Device power automatic allocation method and device, computer device and storage medium

By acquiring and judging the electrical parameters in the circuit, the system automatically disconnects equipment that does not meet the time requirements and connects equipment that meets the requirements, thus solving the problem of excessive electricity consumption by enterprises and achieving optimized management of equipment power consumption and cost reduction.

CN114566959BActive Publication Date: 2025-12-09SHENZHEN YIHUA COMP
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Patent Information

Application Number
CN202210098396.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-27
Publication Date
2025-12-09
Estimated Expiration
2042-01-27

AI Technical Summary

Technical Problem

The existing technology has led to excessive electricity consumption due to the unallocated power supply system for enterprise equipment.

Method used

By acquiring various electrical parameters in the current circuit, it is determined whether they meet the preset operating parameters for the current time period. Electrical equipment that does not meet the parameters is disconnected, and electrical equipment that meets the parameters is connected, thereby realizing the automatic distribution of power to the equipment.

Benefits of technology

It effectively reduced electricity consumption, optimized equipment power management, and lowered the company's electricity costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present application disclose a kind of equipment power automatic distribution method, device, computer equipment and storage medium, the method comprises: obtaining each electrical parameter in current circuit, wherein, each electrical parameter in the current circuit refers to the current size of each branch in circuit, the voltage size of each electrical equipment access place both ends and the impedance size of each electrical equipment;Determine whether each electrical parameter in the current circuit meets the preset running parameter of current period;If not, then disconnect the electrical equipment that does not meet the preset running parameter of current period, and access the electrical equipment that meets the preset running parameter of current period.According to whether each electrical parameter in current circuit meets the preset running parameter of current period, if it does not meet, eliminate the electrical equipment that does not meet the requirement, add the electrical equipment that meets the requirement, to realize the power consumption of automatic distribution electrical equipment, solve the problem that there is no power distribution system in prior art, leading to the problem of excessive power consumption.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical control, and in particular to a device power automatic distribution method and device, computer equipment and storage medium. BACKGROUND

[0002] Time-of-use pricing will divide the 24 hours of each day into five price bands, namely, deep valley, low valley, flat section, peak, and sharp peak.

[0003] The price of different time periods will also be different. According to the state time-of-use pricing regulations, the highest and lowest prices cannot be less than 4 times, and the prices of other regions cannot be less than 3 times. The prices of different stages can differ by up to 4 times during production operations in a day. For enterprises with high power consumption, it is necessary to improve work efficiency and reduce unnecessary overtime for employees. Currently, there is no device power distribution system in enterprises, resulting in excessive power consumption. SUMMARY

[0004] Therefore, the present application provides a device power automatic distribution method and device, computer equipment and storage medium to solve the problem of excessive power consumption due to the lack of device power distribution system in the prior art.

[0005] To achieve one or some or all of the above purposes or other purposes, the present application provides a device power automatic distribution method, which comprises:

[0006] obtaining each electrical parameter in the current circuit, wherein each electrical parameter in the current circuit refers to the current size of each branch in the circuit, the voltage size at both ends of each electrical device access, and the impedance size of each electrical device;

[0007] determining whether each electrical parameter in the current circuit meets the preset running parameter of the current period;

[0008] If not, disconnect the electrical device that does not meet the preset running parameter of the current period, and connect the electrical device that meets the preset running parameter of the current period.

[0009] Preferably, after the step of obtaining each electrical parameter in the current circuit, before the step of determining whether each electrical parameter in the current circuit meets the preset running parameter of the current period, the method comprises:

[0010] detecting whether any of the electrical parameters in the current circuit changes;

[0011] If so, calculate the change amount of the changed electrical parameter;

[0012] determining whether the registered electrical device exists in the access circuit interval according to the electrical parameter of the electrical device;

[0013] if the variation does not conform to the electrical parameter of the existing registered electrical device, determining that the electrical device corresponding to the variation is an unregistered electrical device;

[0014] disconnecting the electrical connection of the unregistered electrical device to the current circuit.

[0015] Preferably, after the step of determining whether each electrical parameter in the current circuit conforms to the preset operation parameter of the current period, the method comprises:

[0016] if yes, maintaining the access state of each electrical device in the current circuit.

[0017] Preferably, before the step of obtaining each electrical parameter in the current circuit, the method comprises:

[0018] registering an electrical device to be accessed to a circuit;

[0019] obtaining the electrical parameter and load property of the electrical device;

[0020] determining the access circuit interval of the electrical device according to the load property and electrical parameter of the electrical device;

[0021] determining the operation period of the electrical device;

[0022] determining whether the access circuit interval exists a registered electrical device with the same electrical parameter as the electrical device;

[0023] if no, reserving the electrical device in the access circuit interval.

[0024] Preferably, after the step of determining whether the access circuit interval exists a registered electrical device with the same electrical parameter as the electrical device, the method comprises:

[0025] if yes, adjusting the electrical device to another access circuit interval.

[0026] Preferably, after the step of determining whether the access circuit interval exists a registered electrical device with the same electrical parameter as the electrical device, the method comprises:

[0027] if yes, determining whether the electrical device overlaps with the registered electrical device with the same electrical parameter in the operation period;

[0028] if no, reserving the electrical device in the access circuit interval;

[0029] If yes, the electrical equipment is adjusted to another access circuit interval.

[0030] Preferably, after the step of disconnecting the electrical equipment not meeting the preset operation parameter of the current period and connecting the electrical equipment meeting the preset operation parameter of the current period, the method further comprises:

[0031] Again, it is judged whether the electrical parameters in the current circuit meet the preset operation parameter of the current period.

[0032] If no, it is judged whether there is electrical equipment not meeting the preset operation parameter of the current period or whether the electrical equipment meeting the preset operation parameter of the current period is not connected.

[0033] If no, an alarm signal is sent.

[0034] The application further provides an automatic electrical distribution device for equipment, which comprises:

[0035] An acquisition module is configured to acquire electrical parameters in a current circuit, wherein the electrical parameters in the current circuit refer to current sizes of each branch in the circuit, voltage sizes at both ends of each electrical equipment and impedance sizes of each electrical equipment.

[0036] A judgment module is configured to judge whether the electrical parameters in the current circuit meet preset operation parameters of a current period.

[0037] A processing module is configured to disconnect the electrical equipment not meeting the preset operation parameter of the current period and connect the electrical equipment meeting the preset operation parameter of the current period if the electrical parameters in the current circuit do not meet the preset operation parameter of the current period.

[0038] The application further provides a computer device comprising a memory and a processor, wherein the memory stores a computer program, and the processor implements the steps of the method according to any one of the above embodiments when executing the computer program.

[0039] The application further provides a computer readable storage medium storing a computer program, wherein the computer program is executed by a processor to implement the steps of the method according to any one of the above embodiments.

[0040] The application has the following beneficial effects:

[0041] After the automatic electrical distribution method, device, computer device and storage medium for equipment are used, whether the electrical parameters in the current circuit meet the preset operation parameter of the current period is determined, and if not, the electrical equipment not meeting the requirement is removed and the electrical equipment meeting the requirement is added, so that the electrical equipment is automatically distributed, and the problem that the existing technology does not distribute the electrical equipment and leads to high power consumption is solved. BRIEF DESCRIPTION OF DRAWINGS

[0042] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor based on these drawings.

[0043] Wherein:

[0044] Figure 1 A flow chart of the device power automatic allocation method in an embodiment;

[0045] Figure 2 A functional module diagram of the device power automatic allocation device in an embodiment;

[0046] Figure 3 A structural schematic block diagram of the computer device in an embodiment. DETAILED DESCRIPTION

[0047] The technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments only constitute some embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0048] As Figure 1 shown, the embodiment of the present application discloses a device power automatic allocation method, which comprises:

[0049] Step S101, acquiring each electrical parameter in the current circuit, wherein the each electrical parameter in the current circuit refers to the current size of each branch in the circuit, the voltage size at both ends of each electrical device access, and the impedance size of each electrical device.

[0050] The current size of each branch in the current circuit, the voltage size at both ends of each electrical device access, and the impedance size of each electrical device are acquired.

[0051] Specifically, corresponding detection units such as voltage detection units, current detection units, and resistance detection units can be arranged on the circuit. Then the voltage size, current size, and impedance size can be detected.

[0052] Step S102, judging whether the each electrical parameter in the current circuit meets the preset running parameter in the current period.

[0053] The running parameters of a certain circuit section and the corresponding time period are preset, and the user can modify them after the setting. The acquired electrical parameters are compared with the preset running parameters of the current time period. If the electrical parameters are the same, it is determined that they are consistent. If one of the electrical parameters is different, it is determined that they are inconsistent.

[0054] In step S103, if no, the electrical equipment inconsistent with the preset running parameters of the current time period is disconnected, and the electrical equipment consistent with the preset running parameters of the current time period is connected.

[0055] If it is determined that they are inconsistent, the inconsistent electrical equipment is disconnected, and the consistent electrical equipment not connected to the circuit is connected, so that the electrical parameters in the current circuit meet the preset running parameters of the current time period.

[0056] According to whether the electrical parameters in the current circuit meet the preset running parameters of the current time period, if they are inconsistent, the electrical equipment inconsistent with the requirements is removed, and the electrical equipment consistent with the requirements is connected, so as to realize automatic allocation of the power consumption of the electrical equipment and solve the problem that there is no power consumption allocation system for the electrical equipment in the prior art, resulting in high power consumption.

[0057] In the embodiment, after step S101 and before step S102, the following steps are included:

[0058] Detecting whether any of the electrical parameters in the current circuit changes;

[0059] If yes, calculating the change amount of the changed electrical parameter;

[0060] According to the change amount, determining the registered electrical equipment connected to the current circuit;

[0061] If the change amount is inconsistent with the electrical parameters of the existing registered electrical equipment, it is determined that the electrical equipment corresponding to the change amount is an unregistered electrical equipment;

[0062] Disconnecting the electrical connection of the unregistered electrical equipment connected to the current circuit.

[0063] If it is detected that any of the electrical parameters in the circuit changes, the change amount is calculated, and according to the change amount, it can be determined that the registered electrical equipment is connected or exited. If the change amount does not correspond to the electrical parameters of the registered electrical equipment, it is considered that the electrical equipment is unregistered and needs to be removed and prohibited from being connected to the circuit.

[0064] In the embodiment, after step S102, the following steps are included:

[0065] If yes, maintaining the connection state of each electrical equipment in the current circuit.

[0066] If the electrical parameters of the current circuit meet the preset operation parameters of the current period, the operation state of the current circuit is maintained.

[0067] In the embodiment, before step S101, the method comprises:

[0068] Registering the electrical equipment to be accessed to the circuit;

[0069] Obtaining the electrical parameters and load properties of the electrical equipment;

[0070] Determining the access circuit interval of the electrical equipment according to the load properties and electrical parameters of the electrical equipment;

[0071] Determining the operation period of the electrical equipment;

[0072] Judging whether there is a registered electrical equipment with the same electrical parameters as the electrical equipment in the access circuit interval;

[0073] If not, the electrical equipment is kept in the access circuit interval.

[0074] The electrical equipment to be accessed to the circuit is registered, and then the access circuit interval and operation period of the electrical equipment are allocated according to the electrical parameters and load properties of the electrical equipment, and in the same access circuit interval, there cannot be two electrical equipments with the same electrical parameters.

[0075] Specifically, the load properties include primary load, secondary load and tertiary load.

[0076] When one of the following conditions is met, it should be determined as a primary load: 1. Interruption of power supply will cause personal injury; 2. Interruption of power supply will cause significant loss or significant impact; 3. Interruption of power supply will affect the normal work of important power users or cause serious disorder of order in public places with a large number of people. The load that the power supply of the special important place is not allowed to be interrupted should be determined as a special important load in the primary load. When one of the following conditions is met, it should be determined as a secondary load: 1. Interruption of power supply will cause significant loss or significant impact; 2. Interruption of power supply will affect the normal work of important power users or cause disorder of order in public places with a large number of people. The load that does not belong to the primary load and the secondary load should be determined as a tertiary load.

[0077] In the embodiment, after the step of judging whether there is a registered electrical equipment with the same electrical parameters as the electrical equipment in the access circuit interval, the method comprises:

[0078] If yes, the electrical equipment is adjusted to another access circuit interval.

[0079] In the same access circuit interval, there cannot be two electrical equipments with the same electrical parameters.

[0080] In the embodiment, after the step of judging whether there is an already registered electrical equipment with the same electrical parameter as the electrical equipment in the access circuit section, the method comprises:

[0081] If yes, it is judged whether the electrical equipment and the already registered electrical equipment with the same electrical parameter have overlap in the operation period;

[0082] If no, the electrical equipment is kept in the access circuit section;

[0083] If yes, the electrical equipment is adjusted to another access circuit section.

[0084] The two electrical equipments with the same electrical parameter cannot have overlap in the operation period.

[0085] In the embodiment, after the step of disconnecting the electrical equipment not meeting the preset operation parameter of the current period and accessing the electrical equipment meeting the preset operation parameter of the current period, the method comprises:

[0086] It is judged again whether each electrical parameter in the current circuit meets the preset operation parameter of the current period;

[0087] If no, it is judged whether there is an electrical equipment not meeting the preset operation parameter of the current period or whether the electrical equipment meeting the preset operation parameter of the current period is not accessed;

[0088] If no, an alarm signal is sent.

[0089] After the first time of removing the electrical equipment not meeting the electrical parameter and accessing the electrical equipment meeting the electrical parameter, it is judged again whether each electrical parameter in the current circuit meets the preset operation parameter of the current period. If no, in the case that there is no electrical equipment not meeting the preset operation parameter of the current period or the electrical equipment meeting the preset operation parameter of the current period is not accessed, it is determined that the electrical equipment on the circuit has a fault, and an alarm signal is sent.

[0090] As shown in Figure 2 The application further provides an automatic distribution device 1 for electrical equipment, which comprises an acquisition module 11, a judgment module 12 and a processing module 13.

[0091] The acquisition module 11 is used for acquiring each electrical parameter in the current circuit, wherein the each electrical parameter in the current circuit refers to the current size of each branch in the circuit, the voltage size at both ends of each electrical equipment access and the impedance size of each electrical equipment.

[0092] The current size of each branch in the current circuit, the voltage size at both ends of each electrical equipment access and the impedance size of each electrical equipment are acquired.

[0093] Specifically, corresponding detection units, such as voltage detection units, current detection units, resistance detection units, and the like, can be arranged on the circuit. Then, the voltage, the current, and the impedance can be detected.

[0094] A judgment module 12 is configured to judge whether each electrical parameter in the current circuit meets the preset operation parameter of the current period.

[0095] The operation parameter of a certain circuit interval and the corresponding period is preset, and the user can modify it after the setting. Each electrical parameter is compared with the preset operation parameter of the current period. If the electrical parameters are the same, it is determined to meet the requirement. If one of the electrical parameters is different, it is determined to not meet the requirement.

[0096] A processing module 13 is configured to disconnect the electrical equipment that does not meet the preset operation parameter of the current period and connect the electrical equipment that meets the preset operation parameter of the current period.

[0097] If it is determined that the electrical equipment does not meet the requirement, the electrical equipment that does not meet the requirement is disconnected, and the electrical equipment that meets the requirement and is not connected to the circuit is connected, so that each electrical parameter in the current circuit meets the preset operation parameter of the current period.

[0098] According to whether each electrical parameter in the current circuit meets the preset operation parameter of the current period, if it does not meet the requirement, the electrical equipment that does not meet the requirement is removed, and the electrical equipment that meets the requirement is connected, so as to realize automatic distribution of the power consumption of the electrical equipment and solve the problem that there is no power consumption system for the distribution of the electrical equipment in the prior art, which leads to high power consumption.

[0099] In the embodiment, the automatic distribution device 1 comprises:

[0100] A first sub-detection module is configured to detect whether any of the electrical parameters in the current circuit changes.

[0101] A first sub-computation module is configured to compute the change amount of the electrical parameter if the electrical parameter changes.

[0102] A first sub-judgment module is configured to judge the electrical equipment that has been registered and connected to the current circuit according to the change amount.

[0103] A first sub-determination module is configured to determine that the electrical equipment corresponding to the change amount is an unregistered electrical equipment if the change amount does not meet the electrical parameter of the existing registered electrical equipment.

[0104] A first sub-disconnection module is configured to disconnect the electrical connection of the unregistered electrical equipment to the current circuit.

[0105] If any electrical parameter in the circuit is detected to change, the change amount is calculated, and according to the change amount, it can be judged that the registered electrical device is accessed or exited, if the change amount does not correspond to the electrical parameter of the registered electrical device, it is considered that the electrical device is unregistered, and it needs to be eliminated and prohibited to access the circuit.

[0106] In the embodiment, the automatic distribution device 1 comprises:

[0107] The first sub-processing module is configured to, if yes, maintain the access state of each electrical device in the current circuit.

[0108] If each electrical parameter in the current circuit meets the preset operation parameter in the current period, the operation state of the current circuit is maintained.

[0109] In the embodiment, the automatic distribution device 1 comprises:

[0110] The first sub-registration module is configured to register the electrical device to be accessed into the circuit.

[0111] The first sub-acquisition module is configured to acquire the electrical parameter and the load property of the electrical device.

[0112] The first sub-determination module is configured to determine the access circuit interval of the electrical device according to the load property and the electrical parameter of the electrical device.

[0113] The second sub-determination module is configured to determine the operation period of the electrical device.

[0114] The second sub-judgment module is configured to judge whether the access circuit interval exists the registered electrical device with the same electrical parameter as the electrical device.

[0115] The second sub-processing module is configured to, if no, maintain the electrical device in the access circuit interval.

[0116] The electrical device to be accessed into the circuit is registered, and then the access circuit interval and the operation period of the electrical device are distributed according to the electrical parameter and the load property of the electrical device, and in addition, two electrical devices with the same electrical parameter cannot exist in the same access circuit interval.

[0117] Specifically, the load property comprises a first-level load, a second-level load and a third-level load.

[0118] The first level load shall be determined when one of the following conditions is met: 1. Interruption of power supply will cause personal injury; 2. Interruption of power supply will cause significant loss or significant impact; 3. Interruption of power supply will affect the normal work of important power users or cause serious disorder in the order of personnel-intensive public places. The load of special important places that are not allowed to interrupt power supply shall be determined as special important load in the first level load. The second level load shall be determined when one of the following conditions is met: 1. Interruption of power supply will cause greater loss or greater impact; 2. Interruption of power supply will affect the normal work of important power users or cause disorder in the order of personnel-intensive public places. The load that does not belong to the first level load and the second level load shall be determined as the third level load.

[0119] In the embodiment, the automatic allocation device 1 comprises:

[0120] The third sub-processing module is configured to, if yes, adjust the electrical equipment to another access circuit section.

[0121] The same access circuit section cannot exist two electrical equipments with the same electrical parameters.

[0122] In the embodiment, the automatic allocation device 1 comprises:

[0123] The third sub-judgment module is configured to, if yes, judge whether the electrical equipment and the registered electrical equipment with the same electrical parameters have overlap in the operation period;

[0124] The fourth sub-processing module is configured to, if no, keep the electrical equipment in the access circuit section.

[0125] The fifth sub-processing module is configured to, if yes, adjust the electrical equipment to another access circuit section.

[0126] The two electrical equipments with the same electrical parameters cannot have overlap in the operation period.

[0127] In the embodiment, the automatic allocation device 1 comprises:

[0128] The fourth sub-judgment module is configured to judge again whether each electrical parameter in the current circuit meets the preset operation parameter in the current period.

[0129] The fifth sub-judgment module is configured to, if no, judge whether there is an electrical equipment that does not meet the preset operation parameter in the current period or an electrical equipment that meets the preset operation parameter in the current period is not connected.

[0130] The first sub-alarm module is configured to, if no, send an alarm signal.

[0131] After the first time, the electrical equipment and the access to the electrical equipment are removed, and then it is judged again whether the electrical parameters in the current circuit meet the preset operation parameters in the current period. If not, it is determined that the electrical equipment in the circuit is faulty without the electrical equipment that does not meet the preset operation parameters or the electrical equipment that is not accessed to meet the preset operation parameters, and an alarm signal is sent.

[0132] As shown in Figure 3 , the embodiment of the present application also provides a computer device, which can be a server, and the internal structure thereof can be as shown in Figure 3 . The computer device comprises a processor, a memory, a network interface and a database connected through a system bus. The processor of the computer device is used to provide computing and control capabilities. The memory of the computer device comprises a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The database of the computer device is used to store model data and the like of the device power automatic allocation method. The network interface of the computer device is used to communicate with external terminals through network connection. The computer program is executed by the processor to implement the device power automatic allocation method.

[0133] The processor executes the steps of the device power automatic allocation method: obtaining electrical parameters in a current circuit, wherein the electrical parameters in the current circuit refer to the current size of each branch in the circuit, the voltage size at both ends of each electrical equipment and the impedance size of each electrical equipment;

[0134] It is judged whether the electrical parameters in the current circuit meet the preset operation parameters in the current period;

[0135] If not, the electrical equipment that does not meet the preset operation parameters in the current period is disconnected, and the electrical equipment that meets the preset operation parameters in the current period is accessed.

[0136] In one embodiment, after the step of obtaining the electrical parameters in the current circuit, before the step of judging whether the electrical parameters in the current circuit meet the preset operation parameters in the current period, it comprises:

[0137] It is detected whether any of the electrical parameters in the current circuit changes;

[0138] If yes, the change amount of the electrical parameter that changes is calculated;

[0139] According to the change amount, it is judged that the registered electrical equipment is accessed to the current circuit;

[0140] If the change does not conform to the electrical parameters of the existing registered electrical equipment, it is determined that the electrical equipment corresponding to the change is unregistered electrical equipment.

[0141] The electrical connection of the unregistered electrical equipment accessing the current circuit is disconnected.

[0142] In one embodiment, after the step of determining whether the electrical parameters in the current circuit conform to the preset operation parameters of the current period, it comprises:

[0143] If yes, the access state of the electrical equipment in the current circuit is maintained.

[0144] In one embodiment, before the step of obtaining the electrical parameters of the electrical equipment in the current circuit, it comprises:

[0145] Registering the electrical equipment to be accessed in the circuit;

[0146] Obtaining the electrical parameters and load properties of the electrical equipment;

[0147] According to the load properties and electrical parameters of the electrical equipment, determining the access circuit interval of the electrical equipment;

[0148] Determining the operation period of the electrical equipment;

[0149] Determining whether the access circuit interval exists registered electrical equipment with the same electrical parameters as the electrical equipment;

[0150] If no, the electrical equipment is kept in the access circuit interval.

[0151] In one embodiment, after the step of determining whether the access circuit interval exists registered electrical equipment with the same electrical parameters as the electrical equipment, it comprises:

[0152] If yes, the electrical equipment is adjusted to another access circuit interval.

[0153] In one embodiment, after the step of determining whether the access circuit interval exists registered electrical equipment with the same electrical parameters as the electrical equipment, it comprises:

[0154] If yes, it is determined whether the electrical equipment overlaps with the registered electrical equipment with the same electrical parameters in the operation period;

[0155] If no, the electrical equipment is kept in the access circuit interval;

[0156] If yes, the electrical equipment is adjusted to another access circuit interval.

[0157] In one embodiment, after the step of disconnecting the electrical equipment that does not conform to the preset operation parameter of the current period and connecting the electrical equipment that conforms to the preset operation parameter of the current period, the method comprises:

[0158] repeatedly judging whether each electrical parameter in the current circuit conforms to the preset operation parameter of the current period;

[0159] If not, it is judged whether there is an electrical equipment that does not conform to the preset operation parameter of the current period or whether the electrical equipment that conforms to the preset operation parameter of the current period has not been connected.

[0160] If not, an alarm signal is sent.

[0161] Those skilled in the art can understand that, Figure 3 The structure shown in the figure is only a block diagram of part of the structure related to the scheme of the present application and does not constitute a limitation on the computer device to which the scheme of the present application is applied.

[0162] An embodiment of the present application also provides a computer readable storage medium, which stores a computer program, and the computer program is executed by a processor to realize the device power automatic distribution method, specifically: obtaining each electrical parameter in a current circuit, wherein the each electrical parameter in the current circuit refers to the current size of each branch in the circuit, the voltage size at both ends of each electrical equipment and the impedance size of each electrical equipment;

[0163] judging whether each electrical parameter in the current circuit conforms to the preset operation parameter of the current period;

[0164] If not, disconnecting the electrical equipment that does not conform to the preset operation parameter of the current period and connecting the electrical equipment that conforms to the preset operation parameter of the current period.

[0165] In one embodiment, after the step of obtaining each electrical parameter in the current circuit, before the step of judging whether each electrical parameter in the current circuit conforms to the preset operation parameter of the current period, the method comprises:

[0166] detecting whether any of the each electrical parameter in the current circuit changes;

[0167] If yes, calculating the change amount of the changed electrical parameter;

[0168] According to the change amount, it is judged that the electrical equipment that has been registered and connected to the current circuit;

[0169] If the change amount does not conform to the electrical parameter of the existing registered electrical equipment, it is determined that the electrical equipment corresponding to the change amount is an unregistered electrical equipment.

[0170] disconnecting the electrical connection of the unregistered electrical device to the current circuit.

[0171] In one embodiment, after the step of determining whether the electrical parameters in the current circuit meet the preset operation parameters of the current period, comprising:

[0172] If yes, maintaining the access state of the electrical device in the current circuit.

[0173] In one embodiment, before the step of obtaining the electrical parameters of the electrical device, comprising:

[0174] registering the electrical device to be accessed to the circuit;

[0175] obtaining the electrical parameters and load properties of the electrical device;

[0176] determining the access circuit interval of the electrical device according to the load properties and electrical parameters of the electrical device;

[0177] determining the operation period of the electrical device;

[0178] determining whether the access circuit interval exists a registered electrical device with the same electrical parameters as the electrical device;

[0179] If no, maintaining the electrical device in the access circuit interval.

[0180] In one embodiment, after the step of determining whether the access circuit interval exists a registered electrical device with the same electrical parameters as the electrical device, comprising:

[0181] If yes, adjusting the electrical device to another access circuit interval.

[0182] In one embodiment, after the step of determining whether the access circuit interval exists a registered electrical device with the same electrical parameters as the electrical device, comprising:

[0183] If yes, determining whether the electrical device overlaps with the registered electrical device with the same electrical parameters in the operation period;

[0184] If no, maintaining the electrical device in the access circuit interval;

[0185] If yes, adjusting the electrical device to another access circuit interval.

[0186] In one embodiment, after the step of disconnecting the electrical device not meeting the preset operation parameters of the current period and accessing the electrical device meeting the preset operation parameters of the current period, comprising:

[0187] determining whether the electrical parameters of the current circuit meet the preset operation parameters of the current period;

[0188] If not, determining whether there is electrical equipment that does not meet the preset operation parameters of the current period, or whether the electrical equipment meeting the preset operation parameters of the current period is not connected;

[0189] If not, an alarm signal is sent out.

[0190] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer readable storage medium, and when executed, can include the processes of the above-mentioned embodiment methods. Any reference to memory, storage, database or other medium provided by the present application and used in the embodiments can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. As an illustration but not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (SSRSDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0191] The above only discloses the preferred embodiments of the present application, and of course cannot limit the scope of the present application. Therefore, equivalent changes made according to the claims of the present application are still within the scope of the present application.

Claims

1. A method for automatic distribution of electricity to devices, characterized by: The method comprises: registering an electrical device to be connected to a circuit; obtaining electrical parameters and load properties of the electrical device; determining a connection circuit interval of the electrical device according to the load properties and the electrical parameters of the electrical device; determining a running time interval of the electrical device; judging whether the connection circuit interval has a registered electrical device with the same electrical parameters as the electrical device; if not, keeping the electrical device in the connection circuit interval; if yes, judging whether the electrical device overlaps with the registered electrical device with the same electrical parameters in the running time interval: if not, keeping the electrical device in the connection circuit interval; if yes, adjusting the electrical device to another connection circuit interval; obtaining each electrical parameter in the current circuit, wherein the each electrical parameter in the current circuit refers to the current size of each branch in the circuit, the voltage size at both ends of each electrical device connected to the circuit, and the impedance size of each electrical device; judging whether the each electrical parameter in the current circuit meets preset running parameters in a current time interval; if not, disconnecting the electrical device that does not meet the preset running parameters in the current time interval, and connecting the electrical device that meets the preset running parameters in the current time interval.

2. The method for automatic distribution of electricity to devices of claim 1, wherein: After the step of obtaining the each electrical parameter in the current circuit and before the step of judging whether the each electrical parameter in the current circuit meets the preset running parameters in the current time interval, the method comprises: detecting whether any of the each electrical parameter in the current circuit changes; if yes, calculating a change amount of the electrical parameter that changes; judging the registered electrical device connected to the current circuit according to the change amount; if the change amount does not meet the electrical parameters of the existing registered electrical device, determining that the electrical device corresponding to the change amount is an unregistered electrical device; disconnecting the electrical connection of the unregistered electrical device connected to the current circuit.

3. The method for automatic distribution of power to devices of claim 1, wherein: After the step of judging whether the each electrical parameter in the current circuit meets the preset running parameters in the current time interval, the method comprises: if yes, keeping the connection state of the each electrical device in the current circuit.

4. The method for automatic distribution of power to devices of claim 1, wherein: After the step of judging whether the connection circuit interval has a registered electrical device with the same electrical parameters as the electrical device, the method comprises: if yes, adjusting the electrical device to another connection circuit interval.

5. The method for automatic distribution of power to devices of claim 1, wherein: After the step of disconnecting the electrical device that does not meet the preset running parameters in the current time interval, and connecting the electrical device that meets the preset running parameters in the current time interval, the method comprises: judging again whether the each electrical parameter in the current circuit meets the preset running parameters in the current time interval; if not, judging whether there is an electrical device that does not meet the preset running parameters in the current time interval, or an electrical device that does not meet the preset running parameters in the current time interval is not connected; if not, issuing an alarm signal.

6. An automatic electrical distribution device for a device, characterized by: The automatic distribution device comprises: a first sub-registration module configured to register an electrical device to be connected to a circuit; a first sub-obtaining module configured to obtain electrical parameters and load properties of the electrical device; a first sub-determining module configured to determine a connection circuit interval of the electrical device according to the load properties and the electrical parameters of the electrical device; A second sub-determining module is configured to determine a running period of the electrical device; A second sub-judging module is configured to judge whether there is a registered electrical device with the same electrical parameter as the electrical device in the access circuit section; A second sub-processing module is configured to, if no, keep the electrical device in the access circuit section; A third sub-judging module is configured to, if yes, judge whether there is an overlap between the electrical device and the registered electrical device with the same electrical parameter in the running period; A fourth sub-processing module is configured to, if no, keep the electrical device in the access circuit section; A fifth sub-processing module is configured to, if yes, adjust the electrical device to another access circuit section; An acquiring module is configured to acquire each electrical parameter in a current circuit, wherein the each electrical parameter in the current circuit refers to a current size of each branch in the circuit, a voltage size at both ends of each electrical device access, and an impedance size of each electrical device; A judging module is configured to judge whether the each electrical parameter in the current circuit conforms to preset running parameters in a current period; A processing module is configured to, if no, disconnect the electrical device not conforming to the preset running parameters in the current period, and access the electrical device conforming to the preset running parameters in the current period. 7.A computer device, comprising a memory and a processor, wherein the memory stores a computer program, and the computer device is configured to perform the method according to any one of claims 1-6 when the computer program is executed by the processor. The processor executes the computer program to implement the steps of the method in any one of claims 1 to 5.

8. A computer-readable storage medium having stored thereon a computer program, characterized in that The computer program is executed by the processor to implement the steps of the method in any one of claims 1 to 5.

Citation Information

Patent Citations

  • Electrical equipment operation switching method and device, electronic equipment and storage medium

    CN111580445A

  • Method and apparatus for load monitoring

    CN113454470A