WO2016078355A1 - 一种负载能力配置方法、装置及计算机存储介质 - Google Patents

一种负载能力配置方法、装置及计算机存储介质 Download PDF

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Publication number
WO2016078355A1
WO2016078355A1 PCT/CN2015/078448 CN2015078448W WO2016078355A1 WO 2016078355 A1 WO2016078355 A1 WO 2016078355A1 CN 2015078448 W CN2015078448 W CN 2015078448W WO 2016078355 A1 WO2016078355 A1 WO 2016078355A1
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Prior art keywords
frequency band
load
load capacity
preset
band
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PCT/CN2015/078448
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English (en)
French (fr)
Inventor
贺胜洪
张建新
钟爽莉
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中兴通讯股份有限公司
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Publication of WO2016078355A1 publication Critical patent/WO2016078355A1/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
    • H04W28/086Load balancing or load distribution among access entities

Definitions

  • the present invention relates to the field of mobile internet communications, and in particular, to a load capacity configuration method, apparatus, and computer storage medium.
  • Wireless-Fidelity With the popularization of wireless-Fidelity (WiFi) functions for mobile terminals such as mobile phones, users of the two bands of the 2.4G band and the 5G band will coexist for a long time.
  • Wireless LAN Wireless LAN
  • APs access points
  • the WLAN AP has a problem that the load of one frequency band is too large and the load of another frequency band is small, which makes it impossible to achieve deep coverage of the mobile Internet. For example, if the 2.4G frequency band needs to be accessed too much, the load is too large, and the 5G frequency band has few users and the load is small; or vice versa, the 5G frequency band needs to access too many users, causing the load to be too large, and the 2.4G frequency band has few users and the load is very high. small. In view of the above situation, no effective solution has been proposed yet.
  • the embodiments of the present invention are directed to providing a load capacity configuration method, apparatus, and computer storage medium, which can solve the technical problem that the prior art cannot achieve mobile Internet deep coverage due to the fact that one frequency band load is too large and the other frequency band load is small.
  • the embodiment of the invention provides a load capacity configuration method, which includes the following steps:
  • the load capacity of the first frequency band and the load capacity of the second frequency band are respectively Reconfigure;
  • the first frequency band and the second frequency band are respectively any one of the at least two frequency bands
  • the first preset condition includes: the load of the first frequency band is greater than or equal to a first preset load corresponding to the first frequency band;
  • the second preset condition includes: the load of the second frequency band is smaller than the second preset load corresponding to the second frequency band.
  • the load includes: a user access quantity;
  • the first preset load corresponding to the first frequency band includes: a first preset user access quantity corresponding to the first frequency band
  • the second preset load corresponding to the second frequency band includes: a second preset user access quantity corresponding to the second frequency band;
  • the step of reconfiguring the load capacity of the first frequency band and the load capacity of the second frequency band respectively includes:
  • the first preset user access number corresponding to the first frequency band includes: a maximum user access quantity of the first frequency band; and the first corresponding to the second frequency band
  • the second preset user access quantity includes: the maximum user access quantity of the second frequency band.
  • the detecting a load of at least two frequency bands of the WLAN access point includes:
  • the first preset condition includes: the number of user accesses in the first frequency band is greater than or equal to the first preset user access quantity; and the second preset condition includes: user access in the second frequency band The number is less than the second preset user access number.
  • the increasing the load capacity of the first frequency band and reducing the load capacity of the second frequency band include:
  • the increasing the load capacity of the first frequency band and reducing the load of the second frequency band according to the number of user accesses in the first frequency band and the number of user accesses in the second frequency band Ability including:
  • the increasing the load capacity of the first frequency band and reducing the load capacity of the second frequency band according to a difference in the number of user accesses between the first frequency band and the second frequency band include:
  • the load capability includes at least one sub-load capability pool
  • the configuring, by the corresponding number of idle sub-capacity capacity pools of the second frequency band, to the first frequency band includes:
  • the embodiment of the invention further provides a load capacity configuration device, comprising: a detection module and a load capability configuration module;
  • the detecting module is configured to detect a load of at least two frequency bands of the wireless local area network access point
  • the load capacity configuration module is configured to: when the load of the at least one first frequency band satisfies the first preset condition, and the load of the at least one second frequency band meets the second preset condition, the load capacity of the first frequency band is The load capacity of the second frequency band is separately reconfigured; wherein the first frequency band and the second frequency band are respectively any one of the at least two frequency bands; the first preset condition includes: The load of the first frequency band is greater than or equal to the first preset load corresponding to the first frequency band; the second preset condition includes: the load of the second frequency band is smaller than the second preset load corresponding to the second frequency band. .
  • the load includes: a user access quantity;
  • the first preset load corresponding to the first frequency band includes: a first preset user access quantity corresponding to the first frequency band
  • the second preset load corresponding to the second frequency band includes: a second preset user access quantity corresponding to the second frequency band;
  • the load capacity configuration module is configured to increase a load capacity of the first frequency band and reduce a load capacity of the second frequency band.
  • the first preset user access number corresponding to the first frequency band includes: a maximum user access quantity of the first frequency band; and the first corresponding to the second frequency band
  • the second preset user access quantity includes: the maximum user access quantity of the second frequency band.
  • the detecting module is configured to detect a load of the first frequency band and the second frequency band of the wireless local area network access point
  • the load capacity configuration module is configured to increase the load capacity of the first frequency band and reduce the load capacity of the second frequency band;
  • the first preset condition includes: the number of user accesses in the first frequency band
  • the second preset condition includes: the number of user accesses in the second frequency band is smaller than the second preset user access quantity.
  • the load capability configuration module is configured to allocate an idle load capability of the second frequency band according to a difference in user access quantity between the first frequency band and the second frequency band.
  • the first frequency band is set.
  • the load capability includes at least one sub-load capability pool
  • the load capacity configuration module is configured to allocate, according to a difference in the number of user accesses between the first frequency band and the second frequency band, a corresponding number of idle sub-load capability pools of the second frequency band to the The first frequency band.
  • the load capability configuration module is configured to switch the radio frequency channels of the first frequency band and the second frequency band to allocate a corresponding number of idle sub-capacity capability pools of the second frequency band to the Said the first frequency band.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the load capacity configuration method according to the embodiment of the invention.
  • the embodiment of the invention provides a load capacity configuration method, a device and a computer storage medium, which can effectively solve the problem that the load of one frequency band of the WLAN AP is too large and the load of another frequency band is small, so that the deep coverage of the mobile internet can be realized.
  • the load capacity configuration method provided by the embodiment of the present invention includes: detecting a load of at least two frequency bands of a wireless local area network access point; when the load of the at least one first frequency band satisfies a first preset condition, and the load of the at least one second frequency band is satisfied Reconfiguring the load capacity of the first frequency band and the load capacity of the second frequency band respectively, where the first frequency band and the second frequency band are respectively the at least two
  • the first preset condition includes: the load of the first frequency band is greater than or equal to a first preset load corresponding to the first frequency band; and the second preset condition includes: The load of the second frequency band is smaller than the second preset load corresponding to the second frequency band.
  • the load capacity configuration method in the embodiment of the present invention can dynamically configure the first frequency band in which the WLAN AP load is greater than the preset load and the second frequency band in which the load is less than the preset load, for example, the load capacity is increased for the load too large frequency band, and the load is very
  • the small frequency band reduces the load capacity; therefore, the load capacity configuration method in the embodiment of the present invention can take into account multiple frequency bands (for example, two frequency bands of 2.4G frequency band and 5G frequency band) for users to WLAN APs.
  • the load of multiple frequency bands is dynamically configured, and the load capacity of each frequency band of the WLAN AP is reasonably configured, thereby realizing deep coverage of the mobile Internet.
  • FIG. 1 is a schematic flowchart diagram of a load capacity configuration method according to Embodiment 1 of the present invention
  • FIG. 2 is a schematic flowchart of a load capacity configuration method according to Embodiment 2 of the present invention.
  • FIG. 3 is a schematic flowchart of a load capacity configuration method according to Embodiment 3 of the present invention.
  • FIG. 4 is a schematic flowchart of a load capacity configuration method according to Embodiment 4 of the present invention.
  • FIG. 5 is a schematic structural diagram of a load capacity configuration apparatus according to Embodiment 5 of the present invention.
  • FIG. 6 is a schematic structural diagram of a load capacity configuration apparatus according to Embodiment 6 of the present invention.
  • FIG. 7 is a schematic structural diagram of another load capacity configuration apparatus according to Embodiment 6 of the present invention.
  • FIG. 1 is a schematic flowchart of a load capacity configuration method according to Embodiment 1 of the present invention. As shown in FIG. 1 , the method includes the following steps:
  • Step 101 Detect a load of at least two frequency bands of a wireless local area network access point (WLAN AP).
  • WLAN AP wireless local area network access point
  • the load of at least two frequency bands of the WLAN AP can be monitored by the WLAN AP in real time.
  • the WLAN AP starts the real-time monitoring function of the load status, and detects the load status of the two bands of the 2.4G band and the 5G band in real time.
  • Step 102 When the load of the at least one first frequency band satisfies the first preset condition, and the load of the at least one second frequency band satisfies the second preset condition, the load capacity of the first frequency band and the The load capacity of the second frequency band is separately reconfigured;
  • the first preset condition includes: the load of the first frequency band is greater than or equal to a first preset load corresponding to the first frequency band; and the second preset condition includes The load of the second frequency band is smaller than the second preset load corresponding to the second frequency band.
  • the first frequency band is any one of the at least two frequency bands; the second frequency band is any one of the at least two frequency bands; the first frequency band is different from the second frequency band; .
  • the load capacity of the first frequency band that satisfies the first preset condition and the load capacity of the second frequency band that loads the second preset condition are reconfigured.
  • the WLAN AP when the WLAN AP includes three frequency bands A, B, and C, after detecting the load of the three frequency bands in step 101, the WLAN AP needs to determine whether the load of the A-band is greater than or equal to the first preset load a1 corresponding to the A-band.
  • the load capacity of the two frequency bands is reconfigured. For example, the load of the A frequency band is greater than or equal to a1 and C.
  • the load capacity of the A-band and C-band needs to be reconfigured separately; if the load of two of the three frequency bands is greater than the preset load, and one frequency band is smaller than the preset load, then The load capacities of the three frequency bands, A-band, B-band, and C-band, are reconfigured separately.
  • the load of the A-band is greater than or equal to the load of the a-band and the B-band is greater than or equal to b1.
  • the load is less than C-band c2
  • the A-band, B-band, C-band load capacity reconfigured.
  • the first preset load corresponding to each frequency band is different.
  • the first preset loads a1 and b1 respectively corresponding to the A-band and the B-band are different, and the second pre-corresponding to each frequency band is also the same.
  • the load is also different, for example, the second preset negative corresponding to the B-band and the C-band respectively
  • the loads b2 and c2 are different.
  • the first preset load and the second preset load corresponding to the frequency band may be the same or different, and may be set according to actual requirements.
  • the load includes: the number of user accesses; that is, the load of the frequency band can be measured by the number of user accesses. Therefore, the load in the embodiment includes: the number of user accesses; the first preset load corresponding to the first frequency band includes: a first preset user access number corresponding to the first frequency band; The second preset load corresponding to the second frequency band includes: a second preset user access quantity corresponding to the second frequency band.
  • the first preset condition in the embodiment may include: the number of user accesses in the first frequency band is greater than or equal to the first preset user access quantity corresponding to the first frequency band; the second preset condition The method includes: the number of user accesses in the second frequency band is smaller than the second preset user access number corresponding to the second frequency band.
  • the first preset user access number corresponding to the first frequency band in this embodiment may include: The maximum number of user accesses in a frequency band; the second preset user access number corresponding to the second frequency band includes: a maximum number of user accesses in the second frequency band.
  • the process of reconfiguring the load capacity of the first frequency band that satisfies the first preset condition and the load capacity of the second frequency band that meets the second preset condition may include: increasing the location The load capacity of the first frequency band and the load capacity of the second frequency band are reduced.
  • the load capacity configuration method of the embodiment may dynamically configure the first frequency band in which the WLAN AP load is greater than the first preset load and the second frequency band in which the load is less than the second preset load, for example, increase the load capacity for the load too large frequency band, and
  • the load capacity configuration method of the present invention can reduce the load capacity; therefore, the load capacity configuration method of the present invention can balance multiple frequency bands (for example, two frequency bands of 2.4G frequency band and 5G frequency band), and the user dynamically configures the load of multiple frequency bands of the WLAN AP, and reasonably Configuring WLAN
  • the load capacity of each frequency band of the AP enables deep coverage of the mobile Internet.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the load capacity configuration method according to the embodiment of the invention.
  • the load capacity configuration method of the embodiment of the present invention is introduced in the WLAN AP including the first frequency band and the second frequency band.
  • 2 is a schematic flowchart of a load capacity configuration method according to Embodiment 2 of the present invention. As shown in FIG. 2, the load capability configuration method in this embodiment may include:
  • Step 201 Detect the load of the first frequency band and the second frequency band.
  • the load of the embodiment includes the number of user accesses.
  • step 201 specifically includes: detecting the number of user accesses in the first frequency band and the second frequency band.
  • the first frequency band in this embodiment may include a 2.4G frequency band or a 5G frequency band
  • the second frequency band may include a 5G frequency band or a 2.4G frequency band.
  • the first frequency band and the second frequency band are different.
  • Step 202 When the load of the first frequency band satisfies a first preset condition, and the load of the second frequency band satisfies a second preset condition, the load capacity of the first frequency band and the second frequency band are The load capacity is separately reconfigured.
  • the first preset condition includes: the load of the first frequency band is greater than or equal to a first preset load
  • the second preset condition includes: the load of the second frequency band is less than The second preset load.
  • the first preset condition of the first embodiment includes: the number of user accesses in the first frequency band is greater than or equal to the first preset user access quantity;
  • the second preset condition includes: the number of user accesses in the second frequency band is smaller than the number of second preset user accesses.
  • the number of the first preset user accesses in the first frequency band may be the maximum number of user accesses in the first frequency band
  • the second preset user access number may be the maximum user access in the second frequency band. Enter the quantity.
  • the process of reconfiguring the load capacity of the first frequency band and the second frequency band in the step 202 may include:
  • the load capacity configuration method in this embodiment can reconfigure the load capacity of the two frequency bands of the 2.4G frequency band and the 5G frequency band, increase the load capacity for the load too large frequency band, and reduce the load capacity for the small load frequency band, thereby taking into consideration the 2.4G frequency band.
  • the two bands of the 5G frequency band dynamically configure the load of the 2.4G band and the 5G band of the WLAN AP to achieve deep coverage of the mobile Internet.
  • the process of increasing the load capacity of the first frequency band and reducing the load capacity of the second frequency band may include: receiving a user according to the first frequency band The number of users and the number of user accesses in the second frequency band increase the load capacity of the first frequency band and reduce the load capacity of the second frequency band.
  • the WLAN AP when the real-time monitoring function of the load status in the WLAN AP detects that the number of user accesses in the first frequency band is greater than the maximum number of user accesses, and the number of user accesses in the second frequency band is less than the maximum number of user accesses, the WLAN AP load
  • the status real-time monitoring function may initiate a reconfiguration load capability request, where the request may carry the number of user accesses in the first frequency band and the number of user accesses in the second frequency band; the WLAN AP may request to perform the reconfiguration based on the reconfiguration load capacity.
  • the load capacity of the first frequency band and the load capacity of the second frequency band are reconfigured.
  • the load capacity configuration method in this embodiment may increase the load capacity and decrease of the first frequency band according to a difference in user access quantity between the first frequency band and the second frequency band.
  • the load capacity of the second frequency band may increase the load capacity and decrease of the first frequency band according to a difference in user access quantity between the first frequency band and the second frequency band.
  • the process of reconfiguring the load capacity in the method of the embodiment may include: configuring, according to the difference in the number of user accesses between the first frequency band and the second frequency band, the idle load capability of the second frequency band to the first Frequency band.
  • the reconfiguration in the load capacity configuration method in this embodiment is to configure the idle load capability of the second frequency band to the first frequency band, thereby increasing the load capacity of the first frequency band and reducing The load capacity of the second frequency band is reduced.
  • the load capacity of the frequency band may be composed of at least one sub-load capability pool.
  • the load capability configuration method in this embodiment may be based on the first frequency band and the second frequency band.
  • the user access quantity difference is configured to allocate the idle sub-load capability pool of the second frequency band to the first frequency band.
  • a corresponding number of idle sub-capacity capacity pools of the second frequency band are configured to the first frequency band according to a difference in user access quantity between the first frequency band and the second frequency band.
  • the load capacity configuration method in this embodiment first determines the number of sub-load capability pools that need to be reconfigured according to the difference in the number of user accesses between the first frequency band and the second frequency band. And configuring the number of idle sub-capacity capacity pools of the second frequency band to the first frequency band.
  • determining the number of sub-load capability pools that need to be reconfigured is X, and then configuring X idle sub-capacity capacity pools of the second frequency band to the first frequency band.
  • the radio frequency channel of the first frequency band and the second frequency band may be switched to allocate the idle sub-load capability pool of the second frequency band to the first frequency band.
  • the method in this embodiment can solve the problem that the user load of one frequency band of the WLAN AP is too large and the load of the other frequency band is small, thereby effectively achieving the deep coverage of the mobile Internet in the two frequency bands of the 2.4G frequency band and the 5G frequency band.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the load capacity configuration method according to the embodiment of the invention.
  • FIG. 3 is a schematic flowchart of a load capacity configuration method according to Embodiment 3 of the present invention; as shown in FIG. 3, the following steps are included:
  • Step 301 The WLAN AP configures the load capacity required by the users in the 2.4G frequency band and the 5G frequency band by default.
  • Step 302 The WLAN AP starts the real-time monitoring function of the load status, and detects the load status of the current two bands of the 2.4G band and the 5G band.
  • Step 303 The real-time monitoring function of the load state detects that the load of one frequency band is too large and the load of the other frequency band is small.
  • the load of one frequency band is too large, and the load of the first frequency band described in the first embodiment or the second embodiment meets the first preset condition, and the load of the other frequency band is small, which is equivalent to the first embodiment or the second embodiment.
  • the load of the second frequency band satisfies the second preset condition.
  • the load of a certain frequency band is too large or the load is small, and can be characterized by the number of user accesses. If the number of user accesses in a certain frequency band has reached the maximum number of user accesses in the frequency band, the load of the frequency band is too large (satisfying the first preset condition); if the number of users accessing a certain frequency band is far less The maximum number of user accesses in the frequency band is that the load of the frequency band is small (the second preset condition is satisfied).
  • Step 304 The load status real-time monitoring function initiates reconfiguration of each frequency band load capability request.
  • the request in this step carries the number of user accesses in the two bands of the 2.4G band and the 5G band.
  • Step 305 The WLAN AP reconfigures the load capacities of the two bands of the 2.4G band and the 5G band.
  • the load capacities of the two bands of the 2.4G band and the 5G band are reconfigured according to the number of user accesses in the two bands of the 2.4G band and the 5G band. Specifically, the load capacity of the frequency band with too much load is increased, and the load capacity of the frequency band with a small load is reduced.
  • the load capacity is composed of a plurality of sub-load capacity pools.
  • the sub-load capacity pool used by the users in the frequency band is preferentially used, and the sub-load capacity pool is to be used.
  • the user of the band that is subsequently accessed will use another sub-load capacity pool of the empty load.
  • the load capacity of the two bands of the 2.4G band and the 5G band needs to be reconfigured, only one of the bands with a small load is required.
  • These idle sub-load capacity pools can be reconfigured to a frequency band with too much load. Thereby speeding up the load capacity reconfiguration speed and effectively improving the user experience.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the load capacity configuration method according to the embodiment of the invention.
  • FIG. 4 is a schematic flowchart of a load capacity configuration method according to Embodiment 4 of the present invention; as shown in FIG. 4, this embodiment provides a load capacity configuration method, when a certain frequency band is loaded too much and another frequency band is loaded. Very small, through the dynamic configuration of the 2.4G band and 5G band load capacity of the WLAN AP, effectively balancing the two bands of the 2.4G band and the 5G band to achieve deep coverage of the mobile Internet, including the following steps:
  • Step 401 The WLAN AP configures the load capability module required by the users in the 2.4G and 5G frequency bands by default.
  • the WLAN AP load capacity module is divided into two sub-load capability module groups: a sub-load capability module group R1, configured to provide capability support for an A-band load accessing the WLAN AP, where the A-band is 2.4G band and 5G band A frequency band; the sub-load capability module group R2 is configured to provide capability support for a B-band load accessing the WLAN AP, and the B-band is another frequency band other than the aforementioned A-band. If A is a 2.4G band, the B band is a 5G band; otherwise, such as an A band. The segment is the 5G band, and the B band is the 2.4G band.
  • Each sub-load capability module group consists of multiple sub-load capability pools.
  • the sub-load capability module group R1 is composed of an A-band sub-load capability pool 1, an A-band sub-load capability pool 2, and an A-band sub-load capability pool X;
  • the sub-load capability module group R2 is composed of a B-band sub-load capability pool 1 and a B-band.
  • Step 402 The WLAN AP accesses the 2.4G frequency band and the 5G frequency band load.
  • the load is characterized by a number of user accesses, and the load and the number of user accesses are in a proportional relationship.
  • the WLAN AP preferentially configures the user to use the sub-load capability pool used by the user in the existing frequency band, and when the sub-load capacity pool is fully loaded, the subsequent access is performed. The band user then uses another sub-load capacity pool of empty loads.
  • Step 403 The WLAN AP starts the real-time monitoring function of the load status.
  • the load status real-time monitoring function is configured to perform real-time detection on the 2.4G frequency band and the 5G frequency band load status of the WLAN AP.
  • Step 404 The WLAN AP load status real-time monitoring function monitors whether the user accessing the A-band has reached the maximum number of connections in the A-band, and the user accessing the B-band is far lower than the maximum number of connections in the B-band.
  • step 405 is performed; when the result of the determination is no, step 403 is re-executed.
  • the A frequency band is a certain frequency band of the 2.4G frequency band and the 5G frequency band
  • the B frequency band is another frequency band other than the A frequency band. If A is a 2.4G band, then the B band is a 5G band; or conversely, if the A band is a 5G band, the B band is a 2.4G band.
  • Step 405 When the result of the determination in step S404 is YES, that is, when the WLAN AP load status real-time monitoring function monitors that the user accessing the A-band has reached the maximum number of A-band connections, and the user accessing the B-band is far lower.
  • the WLAN AP load status real-time monitoring function initiates reconfiguration of the load energy of the 2.4G frequency band and the 5G frequency band. Request for force.
  • the load request of the two frequency bands of the reconfigured 2.4G frequency band and the 5G frequency band carries the number of user accesses of the frequency band of the WLAN AP in the two frequency bands of the 2.4G frequency band and the 5G frequency band.
  • Step 406 The WLAN AP learns the difference L of the number of user accesses in the two frequency bands according to the reconfiguration request.
  • Step 407 The WLAN AP determines the number N of sub-load capability pools that need to be reconfigured according to the difference L between the user access numbers of the two frequency bands.
  • the sub-load capability pool that needs to be reconfigured refers to the idle sub-load capability pool of the frequency band with a small load in the step S402.
  • the user access quantity difference value L and the reconfigured sub-load capacity pool number N are in a proportional relationship, and the larger L is, the larger the N is.
  • Step 408 The B-band load capacity is reduced by N sub-load capability pools, and the A-band load capability is increased by N sub-load capability pools.
  • the reconfigured sub-load capability pool can be implemented by switching RF channels of different frequency bands through an Erable Programmable Logic Device (EPLD) or an electronic DIP switch. Specifically, part of the RF channel of the frequency band with a small load is switched to a frequency band with a large load.
  • EPLD Erable Programmable Logic Device
  • the switching principle is carried out according to the foregoing method: the larger the difference between the number of access users in the two frequency bands of the 2.4G frequency band and the 5G frequency band, the more RF channels that need to be switched.
  • the load capacity pool is increased for the load too large frequency band, and the load capacity pool is reduced for the small load frequency band, thereby taking into account the two frequency band users of the 2.4G frequency band and the 5G frequency band.
  • the embodiment of the invention further provides a computer storage medium, wherein the computer storage medium stores computer executable instructions, and the computer executable instructions are used to execute the load capacity configuration method according to the embodiment of the invention.
  • FIG. 5 is a schematic structural diagram of a load capacity configuration apparatus according to Embodiment 5 of the present invention. As shown in FIG. 5, the method includes: a detection module 501 and a load capability configuration module 502;
  • the detecting module 501 is configured to detect a load of at least two frequency bands of the wireless local area network access point;
  • the load capacity configuration module 502 is configured to load the first frequency band when the load of the at least one first frequency band satisfies the first preset condition and the load of the at least one second frequency band meets the second preset condition And the load capacity of the second frequency band is separately reconfigured; wherein the first frequency band and the second frequency band are respectively any one of the at least two frequency bands; and the first preset condition includes: The load of the first frequency band is greater than or equal to the first preset load corresponding to the first frequency band; the second preset condition includes: the load of the second frequency band is smaller than the second preset corresponding to the second frequency band. load.
  • the load in the embodiment includes: a user access quantity;
  • the first preset load corresponding to the first frequency band includes: a first preset user corresponding to the first frequency band
  • the second preset load corresponding to the second frequency band includes: a second preset user access quantity corresponding to the second frequency band;
  • the load capacity configuration module 502 is configured to increase the load capacity of the first frequency band and reduce the load capacity of the second frequency band.
  • the first preset user access number corresponding to the first frequency band includes: a maximum user access quantity of the first frequency band; and a second corresponding to the second frequency band
  • the preset user access quantity includes: the maximum user access quantity of the second frequency band.
  • the WLAN access point includes a first frequency band and a second frequency band
  • the first preset condition includes: the number of user accesses in the first frequency band is greater than or equal to the first preset user access quantity.
  • the second preset condition includes: the number of user accesses in the second frequency band is less than Describe the second preset user access quantity;
  • the load capacity configuration module 502 is configured to increase the load capacity of the first frequency band and reduce the load capacity of the second frequency band; the first preset condition includes: user access in the first frequency band The quantity is greater than or equal to the first preset user access quantity; the second preset condition includes: the number of user accesses in the second frequency band is smaller than the second preset user access quantity.
  • the load capability configuration module 502 is configured to configure an idle load capability of the second frequency band according to a difference in user access quantity between the first frequency band and the second frequency band. Said the first frequency band.
  • the load capability includes at least one sub-load capability pool
  • the load capacity configuration module 502 is configured to allocate, according to the difference in the number of user accesses between the first frequency band and the second frequency band, a corresponding number of idle sub-load capability pools of the second frequency band. Said the first frequency band.
  • the method in this embodiment can solve the problem that the user load of one frequency band of the WLAN AP is too large and the load of the other frequency band is small, thereby effectively achieving the deep coverage of the mobile Internet in the two frequency bands of the 2.4G frequency band and the 5G frequency band.
  • the load capacity configuration device can be implemented by a WLAN AP in an actual application; the detection module 501 and the load capability configuration module 502 in the load capability configuration device can pass through the WLAN AP in an actual application.
  • a central processing unit CPU
  • DSP digital signal processor
  • FPGA Field-Programmable Gate Array
  • FIG. 6 is a schematic structural diagram of a load capacity configuration apparatus according to Embodiment 6 of the present invention; as shown in FIG. 6, the embodiment provides a load capacity configuration apparatus, which is applied to a WLAN AP including a 2.4G frequency band and a 5G frequency band.
  • the load capacity default configuration module 10 the load status real-time monitoring module 20, the load capability module 30, the real-time response module 40, and the load capacity re
  • the configuration module 50 wherein the load status real-time monitoring module 20 is equivalent to the detecting module 501 in the fifth embodiment, and the real-time response module 40 and the load capacity re-configuration module 50 are equivalent to the load capacity configuration in the fifth embodiment.
  • Module 502 wherein
  • the load capacity default configuration module 10 is configured to configure the load capacity required by the users in the 2.4G frequency band and the 5G frequency band by default;
  • the load status real-time monitoring module 20 is configured to detect the load status of the 2.4G frequency band and the 5G frequency band of the WLAN AP; and when the load of one frequency band is detected to be too large and the load of the other frequency band is small, the 2.4G is reconfigured. Load capacity request for frequency band and 5G band;
  • the load capacity module 30 is configured to provide support for the load required by the users of the two bands of the 2.4G frequency band and the 5G frequency band before the load capacity reconfiguration, and is also configured to reconfigure the two bands of the 2.4G frequency band and the 5G frequency band after the load capacity is reconfigured.
  • the load required by the user provides capacity support;
  • the real-time response module 40 is configured to parse the load capacity request of the two frequency bands of the 2.4G frequency band and the 5G frequency band initiated by the load status real-time monitoring module 20, and reconfigure the 2.4G frequency band and the 5G frequency band according to the analysis result distribution.
  • Load capacity command ;
  • the load capacity reconfiguration module 50 is configured to execute the load capability reconfiguration command of the 2.4G frequency band and the 5G frequency band distributed by the real time response module 40; and reconfigure the load capability module 30.
  • the load capacity default configuration module 10 defaults to the load capacity required by the users in the 2.4G frequency band and the 5G frequency band; and the load state real-time monitoring module 20 is enabled to detect the 2.4G frequency band in real time.
  • the load status of the two frequency bands of the 5G frequency band when the load status real-time monitoring module 20 detects that one frequency band load is too large and the other frequency band load is small; the load status real-time monitoring module 20 initiates a restart to the real-time response module 40 Configuring a load capacity request for two frequency bands of the 2.4G frequency band and the 5G frequency band; the real-time response module 40 parses the received load capacity request of the two frequency bands of the reconfigured 2.4G frequency band and the 5G frequency band, and distributes the re-2.4G frequency band according to the analysis result.
  • the load capacity reconfiguration module 50 redistributes the load capacity module 30 to increase the load capacity for the load too large frequency band, and the load is very Small frequency bands reduce load capacity. Therefore, the problem that the load of one frequency band is too large and the load of the other frequency band is small is avoided, and the users of the two frequency bands of the 2.4G frequency band and the 5G frequency band are taken into consideration, and the load of the two frequency bands of the 2.4G frequency band and the 5G frequency band of the WLAN AP is dynamically configured. Mobile Internet deep coverage.
  • FIG. 7 is a schematic structural diagram of another load capacity configuration apparatus according to Embodiment 6 of the present invention; as shown in FIG. 7, the load capability module 30 includes two sub-module groups: a sub-load capability module group R1, configured as a pair. The load providing capability of a certain frequency band is supported; the sub-load capability module group R2 is configured to provide capability support for another frequency band load other than the foregoing one frequency band; the sub-load capability module group R1 and the sub-load capability module group R2 are both A plurality of sub-load capacity pools are configured.
  • the sub-load capacity pool used by the users in the frequency band is preferentially used.
  • the frequency band to be subsequently accessed is used.
  • the user then uses another sub-load capacity pool of empty load; when reconfiguration is required, it is only necessary to reconfigure some idle sub-load capacity pools of the load-carrying frequency band to the frequency band with too much load. Thereby speeding up the reconfiguration speed of the load capacity of the two frequency bands of the 2.4G frequency band and the 5G frequency band, effectively improving the user experience.
  • the problem that the load of one frequency band is too large and the load of the other frequency band is small is avoided, taking into account the users of the two frequency bands of the 2.4G frequency band and the 5G frequency band, and the load of the two frequency bands of the 2.4G frequency band and the 5G frequency band of the WLAN AP.
  • the load capacity configuration device may be implemented by a WLAN AP in a practical application; a load capability default configuration module 10, a load state real-time monitoring module 20, and a load capability module 30 in the load capability configuration device,
  • the real-time response module 40 and the load capability reconfiguration module 50 can be implemented by a central processing unit (CPU, in the WLAN AP). Central Processing Unit), Digital Signal Processor (DSP) or Field-Programmable Gate Array (FPGA).
  • CPU central processing unit
  • CPU Central Processing Unit
  • DSP Digital Signal Processor
  • FPGA Field-Programmable Gate Array
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention can take the form of a hardware embodiment, a software embodiment, or a combination of software and hardware. Moreover, the invention can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the instruction device implements the functions specified in one or more blocks of the flowchart or in a flow or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.
  • the first frequency band with the WLAN AP load greater than the preset load and the second frequency band with the load less than the preset load are dynamically configured, for example, the load capacity is increased for the load too large band, and the load is reduced for the small load band. Therefore, the load capacity configuration method of the embodiment of the present invention can balance the load of multiple frequency bands of the WLAN AP in multiple frequency bands (for example, the two frequency bands of the 2.4G frequency band and the 5G frequency band), and reasonably configure the load of each frequency band of the WLAN AP. The ability to achieve deep coverage of the mobile Internet.

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Abstract

本发明实施例公开了一种负载能力配置方法、装置及计算机存储介质。所述方法包括:检测无线局域网接入点的至少两个频段的负载;当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。

Description

一种负载能力配置方法、装置及计算机存储介质 技术领域
本发明涉及移动互联网通讯领域,尤其涉及一种负载能力配置方法、装置及计算机存储介质。
背景技术
随着手机等移动终端无线保真(WiFi,Wireless-Fidelity)上网功能的普及,2.4G频段和5G频段两个频段的用户将大量长期并存。无线局域网(WLAN,Wireless LAN)接入点(AP,Access Point)同时兼顾2.4G频段和5G频段两个频段的用户对移动互联网进行深度覆盖,变得越来越重要。
尤其是在如商业区、车站等WiFi终端用户高度集中的区域,WLAN AP存在某个频段负载太大、而另一频段负载很小,导致无法实现移动互联网深度覆盖的问题。例如2.4G频段需要接入用户太多导致负载太大而5G频段用户很少、负载很小;或反之,5G频段需要接入用户太多导致负载太大而2.4G频段用户很少、负载很小。针对以上情况,目前尚未提出有效的解决方案。
发明内容
本发明实施例期望提供一种负载能力配置方法、装置及计算机存储介质,能够解决现有技术由于存在一个频段负载太大而另一个频段负载很小导致无法实现移动互联网深度覆盖的技术问题。
为达到上述目的,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负载能力配置方法,包括如下步骤:
检测无线局域网接入点的至少两个频段的负载;
当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;
其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;
所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;
所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。
在另一实施例中,所述负载包括:用户接入数量;所述与所述第一频段对应的第一预设负载包括:与所述第一频段对应的第一预设用户接入数量;所述与所述第二频段对应的第二预设负载包括:与所述第二频段对应的第二预设用户接入数量;
所述对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置的步骤包括:
增大所述第一频段的负载能力和减小所述第二频段的负载能力。
在另一实施例中,所述与所述第一频段对应的第一预设用户接入数量包括:所述第一频段的最大用户接入数量;所述与所述第二频段对应的第二预设用户接入数量包括:所述第二频段的最大用户接入数量。
在另一实施例中,所述检测无线局域网接入点的至少两个频段的负载,包括:
检测无线局域网接入点的第一频段和第二频段的负载;
所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所述第二预设用户接入数量。
在另一实施例中,所述增大所述第一频段的负载能力和减小所述第二频段的负载能力,包括:
根据所述第一频段的用户接入数量和第二频段的用户接入数量,增大所述第一频段的负载能力和减小所述第二频段的负载能力。
在另一实施例中,所述根据所述第一频段的用户接入数量和第二频段的用户接入数量,增大所述第一频段的负载能力和减小所述第二频段的负载能力,包括:
根据所述第一频段与第二频段之间的用户接入数量差值,增大所述第一频段的负载能力和减小所述第二频段的负载能力。
在另一实施例中,所述根据所述第一频段与第二频段之间的用户接入数量差值,增大所述第一频段的负载能力和减小所述第二频段的负载能力,包括:
根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段。
在另一实施例中,所述负载能力包括至少一个子负载能力池;
所述根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段,包括:
根据所述第一频段与第二频段之间的用户接入数量差值,将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
在另一实施例中,所述将对应数量的第二频段的空闲子负载能力池配置给所述第一频段,包括:
切换所述第一频段和所述第二频段的射频通道以将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
本发明实施例还提供了一种负载能力配置装置,包括:检测模块和负载能力配置模块;
所述检测模块,配置为检测无线局域网接入点的至少两个频段的负载;
所述负载能力配置模块,配置为当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。
在另一实施例中,所述负载包括:用户接入数量;所述与所述第一频段对应的第一预设负载包括:与所述第一频段对应的第一预设用户接入数量;所述与所述第二频段对应的第二预设负载包括:与所述第二频段对应的第二预设用户接入数量;
所述负载能力配置模块,配置为增大所述第一频段的负载能力和减小所述第二频段的负载能力。
在另一实施例中,所述与所述第一频段对应的第一预设用户接入数量包括:所述第一频段的最大用户接入数量;所述与所述第二频段对应的第二预设用户接入数量包括:所述第二频段的最大用户接入数量。
在另一实施例中,所述检测模块,配置为检测无线局域网接入点的第一频段和第二频段的负载;
所述负载能力配置模块,配置为增大所述第一频段的负载能力和减小所述第二频段的负载能力;所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所述第二预设用户接入数量。
在另一实施例中,所述负载能力配置模块,配置为根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配 置给所述第一频段。
在另一实施例中,所述负载能力包括至少一个子负载能力池;
所述负载能力配置模块,配置为根据所述第一频段与所述第二频段之间的用户接入数量差值,将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
在另一实施例中,所述负载能力配置模块,配置为切换所述第一频段和所述第二频段的射频通道以将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
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中存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的负载能力配置方法。
本发明实施例提供了一种负载能力配置方法、装置及计算机存储介质,能够有效解决WLAN AP某个频段负载太大、而另一频段负载很小的问题,从而可以实现移动互联网的深度覆盖。本发明实施例提供的负载能力配置方法包括:检测无线局域网接入点的至少两个频段的负载;当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。本发明实施例的负载能力配置方法可以对WLAN AP负载大于预设负载的第一频段和负载小于预设负载的第二频段进行动态配置,例如对负载太大频段增加负载能力,而对负载很小频段减小负载能力;因此本发明实施例的负载能力配置方法可以兼顾多个频段(例如2.4G频段和5G频段两个频段)用户对WLAN AP 多个频段负载进行动态配置,合理地配置WLAN AP各频段的负载能力,实现了移动互联网深度覆盖。
附图说明
图1为本发明实施例一提供的一种负载能力配置方法的流程示意图;
图2为本发明实施例二提供的一种负载能力配置方法的流程示意图;
图3为本发明实施例三提供的一种负载能力配置方法的流程示意图;
图4为本发明实施例四提供的一种负载能力配置方法的流程示意图;
图5为本发明实施例五提供的一种负载能力配置装置的结构示意图;
图6为本发明实施例六提供的一种负载能力配置装置的结构示意图;
图7为本发明实施例六提供的另一种负载能力配置装置的结构示意图。
具体实施方式
下面通过具体实施方式结合附图对本发明作进一步详细说明。
实施例一
考虑到现有技术由于存在一个频段负载太大而另一个频段负载很小导致无法实现移动互联网深度覆盖的技术问题。本实施例提供了一种负载能力配置方法,图1为本发明实施例一提供的一种负载能力配置方法的流程示意图,如图1所示,包括如下步骤:
步骤101:检测无线局域网接入点(WLAN AP)的至少两个频段的负载。
本步骤是可以由WLAN AP实时监测WLAN AP的至少两个频段的负载。例如当WLAN AP包括2.4G频段和5G频段时,WLAN AP开启负载状态实时监控功能,实时探测2.4G频段和5G频段两个频段的负载状态。
步骤102:当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述 第二频段的负载能力分别进行重新配置;所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。
其中,所述第一频段为所述至少两个频段中的任一频段;所述第二频段为所述至少两个频段中的任一频段;所述第一频段与所述第二频段不同。
在本实施例在WLAN AP所有频段中只要存在一个或一个以上第一频段的负载满足第一预设条件,且一个或一个以上的第二频段的负载满足第二预设条件时,就需要对满足第一预设条件的第一频段的负载能力和负载第二预设条件的第二频段的负载能力进行重新配置。
例如当WLAN AP包括A、B、C三个频段时,在步骤101检测到这三个频段的负载之后,WLAN AP还需要判断A频段的负载是否大于等于A频段对应的第一预设负载a1、是否小于A频段对应的第二预设负载a2,同样按照这种判断方式依次判断B频段的负载是否大于等于b1、是否小于b2,C频段的负载是否大于c1、是否小于c2;若三个频段中一个频段的负载大于等于对应的预设负载,且一个频段负载小于对应的预设负载时,则对这两个频段的负载能力进行重新配置,例如A频段的负载大于等于a1、且C频段的负载小于c2时,则需要对A频段和C频段的负载能力分别进行重新配置;若三个频段中有两个频段的负载大于预设负载,且一个频段小于预设负载时,则需要对A频段、B频段、C频段这个三个频段的负载能力分别进行重新配置,例如A频段的负载大于等于a1、B频段的负载大于等于b1且C频段的负载小于c2时,对A频段、B频段、C频段的负载能力进行重新配置。
在本实施例中,每个频段对应的第一预设负载是不相同,例如A频段和B频段分别对应的第一预设负载a1、b1是不相同,同样每个频段对应的第二预设负载也是不相同的,例如B频段和C频段分别对应的第二预设负 载b2、c2是不相同。
应当理解:在本实施例中频段对应的第一预设负载和第二预设负载可以相同,也可以是不相同,具体可以根据实际需求进行设置。
作为其中一种实施方式,在本实施例中,所述负载包括:用户接入数量;即频段的负载可以通过用户接入数量来衡量。因此,本实施例中负载包括:用户接入数量;则所述与所述第一频段对应的第一预设负载包括:与所述第一频段对应的第一预设用户接入数量;所述与所述第二频段对应的第二预设负载包括:与所述第二频段对应的第二预设用户接入数量。
此时,本实施例中第一预设条件可以包括:所述第一频段的用户接入数量大于等于所述第一频段对应的第一预设用户接入数量;所述第二预设条件可以包括:所述第二频段的用户接入数量小于所述第二频段对应的第二预设用户接入数量。
作为另一种实施方式,在第一预设负载和第二预设负载相同的情况下,本实施例中与所述第一频段对应的第一预设用户接入数量可以包括:所述第一频段的最大用户接入数量;所述与所述第二频段对应的第二预设用户接入数量包括:所述第二频段的最大用户接入数量。
在步骤102中,负载满足所述第一预设条件的第一频段的负载能力和负载满足所述第二预设条件的第二频段的负载能力分别进行重新配置的过程可以包括:增大所述第一频段的负载能力和减小所述第二频段的负载能力。
本实施例的负载能力配置方法可以对WLAN AP负载大于第一预设负载的第一频段和负载小于第二预设负载的第二频段进行动态配置,例如对负载太大频段增加负载能力,而对负载很小频段减小负载能力;因此本发明的负载能力配置方法可以兼顾多个频段(例如2.4G频段和5G频段两个频段),用户对WLAN AP多个频段负载进行动态配置,合理地配置WLAN AP各频段的负载能力,实现了移动互联网深度覆盖。
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中存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的负载能力配置方法。
实施例二
本实施例以WLAN AP包括第一频段和第二频段两个频段来介绍本发明实施例的负载能力配置方法。图2为本发明实施例二提供的一种负载能力配置方法的流程示意图,如图2所示,本实施例的负载能力配置方法可以包括:
步骤201:检测第一频段和第二频段的负载。
具体的,本实施例的负载包括用户接入数量,此时步骤201具体包括:检测第一频段和第二频段的用户接入数量。
其中,本实施例中第一频段可以包括2.4G频段或者5G频段,第二频段可以包括5G频段或者2.4G频段。所述第一频段和所述第二频段不相同。
步骤202:当所述第一频段的负载满足第一预设条件,且所述第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;其中,所述第一预设条件包括:所述第一频段的负载大于等于第一预设负载,所述第二预设条件包括:所述第二频段的负载小于第二预设负载。
具体地,当负载包括用户接入数量时,本实施例的所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所述第二预设用户接入数量。
在实际应用中,本实施例中第一预设用户接入数量可以为第一频段的最大用户接入数量,第二预设用户接入数量可以为第二频段的最大用户接 入数量。
具体的,本步骤202中对所述第一频段和所述第二频段的负载能力进行重新配置的过程可以包括:
增大所述第一频段的负载能力和减小所述第二频段的负载能力。
本实施例的负载能力配置方法可以对2.4G频段和5G频段两个频段负载能力进行重新配置,对负载太大频段增加负载能力,而对负载很小频段减小负载能力,从而兼顾2.4G频段和5G频段两个频段用户对WLAN AP的2.4G频段和5G频段两个频段的负载进行动态配置,实现移动互联网深度覆盖。
在本实施例所述的负载能力配置方法中,所述增大所述第一频段的负载能力和减小所述第二频段的负载能力的过程可以包括:根据所述第一频段的用户接入数量和所述第二频段的用户接入数量,增大所述第一频段的负载能力和减小所述第二频段的负载能力。
例如当WLAN AP中负载状态实时监控功能检测到所述第一频段的用户接入数量大于最大用户接入数量,所述第二频段的用户接入数量小于最大用户接入数量时,WLAN AP负载状态实时监控功能可以发起重新配置负载能力请求,所述请求可以携带所述第一频段的用户接入数量和所述第二频段的用户接入数量;WLAN AP会根据重新配置负载能力请求对所述第一频段的负载能力和所述第二频段的负载能力进行重新配置。
作为一种实施方式,本实施例所述的负载能力配置方法可以根据所述第一频段与第二频段之间的用户接入数量差值,增大所述第一频段的负载能力和减小所述第二频段的负载能力。
本实施例方法中重新配置负载能力的过程可以包括:根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段。
也就是说,本实施例所述的负载能力配置方法中所述的重新配置是将第二频段的空闲负载能力配置给所述第一频段,这样就增加了第一频段的负载能力,同时减小了第二频段的负载能力。
在本实施例中频段的负载能力可以由至少一个子负载能力池组成,在此情况下,本实施例所述的负载能力配置方法可以根据所述第一频段和所述第二频段之间的用户接入数量差值,将第二频段的空闲子负载能力池配置给第一频段。具体地,根据所述第一频段与第二频段之间的用户接入数量差值,将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
本实施例所述的负载能力配置方法在重新配置过程中,首先根据所述第一频段与所述第二频段之间的用户接入数量差值确定需要重新配置的子负载能力池的个数;将所述个数的所述第二频段的空闲子负载能力池配置给所述第一频段。
例如,确定需要重新配置的子负载能力池的个数为X,然后将X个第二频段的空闲子负载能力池配置给所述第一频段。
在本实施例方法中,可以通过切换所述第一频段和所述第二频段的射频通道以将所述第二频段的空闲子负载能力池配置给所述第一频段。
本实施例的方法可以解决WLAN AP某个频段用户负载太大、而另一频段负载很小的问题,从而有效兼顾2.4G频段和5G频段两个频段用户实现移动互联网的深度覆盖。
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中存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的负载能力配置方法。
实施例三
本实施例同样以WLAN AP包括2.4G频段和5G频段为例来具体介绍 本发明的负载能力配置方法,图3为本发明实施例三提供的一种负载能力配置方法的流程示意图;如图3所示,包括以下步骤:
步骤301:WLAN AP默认配置2.4G频段和5G频段两个频段用户所需负载能力。
步骤302:WLAN AP开启负载状态实时监控功能,探测当前2.4G频段和5G频段两个频段的负载状态。
步骤303:负载状态实时监控功能探测到一个频段负载太大而另一个频段负载很小。
此时,一个频段负载太大相当于上述实施例一或实施例二所述的第一频段的负载满足第一预设条件,另一个频段负载很小相当于实施例一或实施例二所述的第二频段的负载满足第二预设条件。
本实施例中某个频段负载太大或负载很小,可通过用户接入数量表征。如果某个频段的用户接入数量已达所述频段的最大用户接入数量,即为所述频段的负载太大(满足第一预设条件);如果某个频段的用户接入数量远少于所述频段的最大用户接入数量,即为所述频段的负载很小(满足第二预设条件)。
步骤304:所述负载状态实时监控功能发起重新配置各个频段负载能力请求。
本步骤中的所述请求携带2.4G频段和5G频段两个频段的用户接入数量。
步骤305:WLAN AP对2.4G频段和5G频段两个频段负载能力进行重新配置。
作为一种实施方式,根据2.4G频段和5G频段两个频段的用户接入数量对2.4G频段和5G频段两个频段负载能力进行重新配置。具体地,增大负载太大的频段的负载能力,减小负载很小的频段的负载能力。
在本实施例中,所述负载能力由多个子负载能力池组成,当某频段用户接入WLAN AP时,优先使用已有所述频段用户使用的子负载能力池,待所述子负载能力池满负荷时,后续接入的所述频段用户再使用另一个空负载的子负载能力池,需要重新配置2.4G频段和5G频段两个频段负载能力时,只需把负载很小的频段的某些空闲子负载能力池重新配置给负载太大的频段即可。从而加快了负载能力重新配置速度,有效的提升了用户体验效果。从而避免了某个频段负载太大而另一个频段负载很小的问题,有效地兼顾了2.4G频段和5G频段两个频段用户,实现移动互联网的深度覆盖。
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中存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的负载能力配置方法。
实施例四
图4为本发明实施例四提供的一种负载能力配置方法的流程示意图;如图4所示,本实施例提供了一种负载能力配置方法,当某个频段负载太大而另一个频段负载很小时,通过对WLAN AP的2.4G频段和5G频段两个频段负载能力进行动态配置,有效地兼顾了2.4G频段和5G频段两个频段用户,实现移动互联网的深度覆盖,包括如下步骤:
步骤401:WLAN AP默认配置2.4G和5G两个频段用户所需负载能力模块。
所述WLAN AP负载能力模块分成两个子负载能力模块组:子负载能力模块组R1,配置为对接入WLAN AP的A频段负载提供能力支撑,所述A频段是2.4G频段和5G频段的任一频段;子负载能力模块组R2,配置为对接入WLAN AP的B频段负载提供能力支撑,所述B频段是前述A频段之外的另一频段。如A是2.4G频段,则B频段是5G频段;反之,如A频 段是5G频段,则B频段是2.4G频段。每个子负载能力模块组均由多个子负载能力池组成。如子负载能力模块组R1由A频段子负载能力池1、A频段子负载能力池2至A频段子负载能力池X组成;子负载能力模块组R2由B频段子负载能力池1、B频段子负载能力池2至B频段子负载能力池Y组成。
步骤402:WLAN AP接入2.4G频段和5G频段负载。
作为一种实施方式,所述负载通过用户接入数量表征,所述负载和用户接入数量为正比例关系。
具体的,当某频段用户需要接入WLAN AP时,WLAN AP优先配置所述用户使用已有所述频段用户使用的子负载能力池,待所述子负载能力池满负荷时,后续接入的所述频段用户再使用另一个空负载的子负载能力池。
步骤403:WLAN AP开启负载状态实时监控功能。
所述负载状态实时监控功能,配置为对WLAN AP的2.4G频段和5G频段负载状态进行实时探测。
步骤404:WLAN AP负载状态实时监控功能监控接入A频段用户是否已达所述A频段最大连接数,并且接入B频段用户远低于所述B频段最大连接数。当判断的结果为是时,执行步骤405;当判断的结果为否时,重新执行步骤403。
所述A频段是2.4G频段和5G频段的某一频段,所述B频段是所述A频段之外的另一频段。如A是2.4G频段,则B频段是5G频段;或反之,如A频段是5G频段,则B频段是2.4G频段。
步骤405:当步骤S404的判断结果为是时,即,当所述WLAN AP负载状态实时监控功能监控到接入A频段用户已达所述A频段最大连接数,并且接入B频段用户远低于所述B频段最大连接数时,所述WLAN AP负载状态实时监控功能发起重新配置2.4G频段和5G频段两个频段负载能 力请求。
所述重新配置2.4G频段和5G频段两个频段负载请求携带有2.4G频段和5G频段两个频段WLAN AP所述频段的用户接入数量。
步骤406:WLAN AP根据所述重新配置请求,获知两个频段用户接入数量相差值L。
步骤407:WLAN AP根据所述两个频段用户接入数量相差值L决定需要重新配置的子负载能力池个数N。
作为一种实施方式,所述需要重新配置的子负载能力池是指所述步骤S402中,负载很小的频段的空闲子负载能力池。所述用户接入数量相差值L和所述重新配置的子负载能力池个数N为正比例关系,L越大,N也越大。
步骤408:B频段负载能力减少N个子负载能力池,A频段负载能力增加N个子负载能力池。
作为一种实施方式,所述重新配置的子负载能力池,可以通过可擦除的可编程逻辑器件(EPLD,Erase Programmable Logic Device)或电子拨码开关等切换不同频段射频通道来实行。具体地,将负载很小的频段的部分射频通道切换为负载太大的频段。切换原则按前述方法进行:2.4G频段和5G频段两个频段接入用户数量相差越大,需要切换的射频通道越多。
通过以上2.4G频段和5G频段负载能力池的动态重新配置,对负载太大频段增加负载能力池,而对负载很小频段减小负载能力池,从而兼顾2.4G频段和5G频段两个频段用户,对WLAN AP的2.4G频段和5G频段两个频段负载进行动态配置,实现移动互联网深度覆盖。
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中存储有计算机可执行指令,所述计算机可执行指令用于执行本发明实施例所述的负载能力配置方法。
实施例五
本实施例提供了一种负载能力配置装置,图5为本发明实施例五提供的一种负载能力配置装置的结构示意图,如图5所示,包括:检测模块501和负载能力配置模块502;
所述检测模块501,配置为检测无线局域网接入点的至少两个频段的负载;
所述负载能力配置模块502,配置为当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。
作为一种实施方式,本实施例中所述负载包括:用户接入数量;所述与所述第一频段对应的第一预设负载包括:与所述第一频段对应的第一预设用户接入数量;所述与所述第二频段对应的第二预设负载包括:与所述第二频段对应的第二预设用户接入数量;
所述负载能力配置模块502,配置为增大所述第一频段的负载能力和减小所述第二频段的负载能力。
作为一种实施方式,所述与所述第一频段对应的第一预设用户接入数量包括:所述第一频段的最大用户接入数量;所述与所述第二频段对应的第二预设用户接入数量包括:所述第二频段的最大用户接入数量。
具体的,所述无线局域网接入点包括第一频段和第二频段;所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所 述第二预设用户接入数量;
所述负载能力配置模块502,配置为增大所述第一频段的负载能力和减小所述第二频段的负载能力;所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所述第二预设用户接入数量。
作为其中一种实施方式,所述负载能力配置模块502,配置为根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段。
具体的,所述负载能力包括至少一个子负载能力池;
所述负载能力配置模块502,配置为根据所述第一频段与所述第二频段之间的用户接入数量差值,将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
本实施例的方法可以解决WLAN AP某个频段用户负载太大、而另一频段负载很小的问题,从而有效兼顾2.4G频段和5G频段两个频段用户实现移动互联网的深度覆盖。
在本实施例中,所述负载能力配置装置在实际应用中,可通过WLAN AP实现;所述负载能力配置装置中的检测模块501和负载能力配置模块502在实际应用中,可通过WLAN AP中的中央处理器(CPU,Central Processing Unit)、数字信号处理器(DSP,Digital Signal Processor)或可编程门阵列(FPGA,Field-Programmable Gate Array)实现。
实施例六
图6为本发明实施例六提供的一种负载能力配置装置的结构示意图;如图6所示,本实施例提供了一种负载能力配置装置,应用于包括2.4G频段和5G频段的WLAN AP中,包括:负载能力默认配置模块10、负载状态实时监控模块20、负载能力模块30、实时响应模块40和负载能力重新 配置模块50;其中,所述负载状态实时监控模块20相当于实施例五中的检测模块501,所述实时响应模块40和所述负载能力重新配置模块50相当于实施例五中的负载能力配置模块502;其中,
所述负载能力默认配置模块10,配置为默认配置2.4G频段和5G频段两个频段用户所需负载能力;
所述负载状态实时监控模块20,配置为探测WLAN AP的2.4G频段和5G频段两个频段负载状态;当探测到一个频段负载太大而另一个频段负载很小时,发起重新配置所述2.4G频段和5G频段的负载能力请求;
所述负载能力模块30,配置为对负载能力重配前2.4G频段和5G频段两个频段用户所需负载提供能力支撑,还配置为对负载能力重配后2.4G频段和5G频段两个频段用户所需负载提供能力支撑;
所述实时响应模块40,配置为解析所述负载状态实时监控模块20发起的重新配置2.4G频段和5G频段两个频段负载能力请求,并根据解析结果分发重新配置所述2.4G频段和5G频段的负载能力指令;
所述负载能力重新配置模块50,配置为执行所述实时响应模块40分发的所述2.4G频段和5G频段的负载能力重配指令;对所述负载能力模块30进行重新配置。
具体的,WLAN AP设备上电后所述负载能力默认配置模块10默认配置2.4G频段和5G频段两个频段用户所需负载能力;开启所述负载状态实时监控模块20,实时探测2.4G频段和5G频段两个频段的负载状态;当所述负载状态实时监控模块20探测到一个频段负载太大而另一个频段负载很小时;所述负载状态实时监控模块20向所述实时响应模块40发起重新配置2.4G频段和5G频段两个频段负载能力请求;所述实时响应模块40解析接收到的所述重新配置2.4G频段和5G频段两个频段负载能力请求,并根据解析结果分发重新2.4G频段和5G频段两个频段负载能力指令;所述负 载能力重新配置模块50收到所述重新配置2.4G频段和5G频段两个频段负载能力指令后,对所述负载能力模块30进行重新分配,对负载太大频段增加负载能力,而对负载很小频段减小负载能力。从而避免了某个频段负载太大而另一个频段负载很小问题,兼顾了2.4G频段和5G频段两个频段用户,对WLAN AP的2.4G频段和5G频段两个频段负载进行动态配置,实现移动互联网深度覆盖。
在本实施例中所述2.4G频段负载和5G频段负载通过用户接入数量来表征。图7为本发明实施例六提供的另一种负载能力配置装置的结构示意图;如图7所示,对于所述负载能力模块30包括两个子模块组:子负载能力模块组R1,配置为对某频段负载提供能力支撑;子负载能力模块组R2,配置为对前述某频段之外的另一频段负载提供能力支撑;所述子负载能力模块组R1和所述子负载能力模块组R2都由多个子负载能力池组成,当某频段用户接入WLAN AP时,优先使用已有所述频段用户使用的子负载能力池,待所述子负载能力池满负荷时,后续接入的所述频段用户再使用另一个空负载的子负载能力池;需要重新配置时,只需把负载很小的频段的某些空闲子负载能力池重新配置给负载太大的频段即可。从而加快2.4G频段和5G频段两个频段负载能力重新配置速度,有效的提升了用户体验效果。通过以上实施方式,避免了某个频段负载太大而另一个频段负载很小的问题,兼顾了2.4G频段和5G频段两个频段用户,对WLAN AP的2.4G频段和5G频段两个频段负载能力进行动态配置,实现移动互联网深度覆盖。
在本实施例中,所述负载能力配置装置在实际应用中,可通过WLAN AP实现;所述负载能力配置装置中的负载能力默认配置模块10、负载状态实时监控模块20、负载能力模块30、实时响应模块40和负载能力重新配置模块50在实际应用中,可通过WLAN AP中的中央处理器(CPU, Central Processing Unit)、数字信号处理器(DSP,Digital Signal Processor)或可编程门阵列(FPGA,Field-Programmable Gate Array)实现。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用硬件实施例、软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在所述计算机可读存储器中的指令产生包括指令装置的制造品,所述指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
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。
工业实用性
本发明实施例通过对WLAN AP负载大于预设负载的第一频段和负载小于预设负载的第二频段进行动态配置,例如对负载太大频段增加负载能力,而对负载很小频段减小负载能力;因此本发明实施例的负载能力配置方法可以兼顾多个频段(例如2.4G频段和5G频段两个频段)用户对WLAN AP多个频段负载进行动态配置,合理地配置WLAN AP各频段的负载能力,实现了移动互联网深度覆盖。

Claims (17)

  1. 一种负载能力配置方法,包括如下步骤:
    检测无线局域网接入点的至少两个频段的负载;
    当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;
    其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;
    所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;
    所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。
  2. 如权利要求1所述的负载能力配置方法,其中,所述负载包括:用户接入数量;所述与所述第一频段对应的第一预设负载包括:与所述第一频段对应的第一预设用户接入数量;所述与所述第二频段对应的第二预设负载包括:与所述第二频段对应的第二预设用户接入数量;
    所述对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置的步骤包括:
    增大所述第一频段的负载能力和减小所述第二频段的负载能力。
  3. 如权利要求2所述的负载能力配置方法,其中,所述与所述第一频段对应的第一预设用户接入数量包括:所述第一频段的最大用户接入数量;所述与所述第二频段对应的第二预设用户接入数量包括:所述第二频段的最大用户接入数量。
  4. 如权利要求2或3所述的负载能力配置方法,其中,所述检测无线局域网接入点的至少两个频段的负载,包括:
    检测无线局域网接入点的第一频段和第二频段的负载;
    所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所述第二预设用户接入数量。
  5. 如权利要求2所述的负载能力配置方法,其中,所述增大所述第一频段的负载能力和减小所述第二频段的负载能力,包括:
    根据所述第一频段的用户接入数量和第二频段的用户接入数量,增大所述第一频段的负载能力和减小所述第二频段的负载能力。
  6. 如权利要求5所述的负载能力配置方法,其中,所述根据所述第一频段的用户接入数量和第二频段的用户接入数量,增大所述第一频段的负载能力和减小所述第二频段的负载能力,包括:
    根据所述第一频段与第二频段之间的用户接入数量差值,增大所述第一频段的负载能力和减小所述第二频段的负载能力。
  7. 如权利要求6所述的负载能力配置方法,其中,所述根据所述第一频段与第二频段之间的用户接入数量差值,增大所述第一频段的负载能力和减小所述第二频段的负载能力,包括:
    根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段。
  8. 如权利要求7所述的负载能力配置方法,其中,所述负载能力包括至少一个子负载能力池;
    所述根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段,包括:
    根据所述第一频段与第二频段之间的用户接入数量差值,将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
  9. 如权利要求8所述的负载能力配置方法,其中,所述将对应数量的 第二频段的空闲子负载能力池配置给所述第一频段,包括:
    切换所述第一频段和所述第二频段的射频通道以将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
  10. 一种负载能力配置装置,包括:检测模块和负载能力配置模块;
    所述检测模块,配置为检测无线局域网接入点的至少两个频段的负载;
    所述负载能力配置模块,配置为当至少一个第一频段的负载满足第一预设条件,且至少一个第二频段的负载满足第二预设条件时,对所述第一频段的负载能力和所述第二频段的负载能力分别进行重新配置;其中,所述第一频段和所述第二频段分别为所述至少两个频段中的任一频段;所述第一预设条件包括:所述第一频段的负载大于等于所述第一频段对应的第一预设负载;所述第二预设条件包括:所述第二频段的负载小于所述第二频段对应的第二预设负载。
  11. 如权利要求10所述的负载能力配置装置,其中,所述负载包括:用户接入数量;所述与所述第一频段对应的第一预设负载包括:与所述第一频段对应的第一预设用户接入数量;所述与所述第二频段对应的第二预设负载包括:与所述第二频段对应的第二预设用户接入数量;
    所述负载能力配置模块,配置为增大所述第一频段的负载能力和减小所述第二频段的负载能力。
  12. 如权利要求11所述的负载能力配置装置,其中,所述与所述第一频段对应的第一预设用户接入数量包括:所述第一频段的最大用户接入数量;所述与所述第二频段对应的第二预设用户接入数量包括:所述第二频段的最大用户接入数量。
  13. 如权利要求11或12所述的负载能力配置装置,其中,所述检测模块,配置为检测无线局域网接入点的第一频段和第二频段的负载;
    所述负载能力配置模块,配置为增大所述第一频段的负载能力和减小 所述第二频段的负载能力;所述第一预设条件包括:所述第一频段的用户接入数量大于等于所述第一预设用户接入数量;所述第二预设条件包括:所述第二频段的用户接入数量小于所述第二预设用户接入数量。
  14. 如权利要求13所述的负载能力配置装置,其中,所述负载能力配置模块,配置为根据所述第一频段与第二频段之间的用户接入数量差值,将所述第二频段的空闲负载能力配置给所述第一频段。
  15. 如权利要求11所述的负载能力配置装置,其中,所述负载能力包括至少一个子负载能力池;
    所述负载能力配置模块,配置为根据所述第一频段与所述第二频段之间的用户接入数量差值,将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
  16. 如权利要求15所述的负载能力配置装置,其中,所述负载能力配置模块,配置为切换所述第一频段和所述第二频段的射频通道以将对应数量的所述第二频段的空闲子负载能力池配置给所述第一频段。
  17. 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,所述计算机可执行指令用于执行权利要求1至9任一项所述的负载能力配置方法。
PCT/CN2015/078448 2014-11-19 2015-05-07 一种负载能力配置方法、装置及计算机存储介质 WO2016078355A1 (zh)

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