Low-voltage interconnection cabinet control method for determining execution operation setting according to power distribution type

By acquiring the power distribution function type of the low-voltage interconnection cabinet, displaying configurable parameters, and receiving and determining whether the adjustment parameters are within the range, the problem of additional faults caused by misoperation is solved, and the reliability of safe adjustment and operation of the low-voltage interconnection cabinet is realized.

CN114498626BActive Publication Date: 2026-01-02GUANGZHOU POWER SUPPLY BUREAU GUANGDONG POWER GRID CO LTD
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Patent Information

Application Number
CN202210016435.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-07
Publication Date
2026-01-02
Estimated Expiration
2042-01-07

AI Technical Summary

Technical Problem

In existing technologies, misoperation by low-voltage interconnection cabinet operators or other personnel may lead to additional malfunctions, requiring a more reasonable control mechanism to ensure safe regulation.

Method used

By obtaining the power distribution function type of the low-voltage interconnection cabinet, displaying configurable parameters, receiving adjustment instructions from the operator, determining whether the adjustment parameters are within the adjustable range, and controlling the system based on the confirmed parameters, the system avoids malfunctions caused by misoperation.

Benefits of technology

The low-voltage interconnection cabinet has been safely adjusted, avoiding human-caused malfunctions and ensuring the safety and reliability of operation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The embodiment of the application discloses a low-voltage tie-in cabinet control method and device for determining an execution operation setting according to a power distribution type, and the method comprises the following steps: acquiring a current power distribution function type of a low-voltage tie-in cabinet, displaying configurable parameters in a display interface according to the power distribution function type; after receiving a clicking instruction of an operator, displaying an adjustable range of the clicked configuration parameter; receiving an adjustment parameter and a control mode input by a user in the adjustable range; and controlling the low-voltage tie-in cabinet according to the confirmed adjustment parameter and control mode. According to the embodiment, the adjustment parameter and the control mode are determined according to the adjustable range of the configuration parameter corresponding to the power distribution function type of the low-voltage tie-in cabinet, and the low-voltage tie-in cabinet is controlled, so that the problem that an unnecessary additional failure may be caused by the misoperation of the operator or other personnel in the prior art is solved, the safe adjustment of the low-voltage tie-in cabinet is ensured, and the failure caused by human is avoided.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present application relate to the field of power distribution control, and in particular to a low-voltage tie-in cabinet control method and device for determining an execution operation setting according to a power distribution type. BACKGROUND

[0002] A low-voltage tie-in cabinet, also known as a low-voltage power distribution cabinet, is usually powered by a power distribution system with a rated current of 50 Hz and a rated voltage of 380 V, and is used for lighting and power distribution. The function of the tie-in cabinet is to distribute power to each load site through power distribution control, and to maintain power-off in the event of short circuit, overload and leakage. Common types of power distribution cabinets include fixed panel type power distribution cabinets, protective power distribution cabinets, drawer type power distribution cabinets and power and lighting distribution cabinets.

[0003] The low-voltage tie-in cabinet in the prior art has the characteristics of strong breaking capacity, good dynamic and thermal stability, flexible electrical scheme, convenient combination, strong series and practicality, and novel structure. With the increasing complexity of the functions of the low-voltage tie-in cabinet, an operation manual is usually provided for operators for reference. However, if the operators or other personnel make a mistake, it may cause unnecessary additional failures, and a more reasonable control mechanism is needed. SUMMARY

[0004] Embodiments of the present application provide a low-voltage tie-in cabinet control method and device for determining an execution operation setting according to a power distribution type, which solves the problem of unnecessary additional failures caused by the mistake of operators or other personnel in the prior art, and ensures the safe adjustment of the low-voltage tie-in cabinet and avoids human-caused failures.

[0005] In a first aspect, embodiments of the present application provide a low-voltage tie-in cabinet control method for determining an execution operation setting according to a power distribution type, which comprises:

[0006] obtaining a current power distribution function type of the low-voltage tie-in cabinet, and displaying configurable parameters in a display interface according to the power distribution function type;

[0007] after receiving a clicking instruction of an operator, displaying an adjustable range of the clicked configuration parameter;

[0008] receiving an adjustment parameter and a control mode input by the user in the adjustable range;

[0009] controlling the low-voltage tie-in cabinet according to the confirmed adjustment parameter and control mode.

[0010] Further, the obtaining of the current power distribution function type of the low-voltage tie-in cabinet and the displaying of the configurable parameters in the display interface according to the power distribution function type comprises:

[0011] obtaining a current power distribution unit of the low-voltage tie-in cabinet;

[0012] According to the type corresponding to each power distribution unit, a corresponding configurable parameter is obtained, the configurable parameter including an on-off parameter and a numerical adjustment parameter;

[0013] The on-off parameter and the numerical adjustment parameter are displayed in the display interface.

[0014] Further, after receiving the clicking instruction of the operator, the adjustable range of the clicked configurable parameter is displayed, including:

[0015] After receiving the clicking instruction of the operator, the power distribution unit corresponding to the clicking instruction is determined.

[0016] The adjustable range of the configurable parameter corresponding to the power distribution unit is displayed in the display interface.

[0017] Further, the adjustment parameter and the control mode input by the user in the adjustable range are received, including:

[0018] The adjustment parameter and the control mode input by the user are judged to determine whether they meet the adjustable range of the configurable parameter, and if so, the adjustment parameter and the control mode input by the user in the adjustable range are received and responded.

[0019] Further, the control of the low-voltage contact cabinet according to the confirmed adjustment parameter and the control mode includes:

[0020] If the adjustment parameter and the control mode include the associated power distribution unit, the adjustable range of the configurable parameter of the associated power distribution unit is re-determined based on the adjustment parameter and the control mode.

[0021] Further, the current power distribution function type of the low-voltage contact cabinet is obtained, including:

[0022] The power distribution fault is detected in real time, and when a power distribution fault or a power distribution parameter adjustment instruction is detected, the current power distribution function type of the low-voltage contact cabinet is obtained.

[0023] Further, before the configurable parameter is displayed in the display interface according to the power distribution function type, it further includes:

[0024] The configurable parameters of the power distribution units of different power distribution function types are set and stored accordingly.

[0025] In a second aspect, an embodiment of the present application provides a low-voltage contact cabinet control device for determining and executing operation settings according to power distribution types, the device including:

[0026] A function type determination module is configured to obtain the current power distribution function type of the low-voltage contact cabinet, and display the configurable parameter in the display interface according to the power distribution function type.

[0027] The configuration parameter display module is configured to display the adjustable range of the clicked configuration parameter after receiving the clicking instruction of the operator.

[0028] The content receiving module is configured to receive the adjustment parameter and the control mode input by the user in the adjustable range.

[0029] The control module is configured to control the low-voltage contact cabinet according to the confirmed adjustment parameter and the control mode.

[0030] In a third aspect, an embodiment of the present application provides a low-voltage contact cabinet control device for determining an operation setting according to a power distribution type, the device comprising: one or more processors; and a storage device configured to store one or more programs, wherein the one or more programs, when executed by the one or more processors, cause the one or more processors to implement the low-voltage contact cabinet control method for determining an operation setting according to a power distribution type.

[0031] In a fourth aspect, an embodiment of the present application provides a storage medium storing computer executable instructions, wherein the computer executable instructions, when executed by a computer processor, are configured to implement the low-voltage contact cabinet control method for determining an operation setting according to a power distribution type.

[0032] The present application determines the adjustment parameter and the control mode through the adjustable range of the configuration parameter corresponding to the power distribution function type of the low-voltage contact cabinet, and controls the low-voltage contact cabinet, thereby solving the problem that the unnecessary additional failure caused by the misoperation of the operator or other personnel in the prior art, and ensuring the safe adjustment of the low-voltage contact cabinet and avoiding the failure caused by human. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 A flowchart of a low-voltage contact cabinet control method for determining an operation setting according to a power distribution type is provided for the embodiment of the present application.

[0034] Figure 2 A flowchart of another low-voltage contact cabinet control method for determining an operation setting according to a power distribution type is provided for the embodiment of the present application.

[0035] Figure 3 A flowchart of another low-voltage contact cabinet control method for determining an operation setting according to a power distribution type is provided for the embodiment of the present application.

[0036] Figure 4 A structural schematic diagram of a low-voltage contact cabinet control device for determining an operation setting according to a power distribution type is provided for the embodiment of the present application.

[0037] Figure 5A structural schematic diagram of a low-voltage tie-in cabinet control device for determining an operation setting according to a power distribution type is provided for an embodiment of the present application. DETAILED DESCRIPTION

[0038] The embodiments of the present application will be further described below in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the embodiments of the present application, but not limit the embodiments of the present application. In addition, it should be noted that, for the convenience of description, only the parts related to the embodiments of the present application are shown in the drawings, but not all the structures.

[0039] Figure 1 A flow chart of a low-voltage tie-in cabinet control method for determining an operation setting according to a power distribution type is provided for an embodiment of the present application. The low-voltage tie-in cabinet control method for determining an operation setting according to a power distribution type provided by the embodiments of the present application can be completed by a low-voltage tie-in cabinet control device for determining an operation setting according to a power distribution type. The low-voltage tie-in cabinet control device for determining an operation setting according to a power distribution type can be realized by hardware and / or software, and integrated in a computer device. Referring to Figure 1 , the method can specifically include:

[0040] S101, acquiring a current power distribution function type of a low-voltage tie-in cabinet, and displaying configurable parameters in a display interface according to the power distribution function type.

[0041] The low-voltage tie-in cabinet refers to a combination of one or more low-voltage switch devices and corresponding control, measurement, signal protection and other elements, and all internal electrical and mechanical interconnections and structural components. It is one of the common electrical equipment, mainly composed of incoming line cabinet, outgoing line cabinet, capacitor cabinet, metering cabinet and other parts. The functions of the low-voltage tie-in cabinet are as follows: reasonable configuration of power supply; when the line fails, it is beneficial to control the fault range and convenient and fast to find out the fault point and timely eliminate; piece arrangement of line maintenance without large area power failure; various protection devices such as fuses (fuses) to prevent short circuit and air switches to prevent overload can be conveniently placed in the power distribution cabinet.

[0042] The power distribution functions of the low-voltage power distribution cabinet include tie-in switch, generator incoming line, metering, reactive power compensation control and other types. In an embodiment, corresponding configurable parameters are set for different power distribution function types, and stored in a configurable parameter database. When the low-voltage tie-in cabinet needs to be adjusted, the power distribution function type of the current low-voltage tie-in cabinet is first determined, and the corresponding configurable parameters of the power distribution function type in the configurable parameter database are queried and displayed.

[0043] The configurable parameter corresponding to the reactive power compensation is determined according to the active power of the device, in an embodiment, it is determined that the power distribution function of the current low-voltage power distribution cabinet is reactive power compensation, if the current average active power is 300KW and the power factor is 0.8, the corresponding configurable parameter is 82KVAR, and the obtained configurable parameter is displayed in the display interface.

[0044] S102, after receiving the clicking instruction of the operator, the adjustable range of the clicked configurable parameter is displayed.

[0045] In an embodiment, a "detailed parameter" button is arranged beside the specific data of the configurable parameter in the display interface, if the operator needs to further understand the corresponding configurable parameter of the current low-voltage power distribution cabinet, the "detailed parameter" button is clicked, and after the system receives the clicking instruction of the operator, the adjustable range of the configurable parameter is also displayed in the display interface.

[0046] In an embodiment, it is determined that the power distribution function of the current low-voltage power distribution cabinet is reactive power compensation, and the corresponding configurable parameter is 82KVAR, the operator clicks the "detailed parameter" button, and the display interface displays that the configurable parameter range of the reactive power compensation is 75KVAR-90KVAR.

[0047] S103, receiving the adjustment parameter input by the user in the adjustable range and the control mode.

[0048] The adjustment parameter refers to the final target configurable parameter, and the control mode includes an automatic control mode and a manual control mode, in an embodiment, the user selects the control mode as the manual control mode and determines the adjustment parameter according to the power distribution function type of the current low-voltage power distribution cabinet and the corresponding configurable parameter, inputs the adjustment parameter to the control system, and triggers the adjustment control.

[0049] S104, controlling the low-voltage contact cabinet according to the confirmed adjustment parameter and the control mode.

[0050] In an embodiment, for example, the power distribution function of the current low-voltage power distribution cabinet is reactive power compensation, the user selects the manual control mode, determines that the adjustment parameter of the reactive power compensation is 82KVAR according to the display interface that the configurable parameter range of the reactive power compensation is 72KVAR-90KVAR, and triggers the adjustment control to complete the control of the low-voltage contact cabinet.

[0051] In one embodiment, the power distribution function type of the current low-voltage distribution cabinet is acquired, the user selects an automatic control mode, the control terminal automatically acquires the configurable parameters corresponding to the power distribution function type and the adjustment parameters determined according to the configurable parameter range, further, the adjustment parameters can be the middle values of the configurable parameter range, and the control terminal controls the parameters of the current power distribution function type according to the adjustment parameters to complete the control of the low-voltage distribution cabinet. For example, the power distribution function of the current low-voltage distribution cabinet is reactive power compensation, the user selects an automatic control mode, the control terminal determines the adjustment parameter of the reactive power compensation as 81KVAR according to the display interface that shows that the configurable parameter range of the reactive power compensation is 72KVAR-90KVAR, and the control terminal controls the parameters of the current power distribution function type to be adjusted to 81KVAR to complete the control of the low-voltage distribution cabinet.

[0052] According to the above, the adjustment parameters and the control mode are input to the control terminal by the user, the control terminal controls the parameters of the current power distribution function type according to the adjustment parameters and the control mode to complete the control of the low-voltage distribution cabinet. The problem that unnecessary additional faults may be caused by the misoperation of operators or other personnel in the prior art is solved, the safe adjustment of the low-voltage distribution cabinet is ensured, and the faults caused by human are avoided

[0053] Figure 2 Another flowchart of a low-voltage distribution cabinet control method for determining an execution operation setting according to a power distribution type is provided for the embodiments of the application, and the low-voltage distribution cabinet control method for determining an execution operation setting according to a power distribution type is a specific embodiment of the low-voltage distribution cabinet control method for determining an execution operation setting according to a power distribution type described above. Referring to Figure 2 The low-voltage distribution cabinet control method for determining an execution operation setting according to a power distribution type includes:

[0054] S201, acquiring the current power distribution unit of the low-voltage distribution cabinet, acquiring the corresponding configurable parameters according to the type of each power distribution unit, the configurable parameters including on-off parameters and numerical adjustment parameters, and displaying the on-off parameters and the numerical adjustment parameters in a display interface.

[0055] The power distribution unit refers to a power distribution device unit corresponding to different power distribution functions of the low-voltage distribution cabinet, the on-off parameter refers to a parameter corresponding to the circuit passage and the circuit break of the low-voltage distribution cabinet, and the numerical adjustment parameter refers to an adjustable parameter corresponding to the current power distribution device.

[0056] In one embodiment, different power distribution function types correspond to different power distribution device units, and corresponding configurable parameters are set for different power distribution units and stored in the configurable parameter database, wherein the configurable parameters include on-off parameters and numerical adjustment parameters. When the low-voltage tie-in cabinet needs to be adjusted, the power distribution unit of the current low-voltage tie-in cabinet is first determined, and the on-off parameters and numerical adjustment parameters corresponding to the power distribution function type in the configurable parameter database are queried and displayed.

[0057] In one embodiment, it is determined that the power distribution unit of the current low-voltage tie-in cabinet is a reactive power compensation unit, and if the current average active power is 300 KW and the power factor is 0.8, the numerical adjustment parameter in the corresponding configurable parameter is 82 KVAR, the pass parameter is 380 V, and the breaking parameter is 450 V. The above configurable parameters are displayed in the display interface.

[0058] S202, after receiving the clicking instruction of the operator, determining the power distribution unit corresponding to the clicking instruction, and displaying the adjustable range of the configuration parameter corresponding to the power distribution unit in the display interface.

[0059] In one embodiment, a "detailed parameter" button is provided beside the specific data of the configurable parameter in the display interface. If the operator needs to further understand the corresponding configurable parameter of the current low-voltage power distribution cabinet, the "detailed parameter" button is clicked, and after the system receives the clicking instruction of the operator, the adjustable range of the configurable parameter is displayed in the display interface.

[0060] In one embodiment, it is determined that the power distribution unit of the current low-voltage power distribution cabinet is a reactive power compensation unit, and the corresponding numerical adjustment parameter is 82 KVAR, the pass parameter is 380 V, and the breaking parameter is 450 V. The operator clicks the "detailed parameter" button, and the display interface displays that the numerical adjustment parameter range of the reactive power compensation unit is 75 KVAR-90 KVAR, the pass parameter range is 360-420 V, and the breaking parameter range is greater than 420 V.

[0061] S203, judging the adjustment parameter and control mode input by the user, and determining whether it meets the adjustable range of the configuration parameter. If yes, the adjustment parameter and control mode input by the user within the adjustable range are received and responded.

[0062] In one embodiment, the user selects the control mode as a manual control mode and determines the adjustment parameter according to the power distribution unit of the current low-voltage power distribution cabinet and the corresponding configurable parameter thereof, inputs the adjustment parameter into the control system, the control system receives the control instruction of the user, judges the input adjustment parameter and the control mode, determines whether the adjustment parameter is within the configurable parameter range, if not, feeds back the "adjustment parameter does not meet" information, if yes, the control terminal triggers the adjustment control according to the adjustment parameter input by the user to complete the control of the mortgage contact cabinet.

[0063] S204, if the adjustment parameter and the control mode include the associated power distribution unit, the adjustable range of the configurable parameter of the associated power distribution unit is re-determined based on the adjustment parameter and the control mode.

[0064] In one embodiment, if there is a power distribution unit associated with the current power distribution unit, the above-mentioned steps of displaying, determining the adjustment parameter, etc. are not used for re-determining the configurable parameter of the associated unit, but the adjustment parameter and the control mode of the current power distribution unit are directly determined as the adjustment parameter and the control mode of the associated unit. Further, the adjustment parameter is compared with the configurable parameter range of the associated power distribution unit, and the power distribution parameter range is adjusted to make the current adjustment parameter meet the configurable parameter range.

[0065] The above directly determines the adjustment parameter and the control mode of the current power distribution unit as the adjustment parameter and the control mode of the associated unit and compares the adjustment parameter with the configurable parameter range of the associated power distribution unit, and adjusts the power distribution parameter range to make the current adjustment parameter meet the configurable parameter range, which solves the problem that the operator or other personnel may cause unnecessary additional faults due to misoperation in the prior art, and can ensure the safe adjustment of the low-voltage contact cabinet and avoid human-caused faults.

[0066] Figure 3 Another flowchart of the low-voltage contact cabinet control method for determining the execution operation setting according to the power distribution type provided by the embodiment of the present application is provided, which is a specific embodiment of the above-mentioned low-voltage contact cabinet control method for determining the execution operation setting according to the power distribution type. Referring to Figure 3 The low-voltage contact cabinet control method for determining the execution operation setting according to the power distribution type includes:

[0067] S301, real-time detection of power distribution failure is performed, when a power distribution failure or a power distribution parameter adjustment instruction is detected, a current power distribution function type of a low-voltage tie-in cabinet is acquired, configurable parameters of power distribution units of different power distribution function types are set and stored accordingly, corresponding configurable parameters are acquired according to each power distribution function type, the configurable parameters include on-off parameters and numerical adjustment parameters, and the on-off parameters and the numerical adjustment parameters are displayed in a display interface.

[0068] In one embodiment, the system performs real-time detection of power distribution failure, when a power distribution failure or a power distribution parameter adjustment instruction from a user is detected, a current power distribution function type and power distribution units corresponding to the current power distribution function type are acquired, configurable parameters of power distribution units of different power distribution function types are set and stored in a configurable parameter database accordingly, corresponding configurable parameters are acquired according to each power distribution function type, the configurable parameters include on-off parameters and numerical adjustment parameters, and the on-off parameters and the numerical adjustment parameters are displayed in a display interface.

[0069] In one embodiment, the system performs real-time detection of power distribution failure, a power distribution parameter adjustment instruction from a user is detected, it is determined that a current power distribution function type is reactive power compensation, configurable parameters corresponding to the reactive power compensation unit are called from the configuration parameter database, if the current average active power is 300KW and the power factor is 0.8, the numerical adjustment parameter in the corresponding configurable parameters is 82KVAR, the pass parameter is 380V, and the breaking parameter is 450V, and the above configurable parameters are displayed in a display interface.

[0070] S302, after receiving a clicking instruction of an operator, a power distribution unit corresponding to the clicking instruction is determined, and adjustable ranges of configuration parameters corresponding to the power distribution unit are displayed in a display interface.

[0071] S303, an adjustment parameter and a control mode input by a user are judged, and it is determined whether the adjustment parameter and the control mode satisfy adjustable ranges of configuration parameters, if yes, the adjustment parameter and the control mode input by the user in the adjustable ranges are received and responded.

[0072] S304, if the adjustment parameter and the control mode include associated power distribution units, adjustable ranges of configuration parameters of the associated power distribution units are re-determined based on the adjustment parameter and the control mode.

[0073] The above, the above, directly determine the adjustment parameter and control mode of the current power distribution unit as the adjustment parameter and control mode of the associated unit, compare the adjustment parameter with the configurable parameter range of the associated power distribution unit, adjust the power distribution parameter range to make the current adjustment parameter meet the configurable parameter range, solve the problem that the unnecessary additional failure caused by the misoperation of the operator or other personnel in the prior art, and can ensure the safe adjustment of the low-voltage tie-in cabinet and avoid the failure caused by human.

[0074] Figure 4 A structure diagram of a low-voltage tie-in cabinet control device for determining an execution operation setting according to a power distribution type is provided for the embodiment of the application, and the structure diagram specifically includes a function type determination module 401, a configuration parameter display module 402, a content receiving module 403, and a control module 404. Figure 4 The embodiment provided in the application specifically includes a function type determination module 401, a configuration parameter display module 402, a content receiving module 403, and a control module 404. Figure 4 For example, the modules are connected through a bus.

[0075] The function type determination module 401 is configured to acquire the current power distribution function type of the low-voltage tie-in cabinet, and display the configurable parameters in the display interface according to the power distribution function type.

[0076] In one embodiment, the power distribution failure is detected in real time, and when the power distribution failure or the power distribution parameter adjustment instruction is detected, the current power distribution function type of the low-voltage tie-in cabinet is acquired, the configurable parameters of the power distribution unit of different power distribution function types are set and stored accordingly, the function type determination module 401 is specifically configured to acquire the corresponding configurable parameters according to each power distribution function type, and the configurable parameters include on-off parameters and numerical adjustment parameters.

[0077] The configuration parameter display module 402 is configured to display the adjustable range of the clicked configuration parameter after receiving the clicking instruction of the operator.

[0078] In one embodiment, a “detailed parameter” button is arranged beside the specific data of the configurable parameter in the display interface, and if the operator needs to further understand the corresponding configurable parameter of the current low-voltage power distribution cabinet, the operator clicks the “detailed parameter”, and the configuration parameter display module 402 is configured to display the adjustable range of the configurable parameter in the display interface after the system receives the clicking instruction of the operator.

[0079] The content receiving module 403 is configured to receive the adjustment parameter and the control mode input by the user in the adjustable range.

[0080] In one embodiment, the user selects the control mode as the manual control mode and determines the adjustment parameter according to the power distribution unit of the current low-voltage power distribution cabinet and the corresponding configurable parameter, inputs the adjustment parameter into the control system, the content receiving module 403 is specifically configured to control the control system to receive the control instruction of the user, judges the input adjustment parameter and the control mode, determines whether the adjustment parameter is within the configuration parameter range, if not within the range, feeds back the "adjustment parameter does not meet" information, if within the range, the control terminal triggers the adjustment control according to the adjustment parameter input by the user to complete the control of the mortgage contact cabinet.

[0081] The control module 404 is configured to control the low-voltage contact cabinet according to the confirmed adjustment parameter and the control mode.

[0082] In one embodiment, the power distribution function of the current low-voltage power distribution cabinet is reactive power compensation, the user selects the manual control mode, and determines the adjustment parameter of the reactive power compensation as 82KVAR according to the display interface that the configurable parameter range of the reactive power compensation is 72KVAR-90KVAR, and the control module 404 is configured to trigger the adjustment control to complete the control of the low-voltage contact cabinet.

[0083] The low-voltage contact cabinet control device provided by the embodiment of the application can be used to execute the low-voltage contact cabinet control method provided by the above-mentioned embodiment, has the corresponding functions and beneficial effects.

[0084] Figure 5 The low-voltage contact cabinet control device provided by the embodiment of the application is shown in a structural schematic diagram as shown in the figure, Figure 5 The device includes a processor 501, a memory 502, an input device 503, and an output device 504. The number of processors 501 in the device can be one or more, Figure 5 and the processor 501 is taken as an example; the processor 501, the memory 502, the input device 503, and the output device 504 in the device can be connected through a bus or other means, Figure 5 and the connection through the bus is taken as an example. The embodiment of the application also provides a storage medium containing computer executable instructions, which are used to execute a low-voltage contact cabinet control method for determining the execution operation setting according to the power distribution type when executed by a computer processor. The low-voltage contact cabinet control method for determining the execution operation setting according to the power distribution type includes: acquiring the current power distribution function type of the low-voltage contact cabinet, displaying the configurable parameter in the display interface according to the power distribution function type; after receiving the clicking instruction of the operator, displaying the adjustable range of the clicked configuration parameter; receiving the adjustment parameter input by the user in the adjustable range and the control mode; controlling the low-voltage contact cabinet according to the confirmed adjustment parameter and the control mode.

[0085] Storage medium – any type of memory device or storage device. The term “storage medium” is intended to include: mounting media, such as CD-ROM, floppy disk, or magnetic tape devices; computer system memory or random access memory, such as DRAM, DDR RAM, SRAM, EDO RAM, Rambus RAM, etc.; non-volatile memory, such as flash memory, magnetic media (e.g., hard disk or optical storage); registers or other similar types of memory elements, etc. Storage medium may also include other types of memory or combinations thereof. Furthermore, storage medium may reside in a first computer system in which the program is executed, or it may reside in a different second computer system connected to the first computer system via a network (such as the Internet). The second computer system can provide program instructions to the first computer for execution. The term “storage medium” can include two or more storage media residing in different locations (e.g., in different computer systems connected via a network). Storage medium may store program instructions (e.g., specifically implemented as a computer program) executable by one or more processors.

[0086] It is worth noting that in the above embodiments of the low-voltage communication cabinet device for determining the execution operation authority based on the fault type, the various units and modules included are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be achieved; in addition, the specific names of each functional unit are only for easy differentiation and are not used to limit the protection scope of the embodiments of the present invention.

[0087] Note that the above are merely preferred embodiments and the technical principles applied in this invention. Those skilled in the art will understand that the embodiments of this invention are not limited to the specific embodiments described herein, and various obvious changes, readjustments, and substitutions can be made without departing from the protection scope of this invention. Therefore, although the embodiments of this invention have been described in detail above, the embodiments of this invention are not limited to the above embodiments. More other equivalent embodiments may be included without departing from the concept of the embodiments of this invention, and the scope of the embodiments of this invention is determined by the scope of the appended claims.

Claims

1. A method for controlling a low voltage tie-up switchgear set for performing an operation setting in accordance with a power distribution type, characterized by, The method comprises the following steps: acquiring the current power distribution function type of the low-voltage interconnection cabinet, and displaying the configurable parameters in the display interface according to the power distribution function type, wherein the step of acquiring the current power distribution function type of the low-voltage interconnection cabinet comprises the following steps: acquiring the current power distribution unit of the low-voltage interconnection cabinet, acquiring the corresponding configurable parameters according to the type corresponding to each power distribution unit, and displaying the on-off parameter and the numerical value adjustment parameter in the display interface; after receiving the clicking instruction of the operator, displaying the adjustable range of the clicked configurable parameter, wherein the step of displaying the adjustable range of the clicked configurable parameter comprises the following steps: after receiving the clicking instruction of the operator, determining the power distribution unit corresponding to the clicking instruction, and displaying the adjustable range of the configurable parameter corresponding to the power distribution unit in the display interface; receiving the adjustment parameter and the control mode input by the user in the adjustable range; controlling the low-voltage interconnection cabinet according to the confirmed adjustment parameter and control mode.

2. The low voltage feeder panel control method of claim 1, wherein, The step of receiving the adjustment parameter and the control mode input by the user in the adjustable range comprises the following steps: judging the adjustment parameter and the control mode input by the user, determining whether the adjustment parameter and the control mode input by the user meet the adjustable range of the configurable parameter, and if so, receiving and responding to the adjustment parameter and the control mode input by the user in the adjustable range.

3. The low voltage feeder panel control method of determining execution of operation setting according to power distribution type according to any one of claims 1-2, characterized in that, The step of controlling the low-voltage interconnection cabinet according to the confirmed adjustment parameter and control mode comprises the following steps: if the adjustment parameter and the control mode comprise the associated power distribution unit, then redetermining the adjustable range of the configurable parameter of the associated power distribution unit based on the adjustment parameter and the control mode.

4. The low voltage feeder pillar control method of claim 1, wherein, The step of acquiring the current power distribution function type of the low-voltage interconnection cabinet comprises the following steps: real-time detecting the power distribution fault, and acquiring the current power distribution function type of the low-voltage interconnection cabinet when detecting the power distribution fault or the power distribution parameter adjustment instruction.

5. The method for controlling the low-voltage tie-in cabinet according to claim 1, wherein Before displaying the configurable parameters in the display interface according to the power distribution function type, the method further comprises the following steps: setting and storing the configurable parameters of the power distribution unit of different power distribution function types.

6. The low voltage feeder pillar device for determining the execution authority of the operation according to the fault type, characterized in that, The device comprises: a function type determination module, configured to acquire the current power distribution function type of the low-voltage interconnection cabinet, and display the configurable parameters in the display interface according to the power distribution function type, wherein the function type determination module is specifically configured to acquire the current power distribution unit of the low-voltage interconnection cabinet, acquire the corresponding configurable parameters according to the type corresponding to each power distribution unit, and display the on-off parameter and the numerical value adjustment parameter in the display interface; a configurable parameter display module, configured to display the adjustable range of the clicked configurable parameter after receiving the clicking instruction of the operator, wherein the configurable parameter display module is specifically configured to determine the power distribution unit corresponding to the clicking instruction after receiving the clicking instruction of the operator, and display the adjustable range of the configurable parameter corresponding to the power distribution unit in the display interface; a content receiving module, configured to receive the adjustment parameter and the control mode input by the user in the adjustable range; a control module, configured to control the low-voltage interconnection cabinet according to the confirmed adjustment parameter and control mode.

7. A low voltage feeder pillar apparatus for determining execution of operational permissions based on fault type, the apparatus comprising: one or more processors; A storage device, configured to store one or more programs, when executed by the one or more processors, cause the one or more processors to implement the low-voltage tie-in cabinet control method of determining execution of operation settings according to power distribution types as claimed in any one of claims 1-5.

8. A storage medium storing computer-executable instructions for, when executed by a computer processor, performing the low-voltage tie-in cabinet control method of determining execution of operation settings according to power distribution types as claimed in any one of claims 1-5.

Citation Information

Patent Citations

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