费频谱; 个人、 企业、 运营商等用户均可以在公用免费频谱中通过设 立不同级别的接入点设备而创建 WLAN。 不同的接入点设备可能会选择公用频 谱中相同的信道进行信息的传输,这也就带来了 WLAN之间不可避免的相互干 扰。
尤其是对于一些较大型的 WLAN, 由于覆盖范围广, 所以更容易受到干扰 的影响, 例如运营商所部署的 WLAN。 现阶段运营商不仅通过建立基站大范围 的布置蜂窝网络, 而且也会在很多特定区域建立接入点设备, 提供 WLAN的服 务。 在运营商所设置的 WLAN受到其他 WLAN干扰的时候, 现有技术中采取如 下的解决方案: WLAN接入点设备先选择一个信道进行信息的传输, 并检测该 信道的干扰情况, 如果该信道上存在严重的干扰, 则重新选择信道继续传输 信息。
但是, 现有的检测干扰的方式, 以接入点设备天线(一般也就是 WLAN覆 盖范围的中心处 )位置作为检测点, 其检测的干扰结果可能与该 WLAN所连接 的用户设备实际受到的干扰情况并不相符。
如图 1所示,实线圓形区域表示接入点设备 1建立的 WLAN的信号覆盖范 围, A点为接入点设备 1天线所处位置; 虚线圓形区域表示接入点设备 2建 立的 WLAN的信号覆盖范围, B点为接入点设备 2天线所处位置; 两个圓形交 叉处同时被两个 WLAN所覆盖, 所以在同信道或相近信道中将互相干扰; C点 处存在一个位于接入点设备 1的 WLAN中的用户设备。
如果在 A点处进行干扰检测, 由于 A点在虚线圓形范围之外, 所以检测 不到接入点设备 2 的干扰。 但实际上, C点处的用户设备虽然处在接入点设 备 1的 WLAN中, 但由于其处在覆盖范围交叉的区域, 而且 C点距 B点的直线 距离显然小于距 A点的直线距离。 也就是说由于距离更近, 所以如果两个接 入点设备选取了同信道或相近信道, C点接收到接入点设备 2 的信号反而会 更强, 干扰将十分严重; 而这种干扰通过 A点处的干扰检测无法发现。
可见现有的 WLAN干扰检测和管理存在的缺陷是,通过接入点设备中心点 进行检测, 其检测结果无法准确的与用户设备实际受到的干扰相吻合。
发明内容
本发明提供一种干扰检测方法及系统、 管理方法及系统、 用户设备及基 站, 以解决现有的 WLAN干扰检测和管理通过接入点设备中心点进行检测, 其 检测结果无法准确的与用户设备实际受到的干扰相吻合的技术问题。
为了解决以上技术问题, 本发明采取的技术方案是:
第一方面, 本发明提供了一种干扰检测方法, 所述方法具体包括以下步 骤:
用户设备接收基站的检测指令;
用户设备根据检测指令检测待检测接入点设备的通信信道中的检测指 标, 得到检测指标信息;
根据检测指标信息和预设的上报门限, 判断是否需要上报检测报告; 当 需要上报则用户设备上报检测报告。
在第一方面的第一种可能的实现方式中, 所述检测指令包括:
待检测接入点设备信息、 上报门限。
在第一方面的第二种可能的实现方式中, 所述待检测接入点设备信息包 括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。 在第一方面的第三种可能的实现方式中,所述检测指令还包括触发门限, 则所述方法还包括:
用户设备检测待检测接入点设备的信号强度是否达到触发门限, 如果达 到则检测待检测接入点设备的通信信道中的检测指标。
在第一方面的第四种可能的实现方式中, 所述用户设备接收基站的检测 指令以及所述用户设备上报检测报告具体为:
用户设备利用基站提供的蜂窝网络接收检测指令或上报检测报告。
在第一方面的第五种可能的实现方式中, 所述检测指标包括:
信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
在第一方面的第六种可能的实现方式中, 当所述检测指标为信号强度比 值或差值, 或信号质量比值或差值, 则所述检测通信信道中的检测指标, 得 到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
在第一方面的第七种可能的实现方式中, 当所述检测指标为有效帧数比, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为:
将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息;
或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
在第一方面的第八种可能的实现方式中, 所述检测报告包括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。 第二方面, 本发明提供了一种干扰管理方法, 所述方法具体包括以下步 骤:
基站向用户设备发出检测指令, 致使用户设备进行干扰检测并上报检测 报告;
基站根据所述检测报告进行干扰处理分析。
在第二方面的第一种可能的实现方式中, 所述基站根据所述检测报告进 行干扰处理分析具体为:
基站分析检测报告, 判断是否需要为待检测的接入点设备更换信道; 当 需要更换信道, 则基站选取空闲信道变更为待检测接入点设备的通信信道。
在第二方面的第二种可能的实现方式中, 所述基站进行干扰处理分析还 包括:
基站在更换信道之后, 将更换后的信道编号通知相邻的基站。 第三方面, 本发明提供了一种干扰检测系统, 所述系统包括:
触发模块, 用于接收基站的检测指令, 并触发干扰检测;
检测模块, 用于根据检测指令检测待检测接入点设备的通信信道中的检 测指标, 得到检测指标信息;
反馈模块, 用于根据检测指标信息和预设的上报门限, 判断是否需要上 报检测报告; 当需要上报则上报检测报告。
在第三方面的第一种可能的实现方式中, 所述检测指令包括:
待检测接入点设备信息、 上报门限。
在第三方面的第二种可能的实现方式中, 所述待检测接入点设备信息包 括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。 在第三方面的第三种可能的实现方式中, 所述触发模块具体包括: 指令接收单元, 用于接收基站的检测指令; 所述检测指令还包括触发门 限;
判断触发单元, 用于检测待检测接入点设备的信号强度是否达到触发门 限, 如果达到则检测待检测接入点设备的通信信道中的检测指标。
在第三方面的第四种可能的实现方式中, 所述系统还包括:
蜂窝网模块, 用于利用基站提供的蜂窝网络接收检测指令或上报检测报 在第三方面的第五种可能的实现方式中, 所述检测指标包括: 信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
在第三方面的第六种可能的实现方式中, 当所述检测指标为信号强度比 值或差值, 或信号质量比值或差值, 则所述检测通信信道中的检测指标, 得 到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
在第三方面的第七种可能的实现方式中, 当所述检测指标为有效帧数比, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为:
将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息;
或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
在第三方面的第八种可能的实现方式中, 所述检测报告包括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。 第四方面, 本发明提供了一种干扰管理系统, 所述系统包括:
指令模块, 用于向用户设备发出检测指令, 致使用户设备进行干扰检测 并上报检测报告;
处理模块, 用于根据所述检测报告进行干扰处理分析。
在第四方面的第一种可能的实现方式中, 所述处理模块具体包括: 检测分析单元, 用于分析检测报告, 判断是否需要更换信道。
信道变更单元, 用于在需要更换信道时, 选取空闲信道变更为待检测接 入点设备的通信信道。
在第四方面的第二种可能的实现方式中, 所述处理模块还包括: 变更通知单元, 用于在更换信道之后, 将更换后的信道编号通知相邻的 基站。 第五方面, 本发明提供了一种用户设备, 所述用户设备包括:
第一处理器, 用于接收基站的检测指令, 根据检测指令检测待检测接入 点设备的通信信道中的检测指标, 得到检测指标信息, 根据检测指标信息和 预设的上报门限, 判断是否需要上报检测报告; 当需要上报则用户设备上报 检测报告。
第一存储器, 用于存储预设的上报门限。
在第五方面的第一种可能的实现方式中, 所述检测指令包括:
待检测接入点设备信息、 上报门限。
在第五方面的第二种可能的实现方式中, 所述待检测接入点设备信息包 括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。 在第五方面的第三种可能的实现方式中,所述检测指令还包括触发门限, 则所述方法还包括:
检测待检测接入点设备的信号强度是否达到触发门限, 如果达到则检测 待检测接入点设备的通信信道中的检测指标。
在第五方面的第四种可能的实现方式中, 所述第一处理器接收基站的检 测指令以及所述第一处理器上报检测报告具体为:
第一处理器利用基站提供的蜂窝网络接收检测指令或上报检测报告。 在第五方面的第五种可能的实现方式中, 所述检测指标包括:
信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
在第五方面的第六种可能的实现方式中, 当所述检测指标为信号强度比 值或差值, 或信号质量比值或差值, 则所述检测通信信道中的检测指标, 得 到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
在第五方面的第七种可能的实现方式中, 当所述检测指标为有效帧数比, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为:
将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息;
或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
在第五方面的第八种可能的实现方式中, 所述检测报告包括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。 第六方面, 本发明提供了一种基站, 所述基站包括:
第二处理器, 用于向用户设备发出检测指令, 致使用户设备进行干扰检 测并上报检测报告, 根据所述检测报告进行干扰处理分析。
第二存储器, 用于存储用户设备上报的检测报告。
在第六方面的第一种可能的实现方式中, 所述第二处理器根据所述检测 报告进行干扰处理分析具体为:
第二处理器分析检测报告, 判断是否需要为待检测的接入点设备更换信 道; 当需要更换信道, 则基站选取空闲信道变更为待检测接入点设备的通信 信道。
在第六方面的第二种可能的实现方式中, 所述第二处理器进行干扰处理 分析还包括:
基站在更换信道之后, 将更换后的信道编号通知相邻的基站。
通过以上技术方案可知, 本发明存在的有益效果是: 本发明实现利用用 户设备直接进行 WLAN的干扰检测,取代了传统的接入点设备天线处干扰检测 的方式, 其检测结果准确的反应出用户设备实际所受到的干扰情况, 解决了 现有技术中接入点设备的检测结果无法准确的与用户设备实际受到的干扰情 况相符的技术问题; 利用蜂窝网络进行干扰检测, 避免了对于 WLAN正常使用 的影响; 并且通过设置触发门限, 并指定待检测接入点设备及待检测信道, 提高了干扰检测的针对性和目的性, 提升了检测效率; 另外, 在用户设备实 现干扰检测的基础上, 进而对用户设备上报的检测报告作出了分析和处理; 在通信信道存在干扰时, 及时的变更至空闲信道消除干扰。
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作简单地介绍, 显而易见地, 下面 描述中的附图仅仅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的前提下, 还可以根据这些附图获得其他的附图。
图 1 为现有技术中 WLAN干扰情况示意图;
图 2为本发明实施例所述干扰检测方法流程图;
图 3为本发明实施例所述干扰检测系统结构示意图;
图 4为本发明另一实施例所述干扰检测方法流程图;
图 5为本发明另一实施例所述干扰检测系统结构示意图;
图 6为本发明实施例所述干扰管理方法流程图;
图 7为本发明实施例所述干扰管理系统结构示意图。
具体实施方式
为了使本技术领域的人员更好地理解本发明实施例的方案, 下面结合附 图和实施方式对本发明实施例作进一步的详细说明。 本发明主要针对运营商下设的接入点设备进行干扰的检测和管理。 通过 上述已知, 运营商下设的接入点设备极有可能受到其他接入点设备的干扰, 而现有的干扰检测在某些特定情况下检测结果不够精确。 本发明的目的即在 于解决上述问题。 以下若干实施例均置于该应用场景之下。 本实施例中公开一种干扰检测方法。 所述方法为解决接入点设备处进行 干扰检测, 其检测结果无法准确的与用户设备实际受到的干扰情况相符的技 术问题, 而采取了利用用户设备直接进行干扰检测的技术方案。 本实施例所 述方法中用户设备需配合蜂窝网络以及蜂窝网络的基站完成检测过程。 具体 参照图 2所示, 本实施例所述方法具体包括以下步骤:
步骤 201、 用户设备接收基站的检测指令。
本实施例中, 用户设备位于某一特定位置, 并在该位置处直接进行干扰 检测, 所以测得的检测结果即准确的表示了该位置处实际的干扰情况。
所述基站为蜂窝网络基站, 所述蜂窝网络也就是指现阶段运行商提供的 2G/ 3G/4G网络, 例如 GSM网络或 CDMA网络,或者 LTE网络。 本实施例中所述 基站可以理解为广义的基站, 例如 LTE网络中的演进基站, 以及 2G/ 3G/4G网 络中的基站或者基站控制器, 均在本实施例中所述基站的范围之内。 一个基 站所提供的蜂窝网络范围之内, 可能包含多个该运行商下设的接入点设备, 对于这些接入点设备的干扰检测均需要配合该基站来完成。 在本步骤中, 所 述基站与用户设备之间的通信即通过基站提供的蜂窝网络实现; 这也避免了 现有的干扰检测过程中, 利用 WLAN完成相关的通信, 而影响 WLAN正常使用 的缺陷。也就是说本实施例中所述方法在检测中完全不对 WLAN的正常工作产 生影响。
所述检测指令中包含待检测接入点设备的信息; 具体可以包括待检测接 入点设备名称、待检测接入点设备 I D或者待检测信道编号等。 一般而言待检 测信道就是待检测接入点使用的信道。 如果不包含待检测的信道编号, 则用 户设备根据接入点设备 ID 自行搜索所述待检测接入点设备所使用的信道的 编号。 检测指令中还可以设置检测指标的上报门限, 以界定待检测接入点设 备的通信是否被干扰。 关于检测指标的上报门限在后续将详细说明。
本实施例的核心思想在于将所述的干扰检测过程利用用户设备本身实 现; 而本实施例中基站仅在检测过程中起到对于用户设备的控制作用, 并不 参与实际的检测。 所以在步骤 201 中所述用户设备接收基站的检测指令, 进 而开始后续的检测流程。
步骤 202、 用户设备根据检测指令检测待检测接入点设备的通信信道中 的检测指标, 得到检测指标信息。
用户设备在接收到检测指令之后, 则根据检测指令开始检测流程。 具体 的, 用户设备根据检测指令中包含的待检测接入点设备信息和待检测信道信 息, 搜寻到待检测信道, 并对待检测信道中的通信情况进行检测。 此外, 待 检测信道中的干扰不仅可能来自于待检测信道本身,也可能来自于相邻信道。 所以优选的, 用户设备还对与待检测信道频率重叠的相邻信道进行检测; 以 保障干扰检测的全面性和准确性。
在检测过程中具体的对于是否存在干扰的界定, 将依据检测指标信息。 针对待检测接入点设备和待检测信道, 用户设备搜索其附近的其他可能产生 干扰的接入点设备或者信道, 并在待检测信道中测量来自待检测接入点设备 的检测指标和来自可能产生干扰的接入点设备或者信道的检测指标; 最终得 到检测指标信息, 并判断这些可能产生干扰的接入点设备或者信道是否真的 对待检测接入点设备和待检测信道产生了干扰。
本实施例中, 以检测指标将作为衡量干扰情况的量化参数; 信号强度比 值或差值、 信号质量比值或差值、 路损或有效帧数比等指标均可能作为检测 指标。
若以信号强度比或信号质量比作为检测指标, 即是检测在信道中来自待 检测接入点设备的信号强度(或质量)与来自其他接入点设备的信号强度(或 质量) 的比值或差值, 以此比值或差值作为检测指标信息, 以检测指标信息 界定来自其他接入点设备的干扰程度。
如果以有效帧数比作为检测指标, 则有效帧数比有以下两种计算方式: 一是将信道中来自待检测接入点设备的帧数作为有效帧数, 并将有效帧数与 信道中总帧数的比值作为有效帧数比, 将该比值作为检测指标信息来界定干 扰程度。 另一是将信道中来自待检测接入点设备的帧数作为有效帧数, 将信 道中的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效 帧数比, 将该比值作为检测指标信息来界定干扰程度。
步骤 203、 根据检测指标信息和预设的上报门限, 判断是否需要上报检 测报告; 当需要上报则用户设备上报检测报告。
本实施例中在检测指令中预先设置上报门限, 用户设备通过比较上报门 限和检测指标信息确定是否上报检测报告, 比如所述上报门限即表示, 当检 测指标信息超过或低于该门限, 则认为此时待检测接入点设备和待检测信道 中存在干扰, 用户设备需向基站上报检测结果, 以便基站执行后续处理。
而对于不同的检测指标, 对应的上报门限也需要分别设置。 本实施例中 可以预先选定一个或多个检测指标, 并根据不同的检测指标相应的设置上报 门限, 并依据对应的上报门限对检测指标信息分别判断。 在本实施例中, 不 同的检测指标对应不同的上报门限, 所以所述上报门限可能是上限门限, 也 可能是下线门限。 对于上限门限, 当超出上报门限时上报检测报告。 对于下 线门限, 低于上报门限时上报检测报告。 总之, 只要检测指标信息未满足上 报门限的限制, 则上报检测报告。
例如, 当上报门限为上限门限, 用户设备检测的检测指标信息超出了预 设的上报门限, 则认为此时待检测接入点设备的通信信道上存在干扰; 用户 设备以此作为检测判断结果, 并以检测报告的形式将此判断结果上报基站。 关于上报检测报告的通信过程依然通过基站提供的蜂窝网络完成。
另外, 所述检测才艮告中可以包括下列内容:
用户设备位置, 用户设备的位置信息可以是绝对位置信息, 比如是经纬 度信息; 或者是相对位置信息, 比如相对于蜂窝网络的位置; 用户可以测量 蜂窝网络的信号, 通过测量蜂窝网络信号确定其在蜂窝网络中的相对位置。
检测指标和检测指标信息; 关于检测指标及检测指标信息在前述内容当 中已经给予了说明, 此处不作重复叙述。
待检测接入点设备的信息, 该信息与检测指令中包含的待检测接入点信 息一致; 对于待检测接入点设备的检测数据包含在所述检测指标信息中一并 上报。
关系接入点设备的信息, 通过前述的对于上报门限的描述已知, 当检测 指标信息未满足上报门限的限制(超过或为达到门限), 则上报检测报告。 而 根据用来计算检测指标信息的实测数据, 可以获悉具体来自哪些接入点设备 信号或者数据帧导致了检测指标信息不满足上报门限的限制, 本实施例中可 以认为导致检测指标信息不满足门限的限制的接入点设备对待检测接入点设 备存在干扰。 用户设备根据检测指标信息和预设的上报门限, 确定了导致检 测指标信息不满足门限的限制的接入点设备之后, 将其作为关系接入点设备 并上报关系接入点设备的信息, 例如关系接入点设备的名称及地址。 对于关 系接入点设备的具体检测数据将包含在所述实际检测值信息中一并上报。 本 实施例中基站根据关系节点设备信息即可获悉用户设备附近有哪些接入点设 备对待检测设备的干扰较强烈。
实际检测值信息; 所述实际检测值指的是对检测指标进行检测得到的实 际数据数值; 所述实际测检测值信息可以包括对于待检测接入点设备检测指 标的测量值, 也可以包括对于关系接入点设备检测指标的测量值。
空闲信道信息, 同时上报不存在干扰的空闲信道的信息, 以便基站在待 检测接入点设备存在干扰的情况下做出后续的信道变更等调整。
至此, 用户设备一侧完成 WLAN的干扰检测流程, 准确的得到某一特定位 置处的干扰情况。 对应上述的方法实施例, 本发明还对应的公开了一种干扰检测系统, 所 述干扰检测系统一般置于用户设备当中, 参照图 3所示, 所述系统结构如下: 触发模块 301 , 用于接收基站的检测指令, 并触发干扰检测。
本实施例中, 用户设备位于某一特定位置, 并在该位置处直接利用本实 施例所述系统进行干扰检测, 所以测得的检测结果即准确的表示了该位置处 实际的干扰情况。
所述基站为蜂窝网络基站, 所述蜂窝网络也就是指现阶段运行商提供的
2G/ 3G/4G网络, 例如 GSM网络或 CDMA网络,或者 LTE网络。 本实施例中所述 基站可以理解为广义的基站, 例如 LTE网络中的演进基站, 以及 2G/ 3G/4G网 络中的基站或者基站控制器, 均在本实施例中所述基站的范围之内。 一个基 站所提供的蜂窝网络范围之内, 可能包含多个该运行商下设的接入点设备, 对于这些接入点设备的干扰检测均需要配合该基站来完成。 所述基站与用户 设备之间的通信即通过基站提供的蜂窝网络实现; 这也避免了现有的干扰检 测过程中, 利用 WLAN完成相关的通信, 而影响 WLAN正常使用的缺陷。 也就 所述检测指令中包含待检测接入点设备的信息; 具体可以包括待检测接 入点设备名称、待检测接入点设备 ID或者待检测信道编号等。 一般而言待检 测信道就是待检测接入点使用的信道。 如果不包含待检测的信道编号, 则用 户设备根据接入点设备 ID 自行搜索所述待检测接入点设备所使用的信道的 编号。 检测指令中还可以设置检测指标的上报门限, 以界定待检测接入点设 备的通信是否被干扰。 关于检测指标的上报门限在后续将详细说明。
本实施例的核心思想在于将所述的干扰检测过程利用用户设备本身实 现; 而本实施例中基站仅在检测过程中起到对于用户设备的控制作用, 并不 参与实际的检测。 所以所述触发模块 301接收基站的检测指令, 进而开始后 续的检测流程。
检测模块 302 , 用于根据检测指令检测待检测接入点设备的通信信道中 的检测指标, 得到检测指标信息。
在接收到检测指令之后, 则根据检测指令开始检测流程。 具体的, 检测 模块 302根据检测指令中包含的待检测接入点设备信息和待检测信道信息, 搜寻到待检测信道, 并对待检测信道中的通信情况进行检测。 此外, 待检测 信道中的干扰不仅可能来自于待检测信道本身, 也可能来自于相邻信道。 所 以优选的, 检测模块 302还对与待检测信道频率重叠的相邻信道进行检测; 以保障干扰检测的全面性和准确性。
在检测过程中具体的对于是否存在干扰的界定, 将依据检测指标信息。 针对待检测接入点设备和待检测信道, 检测模块 302搜索其附近的其他可能 产生干扰的接入点设备或者信道, 并在待检测信道中测量来自待检测接入点 设备的检测指标和来自可能产生干扰的接入点设备或者信道的检测指标; 最 终得到检测指标信息, 并判断这些可能产生干扰的接入点设备或者信道是否 真的对待检测接入点设备和待检测信道产生了干扰。
本实施例中, 以检测指标将作为衡量干扰情况的量化参数; 信号强度比 值或差值、 信号质量比值或差值、 路损或有效帧数比等指标均可能作为检测 指标。
若以信号强度比或信号质量比作为检测指标, 即是检测在信道中来自待 检测接入点设备的信号强度(或质量)与来自其他接入点设备的信号强度(或 质量) 的比值或差值, 以此比值或差值作为检测指标信息, 以检测指标信息 界定来自其他接入点设备的干扰程度。
如果以有效帧数比作为检测指标, 则有效帧数比有以下两种计算方式: 一是将信道中来自待检测接入点设备的帧数作为有效帧数, 并将有效帧数与 信道中总帧数的比值作为有效帧数比, 将该比值作为检测指标信息来界定干 扰程度。 另一是将信道中来自待检测接入点设备的帧数作为有效帧数, 将信 道中的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效 帧数比, 将该比值作为检测指标信息来界定干扰程度。
反馈模块 303 , 用于根据检测指标信息和预设的上报门限, 判断是否需 要上报检测报告; 当需要上报则上报检测报告。
本实施例中在检测指令中预先设置上报门限, 反馈模块 303通过比较上 报门限和检测指标信息确定是否上报检测报告, 比如所述上报门限即表示, 当检测指标信息超过或低于该门限, 则认为此时待检测接入点设备和待检测 信道中存在干扰, 反馈模块 303需向基站上报检测结果, 以便基站执行后续 处理。
而对于不同的检测指标, 对应的上报门限也需要分别设置。 本实施例中 可以预先选定一个或多个检测指标, 并根据不同的检测指标相应的设置上报 门限, 并依据对应的上报门限对检测指标信息分别判断。 在本实施例中, 不 同的检测指标对应不同的上报门限, 所以所述上报门限可能是上限门限, 也 可能是下线门限。 对于上限门限, 当超出上报门限时上报检测报告。 对于下 线门限, 低于上报门限时上报检测报告。 总之, 只要检测指标信息未满足上 报门限的限制, 则上报检测报告。
例如, 当上报门限为上限门限, 反馈模块 303检测的检测指标信息超出 了预设的上报门限, 则认为此时待检测接入点设备的通信信道上存在干扰; 反馈模块 303 以此作为检测判断结果, 并以检测报告的形式将此判断结果上 报基站。 关于上报检测报告的通信过程依然通过基站提供的蜂窝网络完成。
另外, 所述检测报告中可以包括下列内容:
用户设备位置, 用户设备的位置信息可以是绝对位置信息, 比如是经纬 度信息; 或者是相对位置信息, 比如相对于蜂窝网络的位置; 用户可以测量 蜂窝网络的信号, 通过测量蜂窝网络信号确定其在蜂窝网络中的相对位置。 检测指标和检测指标信息; 关于检测指标及检测指标信息在前述内容当 中已经给予了说明, 此处不作重复叙述。
待检测接入点设备的信息, 该信息与检测指令中包含的待检测接入点信 息一致; 对于待检测接入点设备的检测数据包含在所述检测指标信息中一并 上报。
关系接入点设备的信息, 通过前述的对于上报门限的描述已知, 当检测 指标信息未满足上报门限的限制(超过或为达到门限), 则上报检测报告。 而 根据用来计算检测指标信息的实测数据, 可以获悉具体来自哪些接入点设备 信号或者数据帧导致了检测指标信息不满足上报门限的限制, 本实施例中可 以认为导致检测指标信息不满足门限的限制的接入点设备对待检测接入点设 备存在干扰。 反馈模块 303根据检测指标信息和预设的上报门限, 确定了导 致检测指标信息不满足门限的限制的接入点设备之后, 将其作为关系接入点 设备并上报关系接入点设备的信息, 例如关系接入点设备的名称及地址。 对 于关系接入点设备的具体检测数据将包含在所述实际检测值信息中一并上 报。 本实施例中基站根据关系节点设备信息即可获悉用户设备附近有哪些接 入点设备对待检测设备的干扰较强烈。
实际检测值信息; 所述实际检测值指的是对检测指标进行检测得到的实 际数据数值; 所述实际测检测值信息可以包括对于待检测接入点设备检测指 标的测量值, 也可以包括对于关系接入点设备检测指标的测量值。
空闲信道信息, 同时上报不存在干扰的空闲信道的信息, 以便基站在待 检测接入点设备存在干扰的情况下做出后续的信道变更等调整。
至此, 本实施例所述系统完成 WLAN的干扰检测流程, 准确的得到某一特 定位置处的干扰情况。
本实施例所述系统将置于图 2所示实施例所述的用户设备当中, 为用户 设备按照上述方法实现干扰检测所需要借助的虚拟系统。 图 2-3所公开的干扰检测方法及系统的实施例为基石出实施例, 所述方法 及系统的实施例存在的有益效果是: 所述方法及系统实现利用用户设备直接 进行 WLAN的干扰检测, 取代了传统的接入点设备中心处干扰检测的方式, 其 检测结果准确的反应出用户设备实际所受到的干扰情况, 解决了现有技术中 基站的检测结果无法准确的与用户设备实际受到的干扰情况相符的技术问 题; 并且在检测过程中, 用户设备与基站之间利用蜂窝网络进行通信, 不影 响 WLAN的正常工作。 参见图 4所示, 为本发明所述干扰检测方法的另一个具体的实施例。 本 实施例在图 2所示实施例的基石出之上, 做出了更进一步的优化和更详细的公 开, 本实施例所述方法具体包括以下步骤:
步骤 401、 用户设备接收基站的检测指令, 所述检测指令包括待检测接 入点设备的信息, 上报门限和触发门限。
所述检测指令中包含待检测接入点设备的信息; 具体可以包括待检测接 入点设备名称、待检测接入点设备 I D和待检测信道编号等。检测指令中还可 以设置检测指标的上报门限, 以界定待检测接入点设备的通信是否被干扰。
除此之外, 本实施例中所述检测指令额外包括一个触发门限。 在后续步 骤中会对该触发门限进行具体的描述。
步骤 402、 用户设备检测待检测接入点设备的信号强度是否达到触发门 限, 如果达到则进入步骤 403 , 否则重复执行步骤 402。
一般而言用户设备需位于待检测接入点设备提供的 WLAN范围之内,则其 对于待检测接入点设备的检测才存在意义。 如果令某一用户设备根本没有被 待检测接入点设备所覆盖, 必然接收不到被待检测接入点设备的任何信号, 也就没有必要开启后续的检测流程。
正常情况下, 为一个用户设备指定的待检测接入点设备, 应该是覆盖该 用户设备的。 但在基站向下设的多个不同位置的用户设备群发检测指令, 或 者检测指令错误的情况下, 不排除用户设备会收到令其检测未覆盖其位置的 接入点设备的指令。 这种情况下, 用户设备可以先检测待检测接入点设备的 信号强度是否达到触发门限,若达到则说明该接入点设备覆盖了该用户设备, 有必要开启后续的检测流程; 否则用户设备重复步骤 402 , 也就是不断的检 测待检测接入点设备的信号强度, 直到该信号强度达到触发门限。
步骤 403、 用户设备根据检测指令检测待检测接入点设备的通信信道中 的检测指标, 得到检测指标信息.
本实施例中还需要说明的是, 如果测量过程中的某一时刻, 用户设备发 现待检测接入点设备的信号强度回到触发门限之下, 则用户设备结束本次检 测, 返回步骤 402。
步骤 404、 根据检测指标信息和预设的上报门限, 判断是否需要上报检 测报告; 当需要上报则用户设备上报检测报告。
步骤 403-步骤 404中技术方案同图 2所示方法实施例中内容一致。 对应上述实施例, 本发明中还公开了一种干扰检测系统, 参见图 5所述 系统具体包括:
触发模块 501 , 用于接收基站的检测指令, 并触发干扰检测。
所述触发模块 501具体包括:
指令接收单元 511 , 用于接收基站的检测指令, 所述检测指令包括待检 测接入点设备的信息和待检测信道的信息, 上报门限和触发门限。
所述检测指令中包含待检测接入点设备的信息; 具体可以包括待检测接 入点设备名称、待检测接入点设备 I D和待检测信道编号等。检测指令中还可 以设置检测指标的上报门限, 以界定待检测接入点设备的通信是否被干扰。
除此之外, 本实施例中所述检测指令额外包括一个触发门限。 在后续步 骤中会对该触发门限进行具体的描述。
判断触发单元 512 , 用于检测待检测接入点设备的信号强度是否达到触 发门限, 如果达到则检测待检测接入点设备的通信信道中的检测指标。
一般而言用户设备需位于待检测接入点设备提供的 WLAN范围之内,则其 对于待检测接入点设备的检测才存在意义。 如果令某一用户设备根本没有被 待检测接入点设备所覆盖, 必然接收不到被待检测接入点设备的任何信号, 也就没有必要开启后续的检测流程。
正常情况下, 为一个用户设备指定的待检测接入点设备, 应该是覆盖该 用户设备的。 但在基站向下设的多个不同位置的用户设备群发检测指令, 或 者检测指令错误的情况下, 不排除用户设备会收到令其检测未覆盖其位置的 接入点设备的指令。 这种情况下, 判断触发单元 512可以先检测待检测接入 点设备的信号强度是否达到触发门限, 若达到则说明该接入点设备覆盖了该 用户设备, 有必要开启后续的检测流程; 否则判断触发单元 512重复检测待 检测接入点设备的信号强度是否达到触发门限, 直到该信号强度达到触发门 限。
检测模块 502 , 用于根据检测指令检测待检测接入点设备的通信信道中 的检测指标, 得到检测指标信息。
本实施例中还需要说明的是, 如果测量过程中的某一时刻, 发现待检测 接入点设备的信号强度回到触发门限之下, 则结束本次检测, 返回判断触发 单元 512检测待检测接入点设备的信号强度是否达到触发门限。
反馈模块 503 , 用于在所述检测指标信息超过预设的上报门限时上报检 测报告。 图 4-5所示干扰检测方法及系统实施例在前述实施例的基石出之上, 进一 步存在的有益效果是: 所述方法及系统通过设置触发门限, 提高了干扰检测 的针对性和目的性, 提升了检测效率, 避免了用户设备不必要的启动检测流 程。 对应前述的干扰检测方法及系统的实施例 , 本实施例中还相应的公开了 一种干扰管理方法及系统。 实际上, 所述干扰管理方法从基站的角度出发, 主要公开了基站在接收到检测报告之后的后续处理过程。 参见图 6所示, 本 实施例中所述方法包括以下步骤:
步骤 601、 基站向用户设备发出检测指令, 致使用户设备进行干扰检测 并上报检测报告。
步骤 602、 基站根据所述检测报告进行干扰处理分析。
本实施例中, 所述基站的处理分析过程可具体为以下:
基站分析检测报告, 判断是否需要为待检测的接入点设备更换信道; 当 需要更换信道, 则基站选取空闲信道变更为待检测接入点设备的通信信道。 由于在本实施例的应用场景下, 基站与接入点设备均属于同一运营商, 所以 基站可以轻易的对接入点设备进行控制。 本实施例中,所述检测指令及检测报告中包括的内容与前述实施例相同。 在此不作重复叙述。
还需要说明的是,所述基站进行的干扰处理分析除了变更通信信道之外, 还可能包括其他范围。 例如, 所述基站能够连接多个用户设备, 并接收不同 用户设备上报的检测报告。 通过上一实施例可知, 所述检测报告中可以包括 用户设备位置、 检测指标及检测指标信息、 待检测接入点设备及待检测信道 的信息、 关系接入点设备及干扰信道的信息、 空闲信道信息; 所以基站可以 针对诸多信息进行综合的分析和判断。 另外, 还可以根据需要为基站配置专 门的干扰分析服务器以对不同用户设备上报的检测报告进行分析。 例如, 基 站可以根据多个用户设备提供的位置信息和检测指标信息判断大概在接入点 设备覆盖范围的那部分干扰最强, 并作出适应性调整。
根据检测报告中的相关信息, 基站还可以进行其他类似的数据分析, 在 此不——列举。
另外, 优选的本实施例所述方法还可以包括:
步骤 603、 基站在更换接入点设备信道之后, 将更换后的信道编号通知 相邻的基站。
为方便其他基站之下进行的干扰检测和管理, 所以该基站将接入点设备 占用的信道编号通知相邻基站, 可有助于避免选用已被占用的信道。 对应图 6所示实施例所述方法, 本发明还包括一种干扰管理系统, 所述 干扰管理系统一般置于基站。 参照图 7所示, 所述系统包括以下:
指令模块 701 , 用于向用户设备发出检测指令, 致使用户设备进行干扰 检测并上报检测报告。
处理模块 702 , 用于根据所述检测报告进行干扰处理分析。
所述处理模块 702具体包括:
检测分析单元 721 , 用于分析检测报告, 判断是否需要更换信道。
信道变更单元 722 , 用于在需要更换信道时, 选取空闲信道变更为待检 测接入点设备的通信信道。
本实施例中, 所述处理模块 702的处理分析过程可具体为以下: 处理模块 702分析检测报告, 判断是否需要为待检测的接入点设备更换 信道; 当需要更换信道, 则处理模块 702选取空闲信道变更为待检测接入点 设备的通信信道。 由于在本实施例的应用场景下, 处理模块 702所置于的基 站与接入点设备均属于同一运营商, 所以处理模块 702可以轻易的对接入点 设备进行控制。
本实施例中,所述检测指令及检测报告中包括的内容与前述实施例相同。 在此不作重复叙述。
还需要说明的是, 所述处理模块 702进行的干扰处理分析除了变更通信 信道之外, 还可能包括其他范围。 例如, 所述基站能够连接多个用户设备, 并接收不同用户设备上报的检测报告。 通过上一实施例可知, 所述检测报告 中可以包括用户设备位置、 检测指标及检测指标信息、 待检测接入点设备及 待检测信道的信息、 关系接入点设备及干扰信道的信息、 空闲信道信息; 所 以处理模块 702可以针对诸多信息进行综合的分析和判断。 根据需要, 所述 处理模块 702在硬件上可以是专门的干扰分析服务器, 以对不同用户设备上 报的检测报告进行分析。 例如, 处理模块 702可以根据多个用户设备提供的 位置信息和检测指标信息判断大概在接入点设备覆盖范围的那部分干扰最 强, 并作出适应性调整。
根据检测报告中的相关信息, 基站还可以进行其他类似的数据分析, 在 此不——列举。
优选的, 所述处理模块还包括:
变更通知单元 723 , 用于在更换信道之后, 将更换后的信道编号通知相 邻的基站。
为方便其他基站之下进行的干扰检测和管理, 所以变更通知单元 723将 接入点设备占用的信道编号通知相邻基站, 可有助于避免选用已被占用的信 道。
以上系统将置于图 6所示实施例所述的基站当中, 为所述基站按照上述 方法实现干扰管理所需要借助的虚拟系统。 图 6-7所公开的干扰管理方法及系统的实施例存在的有益效果是: 所述 方法及系统在用户设备实现干扰检测的基石出上, 进而对用户设备上报的检测 报告作出了分析和处理; 在通信信道存在干扰时, 及时的变更至空闲信道消 除干扰; 使本发明整体技术方案更加完整, 公开更加充分。 本发明还包括一种用户设备, 所述用户设备为实现图 2或图 4相应实施 例中所述方法所基于的实体装置, 所述用户设备包括:
第一处理器, 用于接收基站的检测指令, 根据检测指令检测待检测接入 点设备的通信信道中的检测指标, 得到检测指标信息, 在所述检测指标信息 超过预设的上报门限时上报检测报告。
第一存储器, 用于存储预设的上报门限。
所述检测指令包括:
待检测接入点设备信息、 上报门限。
所述待检测接入点设备信息包括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。 所述检测指令还包括触发门限, 则所述方法还包括:
检测待检测接入点设备的信号强度是否达到触发门限, 如果达到则检测 待检测接入点设备的通信信道中的检测指标。
所述第一处理器接收基站的检测指令以及所述第一处理器上报检测报告 具体为:
第一处理器利用基站提供的蜂窝网络接收检测指令或上报检测报告。 所述检测指标包括:
信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
当所述检测指标为信号强度比值或差值, 或信号质量比值或差值, 则所 述检测通信信道中的检测指标, 得到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
当所述检测指标为有效帧数比, 则所述检测通信信道中的检测指标, 得 到检测指标信息具体为: 将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息;
或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
所述检测报告包括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。
所述用户设备存在的有益效果是:利用用户设备直接进行 WLAN的干扰检 测, 取代了传统的接入点设备中心处干扰检测的方式, 其检测结果准确的反 应出用户设备实际所受到的干扰情况, 解决了现有技术中基站的检测结果无 法准确的与用户设备实际受到的干扰情况相符的技术问题; 并且在检测过程 中, 用户设备与基站之间利用蜂窝网络进行通信, 不影响 WLAN的正常工作。 本发明中还包括一种基站, 所述基站为实现图 6相应实施例中所述方法 所基于的实体装置, 所述基站包括:
第二处理器, 用于向用户设备发出检测指令, 致使用户设备进行干扰检 测并上报检测报告, 根据所述检测报告进行干扰处理分析。
第二存储器, 用于存储用户设备上报的检测报告。
所述第二处理器根据所述检测报告进行干扰处理分析具体为:
第二处理器分析检测报告, 判断是否需要为待检测的接入点设备更换信 道; 当需要更换信道, 则基站选取空闲信道变更为待检测接入点设备的通信 信道。
所述第二处理器进行干扰处理分析还包括:
基站在更换信道之后, 将更换后的信道编号通知相邻的基站。
所述基站存在的有益效果是: 基站在用户设备实现干扰检测的基础上, 进而对用户设备上报的检测报告作出了分析和处理;在通信信道存在干扰时, 及时的变更至空闲信道消除干扰; 使本发明整体技术方案更加完整, 公开更 加充分。 通过以上的实施方式的描述可知, 本领域的技术人员可以清楚地了解到 上述实施例方法中的全部或部分步骤可借助软件加必需的通用硬件平台的方 式来实现。 基于这样的理解, 本发明的技术方案本质上或者说对现有技术做 出贡献的部分可以以软件产品的形式体现出来, 该计算机软件产品可以存储 在存储介质中, 如 R0M/RAM、 磁碟、 光盘等, 包括若干指令用以使得一台计 算机设备(可以是个人计算机, 服务器, 或者诸如媒体网关等网络通信设备, 等等)执行本发明各个实施例或者实施例的某些部分所述的方法。
需要说明的是, 本说明书中的各个实施例均采用递进的方式描述, 各个 实施例之间相同相似的部分互相参见即可, 每个实施例重点说明的都是与其 他实施例的不同之处。 尤其, 对于设备及系统实施例而言, 由于其基本相似 于方法实施例, 所以描述得比较简单, 相关之处参见方法实施例的部分说明 即可。 以上所描述的设备及系统实施例仅仅是示意性的, 其中作为分离部件 说明的单元可以是或者也可以不是物理上分开的, 作为单元显示的部件可以 是或者也可以不是物理单元, 即可以位于一个地方, 或者也可以分布到多个 网络单元上。 可以根据实际的需要选择其中的部分或者全部模块来实现本实 施例方案的目的。 本领域普通技术人员在不付出创造性劳动的情况下, 即可 以理解并实施。
以上所述仅为本发明的较佳实施例而已, 并非用于限定本发明的保护范 围。 凡在本发明的精神和原则之内所作的任何修改、 等同替换、 改进等, 均 包含在本发明的保护范围内。

Claims

权 利 要 求
1、 一种干扰检测方法, 其特征在于, 所述方法具体包括以下步骤: 用户设备接收基站的检测指令;
用户设备根据检测指令检测待检测接入点设备的通信信道中的检测指 标, 得到检测指标信息;
根据检测指标信息和预设的上报门限, 判断是否需要上报检测报告; 当 需要上报则用户设备上报检测报告。
2、 根据权利要求 1所述方法, 其特征在于, 所述检测指令包括: 待检测接入点设备信息、 上报门限。
3、 根据权利要求 2所述方法, 其特征在于, 所述待检测接入点设备信息 包括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。
4、 根据权利要求 1-3任意一项所述方法, 其特征在于, 所述检测指令还 包括触发门限, 则所述方法还包括:
用户设备检测待检测接入点设备的信号强度是否达到触发门限, 如果达 到则检测待检测接入点设备的通信信道中的检测指标。
5、 根据权利要求 1所述方法, 其特征在于, 所述用户设备接收基站的检 测指令以及所述用户设备上报检测报告具体为:
用户设备利用基站提供的蜂窝网络接收检测指令或上报检测报告。
6、 根据权利要求 1所述方法, 其特征在于, 所述检测指标包括: 信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
7、 根据权利要求 6所示方法, 其特征在于, 当所述检测指标为信号强度 比值或差值, 或信号质量比值或差值, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
8、 根据权利要求 6所述方法, 其特征在于, 当所述检测指标为有效帧数 比, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为: 将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息;
或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
9、 根据权利要求 1-8任意一项所述方法, 其特征在于, 所述检测报告包 括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。
10、 一种干扰管理方法, 其特征在于, 所述方法具体包括以下步骤: 基站向用户设备发出检测指令, 致使用户设备进行干扰检测并上报检测 报告;
基站根据所述检测报告进行干扰处理分析。
11、 根据权利要求 10所述方法, 其特征在于, 所述基站根据所述检测报 告进行干扰处理分析具体为:
基站分析检测报告, 判断是否需要为待检测的接入点设备更换信道; 当 需要更换信道, 则基站选取空闲信道变更为待检测接入点设备的通信信道。
12、 根据权利要求 10或 11所述方法, 其特征在于, 所述基站进行干扰 处理分析还包括:
基站在更换信道之后, 将更换后的信道编号通知相邻的基站。
13、 一种干扰检测系统, 其特征在于, 所述系统包括:
触发模块, 用于接收基站的检测指令, 并触发干扰检测;
检测模块, 用于根据检测指令检测待检测接入点设备的通信信道中的检 测指标, 得到检测指标信息; 反馈模块, 用于根据检测指标信息和预设的上报门限, 判断是否需要上 报检测报告; 当需要上报则上报检测报告。
14、 根据权利要求 13所述系统, 其特征在于, 所述检测指令包括: 待检测接入点设备信息、 上报门限。
15、 根据权利要求 14所述系统, 其特征在于, 所述待检测接入点设备信 息包括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。
16、 根据权利要求 13-15任意一项所述系统, 其特征在于, 所述触发模 块具体包括:
指令接收单元, 用于接收基站的检测指令; 所述检测指令还包括触发门 限;
判断触发单元, 用于检测待检测接入点设备的信号强度是否达到触发门 限, 如果达到则检测待检测接入点设备的通信信道中的检测指标。
17、 根据权利要求 13所述系统, 其特征在于, 所述系统还包括: 蜂窝网模块, 用于利用基站提供的蜂窝网络接收检测指令或上报检测报 告。
18、 根据权利要求 13所述系统, 其特征在于, 所述检测指标包括: 信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
19、 根据权利要求 18所示系统, 其特征在于, 当所述检测指标为信号强 度比值或差值, 或信号质量比值或差值, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
20、 根据权利要求 18所述系统, 其特征在于, 当所述检测指标为有效帧 数比, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为:
将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息; 或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
21、 根据权利要求 1 3-20任意一项所述系统, 其特征在于, 所述检测报 告包括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。
22、 一种干扰管理系统, 其特征在于, 所述系统包括:
指令模块, 用于向用户设备发出检测指令, 致使用户设备进行干扰检测 并上报检测报告;
处理模块, 用于根据所述检测报告进行干扰处理分析。
2 3、 根据权利要求 22所述系统, 其特征在于, 所述处理模块具体包括: 检测分析单元, 用于分析检测报告, 判断是否需要更换信道。
信道变更单元, 用于在需要更换信道时, 选取空闲信道变更为待检测接 入点设备的通信信道。
24、 根据权利要求 22或 2 3所述系统, 其特征在于, 所述处理模块还包 括:
变更通知单元, 用于在更换信道之后, 将更换后的信道编号通知相邻的 基站。
25、 一种用户设备, 其特征在于, 所述用户设备包括:
第一处理器, 用于接收基站的检测指令, 根据检测指令检测待检测接入 点设备的通信信道中的检测指标, 得到检测指标信息, 根据检测指标信息和 预设的上报门限, 判断是否需要上报检测报告; 当需要上报则用户设备上报 检测报告。
第一存储器, 用于存储预设的上报门限。
26、 根据权利要求 25所述用户设备, 其特征在于, 所述检测指令包括: 待检测接入点设备信息、 上报门限。
27、 根据权利要求 26所述用户设备, 其特征在于, 所述待检测接入点设 备信息包括:
待检测接入点设备名称、 待检测接入点设备 ID和或者待检测信道编号。
28、 根据权利要求 25-27任意一项所述用户设备, 其特征在于, 所述检 测指令还包括触发门限, 则所述方法还包括:
检测待检测接入点设备的信号强度是否达到触发门限, 如果达到则检测 待检测接入点设备的通信信道中的检测指标。
29、 根据权利要求 25所述用户设备, 其特征在于, 所述第一处理器接收 基站的检测指令以及所述第一处理器上报检测报告具体为:
第一处理器利用基站提供的蜂窝网络接收检测指令或上报检测报告。
30、 根据权利要求 25所述用户设备, 其特征在于, 所述检测指标包括: 信号强度比值或差值、 信号质量比值或差值、 路损或有效帧数比。
31、 根据权利要求 30所述用户设备, 其特征在于, 当所述检测指标为信 号强度比值或差值, 或信号质量比值或差值, 则所述检测通信信道中的检测 指标, 得到检测指标信息具体为:
检测在所述通信信道中来自待检测接入点设备的信号强度或信号质量, 与来自待检测接入点设备以外的接入点设备的信号强度或信号质量的比值或 差值, 以该比值或差值作为检测指标信息。
32、 根据权利要求 30所述用户设备, 其特征在于, 当所述检测指标为有 效帧数比, 则所述检测通信信道中的检测指标, 得到检测指标信息具体为: 将所述通信信道中来自待检测接入点设备的帧数作为有效帧数, 将有效 帧数与信道中总帧数的比值作为有效帧数比, 将有效帧数比作为检测指标信 息;
或者, 将信道中来自待检测接入点设备的帧数作为有效帧数, 将信道中 的其他帧数作为非有效帧数, 将有效帧数与非有效帧数的比值作为有效帧数 比, 将有效帧数比作为检测指标信息。
33、 根据权利要求 25-32任意一项所述用户设备, 其特征在于, 所述检 测报告包括:
用户设备位置、 检测指标及检测指标信息、 待检测接入点设备的信息、 关系接入点设备信息、 实际检测值信息和 /或空闲信道信息;
所述关系接入点设备信息为,根据上报门限和检测指标信息判断得到的, 导致检测指标信息不满足上报门限限制的接入点设备的名称和地址。
34、 一种基站, 其特征在于, 所述基站包括:
第二处理器, 用于向用户设备发出检测指令, 致使用户设备进行干扰检 测并上报检测报告, 根据所述检测报告进行干扰处理分析。
第二存储器, 用于存储用户设备上报的检测报告。
35、 根据权利要求 34所述基站, 其特征在于, 所述第二处理器根据所述 检测报告进行干扰处理分析具体为:
第二处理器分析检测报告, 判断是否需要为待检测的接入点设备更换信 道; 当需要更换信道, 则基站选取空闲信道变更为待检测接入点设备的通信 信道。
36、 根据权利要求 34或 35所述基站, 其特征在于, 所述第二处理器进 行干扰处理分析还包括:
基站在更换信道之后, 将更换后的信道编号通知相邻的基站。
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