Intelligent sorting platform for electricity meter sorting control method and system
By acquiring and analyzing electricity meter sorting tasks and equipment data, generating instruction sets, and automatically controlling electricity meter sorting, the problems of high manpower consumption and large errors in existing technologies are solved, and efficient electricity meter sorting and identification are achieved.
Patent Information
- Application Number
- CN202411952552.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2044-12-27
AI Technical Summary
Existing electricity meter sorting and identification platforms suffer from high manpower consumption, large errors, and low efficiency during sorting and identification, resulting in poor effectiveness of sorting and identification.
By acquiring sorting task information and equipment operation data from the intelligent sorting platform, the number of items, items, and batches to be sorted are analyzed to generate a matching instruction set and automatically send control commands to achieve sorting control of the electricity meters and reduce errors.
The sorting control of electricity meters has been automated, reducing errors and improving the effectiveness and efficiency of sorting and identification.
Smart Images

Figure CN119680907B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of power system technology, and in particular to a method and system for controlling the sorting of electricity meters on an intelligent sorting platform. Background Technology
[0002] With the development of technologies such as intelligent layout and intelligent identification of electricity meters in power systems, electricity meter sorting and identification platforms are used to identify various electricity meters in the power transmission network to ensure the safety and effectiveness of electricity meter operation.
[0003] Currently, existing electricity meter sorting and authentication platforms sort and authenticate electricity meters by having sorting workers place each meter to be authenticated on a sorting and conveying device for transport to a robotic arm for authentication. However, due to the varying number of meters and the different types of meters being authenticated in different sorting tasks, the authentication time for each robotic arm varies. Sorting workers need to adjust the meter placement according to these varying timeframes, requiring significant manpower. Furthermore, when the placement time is short, manual operation can introduce substantial errors, leading to delays or serious inaccuracies in meter sorting and significantly reducing the effectiveness of electricity meter sorting and authentication. Summary of the Invention
[0004] In view of this, the present invention provides a method and system for sorting and controlling electricity meters in an intelligent sorting platform, the main purpose of which is to solve the problem of poor effectiveness of sorting and identification control of existing electricity meters.
[0005] According to one aspect of the present invention, a method for controlling the sorting of electricity meters in an intelligent sorting platform is provided, comprising:
[0006] Obtain sorting task information from multiple electricity meters entered into the intelligent sorting platform, as well as equipment operation data from at least one sorting device;
[0007] The sorting task information is analyzed, including the number of sorted items, sorting batches, and sorting constraint information. The sorting constraint information is used to characterize the sorting anomalies during the sorting process.
[0008] After the sorting equipment is detected to have completed the pre-sorting operation verification, target operation information matching the number of sorted items, the sorting items and the sorting batch is determined based on the equipment operation data, and an instruction set matching the target operation information is generated based on the instruction container.
[0009] When the presence of the energy meter at the sorting target location is detected, control commands from the instruction set are sent to the sorting equipment.
[0010] Furthermore, before determining the target operation information matching the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operation data, the method further includes:
[0011] Send an initialization operation command to the sorting device, the initialization operation command including multiple operation sub-commands;
[0012] When it is detected that the sorting device performs a matching operation according to the running sub-instruction, the initial running data collected by the acquisition device is obtained;
[0013] Compare the initial operating data of sorting equipment of the same model to determine the initial operating difference value;
[0014] If the difference between the initial operating difference value and the preset equipment difference threshold is less than the preset threshold, then the pre-sorting operation verification of the sorting equipment is completed.
[0015] If the difference between the initial operating difference value and the preset equipment difference threshold is greater than or equal to the preset threshold, then the preset sorting operation of the sorting equipment is determined to have failed, and an abnormal sorting equipment is identified.
[0016] Furthermore, the anomaly detection sorting device includes:
[0017] Based on the initial operational difference value, at least two suspicious sorting devices are identified, and the average operational data of the sorting devices is compared with the initial operational data of the suspicious sorting devices.
[0018] Suspicious sorting equipment with large differences in the comparison results was identified as abnormal sorting equipment.
[0019] Furthermore, the determination of target operation information matching the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operation data includes:
[0020] Based on the equipment operation data, the equipment sorting empty inspection time, equipment sorting detection time, and equipment sorting objects are matched with the number of sorting items, the sorting items, and the sorting batches to determine the target operation information. The target operation information includes the time for the sorting equipment to perform sorting actions, the time for detection actions, and the time for object identification.
[0021] Furthermore, before generating the instruction set matching the target operation information based on the instruction container, the method further includes:
[0022] Retrieve instruction information that matches the sorting task information;
[0023] Based on the instruction logic and instruction form pre-configured in the instruction container, the instruction information is combined to generate control instructions to be adapted to match different operation information, and stored in the instruction container.
[0024] The generation of an instruction set that matches the target operation information based on the instruction container includes:
[0025] Based on the time of the sorting action, the time of the detection action, and the time of the object identification in the target operation information, the instruction time node of the control instruction to be adapted is configured to obtain the control instruction.
[0026] Furthermore, the step of sending the control commands from the instruction set to the sorting equipment after detecting the presence of the energy meter at the sorting target location includes:
[0027] When the arrival marker of the energy meter is collected at the sorting target location by gravity acquisition equipment or video acquisition equipment, it is determined that the energy meter exists at the sorting target location;
[0028] Start the sorting timer and trigger the control commands one by one according to the timer's timing.
[0029] According to another aspect of the present invention, a smart sorting platform for electricity meter sorting control system is provided, comprising:
[0030] The acquisition module is used to acquire sorting task information of multiple electricity meters entered by the intelligent sorting platform, as well as equipment operation data of at least one sorting device.
[0031] The parsing module is used to parse the number of items to be sorted, sorting items, sorting batches, and sorting constraint information in the sorting task information. The sorting constraint information is used to characterize the content of sorting anomalies during the sorting process.
[0032] The generation module is used to determine the target operation information that matches the number of items to be sorted, the sorting items and the sorting batch based on the equipment operation data after the sorting equipment is detected to have completed the pre-sorting operation verification, and to generate an instruction set that matches the target operation information based on the instruction container.
[0033] The sending module is used to send control commands from the instruction set to the sorting equipment when the presence of the energy meter at the sorting target location is detected.
[0034] According to another aspect of the present invention, a storage medium is provided, wherein at least one executable instruction is stored therein, the executable instruction causing a processor to perform an operation corresponding to the energy meter sorting control method of the above-described intelligent sorting platform.
[0035] According to another aspect of the present invention, a terminal is provided, comprising: a processor, a memory, a communication interface, and a communication bus, wherein the processor, the memory, and the communication interface communicate with each other through the communication bus;
[0036] The memory is used to store at least one executable instruction, which causes the processor to perform the operation corresponding to the energy meter sorting control method of the above-mentioned intelligent sorting platform.
[0037] By employing the above-described technical solutions, the technical solutions provided by the embodiments of the present invention have at least the following advantages:
[0038] This invention provides a method and system for controlling the sorting of electricity meters on an intelligent sorting platform. Compared with existing technologies, this invention acquires sorting task information of multiple electricity meters recorded by the intelligent sorting platform, as well as equipment operation data of at least one sorting device. It parses the sorting task information, including the number of meters to be sorted, sorting items, sorting batches, and sorting constraint information. The sorting constraint information characterizes the sorting anomalies during the sorting process. When the sorting device completes pre-sorting verification, it determines target operation information matching the number of meters to be sorted, the sorting items, and the sorting batch based on the equipment operation data, and generates an instruction set matching the target operation information based on an instruction container. When the electricity meter is detected at the target sorting location, it sends control instructions from the instruction set to the sorting device, achieving automatic execution of electricity meter sorting control. This significantly reduces the possibility of errors in the sorting operation, thereby improving the effectiveness of electricity meter sorting control.
[0039] The above description is merely an overview of the technical solution of the present invention. In order to better understand the technical means of the present invention and to implement it in accordance with the contents of the specification, and in order to make the above and other objects, features and advantages of the present invention more apparent and understandable, specific embodiments of the present invention are described below. Attached Figure Description
[0040] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:
[0041] Figure 1 This invention provides a flowchart of a smart sorting platform for controlling the sorting of electricity meters according to an embodiment of the present invention.
[0042] Figure 2 This diagram illustrates a block diagram of an energy meter sorting control system for an intelligent sorting platform provided in an embodiment of the present invention.
[0043] Figure 3 A schematic diagram of the structure of a terminal provided in an embodiment of the present invention is shown. Detailed Implementation
[0044] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
[0045] This invention provides a method for controlling the sorting of electricity meters on an intelligent sorting platform, such as... Figure 1 As shown, the method includes:
[0046] 101. Obtain sorting task information of multiple electricity meters entered into the intelligent sorting platform, as well as equipment operation data of at least one sorting device.
[0047] In this embodiment of the invention, the current execution terminal, as the main body for controlling the sorting of electricity meters, can be the processor or control server of the intelligent sorting platform. Technicians can enter the sorting task information for the electricity meters to be sorted through the intelligent sorting platform's operation interface. This sorting task information can be a task list, including task identifiers such as the number of meters to be sorted, sorting items, sorting batches, and sorting constraints. This embodiment of the invention does not impose specific limitations on this. Additionally, the current execution terminal also acquires the equipment operation data of each sorting device. In this case, the sorting device is the equipment used to pick up and inspect the electricity meters, such as a robotic arm with inspection capabilities. This embodiment of the invention does not impose specific limitations on this.
[0048] It should be noted that the equipment operation data is the equipment operation data collected when each sorting device performs an idle run (i.e., a sorting operation performed without any electricity meters being sorted) when no electricity meters are being sorted. The idle run time can be pre-configured, such as 10 minutes or 20 minutes. The idle run time needs to be longer than the time required to sort one electricity meter. During this time, the sorting device performs a sorting operation without any items to be sorted and records the equipment operation data.
[0049] 102. Parse the sorting task information, including the number of sorting items, sorting items, sorting batches, and sorting constraint information.
[0050] In this embodiment of the invention, since the entered sorting task information is in tabular form, the table can be written with different rows and columns containing the number of electricity meters to be sorted, sorting items, sorting batches, and sorting constraint information. Furthermore, the current execution end can extract and parse the identifiers of each row and column to determine the number of sorting items, sorting batches, and sorting constraint information. For example, the row identifier is the electricity meter ID, and the column identifier is the sorting item, sorting batch, and sorting constraint information. The number of sorting items can be determined based on the number of rows. In this context, the number of items to be sorted refers to the total number of electricity meters that need to be sorted in this task; the sorting items refer to the content that the electricity meters are inspected using sorting equipment, including but not limited to model, voltage, current, and appearance; the sorting batch refers to the batch of electricity meters in production included in this sorting task; and the sorting constraint information is used to characterize the content of sorting anomalies during the sorting process. Different electricity meters can be pre-configured with different sorting constraint information. For example, for model a electricity meter, the sorting constraint information is voltage and current, and for model b electricity meter, the sorting constraint information is current and appearance. This embodiment of the invention does not impose specific limitations.
[0051] 103. After the sorting equipment is detected to have completed the pre-sorting operation verification, target operation information matching the number of sorted items, the sorting items and the sorting batch is determined based on the equipment operation data, and an instruction set matching the target operation information is generated based on the instruction container.
[0052] In this embodiment of the invention, before performing the sorting operation, the current execution end performs a pre-sorting operation verification on the sorting equipment. Upon successful verification, target operation information matching the number of items to be sorted, the sorting items, and the sorting batch is determined based on the equipment's operating data. This target operation information characterizes the execution content of the sorting operation performed by the sorting equipment on the electricity meters, including but not limited to clamping pressure, detection time, and endpoint docking time. Since the equipment operating data is the running time and clamping pressure collected during idle operation, this embodiment of the invention does not impose specific limitations. Furthermore, after determining the target operation information, an instruction set matching the target operation information is generated based on the instruction container. This instruction set contains control instructions for sorting control of each sorting device.
[0053] In another embodiment of the invention, for further definition and explanation, the step of determining the target operation information matching the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operating data includes:
[0054] Based on the equipment operation data, the equipment sorting empty inspection time, equipment sorting detection time, and equipment sorting objects are matched with the number of items to be sorted, the sorting items, and the sorting batches to determine the target operation information.
[0055] To achieve accurate control of the sorting energy meters, the current execution end, when matching target operation information, first extracts the equipment sorting idle inspection time, equipment sorting detection time, and equipment sorting objects from the equipment operation data. Then, it matches these with the number of items to be sorted, the sorting items, and the sorting batch to determine the target operation information. At this point, the target operation information includes the time for the sorting equipment to perform sorting actions, the time for detection actions, and the time for object identification. To accelerate matching efficiency, the equipment sorting idle inspection time, equipment sorting detection time, the number of items that can be sorted by the equipment sorting object, as well as the sorting items and sorting batches, can be pre-configured. That is, the equipment sorting idle inspection time, equipment sorting detection time, and equipment sorting object are matched to the corresponding number of items, sorting items, and sorting batches through a first mapping relationship. The first mapping relationship includes matching the equipment sorting idle inspection time, equipment sorting detection time, and equipment sorting object with the corresponding sorting count, sorting items, and sorting batches. The system assigns the number of items to be sorted, as well as the sorting items and sorting batches. Then, through a second mapping relationship, it matches the time of sorting action, the time of detection action, and the time of object identification corresponding to the sorting equipment for the number of items to be sorted, the sorting items, and the sorting batches. The second mapping relationship includes the time of sorting action, the time of detection action, and the time of object identification matched with the number of items to be sorted, the sorting items, and the sorting batches, thereby quickly querying the target operation information. In this embodiment of the invention, the first mapping relationship and the second mapping relationship can be pre-configured and written by technicians, and can also be retrieved in real time, without specific limitations.
[0056] In another embodiment of the invention, for further definition and explanation, before the step of generating an instruction set matching the target operation information based on the instruction container, the method further includes:
[0057] Retrieve instruction information that matches the sorting task information;
[0058] Based on the instruction logic and instruction form pre-configured in the instruction container, the instruction information is combined to generate control instructions to be adapted to match different operation information, and stored in the instruction container.
[0059] The generation of an instruction set that matches the target operation information based on the instruction container includes:
[0060] Based on the time of the sorting action, the time of the detection action, and the time of the object identification in the target operation information, the instruction time node of the control instruction to be adapted is configured to obtain the control instruction.
[0061] To achieve automated sorting control, before generating the instruction set, the current execution end first retrieves instruction information matching the sorting task information. This instruction information represents all instructions required to execute the sorting task, including but not limited to time control instructions and operation control instructions. These can be bound to different sorting tasks; this embodiment does not impose specific limitations. Furthermore, after retrieving the instruction information, the instruction logic and format pre-configured in the instruction container are combined with the instruction information to generate control instructions to be adapted, matching different operation information. These control instructions represent control instructions with missing trigger times. The instruction logic represents the logic by which the code triggers the execution of the instruction, including but not limited to logical AND, logical OR, and logical NOT, to represent the logic of triggering control instructions between time or conditions. It may also include, but is not limited to, instruction symbols; this embodiment does not impose specific limitations. The instruction form is used to characterize the form in which the code of the instruction is written, including but not limited to the control logic form of different instruction languages, such as call instruction (CALL), return instruction (RET), or control logic instruction representation such as JU, JL, etc. Then, the instruction logic and instruction form are combined with the instruction information, that is, the instruction symbols are combined with the corresponding instruction writing language according to the time control instruction or operation control instruction to obtain the control instruction to be adapted, which is stored in the instruction container for triggering when different times are reached. The embodiments of the present invention do not make specific limitations.
[0062] 104. When the presence of the energy meter at the sorting target location is detected, the control command in the instruction set is sent to the sorting equipment.
[0063] In this embodiment of the invention, after generating an instruction set that matches the target operation information based on the instruction container, in order to ensure the effective sorting of electricity meters, the current execution end first determines whether there is an electricity meter at the sorting target location. If an electricity meter is detected, the control instruction generated in the instruction set is sent to the sorting device to improve the accuracy of the electricity meter sorting operation.
[0064] In another embodiment of the invention, to further define and illustrate, before determining the target operation information matching the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operating data, the method further includes:
[0065] Send an initialization operation command to the sorting equipment;
[0066] When it is detected that the sorting device performs a matching operation according to the running sub-instruction, the initial running data collected by the acquisition device is obtained;
[0067] Compare the initial operating data of sorting equipment of the same model to determine the initial operating difference value;
[0068] If the difference between the initial operating difference value and the preset equipment difference threshold is less than the preset threshold, then the pre-sorting operation verification of the sorting equipment is completed.
[0069] If the difference between the initial operating difference value and the preset equipment difference threshold is greater than or equal to the preset threshold, then the preset sorting operation of the sorting equipment is determined to have failed, and an abnormal sorting equipment is identified.
[0070] To ensure the safety of sorting control of electricity meters, the current execution terminal verifies the sorting equipment before matching target operation information. This involves sending an initialization operation command to the sorting equipment, which includes multiple sub-instructions. These sub-instructions serve as test commands, such as maximum bending operation command, minimum bending operation command, minimum clamping speed, minimum clamping pressure, and minimum clamping pressure, to control the sorting equipment to execute operations according to these sub-instructions. This embodiment of the invention does not impose specific limitations on these sub-instructions. When the sorting equipment is detected to be performing a matching operation according to the sub-instructions, the current execution terminal acquires the initialization operation data collected by the acquisition device. At this time, the acquisition device uses various sensors, including but not limited to speed sensors, pressure sensors, and timers, for different operations. The current execution terminal compares the initialization operation data of sorting equipment of the same model to determine the initial operation difference value. This initial operation difference value is the difference between the maximum and minimum values collected for the same object among multiple initialization operation data, or the difference between the initialization operation data of every two sorting equipment, selecting the maximum difference, such as the maximum and minimum clamping pressure of the sorting equipment. This embodiment of the invention does not impose specific limitations on this. When the initial operational difference value is compared with a preset equipment difference threshold, if the difference is less than the preset threshold, the pre-sorting operation verification of the sorting equipment is completed. If the difference is greater than or equal to the preset threshold, the pre-sorting operation of the sorting equipment is determined to have failed, and an abnormal sorting equipment is identified. The preset equipment difference threshold is set based on the safe operation requirements of the sorting equipment, and this embodiment of the invention does not impose specific limitations on it.
[0071] In another embodiment of the invention, for further definition and explanation, the step of determining the abnormal sorting device includes:
[0072] Based on the initial operational difference value, at least two suspicious sorting devices are identified, and the average operational data of the sorting devices is compared with the initial operational data of the suspicious sorting devices.
[0073] Suspicious sorting equipment with large differences in the comparison results was identified as abnormal sorting equipment.
[0074] To improve effective control over sorting equipment, the current execution terminal, when identifying abnormal sorting equipment, specifically determines at least two suspicious sorting devices based on initial operational difference values. Since the initial operational difference value is the difference between the maximum and minimum values, or the difference between the initial operational data of every two sorting devices, two suspicious sorting devices can be identified. Furthermore, the average operational data of the sorting equipment is compared with the initial operational data of the suspicious sorting devices. Here, the average operational data can be calculated by averaging the initial operational data; this embodiment of the invention does not impose specific limitations. Additionally, after comparison, the current execution terminal selects the suspicious sorting device with the larger difference value from the comparison results and identifies it as an abnormal sorting device, thereby issuing an early warning.
[0075] In another embodiment of the invention, for further definition and explanation, the step of sending the control commands from the instruction set to the sorting equipment after detecting the presence of the energy meter at the sorting target location includes:
[0076] When the arrival marker of the energy meter is collected at the sorting target location by gravity acquisition equipment or video acquisition equipment, it is determined that the energy meter exists at the sorting target location;
[0077] Start the sorting timer and trigger the control commands one by one according to the timer's timing.
[0078] To achieve flexible control of the sorting equipment, before the current execution end sends control commands from the instruction set to the sorting equipment, it first detects whether there is an electricity meter at the sorting target location. Specifically, the current execution end collects the location markers of the electricity meter at the sorting target location using gravity acquisition equipment or video acquisition equipment (e.g., the outline of the electricity meter in the image, the high-level signal transmitted by the gravity sensor, etc.). When it is confirmed that there is an electricity meter at the sorting target location through the location markers, the current execution end starts the sorting timer and triggers the control commands in the instruction set one by one according to the timing of the sorting timer. That is, the time information is configured in the control commands, or the control commands are sent after the corresponding trigger time is detected. This embodiment of the invention does not make specific limitations.
[0079] This invention provides a method for controlling the sorting of electricity meters on an intelligent sorting platform. Compared with existing technologies, this invention acquires sorting task information of multiple electricity meters recorded by the intelligent sorting platform, as well as equipment operation data of at least one sorting device. It parses the sorting task information, including the number of meters to be sorted, sorting items, sorting batches, and sorting constraint information. The sorting constraint information characterizes the sorting anomalies during the sorting process. When the sorting device completes pre-sorting verification, it determines target operation information matching the number of meters to be sorted, the sorting items, and the sorting batch based on the equipment operation data, and generates an instruction set matching the target operation information based on an instruction container. When the electricity meter is detected at the target sorting location, it sends control instructions from the instruction set to the sorting device, achieving automatic execution of electricity meter sorting control. This significantly reduces the possibility of errors in the sorting operation, thereby improving the effectiveness of electricity meter sorting control.
[0080] Furthermore, as a response to the above Figure 1 The implementation of the method shown in this invention provides an intelligent sorting platform for electricity meter sorting control system, as follows: Figure 2 As shown, the system includes:
[0081] The acquisition module 21 is used to acquire sorting task information of multiple energy meters entered by the intelligent sorting platform, as well as equipment operation data of at least one sorting device.
[0082] The parsing module 22 is used to parse the number of sorting items, sorting items, sorting batches and sorting constraint information in the sorting task information. The sorting constraint information is used to characterize the content of sorting anomalies during the sorting process.
[0083] The generation module 23 is used to determine the target operation information that matches the number of items to be sorted, the sorting items and the sorting batch based on the equipment operation data after the sorting equipment has completed the pre-sorting operation verification, and to generate an instruction set that matches the target operation information based on the instruction container.
[0084] The sending module is used to send control commands from the instruction set to the sorting equipment when the presence of the energy meter at the sorting target location is detected.
[0085] This invention provides a smart sorting platform for electricity meter sorting control. Compared with existing technologies, this invention acquires sorting task information of multiple electricity meters recorded by the smart sorting platform, as well as equipment operation data of at least one sorting device. It parses the sorting task information, including the number of meters to be sorted, sorting items, sorting batches, and sorting constraint information. The sorting constraint information characterizes sorting anomalies during the sorting process. When the sorting device completes pre-sorting verification, it determines target operation information matching the number of meters to be sorted, the sorting items, and the sorting batch based on the equipment operation data, and generates an instruction set matching the target operation information based on an instruction container. When an electricity meter is detected at the target sorting location, it sends control instructions from the instruction set to the sorting device, achieving automatic execution of electricity meter sorting control. This significantly reduces the possibility of errors in the sorting operation, thereby improving the effectiveness of electricity meter sorting control.
[0086] According to one embodiment of the present invention, a storage medium is provided, the storage medium storing at least one executable instruction, which can execute the energy meter sorting control method of the intelligent sorting platform in any of the above method embodiments.
[0087] Figure 3 The diagram shows a structural schematic of a terminal according to an embodiment of the present invention. The specific implementation of the terminal is not limited by the specific embodiments of the present invention.
[0088] like Figure 3 As shown, the terminal may include: a processor 302, a communications interface 304, a memory 306, and a communications bus 308.
[0089] The processor 302, communication interface 304, and memory 306 communicate with each other via communication bus 308.
[0090] Communication interface 304 is used to communicate with other network elements such as clients or other servers.
[0091] The processor 302 is used to execute program 310, specifically to execute the relevant steps in the above-described embodiment of the energy meter sorting control method for the intelligent sorting platform.
[0092] Specifically, program 310 may include program code that includes computer operation instructions.
[0093] Processor 302 may be a central processing unit (CPU), an application-specific integrated circuit (ASIC), or one or more integrated circuits configured to implement embodiments of the present invention. The terminal may include one or more processors of the same type, such as one or more CPUs; or it may include processors of different types, such as one or more CPUs and one or more ASICs.
[0094] Memory 306 is used to store program 310. Memory 306 may include high-speed RAM memory, and may also include non-volatile memory, such as at least one disk storage device.
[0095] Specifically, program 310 can be used to cause processor 302 to perform the following operations:
[0096] Obtain sorting task information from multiple electricity meters entered into the intelligent sorting platform, as well as equipment operation data from at least one sorting device;
[0097] The sorting task information is analyzed, including the number of sorted items, sorting batches, and sorting constraint information. The sorting constraint information is used to characterize the sorting anomalies during the sorting process.
[0098] After the sorting equipment is detected to have completed the pre-sorting operation verification, target operation information matching the number of sorted items, the sorting items and the sorting batch is determined based on the equipment operation data, and an instruction set matching the target operation information is generated based on the instruction container.
[0099] When the presence of the energy meter at the sorting target location is detected, control commands from the instruction set are sent to the sorting equipment.
[0100] It is obvious to those skilled in the art that the modules or steps of the present invention described above can be implemented using general-purpose computing systems. They can be centralized on a single computing system or distributed across a network of multiple computing systems. Optionally, they can be implemented using program code executable by a computing system, thereby storing them in a storage system for execution by the computing system. In some cases, the steps shown or described can be performed in a different order than those presented herein, or they can be fabricated as separate integrated circuit modules, or multiple modules or steps can be fabricated as a single integrated circuit module. Thus, the present invention is not limited to any particular combination of hardware and software.
[0101] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A method for controlling the sorting of electricity meters in an intelligent sorting platform, characterized in that, include: Obtain sorting task information from multiple electricity meters entered into the intelligent sorting platform, as well as equipment operation data from at least one sorting device; The sorting task information is analyzed, including the number of sorted items, sorting batches, and sorting constraint information. The sorting constraint information is used to characterize the sorting anomalies during the sorting process. After the sorting equipment is detected to have completed the pre-sorting operation verification, target operation information matching the number of sorted items, the sorting items and the sorting batch is determined based on the equipment operation data, and an instruction set matching the target operation information is generated based on the instruction container. Before determining the target operation information matching the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operation data, the method further includes: sending an initialization operation instruction to the sorting equipment, the initialization operation instruction including multiple operation sub-instructions; when it is detected that the sorting equipment is performing a matching operation according to the operation sub-instructions, acquiring the initialization operation data collected by the acquisition device; comparing the initialization operation data of sorting equipment of the same model to determine the initial operation difference value; if the difference between the initial operation difference value and the preset equipment difference threshold is less than the preset threshold, then the pre-sorting operation verification of the sorting equipment is completed; if the difference between the initial operation difference value and the preset equipment difference threshold is greater than or equal to the preset threshold, then the pre-sorting operation of the sorting equipment is determined to have failed, at least two suspicious sorting equipment are identified based on the initial operation difference value, and the average operation data of the sorting equipment is compared with the initial operation data of the suspicious sorting equipment; the suspicious sorting equipment with the larger difference value in the comparison results is selected as the abnormal sorting equipment. The step of determining the target operation information that matches the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operation data includes: matching the equipment sorting empty inspection time, equipment sorting detection time, and equipment sorting objects in the equipment operation data with the number of items to be sorted, the sorting items, and the sorting batch to determine the target operation information. The target operation information includes the time for the sorting equipment to perform the sorting action, the time for the detection action, and the time for identifying the object. When the presence of the energy meter at the sorting target location is detected, control commands from the instruction set are sent to the sorting equipment.
2. The method according to claim 1, characterized in that, Before generating the instruction set matching the target operation information based on the instruction container, the method further includes: Retrieve instruction information that matches the sorting task information; Based on the instruction logic and instruction form pre-configured in the instruction container, the instruction information is combined to generate control instructions to be adapted to match different operation information, and stored in the instruction container. The generation of an instruction set that matches the target operation information based on the instruction container includes: Based on the time of the sorting action, the time of the detection action, and the time of the object identification in the target operation information, the instruction time node of the control instruction to be adapted is configured to obtain the control instruction.
3. The method according to claim 2, characterized in that, The step of sending control commands from the instruction set to the sorting equipment after detecting the presence of the energy meter at the sorting target location includes: When the arrival marker of the energy meter is collected at the sorting target location by gravity acquisition equipment or video acquisition equipment, it is determined that the energy meter exists at the sorting target location; Start the sorting timer and trigger the control commands one by one according to the timer's timing.
4. A smart sorting platform for electricity meter sorting control system, characterized in that, include: The acquisition module is used to acquire sorting task information of multiple electricity meters entered by the intelligent sorting platform, as well as equipment operation data of at least one sorting device. The parsing module is used to parse the number of items to be sorted, sorting items, sorting batches, and sorting constraint information in the sorting task information. The sorting constraint information is used to characterize the content of sorting anomalies during the sorting process. The generation module is used to, after detecting that the sorting device has completed the pre-sorting operation verification, determine the target operation information matching the number of sorted items, the sorting items, and the sorting batch based on the device's operating data, and generate an instruction set matching the target operation information based on the instruction container; wherein, before determining the target operation information matching the number of sorted items, the sorting items, and the sorting batch based on the device's operating data, the module further includes: sending an initialization operation instruction to the sorting device, the initialization operation instruction including multiple operation sub-instructions; when detecting that the sorting device executes a matching operation according to the operation sub-instructions, acquiring the initial data collected by the acquisition device. The system analyzes and compares the initial operating data of sorting equipment of the same model to determine the initial operating difference value. If the difference between the initial operating difference value and the preset equipment difference threshold is less than the preset threshold, the pre-sorting operation verification of the sorting equipment is completed. If the difference between the initial operating difference value and the preset equipment difference threshold is greater than or equal to the preset threshold, the pre-sorting operation of the sorting equipment is determined to have failed. Based on the initial operating difference value, at least two suspicious sorting equipment are identified, and the average operating data of the sorting equipment is compared with the initial operating data of the suspicious sorting equipment. The suspicious sorting equipment with the larger difference value in the comparison results is selected as the abnormal sorting equipment. The step of determining the target operation information that matches the number of items to be sorted, the sorting items, and the sorting batch based on the equipment operation data includes: matching the equipment sorting empty inspection time, equipment sorting detection time, and equipment sorting objects in the equipment operation data with the number of items to be sorted, the sorting items, and the sorting batch to determine the target operation information. The target operation information includes the time for the sorting equipment to perform the sorting action, the time for the detection action, and the time for identifying the object. The sending module is used to send control commands from the instruction set to the sorting equipment when the presence of the energy meter at the sorting target location is detected.
5. A storage medium storing at least one executable instruction that causes a processor to perform an operation corresponding to the energy meter sorting control method of the intelligent sorting platform as described in any one of claims 1-3.
6. A terminal, comprising: The processor, memory, communication interface, and communication bus are provided, wherein the processor, memory, and communication interface communicate with each other via the communication bus. The memory is used to store at least one executable instruction, which causes the processor to perform the operation corresponding to the electricity meter sorting control method of the intelligent sorting platform as described in any one of claims 1-3.
Citation Information
Patent Citations
Electric energy meter sorting detection method and system of intelligent sorting platform
CN119657503A