WO2018196297A1 - 一种负荷均衡执行门限调整的方法及装置终端 - Google Patents

一种负荷均衡执行门限调整的方法及装置终端 Download PDF

Info

Publication number
WO2018196297A1
WO2018196297A1 PCT/CN2017/106868 CN2017106868W WO2018196297A1 WO 2018196297 A1 WO2018196297 A1 WO 2018196297A1 CN 2017106868 W CN2017106868 W CN 2017106868W WO 2018196297 A1 WO2018196297 A1 WO 2018196297A1
Authority
WO
WIPO (PCT)
Prior art keywords
load balancing
serving cell
current
value
current period
Prior art date
Application number
PCT/CN2017/106868
Other languages
English (en)
French (fr)
Inventor
刘明
Original Assignee
上海中兴软件有限责任公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 上海中兴软件有限责任公司 filed Critical 上海中兴软件有限责任公司
Publication of WO2018196297A1 publication Critical patent/WO2018196297A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/08Load balancing or load distribution
    • H04W28/086Load balancing or load distribution among access entities
    • H04W28/0861Load balancing or load distribution among access entities between base stations

Definitions

  • the present disclosure relates to the field of load balancing technologies, and in particular, to a method and apparatus for load balancing execution threshold adjustment and a computer storage medium.
  • Load balancing properly allocates cell traffic according to the serving cell and its neighbor load state, balances the load between cells, inter-frequency, and other radio access technologies in the system, so that system resources can be effectively used to improve user perception and system. Stability.
  • the load balancing function includes two parts: the connected state load balancing and the resident state load balancing.
  • the connected state load balancing is mainly implemented for the connected state users, and is performed by the switching mode.
  • the resident state load balancing is mainly for the connected state to the idle state user. Execute in the manner of selecting (changing the reselection priority).
  • the load balancing module acquires the load information of the serving cell and its neighboring area, and the triggering of the load balancing function needs to satisfy the following two conditions;
  • the load balancing period (wLBPeriod) arrives, the number of active UEs in the serving cell is greater than 1, and the next step is performed. Otherwise, wait for the next load balancing period to begin;
  • the load balancing function is executed to the next step. Otherwise, wait for the next load balancing cycle to begin.
  • ucAllowHLNbrNum the number of neighboring cells whose load is higher than the load of the serving cell
  • the uplink or downlink radio load of the serving cell is greater than or equal to the load balancing execution threshold ucUlPRBLBExeThrdZ (uplink radio load balancing execution threshold) or ucDlPRBLBExeThrdZ (downlink radio load balancing execution threshold).
  • the triggering of the load balancing function requires the load of the serving cell to reach the set execution threshold. That is, after the load of the cell load in the equalization period is higher than the high load threshold we define, the function triggers.
  • the load of the cell in the commercial live network is not only related to the business model, but also closely related to the distribution and behavior habits of the mobile terminal users. For example, in colleges and universities, the time of the class covers the base station of the teaching building, and the base station load of the dormitory is extremely high. During the summer and winter vacations, the base station load in the entire university area has dropped significantly. A similar situation occurs in shopping malls, shopping centers, stadiums, office buildings, certain open spaces and plazas, and so on.
  • the load of the network and the base station is high or low, or the presentation period changes, or presents a random change. And random changes are unpredictable.
  • the same area may be a high-load area this month, and may be a low-load area next week, and vice versa.
  • the execution threshold of the load balancing function of the base station cannot be adapted to the network load change. Balance needs.
  • the technical problem solved by the solution provided by the embodiment of the present invention is that the base station load changes in the current commercial network, and the previously set load balancing function execution threshold cannot match the changed load, thereby affecting the execution of the equalization function.
  • the current load of the serving cell is determined according to the value relationship between the current period of the serving cell and the load balancing value of the previous period and the current load balancing threshold of the serving cell.
  • the equilibrium execution threshold is adjusted.
  • determining whether the current load balancing execution threshold of the serving cell needs to be adjusted by using the load balancing value of the current period of the serving cell and the load balancing value of the current period of the coverage neighboring cell includes:
  • the current load balancing execution threshold of the serving cell needs to be adjusted.
  • the current load balancing execution threshold value of the serving cell is adjusted according to a numerical relationship between a load balancing value of a current period and a preceding period of the serving cell and a current load balancing execution threshold value of the serving cell.
  • the current number of the serving cell and the load balancing value of the first N periods are greater than the current load balancing execution threshold of the serving cell, and it is determined whether the number of statistics exceeds a preset threshold;
  • the current load balancing execution threshold of the serving cell is adjusted upwardly;
  • the current load balancing execution threshold of the serving cell is adjusted upwardly;
  • M and N are both positive integers; M ⁇ N.
  • determining whether the current load balancing execution threshold of the serving cell needs to be adjusted by using the load balancing value of the current period of the serving cell and the load balancing value of the current period of the coverage neighboring cell includes:
  • the current load balancing execution threshold of the serving cell is less than the current load balancing value of the current period of the serving cell, determining whether the load balancing value of the current period of the serving cell is smaller than a load balancing value of the current period of the same coverage neighboring cell ;
  • the current load balancing execution threshold value of the serving cell needs to be adjusted.
  • the current load balancing execution threshold value of the serving cell is adjusted according to a numerical relationship between a load balancing value of a current period and a preceding period of the serving cell and a current load balancing execution threshold value of the serving cell.
  • the current load balancing execution threshold of the serving cell is adjusted downward;
  • the current load balancing execution threshold of the serving cell is adjusted downward;
  • M and N are both positive integers; M ⁇ N.
  • An acquiring module configured to obtain a load balancing value of a current period of the serving cell and a load balancing value of a current period of the coverage neighboring cell;
  • the determining module is configured to determine whether the current load balancing execution threshold of the serving cell needs to be adjusted by using a load balancing value of the current period of the serving cell and a load balancing value of the current period of the same coverage neighboring cell;
  • the adjusting module is configured to: when determining that the current load balancing execution threshold of the serving cell needs to be adjusted, according to the value relationship between the current period of the serving cell and the load balancing value of the preceding period and the current load balancing threshold of the serving cell, The current load balancing execution threshold of the serving cell is adjusted.
  • the determining module comprises:
  • a comparing unit configured to compare a current load balancing execution threshold of the serving cell with a load balancing value of a current period of the serving cell
  • a first determining unit configured to determine, when the current load balancing execution threshold of the serving cell is greater than or equal to a load balancing value of the current period of the serving cell, determining whether a load balancing value of the current period of the serving cell is greater than Determining the load balancing value of the current period of the neighboring cell, and determining the current load balancing execution threshold of the serving cell when determining that the load balancing value of the current period of the serving cell is greater than the load balancing value of the current period of the same coverage neighboring cell The value needs to be adjusted.
  • the adjustment module comprises:
  • the first adjusting unit is configured to determine whether the number of statistics exceeds a preset number by counting the current period of the serving cell and the load balancing value of the first N periods, which is greater than the current load balancing execution threshold of the serving cell. a threshold value, if it is determined that the number of statistics exceeds a preset number of thresholds, the current load balancing execution threshold value of the serving cell is adjusted upwardly, and if the number of statistics does not exceed a preset number of gates
  • the limit value is determined whether the current period of the serving cell and the load balance value of the previous M periods are all greater than the current load balancing execution threshold of the serving cell, and if the current period of the serving cell and the load balance value of the previous M periods are all greater than The current load balancing execution threshold value of the serving cell is adjusted upwardly for the current load balancing execution threshold of the serving cell;
  • M and N are both positive integers; M ⁇ N.
  • the determining module comprises:
  • a comparing unit configured to compare a current load balancing execution threshold of the serving cell with a load balancing value of a current period of the serving cell
  • a second determining unit configured to determine, when the current load balancing execution threshold value of the serving cell is smaller than a current load balancing value of the current period of the serving cell, whether the load balancing value of the current period of the serving cell is smaller than the same coverage neighbor The load balancing value of the current period of the area, and when determining that the load balancing value of the current period of the serving cell is smaller than the current period of the same coverage neighboring cell, determining that the current load balancing execution threshold of the serving cell needs to be adjusted.
  • the adjustment module comprises:
  • the second adjusting unit is configured to determine whether the number of statistics exceeds a preset number of gates by counting the number of the current load balancing values of the serving cell and the load balancing value of the previous N period that are smaller than the current load balancing execution threshold of the serving cell. a limit value, if it is determined that the number of statistics exceeds a preset threshold, the current load balancing execution threshold of the serving cell is adjusted downward, and if the number of statistics does not exceed a preset threshold The value determines whether the current period of the serving cell and the load balancing value of the previous M periods are all smaller than the current load balancing execution threshold of the serving cell, and if the current period of the serving cell and the load balance value of the previous M periods are all less than the service. If the current load balancing execution threshold of the cell is used, the current load balancing execution threshold of the serving cell is adjusted and adjusted;
  • M and N are both positive integers; M ⁇ N.
  • An embodiment of the present invention further provides an electronic device for performing load balancing execution threshold adjustment, where the electronic device includes: a processor and a memory, wherein the memory is configured to store executable program code; the processor reads by The executable program code stored in the memory runs a program corresponding to the executable program code for performing the method of performing load balancing execution threshold adjustment described above.
  • An embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores one or more programs executable by a computer, and when the one or more programs are executed by the computer, causing the computer to execute the foregoing The method of load balancing to perform threshold adjustment.
  • the base station when the base station load does not match the equalization execution threshold, the base station automatically adjusts the equalization threshold to match the changed load, thereby achieving the purpose of balancing the load of the high-load cell and the surrounding coverage cell. Improve network utilization while improving user experience.
  • FIG. 1 is a schematic diagram of a load balancing technology provided by the prior art
  • FIG. 2 is a flowchart of a method for performing load balancing execution threshold adjustment according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of an apparatus for performing load balancing execution threshold adjustment according to an embodiment of the present invention
  • FIG. 4 is a flowchart of load balancing execution threshold adjustment according to an embodiment of the present invention.
  • FIG. 2 is a flowchart of a method for performing load balancing execution threshold adjustment according to an embodiment of the present invention. As shown in FIG. 2, the method includes:
  • Step S201 Obtain a load balancing value of a current period of the serving cell and a load balancing value of a current period of the coverage neighboring cell;
  • the load balancing value of the current period of the serving cell and the load balancing value of the current period of the coverage neighboring cell are obtained by monitoring the load of the current period of the serving cell and the coverage neighboring cell respectively.
  • Step S202 determining whether the current load balancing execution threshold of the serving cell needs to be adjusted by using the load balancing value of the current period of the serving cell and the load balancing value of the current period of the coverage neighboring cell;
  • Step S203 If it is determined that the current load balancing execution threshold value of the serving cell needs to be adjusted, according to the numerical relationship between the current period of the serving cell and the load balancing value of the previous period and the current load balancing execution threshold value of the serving cell, the service is performed. The current load balancing execution threshold of the cell is adjusted.
  • determining, by using the load balancing value of the current period of the serving cell and the load balancing value of the current period of the coverage neighboring cell, whether the current load balancing execution threshold of the serving cell needs to be adjusted includes: using the serving cell The current load balancing execution threshold is compared with the load balancing value of the current period of the serving cell; if the current load balancing execution threshold of the serving cell is greater than or equal to the current load balancing value of the serving cell, the determining Whether the load balancing value of the current period of the serving cell is greater than the load balancing value of the current period of the same coverage neighboring cell; if it is determined that the load balancing value of the current period of the serving cell is greater than the load balancing value of the current period of the same coverage neighboring cell, Then, it is determined that the current load balancing execution threshold of the serving cell needs to be adjusted.
  • the load balancing value according to the current period and the previous period of the serving cell and the current load of the serving cell The value of the equilibrium execution threshold is adjusted, and the current load balancing execution threshold of the serving cell is adjusted, which is: by comparing the current period of the serving cell and the load balance value of the first N periods, the current load balancing execution gate of the serving cell is greater than The number of the limit values, whether the number of the statistics exceeds the preset number of thresholds; if it is determined that the number of statistics exceeds the preset number of thresholds, the current load balancing threshold is executed for the serving cell Performing an upward adjustment; if it is determined that the number of statistics does not exceed the preset threshold, it is determined whether the current period of the serving cell and the load balance value of the previous M periods are all greater than the current load balancing execution threshold of the serving cell; And determining that the current period of the serving cell and the load balancing value of the first M periods are all greater than the current load balancing execution threshold of the serving cell, and then adjusting
  • determining, by using the load balancing value of the current period of the serving cell and the load balancing value of the current period of the coverage neighboring cell, whether the current load balancing execution threshold of the serving cell needs to be adjusted includes: using the serving cell The current load balancing execution threshold is compared with the load balancing value of the current period of the serving cell; if the current load balancing execution threshold of the serving cell is smaller than the current balancing value of the serving cell, the service is determined.
  • the load balance value of the current period of the cell is smaller than the load balance value of the current period of the same coverage neighboring cell; if it is determined that the load balance value of the current period of the serving cell is smaller than the load balance value of the current period of the same coverage neighboring cell, The current load balancing execution threshold of the serving cell needs to be adjusted.
  • the adjusting according to the value relationship between the load balancing value of the current period and the preceding period of the serving cell and the current load balancing execution threshold of the serving cell, adjusting the current load balancing execution threshold of the serving cell, including: The current period of the cell and the load balancing value of the previous N period are smaller than the current load balancing execution threshold of the serving cell, and it is determined whether the number of statistics exceeds a preset threshold; if it is determined that the number of statistics exceeds If the threshold value is preset, the current load balancing execution threshold of the serving cell is adjusted downwardly; if it is determined that the number of statistics does not exceed the preset threshold, the current period and the current serving cell are determined.
  • FIG. 3 is a schematic diagram of a device for performing load balancing execution threshold adjustment according to an embodiment of the present invention. As shown in FIG. 3, the method includes: an obtaining module 301, configured to acquire a load balancing value of a current period of a serving cell and a current period of a neighboring neighboring cell.
  • the load balancing value; the determining module 302 is configured to determine whether the current load balancing execution threshold of the serving cell needs to be adjusted by using the load balancing value of the current period of the serving cell and the load balancing value of the current period of the same coverage neighboring cell
  • the adjusting module 303 is configured to: when determining that the current load balancing execution threshold of the serving cell needs to be adjusted, according to the numerical relationship between the current period of the serving cell and the load balancing value of the preceding period and the current load balancing threshold of the serving cell, Adjusting the current load balancing execution threshold of the serving cell.
  • the determining module 302 includes: a comparing unit, configured to compare a current load balancing execution threshold value of the serving cell with a load balancing value of a current period of the serving cell; and a first determining unit, configured to If the current load balancing execution threshold value of the serving cell is greater than or equal to the current load balancing value of the current period of the serving cell, determining whether the load balancing value of the current period of the serving cell is greater than a load balancing value of the current period of the same coverage neighboring cell And determining that the current load balancing execution threshold of the serving cell needs to be adjusted when determining that the load balancing value of the current period of the serving cell is greater than the current balancing value of the current period of the same coverage neighboring cell.
  • the adjusting module 303 includes: a first adjusting unit, configured to determine, according to the current period of the serving cell and the load balancing value of the first N periods, the number of the current load balancing execution threshold of the serving cell, and determine the statistics. Whether the number of the number exceeds the preset number of thresholds, and if it is determined that the number of statistics exceeds the preset number of thresholds, the current load balancing execution threshold of the serving cell is adjusted upwardly, and if the statistics are determined If the number of presets does not exceed the preset threshold, it is determined whether the current period of the serving cell and the load balance value of the previous M periods are all greater than the current load balancing execution threshold of the serving cell, and if the current period of the serving cell is determined If the load balancing values of the M cycles are all greater than the current load balancing execution threshold of the serving cell, the current load balancing execution threshold of the serving cell is adjusted upward; wherein, the M and N are positive integers; N.
  • the determining module 302 includes: a comparing unit, configured to compare a current load balancing execution threshold value of the serving cell with a load balancing value of a current period of the serving cell; and a second determining unit, configured to: If the current load balancing execution threshold value of the serving cell is smaller than the current load balancing value of the current period of the serving cell, determining whether the load balancing value of the current period of the serving cell is smaller than a load balancing value of the current period of the same coverage neighboring cell, and when If it is determined that the load balancing value of the current period of the serving cell is smaller than the current load balancing value of the current coverage neighboring cell, the current load balancing execution threshold of the serving cell needs to be adjusted.
  • the adjusting module 303 includes: a second adjusting unit, configured to determine, by counting the current period of the serving cell and the load balancing value of the previous N period, less than the current load balancing execution threshold of the serving cell, and determining the statistics. Whether the number exceeds a preset number of thresholds, and if it is determined that the number of statistics exceeds a preset number of thresholds, the current load balancing execution threshold value of the serving cell is adjusted downwardly, and if the statistics are determined If the number does not exceed the preset threshold, it is determined whether the current period of the serving cell and the load balance value of the previous M periods are all smaller than the current load balancing execution threshold of the serving cell, and if the current period of the serving cell and the previous M are determined If the load balancing value of each period is less than the current load balancing execution threshold of the serving cell, the current load balancing execution threshold of the serving cell is adjusted downward; wherein, M and N are positive integers; M ⁇ N .
  • the obtaining module 301, the determining module 302, and the adjusting module 303 described in the text are all disposed in the base station.
  • An embodiment of the present invention further provides an electronic device for performing load balancing execution threshold adjustment, where the electronic device includes: a processor and a memory, wherein the memory is used to store executable program code; Executing program code stored in the memory to execute a program corresponding to the executable program code for performing the following steps:
  • the value relationship between the load balancing value of the current period and the current period and the current load balancing execution threshold value of the serving cell adjusts the current load balancing execution threshold of the serving cell.
  • FIG. 4 is a flowchart of load balancing execution threshold adjustment according to an embodiment of the present invention, as shown in FIG. 4, including:
  • step (2) Comparing the current load balancing execution threshold D of the serving cell with the load balancing ⁇ of the current period of the serving cell. If D is greater than or equal to ⁇ , step (2) is performed, otherwise step (3) is performed;
  • step (4) comparing the ⁇ value of the serving cell and the ⁇ value of the same coverage neighboring area, if the serving cell ⁇ value is greater than the neighboring area ⁇ value, performing step (4), otherwise performing step (12);
  • step (3) comparing the ⁇ value of the serving cell and the ⁇ value of the same coverage neighboring area, if the serving cell ⁇ value is smaller than the neighboring area ⁇ value, performing step (5), otherwise performing step (12);
  • the current load balancing execution threshold of the serving cell is reduced by ⁇ D.
  • step (12) comparing the cell-adapted equalization execution threshold D1 and the current busy-time load average ⁇ of the cell, and D1 is less than ⁇ , then step (12) is performed, otherwise step (2) is performed;
  • step (12) comparing the cell-adapted equalization execution threshold D1 and the current busy-time load average value ⁇ of the cell, where D1 is greater than ⁇ , step (12) is performed, otherwise step (3) is performed;
  • the D is the load balancing execution threshold of the base station or the cell, and the value is 1% to 100%. When the base station load is higher than this execution threshold, the equalization function can be started.
  • the ⁇ refers to the mean value of the busy hour period load of the cell, and generally takes the average value of the 15-minute granular load index of 8 to 10 hours or 16 to 18 degrees later. The value range is 1% to 100%. A cycle is generally one day.
  • the D1 refers to an adaptively adjusted load balancing execution threshold, which is numerically equal to the addition or subtraction of the current load balancing execution thresholds D and ⁇ D.
  • the ⁇ D is an adaptive increment of the equalization execution threshold, and the value ranges from 1% to 10%, and the default is 5%.
  • the embodiment of the present invention by comparing the load of the serving cell with the current equalization execution threshold and the load of the coverage neighboring area, it is determined whether the threshold needs to be changed, and then the current comparison is used to confirm the current The execution threshold does not match the base station load, and then the required threshold is adjusted for the execution threshold, eventually matching the load to the execution threshold.
  • the technical solution provided by the embodiment of the present invention can be applied to the field of load balancing technology.
  • the base station when the base station load does not match the equalization execution threshold, the base station automatically adjusts the equalization threshold to match the changed load, thereby achieving the load of balancing the high-load cell and the surrounding coverage cell.
  • the purpose is to improve network utilization while improving the user experience.

Landscapes

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

Abstract

本公开涉及一种负荷均衡执行门限调整的方法及装置和电子设备,涉及负荷均衡技术领域,其方法包括:获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;若判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。

Description

一种负荷均衡执行门限调整的方法及装置终端 技术领域
本公开涉及负荷均衡技术领域,特别涉及一种负荷均衡执行门限调整的方法及装置和计算机存储介质。
背景技术
负荷均衡根据服务小区和其邻区负荷状态合理部署小区运行流量,平衡系统内小区间、频率间以及其它无线接入技术之间的负荷,从而可以有效地使用系统资源,以提高用户感知和系统的稳定性。
负荷均衡功能包括了连接态负荷均衡及驻留态负荷均衡两部分,连接态负荷均衡主要针对连接态用户,通过切换的方式执行;驻留态负荷均衡主要针对连接态转空闲态用户,通过重选(改变重选优先级)的方式执行。
如附图1所示,当前现网中的负荷均衡功能打开后,负荷均衡模块将获取的服务小区及其邻区的负荷信息,并且负荷均衡功能的触发需要满足下面两个条件;
1、当负荷均衡周期(wLBPeriod)到达,服务小区激活UE数大于1,执行下一步。否则,等待下一个负荷均衡周期开始;
2、如果下述两个条件均满足,则负荷均衡功能向下一步执行。否则,等待下一个负荷均衡周期开始。
a)比服务小区负荷高的邻区个数是否小于ucAllowHLNbrNum(允许负荷高于服务小区负荷的邻区个数),目的是为了避免同一区域多个小区同时触发负荷均衡往低负荷小区迁移用户,导致低负荷小区也容易过负荷;
b)服务小区的上行或下行无线负荷大于等于负荷均衡执行门限ucUlPRBLBExeThrdZ(上行无线负荷均衡执行门限)或ucDlPRBLBExeThrdZ(下行无线负荷均衡执行门限)。
负荷均衡功能的触发,需要服务小区的负荷达到设定的执行门限。即小区负荷在均衡周期内的负荷值高于我们定义的高负荷门限后,功能触发。而商用现网中小区的负荷高低,除了与业务模型相关外,还与移动终端用户的分布和行为习惯密切相关。比如高校,上课的时间覆盖教学楼的基站负荷高,下课时间覆盖宿舍的基站负荷极高。而在寒暑假期间,则整个高校区域的基站负荷都大幅度下滑。类似的情况还发生在商场、购物中心、体育场、写字楼、某些空地和广场等等。
网络和基站的负荷高低,或者呈现周期的变化,或者呈现随机的变化。而随机变化是不可预知的。同一个区域在本周本月可能是高负荷区域,而在下周下月则可能是低负荷区域,反之亦然。基站的负荷均衡功能的执行门限,无法适应网络负荷变化后 的均衡需要。
发明内容
根据本发明实施例提供的方案解决的技术问题是在目前的商用网络中基站负荷产生变化,原先设定的负荷均衡功能执行门限不能匹配变化后的负荷,导致影响均衡功能的执行。
根据本发明实施例提供的一种负荷均衡执行门限调整的方法,包括:
获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
若判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
根据一个示例性实施例,所述利用所述服务小区当前周期的负荷均衡值以及所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整包括:
将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
若所述服务小区当前负荷均衡执行门限值大于或等于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否大于所述同覆盖邻区当前周期的负荷均衡值;
若判断所述服务小区当前周期的负荷均衡值大于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
根据一个示例性实施例,所述根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整包括:
通过统计服务小区当前周期及在前N个周期的负荷均衡值中大于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值;
若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;
若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部大于服务小区当前负荷均衡执行门限值;
若确定服务小区当前周期及在前M个周期的负荷均衡值全部大于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;
其中,所述M和N均为正整数;M<N。
根据一个示例性实施例,所述利用所述服务小区当前周期的负荷均衡值以及所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整包括:
将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
若所述服务小区当前负荷均衡执行门限值小于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否小于所述同覆盖邻区当前周期的负荷均衡值;
若判断所述服务小区当前周期的负荷均衡值小于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
根据一个示例性实施例,所述根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整包括:
通过统计服务小区当前周期及在前N周期的负荷均衡值中小于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值;
若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;
若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部小于服务小区当前负荷均衡执行门限值;
若确定服务小区当前周期及在前M个周期的负荷均衡值全部小于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;
其中,所述M和N均为正整数;M<N。
根据本发明实施例提供的一种负荷均衡执行门限调整的装置,包括:
获取模块,用于获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
判断模块,用于利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
调整模块,用于当判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
根据一个示例性实施例,所述判断模块包括:
比较单元,用于将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
第一判断单元,用于当所述服务小区当前负荷均衡执行门限值大于或等于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否大于 所述同覆盖邻区当前周期的负荷均衡值,以及当判断所述服务小区当前周期的负荷均衡值大于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
根据一个示例性实施例,所述调整模块包括:
第一调整单元,用于通过统计服务小区当前周期及在前N个周期的负荷均衡值中大于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值,若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整,以及若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部大于服务小区当前负荷均衡执行门限值,若确定服务小区当前周期及在前M个周期的负荷均衡值全部大于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;
其中,所述M和N均为正整数;M<N。
根据一个示例性实施例,所述判断模块包括:
比较单元,用于将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
第二判断单元,用于当所述服务小区当前负荷均衡执行门限值小于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否小于所述同覆盖邻区当前周期的负荷均衡值,以及当判断所述服务小区当前周期的负荷均衡值小于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
根据一个示例性实施例,所述调整模块包括:
第二调整单元,用于通过统计服务小区当前周期及在前N周期的负荷均衡值中小于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值,若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整,以及若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部小于服务小区当前负荷均衡执行门限值,若确定服务小区当前周期及在前M个周期的负荷均衡值全部小于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;
其中,所述M和N均为正整数;M<N。
本发明实施例还提供一种负荷均衡执行门限调整的电子设备,其中,所述电子设备包括:处理器和存储器,其中,所述存储器设置为存储可执行程序代码;所述处理器通过读取所述存储器中存储的可执行程序代码来运行与可执行程序代码对应的程序,以用于执行上述负荷均衡执行门限调整的方法。
本发明实施例还提供一种计算机存储介质,所述计算机存储介质中存储有计算机可执行的一个或多个程序,所述一个或多个程序被所述计算机执行时使所述计算机执行上述的负荷均衡执行门限调整的方法。
根据本发明实施例提供的方案,当基站负荷与均衡执行门限不匹配的情况出现,基站会自动调整均衡门限去匹配变化后的负荷,从而达到均衡高负荷小区和周边同覆盖小区的负荷的目的,提高网络利用率的同时提高了用户体验。
附图说明
图1是现有技术提供的负荷均衡技术示意图;
图2是本发明实施例提供的一种负荷均衡执行门限调整的方法流程图;
图3是本发明实施例提供的一种负荷均衡执行门限调整的装置示意图;
图4是本发明实施例提供的负荷均衡执行门限调整流程图。
具体实施方式
以下结合附图对本发明的优选实施例进行详细说明,应当理解,以下所说明的优选实施例仅用于说明和解释本发明,并不用于限定本发明。
图2是本发明实施例提供的一种负荷均衡执行门限调整的方法流程图,如图2所示,包括:
步骤S201:获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
通过分别对服务小区和同覆盖邻区的当前周期的负荷进行监测,获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值。
步骤S202:利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
步骤S203:若判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
其中,所述利用所述服务小区当前周期的负荷均衡值以及所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整包括:将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;若所述服务小区当前负荷均衡执行门限值大于或等于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否大于所述同覆盖邻区当前周期的负荷均衡值;若判断所述服务小区当前周期的负荷均衡值大于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
其中,所述根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷 均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整包括:通过统计服务小区当前周期及在前N个周期的负荷均衡值中大于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值;若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部大于服务小区当前负荷均衡执行门限值;若确定服务小区当前周期及在前M个周期的负荷均衡值全部大于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;其中,所述M和N均为正整数;M<N。
其中,所述利用所述服务小区当前周期的负荷均衡值以及所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整包括:将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;若所述服务小区当前负荷均衡执行门限值小于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否小于所述同覆盖邻区当前周期的负荷均衡值;若判断所述服务小区当前周期的负荷均衡值小于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
其中,所述根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整包括:通过统计服务小区当前周期及在前N周期的负荷均衡值中小于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值;若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部小于服务小区当前负荷均衡执行门限值;若确定服务小区当前周期及在前M个周期的负荷均衡值全部小于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;其中,所述M和N均为正整数;M<N。
图3是本发明实施例提供的一种负荷均衡执行门限调整的装置示意图,如图3所示,包括:获取模块301,用于获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;判断模块302,用于利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;调整模块303,用于当判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
其中,所述判断模块302包括:比较单元,用于将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;第一判断单元,用于当所 述服务小区当前负荷均衡执行门限值大于或等于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否大于所述同覆盖邻区当前周期的负荷均衡值,以及当判断所述服务小区当前周期的负荷均衡值大于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
其中,所述调整模块303包括:第一调整单元,用于通过统计服务小区当前周期及在前N个周期的负荷均衡值中大于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值,若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整,以及若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部大于服务小区当前负荷均衡执行门限值,若确定服务小区当前周期及在前M个周期的负荷均衡值全部大于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;其中,所述M和N均为正整数;M<N。
其中,所述判断模块302包括:比较单元,用于将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;第二判断单元,用于当所述服务小区当前负荷均衡执行门限值小于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否小于所述同覆盖邻区当前周期的负荷均衡值,以及当判断所述服务小区当前周期的负荷均衡值小于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
其中,所述调整模块303包括:第二调整单元,用于通过统计服务小区当前周期及在前N周期的负荷均衡值中小于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值,若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整,以及若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部小于服务小区当前负荷均衡执行门限值,若确定服务小区当前周期及在前M个周期的负荷均衡值全部小于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;其中,所述M和N均为正整数;M<N。
文中所述的获取模块301、判断模块302以及调整模块303均设置在基站中。
本发明实施例还提供了一种负荷均衡执行门限调整的电子设备,所述电子设备包括:处理器和存储器,其中,所述存储器用于存储可执行程序代码;所述处理器通过读取所述存储器中存储的可执行程序代码来运行与可执行程序代码对应的程序,以用于执行以下步骤:
获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
若判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周 期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
图4是本发明实施例提供的负荷均衡执行门限调整流程图,如图4所示,包括:
(1)将服务小区当前负荷均衡执行门限D与服务小区当前周期的负荷均衡β进行比较。若D大于或等于β,则执行步骤(2),否则执行步骤(3);
(2)比较服务小区β值和同覆盖邻区的β值,若服务小区β值大于邻区β值则执行步骤(4),否则执行步骤(12);
(3)比较服务小区β值和同覆盖邻区的β值,若服务小区β值小于邻区β值则执行步骤(5),否则执行步骤(12);
(4)计算服务小区前7个周期(包括当前周期)的β值大于D的个数,若此数值大于等于4,是则执行(6),否则执行(7);
(5)计算服务小区前7个周期(包括当前周期)的β值小于D的个数,此数值大于等于4,是则执行(8),否则执行(9);
(6)将服务小区的当前负荷均衡执行门限加△D。之后的负荷均衡执行门限D1取加上△D后的值,即D1=D+△D。然后执行步骤(10);
(7)计算服务小区前3个周期(包括当前周期)的β值大于D的个数,此数值等于3,是则执行(6),否则执行(12);
(8)将服务小区的当前负荷均衡执行门限减△D。之后的负荷均衡执行门限D1取减去△D后的值,即D1=D-△D。然后执行步骤(11);
(9)计算服务小区前3个周期(包括当前周期)的β值小于D的个数,此数值等于3,是则执行(8),否则执行(12);
(10)比较小区自适应后的均衡执行门限D1和小区当前的忙时负荷均值β,D1小于β则执行步骤(12),否则执行步骤(2);
(11)比较小区自适应后的均衡执行门限D1和小区当前的忙时负荷均值β,D1大于β则执行步骤(12),否则执行步骤(3);
(12)流程结束,等待下一周期流程开始。
其中,所述D是指本基站或小区的负荷均衡执行门限,取值1%~100%。当基站负荷高于此执行门限,均衡功能才能启动。
所述β是指小区的忙时周期负荷均值,一般取早8~10时或者晚16~18时的15分钟粒度负荷指标的平均值。取值区间1%~100%。一个周期一般为一天。
所述D1是指自适应调整后的负荷均衡执行门限,在数值上等于当前的负荷均衡执行门限D和△D的相加或者相减。
所述△D是指均衡执行门限的自适应增量,取值范围1%~10%,默认5%。
根据本发明实施例提供的方案,通过服务小区的负荷和当前均衡执行门限以及同覆盖邻区的负荷进行比较,判断是否需要更改门限,然后通过周期性对比,确认当前 执行门限不匹配基站负荷,然后对执行门限进行所需方面的调整,最终使负荷与执行门限匹配。
尽管上文对本发明进行了详细说明,但是本发明不限于此,本技术领域技术人员可以根据本发明的原理进行各种修改。因此,凡按照本发明原理所作的修改,都应当理解为落入本发明的保护范围。
工业实用性
本发明实施例提供的技术方案可以应用于负荷均衡技术领域。在本发明实施例提供的技术方案中,当基站负荷与均衡执行门限不匹配的情况出现,基站会自动调整均衡门限去匹配变化后的负荷,从而达到均衡高负荷小区和周边同覆盖小区的负荷的目的,提高网络利用率的同时提高了用户体验。

Claims (12)

  1. 一种负荷均衡执行门限调整的方法,包括:
    获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
    利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
    若判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
  2. 根据权利要求1所述的方法,其中,所述利用所述服务小区当前周期的负荷均衡值以及所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整包括:
    将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
    若所述服务小区当前负荷均衡执行门限值大于或等于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否大于所述同覆盖邻区当前周期的负荷均衡值;
    若判断所述服务小区当前周期的负荷均衡值大于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
  3. 根据权利要求2所述的方法,其中,所述根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整包括:
    通过统计服务小区当前周期及在前N个周期的负荷均衡值中大于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值;
    若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;
    若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部大于服务小区当前负荷均衡执行门限值;
    若确定服务小区当前周期及在前M个周期的负荷均衡值全部大于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;
    其中,所述M和N均为正整数;M<N。
  4. 根据权利要求1所述的方法,其中,所述利用所述服务小区当前周期的负荷均衡值以及所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整包括:
    将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
    若所述服务小区当前负荷均衡执行门限值小于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否小于所述同覆盖邻区当前周期的负荷均衡值;
    若判断所述服务小区当前周期的负荷均衡值小于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
  5. 根据权利要求4所述的方法,其中,所述根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整包括:
    通过统计服务小区当前周期及在前N周期的负荷均衡值中小于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值;
    若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;
    若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部小于服务小区当前负荷均衡执行门限值;
    若确定服务小区当前周期及在前M个周期的负荷均衡值全部小于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;
    其中,所述M和N均为正整数;M<N。
  6. 一种负荷均衡执行门限调整的装置,包括:
    获取模块,设置为获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
    判断模块,设置为利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
    调整模块,设置为当判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对所述服务小区当前负荷均衡执行门限值进行调整。
  7. 根据权利要求6所述的装置,其中,所述判断模块包括:
    比较单元,设置为将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
    第一判断单元,设置为当所述服务小区当前负荷均衡执行门限值大于或等于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否大于所述同覆盖邻区当前周期的负荷均衡值,以及当判断所述服务小区当前周期的负荷均衡值大于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
  8. 根据权利要求7所述的装置,其中,所述调整模块包括:
    第一调整单元,设置为通过统计服务小区当前周期及在前N个周期的负荷均衡 值中大于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值,若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整,以及若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部大于服务小区当前负荷均衡执行门限值,若确定服务小区当前周期及在前M个周期的负荷均衡值全部大于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行上调调整;
    其中,所述M和N均为正整数;M<N。
  9. 根据权利要求6所述的装置,其中,所述判断模块包括:
    比较单元,设置为将所述服务小区当前负荷均衡执行门限值与所述服务小区当前周期的负荷均衡值进行比较;
    第二判断单元,设置为当所述服务小区当前负荷均衡执行门限值小于所述服务小区当前周期的负荷均衡值,则判断所述服务小区当前周期的负荷均衡值是否小于所述同覆盖邻区当前周期的负荷均衡值,以及当判断所述服务小区当前周期的负荷均衡值小于所述同覆盖邻区当前周期的负荷均衡值,则判断服务小区当前负荷均衡执行门限值需要进行调整。
  10. 根据权利要求9所述的装置,其中,所述调整模块包括:
    第二调整单元,设置为通过统计服务小区当前周期及在前N周期的负荷均衡值中小于服务小区当前负荷均衡执行门限值的个数,判断所统计的个数是否超过预置个数门限值,若判断所统计个数超过预置个数门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整,以及若判断所统计个数未超过预置个数门限值,则确定服务小区当前周期及在前M个周期的负荷均衡值是否全部小于服务小区当前负荷均衡执行门限值,若确定服务小区当前周期及在前M个周期的负荷均衡值全部小于服务小区当前负荷均衡执行门限值,则对所述服务小区当前负荷均衡执行门限值进行下调调整;
    其中,所述M和N均为正整数;M<N。
  11. 一种负荷均衡执行门限调整的电子设备,其中,所述电子设备包括:处理器和存储器,其中,所述存储器设置为存储可执行程序代码;所述处理器通过读取所述存储器中存储的可执行程序代码来运行与可执行程序代码对应的程序,以用于执行以下步骤:
    获取服务小区当前周期的负荷均衡值和同覆盖邻区当前周期的负荷均衡值;
    利用所述服务小区当前周期的负荷均衡值和所述同覆盖邻区当前周期的负荷均衡值,判断服务小区当前负荷均衡执行门限值是否需要进行调整;
    若判断服务小区当前负荷均衡执行门限值需要进行调整,则根据服务小区当前周期及在前周期的负荷均衡值与服务小区当前负荷均衡执行门限值的数值关系,对 所述服务小区当前负荷均衡执行门限值进行调整。
  12. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行的一个或多个程序,所述一个或多个程序被所述计算机执行时使所述计算机执行如根据权利要求1-5中任一项所述的负荷均衡执行门限调整的方法。
PCT/CN2017/106868 2017-04-24 2017-10-19 一种负荷均衡执行门限调整的方法及装置终端 WO2018196297A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201710270149.5A CN108738076B (zh) 2017-04-24 2017-04-24 一种负荷均衡执行门限调整的方法及装置
CN201710270149.5 2017-04-24

Publications (1)

Publication Number Publication Date
WO2018196297A1 true WO2018196297A1 (zh) 2018-11-01

Family

ID=63919433

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/106868 WO2018196297A1 (zh) 2017-04-24 2017-10-19 一种负荷均衡执行门限调整的方法及装置终端

Country Status (2)

Country Link
CN (1) CN108738076B (zh)
WO (1) WO2018196297A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113923670A (zh) * 2020-07-10 2022-01-11 中国移动通信集团重庆有限公司 无线网络载频均衡程度识别方法、装置及计算设备
CN113973339A (zh) * 2020-07-10 2022-01-25 中国移动通信集团重庆有限公司 4g小区和5g小区的负荷协同方法、设备及计算机存储介质

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110784893B (zh) * 2019-11-07 2022-11-29 中国联合网络通信集团有限公司 多载波负荷均衡的方法、装置、核心网设备和存储介质

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007092687A2 (en) * 2006-02-08 2007-08-16 Motorola, Inc. Load control in a cellular communication system
CN102469517A (zh) * 2010-11-09 2012-05-23 中兴通讯股份有限公司 一种小区间驻留负荷均衡的方法及装置
CN102572948A (zh) * 2010-12-23 2012-07-11 中兴通讯股份有限公司 一种优化负荷均衡的方法和装置
CN103889001A (zh) * 2014-03-13 2014-06-25 南京邮电大学 一种基于未来负载预测的自适应负载均衡方法
CN104284369A (zh) * 2013-07-04 2015-01-14 上海无线通信研究中心 一种半分布式联合接纳控制方法及系统

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101965012B (zh) * 2009-07-22 2014-08-13 中兴通讯股份有限公司 一种负荷均衡的方法和装置
CN101742565B (zh) * 2009-12-11 2012-03-28 北京北方烽火科技有限公司 一种lte移动通信网络中小区间负载均衡方法
CN106412994B (zh) * 2015-08-14 2020-02-18 中国电信股份有限公司 一种移动负载均衡方法、装置及基站

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007092687A2 (en) * 2006-02-08 2007-08-16 Motorola, Inc. Load control in a cellular communication system
CN102469517A (zh) * 2010-11-09 2012-05-23 中兴通讯股份有限公司 一种小区间驻留负荷均衡的方法及装置
CN102572948A (zh) * 2010-12-23 2012-07-11 中兴通讯股份有限公司 一种优化负荷均衡的方法和装置
CN104284369A (zh) * 2013-07-04 2015-01-14 上海无线通信研究中心 一种半分布式联合接纳控制方法及系统
CN103889001A (zh) * 2014-03-13 2014-06-25 南京邮电大学 一种基于未来负载预测的自适应负载均衡方法

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113923670A (zh) * 2020-07-10 2022-01-11 中国移动通信集团重庆有限公司 无线网络载频均衡程度识别方法、装置及计算设备
CN113973339A (zh) * 2020-07-10 2022-01-25 中国移动通信集团重庆有限公司 4g小区和5g小区的负荷协同方法、设备及计算机存储介质
CN113973339B (zh) * 2020-07-10 2023-04-18 中国移动通信集团重庆有限公司 4g小区和5g小区的负荷协同方法、设备及计算机存储介质

Also Published As

Publication number Publication date
CN108738076A (zh) 2018-11-02
CN108738076B (zh) 2021-09-21

Similar Documents

Publication Publication Date Title
US9525960B2 (en) System and method for improving network access in machine to machine communication
RU2619596C2 (ru) Способ и устройство для регулировки мощности сигнала маршрутизатора
WO2018196297A1 (zh) 一种负荷均衡执行门限调整的方法及装置终端
CN113597799B (zh) 用于调整波束赋形简档的设备、方法和计算机可读介质
CN105451241B (zh) 异构网中基于干扰协调的最大最小公平性资源分配方法
CN111328084B (zh) 一种小区容量的评估方法及装置
CN101754377A (zh) 一种小区上下行子帧自适应配置方法
WO2018028537A1 (zh) 接入控制方法及装置、系统
CN110677854A (zh) 载频容量调整的方法、装置、设备和介质
KR20150089059A (ko) 올모스트 블랭크 서브프레임을 구성하기 위한 디바이스 및 방법과, 이종 무선 통신 네트워크
CN102333346B (zh) 一种移动通信系统中的负荷均衡方法和系统
Gao et al. A mobility load balancing algorithm based on handover optimization in LTE network
CN111182604A (zh) 一种lte无线网络负荷智能均衡方法及系统
CN109982375B (zh) 一种服务小区的负荷均衡调整方法及装置
CN104363660B (zh) 一种网络资源配置方法及装置
CN104378785A (zh) 一种微小区的上下行子帧重配置方法和装置
WO2023241041A1 (zh) 小区间的干扰协调方法、设备及存储介质
CN115002884B (zh) 一种面向无蜂窝网络的接入点关断方法及装置
WO2015135315A1 (zh) 一种调整业务传输的方法和装置
US20140286166A1 (en) Method and Device for Loading Read Content
CN108260166B (zh) 一种负载均衡方法及装置
CN113766523B (zh) 服务小区的网络资源利用率预测方法、装置及电子设备
Abdulkafi et al. Energy‐aware load adaptive framework for LTE heterogeneous network
CN112954808A (zh) 载波资源调整方法、装置、存储介质和计算机设备
CN105578530A (zh) 流量控制方法、装置及基站

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: 17907569

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

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

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 01/07/2020)

122 Ep: pct application non-entry in european phase

Ref document number: 17907569

Country of ref document: EP

Kind code of ref document: A1