WO2015161613A1 - 自组织网络功能协调方法、设备及存储介质 - Google Patents

自组织网络功能协调方法、设备及存储介质 Download PDF

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Publication number
WO2015161613A1
WO2015161613A1 PCT/CN2014/086318 CN2014086318W WO2015161613A1 WO 2015161613 A1 WO2015161613 A1 WO 2015161613A1 CN 2014086318 W CN2014086318 W CN 2014086318W WO 2015161613 A1 WO2015161613 A1 WO 2015161613A1
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Prior art keywords
load balancing
energy saving
balancing optimization
threshold
function parameter
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PCT/CN2014/086318
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English (en)
French (fr)
Inventor
祝伟宏
陈丽萍
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中兴通讯股份有限公司
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Publication of WO2015161613A1 publication Critical patent/WO2015161613A1/zh

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    • 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
    • H04W28/0883Load balancing or load distribution between entities in ad-hoc networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to a management technology of a wireless communication system, and in particular, to a self-organizing network function coordination method, a network management device, a network element device, and a storage medium.
  • the device is generally managed in a layered manner; the system for managing the device includes a network management system (NMS) and an equipment management system (EMS);
  • NMS network management system
  • EMS equipment management system
  • NMS is used to implement the function of the Network Management Layer (NML) in the Telecommunication Management Network of the International Telecommunication Union. It is responsible for managing all network elements in a managed network; EMS is used to implement the Telecommunication Management Network of the International Telecommunication Union.
  • the function of the Equipment Management Layer (EML) is responsible for managing one or a plurality of mobile communication devices from the same device provider; the NMS interacts with the EMS through the northbound interface.
  • routine maintenance of the mobile communication system is required; the daily maintenance work of the mobile communication system consumes a large amount of manpower, physics, and financial resources of the operator; in order to reduce maintenance costs, reduce manual participation, and accelerate failures Speed is solved, and automatic processing technology is added when managing the mobile communication system.
  • SON Self-Organizing Network
  • LTE Long-Term Evolution
  • SON can implement functions such as self-configuration, self-optimization, self-healing, and energy saving; among them, self-optimization includes : Automatic neighborhood optimization, load balancing optimization, capacity and coverage optimization.
  • SON operation it is necessary to automatically perform parameter modification, switch some functions or components, etc. SON operation; however, on the one hand, when multiple SON functions are executed at the same time, multiple SON functions may need to be modified to modify the same network.
  • the same parameter of the meta, and not The same SON function is prepared to modify the parameter values are different.
  • the SON operation conflict occurs, that is, it is not determined which SON function is modified by the parameter value for parameter modification. Therefore, it is necessary to perform each SON function performed. Coordination; on the other hand, when multiple SON functions are executed at the same time, it may happen that when a SON function is executed in an appropriate state, other SON functions can perform better; for example, energy saving function and load balancing optimization function are simultaneously executed. When the parameter settings of the load balancing optimization function are set properly, the energy saving efficiency can be further improved; therefore, the performed SON functions, such as the energy saving function and the load balancing optimization function, need to be coordinated.
  • the coordination of the SON functions is based on the case where the SON operation conflicts when the SON function is executed; however, there is no solution for coordinating the SON function in order to promote better cooperation between the SON functions.
  • embodiments of the present invention are directed to providing a self-organizing network function coordination method, a network management device, a network element device, and a storage medium, which can optimize energy-saving functions and load balancing by optimizing energy-saving functions and load balancing optimization functions.
  • the functions cooperate with each other to prolong the time when the cell is in a state of energy saving, thereby improving the energy saving effect.
  • the embodiment of the invention provides a method for coordinating the function of the self-organizing network, comprising: obtaining, by the network management device, a load balancing optimization function parameter and a power saving function parameter; determining whether the acquired load balancing optimization function parameter and the energy saving function parameter match, determining that the matching does not match
  • the energy-saving function is executed according to the latest energy-saving function parameters.
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function; and the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • the determining whether the acquired load balancing optimization function parameter matches the energy saving function parameter comprises: for the same cell, the exiting energy saving threshold is less than the starting load balancing optimization threshold When the value, and/or the exit energy-saving load duration threshold is less than the start-up time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy-saving function parameter.
  • the modifying the energy saving function parameter and/or the load balancing optimization function parameter comprises: the network management device sets the exiting energy saving threshold or starting the load balancing optimization threshold to a larger value of the two; setting the exiting energy saving load to continue The time threshold is such that the exiting energy-saving load duration threshold is greater than or equal to the effective time of the load balancing optimization function;
  • the network management device sends a prompt message, where the administrator modifies the energy-saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting the exit energy-saving threshold or starting the load balancing optimization threshold The larger of the two; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function's effective time.
  • the embodiment of the present invention further provides a network management device, where the network management device includes: a first acquiring module, a first determining module, a first parameter modifying module, and a first energy saving function module;
  • the first obtaining module is configured to obtain a load balancing optimization function parameter and an energy saving function parameter
  • the first determining module is configured to determine whether the load balancing optimization function parameter acquired by the first acquiring module matches the energy saving function parameter;
  • the first parameter modification module is configured to modify the energy saving function parameter and/or the load balancing optimization function parameter when the first determining module determines that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the first energy saving function module is configured to perform an energy saving function according to the latest energy saving function parameter.
  • the load balancing optimization function parameter acquired by the first acquiring module includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy-saving function parameters acquired by the first acquiring module include: exiting the energy-saving threshold and exiting the energy-saving load duration threshold.
  • the first determining module determines whether the load balancing optimization function parameter acquired by the first acquiring module matches the energy saving function parameter, including:
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • the first parameter modification module modifies the energy saving function parameter and/or the load balancing optimization function parameter, and the first parameter modification module sets the exit energy saving threshold or the startup load balancing optimization threshold to be a larger one of the two. Value; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load-balancing optimization function;
  • the first parameter modification module sends a prompt message, and the administrator modifies the energy saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting an exit energy saving threshold or starting load balancing optimization The threshold is the larger of the two; setting the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function.
  • An embodiment of the present invention provides another self-organizing network function coordination method, including: acquiring, by a network element device, a load balancing optimization function parameter and a power saving function parameter; determining whether the acquired load balancing optimization function parameter and the energy saving function parameter match, determining whether When matching, modify the energy-saving function parameters, and/or load balancing optimization function parameters; perform load balancing optimization function and energy-saving function according to the latest load balancing optimization function parameters and energy-saving function parameters.
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function; and the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • the determining the acquired load balancing optimization function parameter and the energy saving function parameter Whether the matching, including: for the same cell, the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, determining that the load balancing optimization function parameter and the energy saving function parameter are not match.
  • the network element device modifies the energy saving function parameter and/or the load balancing optimization function parameter, and the method includes: the network element device sets the exit energy saving threshold or starts the load balancing optimization threshold to a larger value of the two;
  • the energy-saving load duration threshold is such that the exit energy-saving load duration threshold is greater than or equal to the start-up time of the load balancing optimization function.
  • the embodiment of the present invention further provides a network element device, where the network element device includes: a second acquiring module, a second determining module, a second parameter modifying module, a first load balancing optimization function module, and a second energy saving function module; ,
  • the second obtaining module is configured to obtain a load balancing optimization function parameter and an energy saving function parameter
  • the second determining module is configured to determine whether the load balancing optimization function parameter acquired by the second acquiring module matches the energy saving function parameter;
  • the second parameter modification module is configured to modify the energy saving function parameter and/or the load balancing optimization function parameter when the second determining module determines that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the first load balancing optimization function module is configured to perform a load balancing optimization function according to a latest load balancing optimization function parameter
  • the second energy saving function module is configured to perform an energy saving function according to the latest energy saving function parameter.
  • the load balancing optimization function parameter acquired by the second acquiring module includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function; and the energy saving function parameters acquired by the second acquiring module include: exiting the energy saving threshold and Exit the energy-saving load duration threshold.
  • the second determining module determines that the second obtaining module obtains load balancing optimization Whether the function parameter matches the energy-saving function parameter, including: determining, for the same cell, the load balancing optimization function when the exit energy-saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy-saving load duration threshold is less than the startup time of the load balancing optimization function
  • the parameters do not match the energy saving function parameters.
  • the second parameter modification module modifies the energy saving function parameter and/or the load balancing optimization function parameter, and the second parameter modification module sets the exit energy saving threshold or the startup load balancing optimization threshold to be the larger of the two. Value; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load-balancing optimization function's effective time.
  • the embodiment of the invention provides another self-organizing network function coordination method, which comprises: the network management device acquiring the load balancing optimization function parameter and the energy saving function parameter;
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function; and the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • the determining whether the acquired load balancing optimization function parameter matches the energy saving function parameter comprises: for the same cell, the exiting energy saving threshold is less than the starting load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the load balancing When the start time of the function is optimized, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • the modifying the energy saving function parameter and/or the load balancing optimization function parameter comprises: the network management device sets the exiting energy saving threshold or starting the load balancing optimization threshold to a larger value of the two; setting the exiting energy saving load to continue The time threshold is such that the exiting energy-saving load duration threshold is greater than or equal to the effective time of the load balancing optimization function;
  • the network management device sends a prompt message, where the administrator modifies the energy saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: Set the exit energy-saving threshold or start the load balancing optimization threshold to a larger value; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function.
  • An embodiment of the present invention provides a network management device, including: a third obtaining module, a third determining module, and a third parameter modifying module;
  • the third obtaining module is configured to obtain a load balancing optimization function parameter and an energy saving function parameter
  • the third determining module is configured to determine whether the load balancing optimization function parameter acquired by the third acquiring module matches the energy saving function parameter.
  • the load balancing optimization function parameter acquired by the third obtaining module includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function; and the energy saving function parameters acquired by the third acquiring module include: exiting the energy saving threshold and Exit the energy-saving load duration threshold.
  • the third determining module determines whether the load balancing optimization function parameter acquired by the third acquiring module matches the energy saving function parameter, including: for the same cell, the exiting energy saving threshold is less than the starting load balancing optimization threshold, and/or exiting When the energy-saving load duration threshold is less than the startup time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy-saving function parameter.
  • the third parameter modification module modifies the energy saving function parameter and/or the load balancing optimization function parameter, and the third parameter modification module sets the exit energy saving threshold or the startup load balancing optimization threshold to be larger Value; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load-balancing optimization function;
  • the third parameter modification module sends a prompt message, where the administrator modifies the energy saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting an exit energy saving threshold or starting load balancing optimization The threshold is the larger of the two; setting the exit energy-saving load duration threshold so that the exiting energy-saving load duration threshold is greater than or equal to The effective time of the load balancing optimization function.
  • the embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores a computer program, and the computer program is used to execute the self-organizing network function coordination method of the embodiment of the present invention.
  • the network management device obtains the load balancing optimization function parameter and the energy-saving function parameter, and determines the acquired load balancing optimization function parameter and the energy-saving function. Whether the parameters match, determine the mismatch, modify the energy-saving function parameters, and/or load balancing optimization function parameters, and perform the energy-saving function according to the latest energy-saving function parameters; correspondingly, the network element device obtains the load balancing optimization function parameter, and according to the acquisition
  • the load balancing optimization function parameter performs load balancing optimization.
  • the energy saving function and the load balancing optimization function are coordinated by modifying the energy saving function parameter and/or the load balancing optimization function parameter, thereby realizing the energy saving function and the load balancing optimization function.
  • Cooperate with each other to extend the time when the community is in a state of energy saving, thereby improving energy saving.
  • FIG. 1 is a schematic flowchart of a basic processing procedure of a self-organizing network function coordination method according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a specific implementation process of a self-organizing network function coordination method according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a network management device according to an embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of a basic processing procedure of a self-organizing network function coordination method according to Embodiment 2 of the present invention.
  • FIG. 5 is a schematic flowchart of a specific implementation process of a self-organizing network function coordination method according to Embodiment 2 of the present invention.
  • FIG. 6 is a schematic structural diagram of a structure of a network element device according to Embodiment 2 of the present invention.
  • FIG. 7 is a schematic diagram of a basic processing flow of a method for coordinating a self-organizing network function according to Embodiment 3 of the present invention.
  • FIG. 8 is a schematic structural diagram of a structure of a self-organizing network function coordination system according to Embodiment 3 of the present invention.
  • FIG. 9 is a schematic flowchart of a basic processing procedure of a method for coordinating a self-organizing network function according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of a fourth self-organizing network function coordination system according to an embodiment of the present invention.
  • FIG. 11 is a schematic flowchart of a basic processing procedure of a method for coordinating a self-organizing network function according to Embodiment 5 of the present invention.
  • FIG. 12 is a schematic structural diagram of a structure of a self-organizing network function coordination system according to Embodiment 5 of the present invention.
  • the load of the cell for covering or compensating the energy-saving cell is greater than or equal to the energy-saving threshold, and the load of the cell covering or compensating the energy-saving cell is greater than or equal to the energy-saving threshold.
  • the duration threshold is used, the energy-saving cell needs to exit the energy-saving state; in order to keep the energy-saving cell in a state of energy-saving, the load balancing optimization function can reduce the coverage or compensate the cell load of the energy-saving cell within the time limit of the load duration, that is, guarantee the startup load.
  • the equalization optimization function threshold is less than or equal to the exit energy saving threshold, and the load balancing optimization function has an activation time less than the load duration threshold.
  • the network management device obtains the load balancing optimization function parameter and the energy saving function parameter, and determines whether the acquired load balancing optimization function parameter and the energy saving function parameter match, and when the determination does not match, the modification is performed.
  • the network element device performs load balancing optimization according to the latest load balancing optimization function parameters.
  • the network element device may obtain the load balancing optimization function parameter and the energy saving function parameter, and determine whether the acquired load balancing optimization function parameter and the energy saving function parameter are When the matching is determined, the energy saving function parameters and/or the load balancing optimization function parameters are modified, and the load balancing optimization function and the energy saving function are respectively performed according to the latest load balancing optimization function parameter and the energy saving function parameter.
  • the basic processing flow of the self-organizing network function coordination method in the embodiment of the present invention is as shown in FIG. 1 , and includes the following steps:
  • Step 101 The network management device acquires load balancing optimization function parameters and energy saving function parameters.
  • the network management device obtains the load balancing optimization function parameter and the energy saving function parameter from the EMS through the northbound interface; when some functions of the EMS are embedded in the network element device, the network management device can also directly interact with the network element device to obtain load balancing optimization. Functional parameters and energy saving function parameters;
  • the load balancing optimization function parameter includes: starting the load balancing optimization threshold and the activation time of the load balancing optimization function; the energy saving function parameters include: exiting the energy saving threshold and exiting the energy saving load duration threshold;
  • Step 102 the network management device determines whether the obtained load balancing optimization function parameter and the energy saving function parameter match, and when the matching is determined, the processing flow is ended; when the determination is not matched, step 103 is performed;
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, determining that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the exiting energy saving threshold is greater than or equal to the startup load balancing optimization threshold, and the exiting energy saving duration threshold is greater than or equal to the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter matches the energy saving function parameter.
  • Step 103 The network management device modifies the load balancing optimization function parameter, and/or the energy saving function parameter;
  • the network management device may directly set the exit energy saving threshold or the startup load balancing optimization threshold to a larger value of the two; set the exit energy saving load duration threshold, so that the exiting energy saving load duration threshold is greater than or equal to the load balancing optimization function.
  • the network management device sets the exit energy-saving load duration threshold and the exit energy-saving threshold in the EMS through the northbound interface; the network management device sets the load balancing optimization threshold and the load balancing optimization function in the EMS in the network management device or in the EMS through the northbound interface.
  • the network management device may also send a prompt message, where the administrator modifies the energy saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting the exit energy saving threshold or starting the load balancing optimization threshold The larger of the two; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function;
  • the network management device sets the exit energy saving threshold or the startup load balancing optimization threshold to a larger value, including:
  • step 104 the network management device performs the energy saving function according to the latest energy saving function parameter.
  • the latest energy-saving function parameter is: the modified energy-saving function parameter
  • the latest energy-saving function parameter is: Energy-saving function parameters obtained by the network management device.
  • the second cell is an energy-saving cell
  • the first cell is a small cell coverage or compensation.
  • the method includes the following steps:
  • Step 201 The network management device acquires load balancing optimization function parameters and energy saving function parameters.
  • the network management device obtains the load balancing optimization function parameter and the energy saving function parameter from the EMS through the northbound interface; when some functions of the EMS are embedded in the network element device, the network management device can also directly interact with the network element device to obtain load balancing optimization. Functional parameters and energy saving function parameters;
  • the load balancing optimization function parameter includes: starting the load balancing optimization threshold and the activation time of the load balancing optimization function; the energy saving function parameters include: exiting the energy saving threshold and exiting the energy saving load duration threshold;
  • Step 202 The network management device determines whether the acquired load balancing optimization function parameter matches the energy saving function parameter.
  • Step 203 The network management device modifies the energy-saving function parameter when determining that the load balancing optimization function parameter does not match the energy-saving function parameter;
  • the exiting energy-saving load duration threshold of the second cell is smaller than the start-up time of the load balancing optimization function, determining that the load balancing optimization function parameter does not match the energy-saving function parameter, and modifying the exiting energy-saving load duration threshold;
  • the modifying the exiting the energy-saving load duration threshold includes:
  • the network management device sets the exit energy-saving load duration threshold in the EMS through the northbound interface to twice the effective time of the load balancing optimization function.
  • Step 204 The network management device performs an energy saving function according to the latest energy saving function parameter.
  • the start-up time of the load balancing optimization threshold and the load balancing optimization function are set to be the same, so The load balancing optimization function is also started at the same time, and the load of the first cell is balanced to the neighboring cell of the first cell;
  • the load balancing optimization function can be effectively completed, that is, the neighboring cell of the first cell can receive the load equalized by the first cell, the first cell The load will fall below the energy saving threshold within the load duration threshold, thereby avoiding the second cell exiting the power saving state.
  • the first embodiment of the present invention further provides a network management device, and the composition of the network management device is as shown in FIG. 3, including: a first obtaining module 11 and a first determining The module 12, the first parameter modification module 13 and the first energy saving function module 14; wherein
  • the first obtaining module 11 is configured to acquire load balancing optimization function parameters and energy saving function parameters;
  • the first obtaining module 11 obtains the load balancing optimization function parameter and the energy saving function parameter from the EMS through the northbound interface; when the partial function of the EMS is embedded on the network element device, the first obtaining module 11 can also directly interact with the network element device. Obtain load balancing optimization function parameters and energy saving function parameters;
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • the first determining module 12 is configured to determine whether the load balancing optimization function parameter acquired by the first acquiring module 11 matches the energy saving function parameter;
  • the exiting energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • the first parameter modification module 13 is configured to modify the energy saving function parameter and/or the load balancing optimization function parameter when the first determining module 12 determines that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the first parameter modification module 13 will exit the energy saving threshold or start the load balancing optimization threshold.
  • the value is set to a larger value of the two; the exit energy-saving load duration threshold is set such that the exit energy-saving load duration threshold is greater than or equal to the activation time of the load balancing optimization function;
  • the first parameter modification module 13 sends a prompt message, and the administrator modifies the energy-saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting an exit energy-saving threshold or starting load balancing The optimization threshold is the larger of the two; setting the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function.
  • the first energy saving function module 14 is configured to perform an energy saving function according to the latest energy saving function parameter.
  • the basic processing flow of the self-organizing network function coordination method in the second embodiment of the present invention is as shown in FIG. 4, and includes the following steps:
  • Step 301 The network element device acquires load balancing optimization function parameters and energy saving function parameters.
  • each module in the network element device interacts to obtain load balancing optimization function parameters and energy saving function parameters
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • Step 302 the network element device determines whether the acquired load balancing optimization function parameter and the energy saving function parameter match, and when the matching is determined, the processing flow is ended; when the matching is determined, step 303 is performed;
  • the exiting energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • Step 303 The network element device modifies the energy saving function parameter, and/or the load balancing optimization function parameter.
  • the network element device sets the exit energy saving threshold or the startup load balancing optimization threshold to a larger value of the two;
  • the network element device sets the exit energy saving threshold or the startup load balancing optimization threshold to a larger value, including:
  • Step 304 The network element device performs the load balancing optimization function and the energy saving function according to the latest load balancing optimization function parameter and the energy saving function parameter.
  • the network management device Before performing step 301, the network management device needs to set an automatic energy saving function and a load balancing optimization function coordination mode.
  • the second cell is an energy-saving cell
  • the first cell is a coverage or compensation cell of the second cell
  • the method includes the following: step:
  • Step 401 The network element device acquires load balancing optimization function parameters and energy saving function parameters.
  • each module in the network element device interacts to obtain load balancing optimization function parameters and energy saving function parameters
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • Step 402 The network element device determines whether the acquired load balancing optimization function parameter matches the energy saving function parameter.
  • Step 403 The network element device, when determining that the load balancing optimization function parameter does not match the energy saving function parameter, modifying the energy saving function parameter and the load balancing optimization function parameter;
  • the exiting energy-saving load duration threshold of the second cell is smaller than the start-up time of the load balancing optimization function
  • the starting load balancing optimization threshold of the second cell is smaller than the exiting energy-saving threshold, determining that the load balancing optimization function parameter does not match the energy-saving function parameter, and modifying Exit the energy-saving load duration threshold and start the load balancing optimization threshold;
  • the modifying the exiting the energy-saving load duration threshold includes:
  • the modifying the starting load balancing optimization threshold includes:
  • Step 404 The network element device performs load balancing optimization function and energy saving function according to the latest load balancing optimization function parameter and the energy saving function parameter.
  • the network management device before performing step 401, the network management device needs to set an automatic energy saving function and a load balancing optimization function coordination mode.
  • the second embodiment of the present invention is a network element device that is self-organized by the network function.
  • the composition of the network element device is as shown in FIG. 6, and includes: a second obtaining module 31, a second determining a module 32, a second parameter modification module 33, a first load balancing optimization function module 34, and a second energy saving function module 35; wherein
  • the second obtaining module 31 is configured to acquire load balancing optimization function parameters and energy saving function parameters
  • the load balancing optimization function parameters include: starting the load balancing optimization threshold and the activation time of the load balancing optimization function;
  • the energy saving function parameters include: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • the second determining module 32 is configured to determine that the load balancing function obtained by the second acquiring module 31 is Whether the function parameters match the energy-saving function parameters;
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • the second parameter modification module 33 is configured to modify the energy saving function parameter and/or the load balancing optimization function parameter when the second determining module 32 determines that the load balancing optimization function parameter does not match the energy saving function parameter mismatch;
  • the modifying the energy saving function parameter, and/or the load balancing optimization function parameter includes:
  • the exiting the energy saving threshold or starting the load balancing optimization threshold is set to a larger value of the two, including:
  • the first load balancing optimization function module 34 is configured to perform a load balancing optimization function according to the latest load balancing optimization function parameter.
  • the second energy saving function module 35 is configured to perform an energy saving function according to the latest energy saving function parameter.
  • the basic processing flow of the self-organizing network function coordination method in the third embodiment of the present invention is as shown in FIG. 7, and includes the following steps:
  • Step 501 The network management device acquires load balancing optimization function parameters and energy saving function parameters.
  • the network management device obtains the load balancing optimization function parameter and the energy saving function parameter from the EMS through the northbound interface; when some functions of the EMS are embedded in the network element device, the network management device can also directly interact with the network element device to obtain load balancing optimization. Functional parameters and energy saving function parameters;
  • the load balancing optimization function parameter includes: starting the load balancing optimization threshold and the activation time of the load balancing optimization function; the energy saving function parameters include: exiting the energy saving threshold and exiting the energy saving load duration threshold;
  • Step 502 the network management device determines whether the acquired load balancing optimization function parameter and the energy saving function parameter match; when the matching is determined, the processing flow is ended; when the matching is not determined, step 503 is performed;
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the startup time of the load balancing optimization function, determining that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the exiting energy saving threshold is greater than or equal to the startup load balancing optimization threshold, and the exiting energy saving duration threshold is greater than or equal to the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter matches the energy saving function parameter.
  • Step 503 The network management device modifies the energy saving function parameter and/or the load balancing optimization function parameter.
  • the network management device may directly set the exit energy saving threshold or the startup load balancing optimization threshold to a larger value of the two; set the exit energy saving load duration threshold, so that the exiting energy saving load duration threshold is greater than or equal to the load balancing optimization function.
  • the network management device sets the exit energy-saving load duration threshold and the exit energy-saving threshold in the EMS through the northbound interface; the network management device sets the load balancing optimization threshold and the load balancing optimization function in the EMS in the network management device or in the EMS through the northbound interface. When it works between.
  • the network management device may also send a prompt message, where the administrator modifies the energy saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting the exit energy saving threshold or starting the load balancing optimization threshold The larger of the two; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function;
  • the network element device sets the exit energy saving threshold or the startup load balancing optimization threshold to a larger value, including:
  • Step 504 The network management device performs an energy saving function according to the latest energy saving function parameter.
  • the latest energy saving function parameter is: the modified energy saving function parameter
  • the latest energy-saving function parameter is: the energy-saving function parameter acquired by the network management device.
  • Step 505 The network element device performs a load balancing optimization function according to the latest load balancing optimization function parameter.
  • the latest load balancing optimization function parameter may be obtained by the network element device from the EMS, or may be pushed by the EMS to the network element device.
  • steps 504 and 505 do not have a sequence of execution.
  • the third embodiment of the present invention further provides a self-organizing network function coordination system, as shown in FIG. 8, comprising: a network management device 1 and a network element device 2; among them,
  • the network management device 1 includes: a first obtaining module 11, a first determining module 12, a first parameter modifying module 13, and a first energy saving function module 14;
  • the first obtaining module 11 is configured to acquire load balancing optimization function parameters and energy saving function parameters;
  • the first obtaining module 11 obtains the load balancing optimization function parameter and the energy saving function parameter from the EMS through the northbound interface; when the partial function of the EMS is embedded on the network element device, the first obtaining module 11 can also directly interact with the network element device. Obtain load balancing optimization function parameters and energy saving function parameters;
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold;
  • the first determining module 12 is configured to determine whether the load balancing optimization function parameter acquired by the first acquiring module 11 matches the energy saving function parameter;
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, determining that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the first parameter modification module 13 is configured to modify the energy saving function parameter and/or the load balancing optimization function parameter when the first determining module 12 determines that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the first parameter modification module 13 sets the exit energy-saving threshold or the startup load balancing optimization threshold to a larger value of the two; sets the exit energy-saving load duration threshold, so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization.
  • the first parameter modification module 13 sends a prompt message, and the administrator modifies the energy-saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting an exit energy-saving threshold or starting load balancing The optimization threshold is the larger of the two; setting the exit energy-saving load duration threshold so that the exiting energy-saving load duration threshold is greater than or equal to The onset time of the load balancing optimization function;
  • the first energy saving function module 14 is configured to perform an energy saving function according to the latest energy saving function parameter.
  • the network element device 2 is configured to perform load balancing optimization according to the latest load balancing optimization function parameter.
  • the basic processing flow of the self-organizing network function coordination method in the fourth embodiment of the present invention is as shown in FIG. 9, and includes:
  • Step 601 The network management device sets an automatic energy saving function and a load balancing optimization function coordination mode.
  • the network device sets an automatic switch between the energy saving function and the load balancing optimization function through the EMS or directly to the network element device through the north interface.
  • Step 602 The network element device acquires load balancing optimization function parameters and energy saving function parameters.
  • each module in the network element device interacts to obtain load balancing optimization function parameters and energy saving function parameters
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • Step 603 the network element device determines whether the acquired load balancing optimization function parameter and the energy saving function parameter match; when the matching is determined, the processing flow is ended; when the matching is determined, step 604 is performed;
  • the exiting energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • Step 604 The network element device modifies the energy saving function parameter, and/or the load balancing optimization function parameter.
  • the NE device will exit the energy saving threshold or start the load balancing optimization threshold to be set to two.
  • the network element device sets the exit energy saving threshold or the startup load balancing optimization threshold to a larger value, including:
  • Step 605 The network element device performs load balancing optimization function and energy saving function according to the latest load balancing optimization function parameter and the energy saving function parameter.
  • the fourth embodiment of the present invention further provides a network function coordination system, and the composition of the system is as shown in FIG. 10, including: a network element device 3 and a network management device 4;
  • the network element device 3 includes: a second obtaining module 31, a second determining module 32, a second parameter modifying module 33, a first load balancing optimization function module 34, and a second energy saving function module 35;
  • the second obtaining module 31 is configured to acquire load balancing optimization function parameters and energy saving function parameters
  • the load balancing optimization function parameters include: starting the load balancing optimization threshold and the activation time of the load balancing optimization function;
  • the energy saving function parameters include: exiting the energy saving threshold and exiting the energy saving load duration threshold;
  • the second determining module 32 is configured to determine whether the load balancing optimization function parameter acquired by the second acquiring module 31 matches the energy saving function parameter;
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the second parameter modification module 33 is configured to determine the load balancing optimization at the second determining module 32. When the function parameter does not match the energy-saving function parameter, the energy-saving function parameter and/or the load balancing optimization function parameter are modified;
  • the exiting energy saving threshold or the starting load balancing optimization threshold is set to a larger value of the two; setting the exiting energy saving load duration threshold, so that the exiting energy saving load duration threshold is greater than or equal to the effective time of the load balancing optimization function;
  • the exiting the energy saving threshold or starting the load balancing optimization threshold is set to a larger value of the two, including:
  • the first load balancing optimization function module 34 is configured to perform a load balancing optimization function according to the latest load balancing optimization function parameter;
  • the second energy saving function module 35 is configured to perform an energy saving function according to the latest energy saving function parameter.
  • the network management device 4 is configured to set an automatic energy saving function and a load balancing optimization function coordination mode
  • the network device sets an automatic energy-saving function and a load balancing optimization function through the EMS or directly to the network element device to coordinate the energy-saving function and the load balancing optimization function coordination switch.
  • the basic processing flow of the self-organizing network function coordination method in the fifth embodiment of the present invention is as shown in FIG. 11 and includes the following steps:
  • Step 701 The network management device acquires load balancing optimization function parameters and energy saving function parameters.
  • the network management device obtains load balancing optimization function parameters from the EMS through the northbound interface. And the energy-saving function parameter; when some functions of the EMS are embedded in the network element device, the network management device can also directly interact with the network element device to obtain the load balancing optimization function parameter and the energy-saving function parameter;
  • the load balancing optimization function parameter includes: starting the load balancing optimization threshold and the activation time of the load balancing optimization function; the energy saving function parameters include: exiting the energy saving threshold and exiting the energy saving load duration threshold;
  • Step 702 the network management device determines whether the obtained load balancing optimization function parameter and the energy-saving function parameter match, and when the matching is determined, the processing flow is ended; when the matching is determined, step 703 is performed;
  • the exit energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, determining that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the exiting energy saving threshold is greater than or equal to the startup load balancing optimization threshold, and the exiting energy saving duration threshold is greater than or equal to the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter matches the energy saving function parameter.
  • Step 703 The network management device modifies load balancing optimization function parameters and/or energy saving function parameters.
  • the network management device may directly set the exit energy saving threshold or the startup load balancing optimization threshold to a larger value of the two; set the exit energy saving load duration threshold, so that the exiting energy saving load duration threshold is greater than or equal to the load balancing optimization function.
  • the network management device sets the exit energy-saving load duration threshold and the exit energy-saving threshold in the EMS through the northbound interface; the network management device sets the load balancing optimization threshold and the load balancing optimization function in the EMS in the network management device or in the EMS through the northbound interface.
  • the network management device may also send a prompt message, where the administrator modifies the energy saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting the exit energy saving threshold or starting the load balancing optimization threshold The larger of the two; set the exit energy-saving load duration threshold so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization function;
  • the network management device sets the exit energy saving threshold or the startup load balancing optimization threshold to a larger value, including:
  • Step 704 The network element device performs the energy saving function and the load balancing optimization function according to the latest energy saving function parameter and/or the load balancing optimization function parameter, respectively.
  • the latest energy-saving function parameter is: the modified energy-saving function parameter
  • the latest energy-saving function parameter is: Energy-saving function parameters acquired by the network management device
  • the latest load balancing optimization function parameter is: the modified load balancing optimization function parameter; when the network management device does not modify the load balancing optimization function parameter, the latest The load balancing optimization function parameter is: a load balancing optimization function parameter acquired by the network management device;
  • the latest energy-saving function parameters and load balancing optimization function parameters may be obtained by the network element device from the EMS, or may be actively pushed to the network element device by the EMS.
  • the fifth embodiment of the present invention further provides a self-organizing network function coordination system.
  • the composition of the network management device is as shown in FIG. 12, including: network management device 5 and network. Metadevice 6;
  • the network management device 5 includes: a third obtaining module 51, a third determining module 52, and a third parameter modifying module 53;
  • the third obtaining module 51 is configured to obtain load balancing optimization function parameters and energy saving function parameters
  • the third obtaining module 51 obtains the load balancing optimization function parameter and the energy saving function parameter from the EMS through the northbound interface; when the partial function of the EMS is embedded on the network element device, the third obtaining module 51 can also directly interact with the network element device. Obtain load balancing optimization function parameters and energy saving function parameters;
  • the load balancing optimization function parameter includes: starting a load balancing optimization threshold and an activation time of the load balancing optimization function;
  • the energy saving function parameter includes: exiting the energy saving threshold and exiting the energy saving load duration threshold.
  • the third determining module 52 is configured to determine whether the load balancing optimization function parameter acquired by the third acquiring module 51 matches the energy saving function parameter;
  • the exiting energy saving threshold is less than the startup load balancing optimization threshold, and/or the exiting energy saving duration threshold is less than the effective time of the load balancing optimization function, it is determined that the load balancing optimization function parameter does not match the energy saving function parameter.
  • the third parameter modification module 53 is configured to modify the energy saving function parameter and/or the load balancing optimization function parameter when the third determining module 52 determines that the load balancing optimization function parameter does not match the energy saving function parameter;
  • the third parameter modification module 53 sets the exit energy-saving threshold or the startup load balancing optimization threshold to a larger value of the two; sets the exit energy-saving load duration threshold, so that the exit energy-saving load duration threshold is greater than or equal to the load balancing optimization.
  • the third parameter modification module 53 sends a prompt message, and the administrator modifies the energy-saving function parameter and/or the load balancing optimization function parameter according to the prompt message; wherein the prompt message includes: setting an exit energy-saving threshold or starting load balancing The optimization threshold is the larger of the two; setting the exit energy-saving load duration threshold so that the exiting energy-saving load duration threshold is greater than or equal to The effective time of the load balancing optimization function.
  • the network element device 6 includes: a third energy saving function module 61 and a second load balancing optimization function module 62;
  • the third energy saving function module 61 is configured to perform an energy saving function according to the latest energy saving function parameter
  • the second load balancing optimization function module 62 is configured to perform a second load balancing optimization function according to the latest second load balancing optimization function parameter.
  • the third parameter modification module 53 can be implemented by a processor, of course, by a specific logic circuit; wherein the processor can be a processor on a node, and in practical applications, the processor can be a central processor ( CPU), microprocessor (MPU), digital signal processor (DSP) or field programmable gate array (FPGA).
  • CPU central processor
  • MPU microprocessor
  • DSP digital signal processor
  • FPGA field programmable gate array
  • Both the function module 61 and the second load balancing optimization function module 62 can be implemented by a processor, and can of course be implemented by a specific logic circuit; wherein the processor can be a processor on a node, a controller or a server, in practice In the application, the processor can be a CPU, an MPU, a DSP, or an FPGA.
  • the self-organizing network function coordination method may also be stored in a computer readable storage medium.
  • the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage medium, including a plurality of instructions. Enabling a computer device (which may be a personal computer, server, or network device, etc.) to perform various implementations of the present invention All or part of the method described.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • program codes such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • the embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores a computer program, and the computer program is used to execute the self-organizing network function coordination method of the embodiment of the present invention.

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Abstract

本发明公开了一种自组织网络功能协调方法,所述方法包括:网络管理设备获取负载均衡优化功能参数和节能功能参数,判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配;确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数,并根据最新的节能功能参数执行节能功能。本发明还同时公开了另两种自组织网络功能协调方法、以及另一种网络管理设备、网元设备和存储介质。

Description

自组织网络功能协调方法、设备及存储介质 技术领域
本发明涉及无线通信系统的管理技术,尤其涉及一种自组织网络功能协调方法、网络管理设备、网元设备及存储介质。
背景技术
在移动通信系统中,一般采用分层管理的方式对设备进行管理;对设备进行管理的系统包括网络管理系统(Network Management System,NMS)和网元管理系统(Equipment Management System,EMS);其中,NMS用于实现国际电信联盟电信管理网中的网元管理层(Network Management Layer,NML)的功能,负责对一个被管理网络内的所有网元进行管理;EMS用于实现国际电信联盟电信管理网中的网元管理层(Equipment Management Layer,EML)的功能,负责对一个或来自于同一个设备供应商的多个移动通信设备进行管理;NMS通过北向接口与EMS进行信息交互。
在移动通信系统运行过程中,需要对移动通信系统进行日常维护;对移动通信系统的日常维护工作耗费了运营商大量的人力、物理、和财力;为降低维护成本、减少人工参与度、加快故障解决速度,在对移动通信系统进行管理时,增加了自动处理技术。
在长期演进(Long-Term Evolution,LTE)阶段,提出了自组织网络(Self-Organizing Network,SON)的概念;SON可实现自配置、自优化、自愈、节能等功能;其中,自优化包括:自动邻区优化、负载均衡优化、容量和覆盖优化等。在执行SON功能时,需要自动的进行参数修改、开关某些功能或部件等SON操作;但是,一方面,当有多个SON功能同时执行时,可能会出现多个SON功能需要修改同一个网元的同一个参数,且不 同的SON功能准备修改的参数值又不相同的情况,此时就会出现SON操作冲突,即:不确定以哪个SON功能修改的参数值进行参数修改,因此,需要对执行的各个SON功能进行协调;另一方面,当有多个SON功能同时执行时,可能会出现一个SON功能在合适的状态下执行时,其他SON功能能够执行得更好;如:节能功能和负载均衡优化功能同时执行时,如果负载均衡优化功能的参数设置适当,可以进一步提高节能效率;因此,需要对执行的SON功能,如:节能功能和负载均衡优化功能进行协调。
目前,对SON功能进行协调,都是基于在执行SON功能时,SON操作冲突的情况;但是,为促进SON功能之间更好地配合,而对SON功能进行协调尚无解决方案。
发明内容
有鉴于此,本发明实施例期望提供一种自组织网络功能协调方法、网络管理设备、网元设备及存储介质,能通过对节能功能和负载均衡优化功能的协调,实现节能功能和负载均衡优化功能之间相互配合,延长小区处于节能状态的时间,进而提高节能效果。
本发明实施例的技术方案是这样实现的:
本发明实施例提供一种自组织网络功能协调方法,包括:网络管理设备获取负载均衡优化功能参数和节能功能参数;判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;根据最新的节能功能参数执行节能功能。
优选地,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
优选地,所述判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:对于同一小区,退出节能阈值小于启动负载均衡优化阈 值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
优选地,所述修改节能功能参数、和/或负载均衡优化功能参数,包括:网络管理设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,网络管理设备发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
本发明实施例还提供一种网络管理设备,所述网络管理设备包括:第一获取模块、第一判断模块、第一参数修改模块和第一节能功能模块;其中,
所述第一获取模块,配置为获取负载均衡优化功能参数和节能功能参数;
所述第一判断模块,配置为判断所述第一获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配;
所述第一参数修改模块,配置为在所述第一判断模块确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
所述第一节能功能模块,配置为根据所述最新的节能功能参数执行节能功能。
优选地,所述第一获取模块获取的负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述第一获取模块获取的节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
优选地,所述第一判断模块判断所述第一获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:
对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
优选地,所述第一参数修改模块修改节能功能参数、和/或负载均衡优化功能参数,包括:第一参数修改模块将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,第一参数修改模块发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
本发明实施例提供另一种自组织网络功能协调方法,包括:网元设备获取负载均衡优化功能参数和节能功能参数;判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;根据最新的负载均衡优化功能参数和节能功能参数,分别执行负载均衡优化功能和节能功能。
优选地,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
优选地,所述判断所述获取的负载均衡优化功能参数与节能功能参数 是否匹配,包括:对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
优选地,所述网元设备修改节能功能参数、和/或负载均衡优化功能参数,包括:网元设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
本发明实施例还提供一种网元设备,所述网元设备包括:第二获取模块、第二判断模块、第二参数修改模块、第一负载均衡优化功能模块和第二节能功能模块;其中,
所述第二获取模块,配置为获取负载均衡优化功能参数和节能功能参数;
所述第二判断模块,配置为判断所述第二获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配;
所述第二参数修改模块,配置为在所述第二判断模块确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
所述第一负载均衡优化功能模块,配置为根据最新的负载均衡优化功能参数执行负载均衡优化功能;
所述第二节能功能模块,配置为根据最新的节能功能参数执行节能功能。
优选地,所述第二获取模块获取的负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;所述第二获取模块获取的节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
优选地,所述第二判断模块判断所述第二获取模块获取负载均衡优化 功能参数与节能功能参数是否匹配,包括:对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
优选地,所述第二参数修改模块修改节能功能参数、和/或负载均衡优化功能参数,包括:第二参数修改模块将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
本发明实施例提供又一种自组织网络功能协调方法,包括:网络管理设备获取负载均衡优化功能参数和节能功能参数;
判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数。
优选地,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
优选地,所述判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
优选地,所述修改节能功能参数、和/或负载均衡优化功能参数,包括:网络管理设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,网络管理设备发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括: 设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
本发明实施例提供又一种网络管理设备,包括:第三获取模块、第三判断模块和第三参数修改模块;其中,
所述第三获取模块,配置为获取负载均衡优化功能参数和节能功能参数;
所述第三判断模块,配置为判断所述第三获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配。
优选地,所述第三获取模块获取的负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;所述第三获取模块获取的节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
优选地,所述第三判断模块判断所述第三获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
优选地,所述第三参数修改模块修改节能功能参数、和/或负载均衡优化功能参数,包括:第三参数修改模块将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,第三参数修改模块发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于 负载均衡优化功能的起效时间。
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质存储有计算机程序,该计算机程序用于执行本发明实施例的上述自组织网络功能协调方法。
本发明实施例所提供的自组织网络功能协调方法、网络管理设备、网元设备及存储介质,网络管理设备获取负载均衡优化功能参数和节能功能参数,判断获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数,并根据最新的节能功能参数执行节能功能;相应的,网元设备获取负载均衡优化功能参数,并根据获取的负载均衡优化功能参数执行负载均衡优化功能。如此,在节能功能和负载均衡优化功能同时执行时,通过修改节能功能参数、和/或负载均衡优化功能参数,对节能功能和负载均衡优化功能进行协调,实现节能功能和负载均衡优化功能之间相互配合,延长小区处于节能状态的时间,进而提高节能效果。
附图说明
图1为本发明实施例一自组织网络功能协调方法的基本处理流程示意图;
图2为本发明实施例一自组织网络功能协调方法的具体实现流程示意图;
图3为本发明实施例一网络管理设备的组成结构示意图;
图4为本发明实施例二自组织网络功能协调方法的基本处理流程示意图;
图5为本发明实施例二自组织网络功能协调方法的具体实现流程示意图;
图6为本发明实施例二网元设备的组成结构示意图;
图7为本发明实施例三自组织网络功能协调方法的基本处理流程示意图;
图8为本发明实施例三自组织网络功能协调系统组成结构示意图;
图9为本发明实施例四自组织网络功能协调方法的基本处理流程示意图;
图10为本发明实施例四自组织网络功能协调系统组成结构示意图;
图11为本发明实施例五自组织网络功能协调方法的基本处理流程示意图;
图12为本发明实施例五自组织网络功能协调系统组成结构示意图。
具体实施方式
通常,在节能小区处于节能状态时,用于覆盖或补偿节能小区的小区的负载大于或等于退出节能阈值,且覆盖或补偿节能小区的小区的负载大于或等于退出节能阈值持续的时间大于节能负载持续时间阈值时,节能小区需退出节能状态;为了保持节能小区处于节能状态,可通过负载均衡优化功能在负载持续时间阈值的时间内,降低覆盖或补偿节能小区的小区负载,即:保证启动负载均衡优化功能阈值小于或等于退出节能阈值,且负载均衡优化功能的起效时间小于负载持续时间阈值。
利用上述小区节能状态的特性,在本发明实施例中,网络管理设备获取负载均衡优化功能参数和节能功能参数,判断获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数,并根据最新的节能功能参数执行节能功能;
相应的,网元设备根据最新的负载均衡优化功能参数执行负载均衡优化功能。
在本发明实施例中,也可以是网元设备获取负载均衡优化功能参数和节能功能参数,判断获取的负载均衡优化功能参数与节能功能参数是否匹 配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数,并根据最新的负载均衡优化功能参数和节能功能参数,分别执行负载均衡优化功能和节能功能。
实施例一
本发明实施例一自组织网络功能协调方法的基本处理流程如图1所示,包括以下步骤:
步骤101,网络管理设备获取负载均衡优化功能参数和节能功能参数;
这里,网络管理设备通过北向接口从EMS获取负载均衡优化功能参数和节能功能参数;当网元设备上内嵌EMS的部分功能时,网络管理设备也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值;
具体的,网络管理设备如何获取负载均衡优化功能参数和节能功能参数属于现有技术,这里不再赘述。
步骤102,网络管理设备判断获取的负载均衡优化功能参数与节能功能参数是否匹配,确定匹配时,结束本处理流程;确定不匹配时,执行步骤103;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配;
退出节能阈值大于或等于启动负载均衡优化阈值,且退出节能负载持续时间阈值大于或等于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数匹配。
步骤103,网络管理设备修改负载均衡优化功能参数、和/或节能功能 参数;
具体的,网络管理设备可直接将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
这里,网络管理设备通过北向接口在EMS中设置退出节能负载持续时间阈值和退出节能阈值;网络管理设备在网络管理设备内部、或通过北向接口在EMS中设置启动负载均衡优化阈值和负载均衡优化功能的起效时间;
网络管理设备也可以发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,网络管理设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值。
步骤104,网络管理设备根据最新的节能功能参数执行节能功能。
这里,网络管理设备对节能功能参数进行修改时,所述最新的节能功能参数为:修改后的节能功能参数;网络管理设备未对节能功能参数进行修改时,所述最新的节能功能参数为:网络管理设备获取的节能功能参数。
本发明实施例一自组织网络功能协调方法的具体实现流程如图2所示,本实施例中,第二小区为节能小区,第一小区为第二小区的覆盖或补偿小 区,该方法包括以下步骤:
步骤201,网络管理设备获取负载均衡优化功能参数和节能功能参数;
这里,网络管理设备通过北向接口从EMS获取负载均衡优化功能参数和节能功能参数;当网元设备上内嵌EMS的部分功能时,网络管理设备也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值;
具体的,网络管理设备如何获取负载均衡优化功能参数和节能功能参数属于现有技术,这里不再赘述。
步骤202,网络管理设备判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配。
步骤203,网络管理设备在确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数;
这里,第二小区的退出节能负载持续时间阈值小于负载均衡优化功能的起效时间,确定负载均衡优化功能参数与节能功能参数不匹配,修改退出节能负载持续时间阈值;
具体的,所述修改退出节能负载持续时间阈值包括:
网络管理设备通过北向接口在EMS中将退出节能负载持续时间阈值设置为负载均衡优化功能的起效时间的二倍。
步骤204,网络管理设备根据最新的节能功能参数执行节能功能;
如此,在第一小区的负载等于第一小区的退出节能阈值时,由于已经进行了节能功能和负载均衡功能的协调,启动负载均衡优化阈值和负载均衡优化功能的起效时间设置为相同,所以,负载均衡优化功能也同时启动,将第一小区的负载均衡到第一小区的邻区;
同时,由于已经设置退出节能负载持续时间阈值大于负载均衡优化功能的起效时间,如果负载均衡优化功能能够有效完成,即第一小区的邻区能够接收第一小区均衡过来的负载,第一小区的负载会在负载持续时间阈值内下降到节能阈值之下,从而避免了第二小区退出节能状态。
为实现上述在自组织网络功能协调方法,本发明实施例一还提供了一种网络管理设备,所述网络管理设备的组成结构如图3所示,包括:第一获取模块11、第一判断模块12、第一参数修改模块13和第一节能功能模块14;其中,
第一获取模块11,配置为获取负载均衡优化功能参数和节能功能参数;
这里,第一获取模块11通过北向接口从EMS获取负载均衡优化功能参数和节能功能参数;当网元设备上内嵌EMS的部分功能时,第一获取模块11也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
第一判断模块12,配置为判断所述第一获取模块11获取的负载均衡优化功能参数与节能功能参数是否匹配;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
第一参数修改模块13,配置为在所述第一判断模块12确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
具体的,第一参数修改模块13将退出节能阈值或启动负载均衡优化阈 值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,第一参数修改模块13发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
第一节能功能模块14,配置为根据所述最新的节能功能参数执行节能功能。
实施例二
本发明实施例二自组织网络功能协调方法的基本处理流程如图4所示,包括以下步骤:
步骤301,网元设备获取负载均衡优化功能参数和节能功能参数;
这里,网元设备内部的各模块进行交互,获取负载均衡优化功能参数和节能功能参数;
其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
步骤302,网元设备判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定匹配时,结束本处理流程;确定不匹配时,执行步骤303;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
步骤303,网元设备修改节能功能参数、和/或负载均衡优化功能参数;
具体的,网元设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;
设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,网元设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值。
步骤304,网元设备根据最新的负载均衡优化功能参数和节能功能参数,分别执行负载均衡优化功能和节能功能。
在执行步骤301之前,网络管理设备需设置自动进行节能功能和负载均衡优化功能协调模式。
本发明实施例二自组织网络功能协调方法的具体实现流程如图5所示,本实施例中,第二小区为节能小区,第一小区为第二小区的覆盖或补偿小区;该方法包括以下步骤:
步骤401,网元设备获取负载均衡优化功能参数和节能功能参数;
这里,网元设备内部的各模块进行交互,获取负载均衡优化功能参数和节能功能参数;
其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
步骤402,网元设备判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配。
步骤403,网元设备在确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数和负载均衡优化功能参数;
这里,第二小区的退出节能负载持续时间阈值小于负载均衡优化功能的起效时间,第二小区的启动负载均衡优化阈值小于退出节能阈值,确定负载均衡优化功能参数与节能功能参数不匹配,修改退出节能负载持续时间阈值和启动负载均衡优化阈值;
具体的,所述修改退出节能负载持续时间阈值包括:
设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值为负载均衡优化功能的起效时间的三倍;
所述修改启动负载均衡优化阈值包括:
设置启动负载均衡优化阈值,使启动负载均衡优化阈值等于退出节能阈值。
步骤404,网元设备根据最新的负载均衡优化功能参数和节能功能参数,分别执行负载均衡优化功能和节能功能。
本实施例中,在执行步骤401之前,网络管理设备需设置自动进行节能功能和负载均衡优化功能协调模式。
为实现上述自组织网络功能协调方法,本发明实施例二自组织网络功能协调的网元设备,所述网元设备的组成结构如图6所示,包括:第二获取模块31、第二判断模块32、第二参数修改模块33、第一负载均衡优化功能模块34、和第二节能功能模块35;其中,
第二获取模块31,配置为获取负载均衡优化功能参数和节能功能参数;
其中,负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
第二判断模块32,配置为判断所述第二获取模块31获取的负载均衡优 化功能参数与节能功能参数是否匹配;
对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
第二参数修改模块33,配置为在所述第二判断模块32确定负载均衡优化功能参数与节能功能参数不匹配不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
具体的,所述修改节能功能参数、和/或负载均衡优化功能参数,包括:
将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;
设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值。
所述第一负载均衡优化功能模块34,用于根据最新的负载均衡优化功能参数执行负载均衡优化功能。
所述第二节能功能模块35,配置为根据最新的节能功能参数执行节能功能。
实施例三
本发明实施例三自组织网络功能协调方法的基本处理流程如图7所示,包括以下步骤:
步骤501,网络管理设备获取负载均衡优化功能参数和节能功能参数;
这里,网络管理设备通过北向接口从EMS获取负载均衡优化功能参数和节能功能参数;当网元设备上内嵌EMS的部分功能时,网络管理设备也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值;
具体的,网络管理设备如何获取负载均衡优化功能参数和节能功能参数属于现有技术,这里不再赘述。
步骤502,网络管理设备判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配;确定匹配时,结束本处理流程;确定不匹配时,执行步骤503;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值,和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配;
退出节能阈值大于或等于启动负载均衡优化阈值,且退出节能负载持续时间阈值大于或等于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数匹配。
步骤503,网络管理设备修改节能功能参数、和/或负载均衡优化功能参数;
具体的,网络管理设备可直接将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
这里,网络管理设备通过北向接口在EMS中设置退出节能负载持续时间阈值和退出节能阈值;网络管理设备在网络管理设备内部、或通过北向接口在EMS中设置启动负载均衡优化阈值和负载均衡优化功能的起效时 间。
网络管理设备也可以发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,网元设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值。
步骤504,网络管理设备根据最新的节能功能参数执行节能功能。
这里,网络管理设备对节能功能参数进行修改时,所述最新的节能功能参数为:修改后的节能功能参数;
网络管理设备未对节能功能参数进行修改时,所述最新的节能功能参数为:网络管理设备获取的节能功能参数。
步骤505,网元设备根据最新的负载均衡优化功能参数执行负载均衡优化功能;
这里,最新的负载均衡优化功能参数可由网元设备从EMS获取,也可由EMS推送给网元设备。
本实施例中,步骤504和步骤505不存在执行的先后顺序。
为实现上述自组织网络功能协调方法,本发明实施例三还提供一种自组织网络功能协调系统,所述系统的组成结构如图8所示,包括:网络管理设备1和网元设备2;其中,
网络管理设备1包括:第一获取模块11、第一判断模块12、第一参数修改模块13和第一节能功能模块14;其中,
第一获取模块11,配置为获取负载均衡优化功能参数和节能功能参数;
这里,第一获取模块11通过北向接口从EMS获取负载均衡优化功能参数和节能功能参数;当网元设备上内嵌EMS的部分功能时,第一获取模块11也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值;
第一判断模块12,配置为判断所述第一获取模块11获取的负载均衡优化功能参数与节能功能参数是否匹配;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配;
第一参数修改模块13,配置为在所述第一判断模块12确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
具体的,第一参数修改模块13将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,第一参数修改模块13发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于 负载均衡优化功能的起效时间;
第一节能功能模块14,配置为根据最新的节能功能参数执行节能功能。
相应的,网元设备2,用于根据最新的负载均衡优化功能参数执行负载均衡优化功能。
实施例四
本发明实施例四自组织网络功能协调方法的基本处理流程如图9所示,包括:
步骤601,网络管理设备设置自动进行节能功能和负载均衡优化功能协调模式;
具体的,网络设备通过北接口经EMS或直接向网元设备设置一个自动进行节能功能和负载均衡优化功能协调的开关。
步骤602,网元设备获取负载均衡优化功能参数和节能功能参数;
这里,网元设备内部的各模块进行交互,获取负载均衡优化功能参数和节能功能参数;
其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
步骤603,网元设备判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配;确定匹配时,结束本处理流程;确定不匹配时,执行步骤604;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
步骤604,网元设备修改节能功能参数、和/或负载均衡优化功能参数;
具体的,网元设备将退出节能阈值或启动负载均衡优化阈值设置为二 者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,网元设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值。
步骤605,网元设备根据最新的负载均衡优化功能参数和节能功能参数,分别执行负载均衡优化功能和节能功能。
为实现上述自组织网络功能协调方法,本发明实施例四还提供一种网络功能协调系统,所述系统的组成结构如图10所示,包括:网元设备3和网络管理设备4;其中,
网元设备3包括:第二获取模块31、第二判断模块32、第二参数修改模块33、第一负载均衡优化功能模块34、和第二节能功能模块35;其中,
第二获取模块31,配置为获取负载均衡优化功能参数和节能功能参数;
其中,负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值;
第二判断模块32,配置为判断所述第二获取模块31获取的负载均衡优化功能参数与节能功能参数是否匹配;
对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配;
第二参数修改模块33,配置为在所述第二判断模块32确定负载均衡优 化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
具体的,将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值;
所述第一负载均衡优化功能模块34,配置为根据最新的负载均衡优化功能参数执行负载均衡优化功能;
所述第二节能功能模块35,配置为根据最新的节能功能参数执行节能功能。
相应的,网络管理设备4,用于设置自动进行节能功能和负载均衡优化功能协调模式;
具体的,网络设备通过北接口经EMS或直接向网元设备设置一个自动进行节能功能和负载均衡优化功能协调行节能功能和负载均衡优化功能协调开关。
实施例五
本发明实施例五自组织网络功能协调方法的基本处理流程如图11所示,包括以下步骤:
步骤701,网络管理设备获取负载均衡优化功能参数和节能功能参数;
这里,网络管理设备通过北向接口从EMS获取负载均衡优化功能参数 和节能功能参数;当网元设备上内嵌EMS的部分功能时,网络管理设备也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值;
具体的,网络管理设备如何获取负载均衡优化功能参数和节能功能参数属于现有技术,这里不再赘述。
步骤702,网络管理设备判断获取的负载均衡优化功能参数与节能功能参数是否匹配,确定匹配时,结束本处理流程;确定不匹配时,执行步骤703;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配;
退出节能阈值大于或等于启动负载均衡优化阈值,且退出节能负载持续时间阈值大于或等于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数匹配。
步骤703,网络管理设备修改负载均衡优化功能参数、和/或节能功能参数;
具体的,网络管理设备可直接将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
这里,网络管理设备通过北向接口在EMS中设置退出节能负载持续时间阈值和退出节能阈值;网络管理设备在网络管理设备内部、或通过北向接口在EMS中设置启动负载均衡优化阈值和负载均衡优化功能的起效时间;
网络管理设备也可以发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
其中,网络管理设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值,包括:
退出节能阈值小于启动负载均衡优化阈值时,设置退出节能阈值等于启动负载均衡优化阈值;
启动负载均衡优化阈值小于退出节能阈值时,设置启动负载均衡优化阈值等于退出节能阈值。
步骤704,网元设备根据最新的节能功能参数、和/或负载均衡优化功能参数,分别执行节能功能和负载均衡优化功能;
这里,网络管理设备对节能功能参数进行修改时,所述最新的节能功能参数为:修改后的节能功能参数;网络管理设备未对节能功能参数进行修改时,所述最新的节能功能参数为:网络管理设备获取的节能功能参数;
网络管理设备对负载均衡优化功能参数进行修改时,所述最新的负载均衡优化功能参数为:修改后的负载均衡优化功能参数;网络管理设备未对负载均衡优化功能参数进行修改时,所述最新的负载均衡优化功能参数为:网络管理设备获取的负载均衡优化功能参数;
其中,最新的节能功能参数和负载均衡优化功能参数可由网元设备主动从EMS获取,也可由EMS主动推送给网元设备。
为实现上述在自组织网络功能协调方法,本发明实施例五还提供了一种自组织网络功能协调系统,所述网络管理设备的组成结构如图12所示,包括:网络管理设备5和网元设备6;
其中,网络管理设备5包括:第三获取模块51、第三判断模块52和第三参数修改模块53;其中,
第三获取模块51,配置为获取负载均衡优化功能参数和节能功能参数;
这里,第三获取模块51通过北向接口从EMS获取负载均衡优化功能参数和节能功能参数;当网元设备上内嵌EMS的部分功能时,第三获取模块51也可直接与网元设备交互,获取负载均衡优化功能参数和节能功能参数;
其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
第三判断模块52,配置为判断所述第三获取模块51获取的负载均衡优化功能参数与节能功能参数是否匹配;
具体的,对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
第三参数修改模块53,配置为在所述第三判断模块52确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
具体的,第三参数修改模块53将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
或者,第三参数修改模块53发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于 负载均衡优化功能的起效时间。
网元设备6包括:第三节能功能模块61和第二负载均衡优化功能模块62;其中,
第三节能功能模块61,配置为根据所述最新的节能功能参数执行节能功能;
第二负载均衡优化功能模块62,配置为根据最新的第二负载均衡优化功能参数执行第二负载均衡优化功能。
本发明实施例中提出的网络管理设备中的第一获取模块11、第一判断模块12、第一参数修改模块13、第一节能功能模块14、第三获取模块51、第三判断模块52和第三参数修改模块53都可以通过处理器来实现,当然也可通过具体的逻辑电路实现;其中所述处理器可以是节点上的处理器,在实际应用中,处理器可以为中央处理器(CPU)、微处理器(MPU)、数字信号处理器(DSP)或现场可编程门阵列(FPGA)等。
本发明实施例中提出的网元设备中的第二获取模块31、第二判断模块32、第二参数修改模块33、第一负载均衡优化功能模块34、第二节能功能模块35、第三节能功能模块61和第二负载均衡优化功能模块62都可以通过处理器来实现,当然也可通过具体的逻辑电路实现;其中所述处理器可以是节点、控制器或服务器上的处理器,在实际应用中,处理器可以为CPU、MPU、DSP或FPGA等。
本发明实施例中,如果以软件功能模块的形式实现上述自组织网络功能协调方法,并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明实施例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,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机、服务器、或者网络设备等)执行本发明各个实施 例所述方法的全部或部分。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read Only Memory,ROM)、磁碟或者光盘等各种可以存储程序代码的介质。这样,本发明实施例不限制于任何特定的硬件和软件结合。
相应地,本发明实施例还提供一种计算机存储介质,该计算机存储介质中存储有计算机程序,该计算机程序用于执行本发明实施例的上述自组织网络功能协调方法。
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。

Claims (25)

  1. 一种自组织网络功能协调方法,所述方法包括:
    网络管理设备获取负载均衡优化功能参数和节能功能参数;
    判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
    根据最新的节能功能参数执行节能功能。
  2. 根据权利要求1所述自组织网络功能协调方法,其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
    所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
  3. 根据权利要求2所述自组织网络功能协调方法,其中,所述判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:
    对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
  4. 根据权利要求2或3所述自组织网络功能协调方法,其中,所述修改节能功能参数、和/或负载均衡优化功能参数,包括:
    网络管理设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
    或者,网络管理设备发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均 衡优化功能的起效时间。
  5. 一种网络管理设备,所述网络管理设备包括:第一获取模块、第一判断模块、第一参数修改模块和第一节能功能模块;其中,
    所述第一获取模块,配置为获取负载均衡优化功能参数和节能功能参数;
    所述第一判断模块,配置为判断所述第一获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配;
    所述第一参数修改模块,配置为在所述第一判断模块确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
    所述第一节能功能模块,配置为根据所述最新的节能功能参数执行节能功能。
  6. 根据权利要求5所述网络管理设备,其中,所述第一获取模块获取的负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
    所述第一获取模块获取的节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
  7. 根据权利要求6所述网络管理设备,其中,所述第一判断模块判断所述第一获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:
    对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
  8. 根据权利要求6或7所述网络管理设备,其中,所述第一参数修改模块修改节能功能参数、和/或负载均衡优化功能参数,包括:
    第一参数修改模块将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
    或者,第一参数修改模块发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
  9. 一种自组织网络功能协调方法,所述方法包括:
    网元设备获取负载均衡优化功能参数和节能功能参数;
    判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
    根据最新的负载均衡优化功能参数和节能功能参数,分别执行负载均衡优化功能和节能功能。
  10. 根据权利要求9所述自组织网络功能协调方法,其中,
    所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
    所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
  11. 根据权利要求10所述自组织网络功能协调方法,其中,所述判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:
    对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
  12. 根据权利要求10或11所述自组织网络功能协调方法,其中,所述网元设备修改节能功能参数、和/或负载均衡优化功能参数,包括:
    网元设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
  13. 一种网元设备,所述网元设备包括:第二获取模块、第二判断模块、第二参数修改模块、第一负载均衡优化功能模块和第二节能功能模块;其中,
    所述第二获取模块,配置为获取负载均衡优化功能参数和节能功能参数;
    所述第二判断模块,配置为判断所述第二获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配;
    所述第二参数修改模块,配置为在所述第二判断模块确定负载均衡优化功能参数与节能功能参数不匹配时,修改节能功能参数、和/或负载均衡优化功能参数;
    所述第一负载均衡优化功能模块,配置为根据最新的负载均衡优化功能参数执行负载均衡优化功能;
    所述第二节能功能模块,配置为根据最新的节能功能参数执行节能功能。
  14. 根据权利要求13所述网元设备,其中,所述第二获取模块获取的负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
    所述第二获取模块获取的节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
  15. 根据权利要求14所述网元设备,其中,所述第二判断模块判断所述第二获取模块获取负载均衡优化功能参数与节能功能参数是否匹配,包括:
    对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
  16. 根据权利要求14或15所述网元设备,其中,所述第二参数修改模块修改节能功能参数、和/或负载均衡优化功能参数,包括:
    第二参数修改模块将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
  17. 一种自组织网络功能协调方法,所述方法包括:
    网络管理设备获取负载均衡优化功能参数和节能功能参数;
    判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,确定不匹配时,修改节能功能参数、和/或负载均衡优化功能参数。
  18. 根据权利要求17所述自组织网络功能协调方法,其中,所述负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
    所述节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
  19. 根据权利要求18所述自组织网络功能协调方法,其中,所述判断所述获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:
    对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
  20. 根据权利要求18或19所述自组织网络功能协调方法,其中,所述修改节能功能参数、和/或负载均衡优化功能参数,包括:
    网络管理设备将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间 阈值大于等于负载均衡优化功能的起效时间;
    或者,网络管理设备发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
  21. 一种网络管理设备,所述网络管理设备包括:第三获取模块、第三判断模块和第三参数修改模块;其中,
    所述第三获取模块,配置为获取负载均衡优化功能参数和节能功能参数;
    所述第三判断模块,配置为判断所述第三获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配。
  22. 根据权利要求21所述网络管理设备,其中,所述第三获取模块获取的负载均衡优化功能参数包括:启动负载均衡优化阈值和负载均衡优化功能的起效时间;
    所述第三获取模块获取的节能功能参数包括:退出节能阈值和退出节能负载持续时间阈值。
  23. 根据权利要求22所述网络管理设备,其中,所述第三判断模块判断所述第三获取模块获取的负载均衡优化功能参数与节能功能参数是否匹配,包括:
    对于同一小区,退出节能阈值小于启动负载均衡优化阈值、和/或退出节能负载持续时间阈值小于负载均衡优化功能的起效时间时,确定负载均衡优化功能参数与节能功能参数不匹配。
  24. 根据权利要求22或23所述网络管理设备,其中,所述第三参数修改模块修改节能功能参数、和/或负载均衡优化功能参数,包括:
    第三参数修改模块将退出节能阈值或启动负载均衡优化阈值设置为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间;
    或者,第三参数修改模块发送提示消息,由管理人员根据所述提示消息修改节能功能参数、和/或负载均衡优化功能参数;其中,所述提示消息包括:设置退出节能阈值或启动负载均衡优化阈值为二者之中的较大值;设置退出节能负载持续时间阈值,使退出节能负载持续时间阈值大于等于负载均衡优化功能的起效时间。
  25. 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指令,该计算机可执行指令用于执行权利要求1至4任一项所述的自组织网络功能协调方法;或,
    该计算机可执行指令用于执行权利要求9至12任一项所述的自组织网络功能协调方法;或,
    该计算机可执行指令用于执行权利要求17至20任一项所述的自组织网络功能协调方法。
PCT/CN2014/086318 2014-04-25 2014-09-11 自组织网络功能协调方法、设备及存储介质 WO2015161613A1 (zh)

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