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CN-121999075-A - Apparatus, method and computer program product for producing an energy flow graph

CN121999075ACN 121999075 ACN121999075 ACN 121999075ACN-121999075-A

Abstract

The present invention provides an apparatus, a method, and a computer program product for producing an energy flow graph, the apparatus including a processor for acquiring information of a configuration graph related to one or more energy devices that generate or consume energy and one or more energy transmission paths connected to the energy devices, the processor selecting devices included in a first energy flow graph from the configuration graph, and producing the first energy flow graph indicating the energy devices, the energy transmission paths, and one or more meter devices that measure parameters related to energy based on the selected devices.

Inventors

  • KAWAMURA AKIHISA

Assignees

  • 横河电机株式会社

Dates

Publication Date
20260508
Application Date
20251014
Priority Date
20241101

Claims (13)

  1. 1. An apparatus for producing an energy flow graph, characterized in that, Is provided with at least one processor and is provided with a plurality of processors, The at least one processor obtains information of a configuration map related to one or more energy devices generating or consuming energy and one or more energy transmission paths connected to the energy devices, The at least one processor selects a device from the configuration map that is included in a first energy flow graph, The at least one processor outputs information representative of the energy device, the energy transmission path, and the first energy flow graph of one or more meter devices that measure energy-related parameters based on the selected device.
  2. 2. The apparatus for producing an energy flow graph according to claim 1, wherein, The at least one processor takes user input for the configuration map, The at least one processor selects the device included in the first energy flow graph based on the user input.
  3. 3. The apparatus for producing an energy flow graph according to claim 1, wherein, The at least one processor obtains a plurality of the configuration maps, The at least one processor selects a device labeled with a common label among a plurality of the configuration maps as a device that should be included in the first energy flow graph, The at least one processor combines devices labeled with the common label in a plurality of the configuration maps to output information of the first energy flow graph.
  4. 4. An apparatus for producing an energy flow graph according to any one of claims 1 to 3, The at least one processor obtains user input for the first energy flow graph, The at least one processor outputs information of a second energy flow graph based on the user input for the first energy flow graph and the first energy flow graph.
  5. 5. The apparatus for producing an energy flow graph of claim 4, The at least one processor produces the second energy flow graph displaying non-deterministic devices, The at least one processor obtains user input for the non-deterministic device.
  6. 6. The apparatus for producing an energy flow map of claim 4, wherein said at least one processor produces said second energy flow map with a list of input points representing information related to respective data of said meter device.
  7. 7. The apparatus for producing an energy flow graph according to any one of claims 1 to 3, wherein said at least one processor extracts said energy devices for which no corresponding meter devices are provided, and produces a proposal of one or more newly provided meter devices in said first energy flow graph.
  8. 8. The apparatus for producing an energy flow graph of claim 7, wherein the at least one processor produces the proposal for the newly installed instrumentation device based on at least one of the extracted information and allowable costs for the energy device.
  9. 9. The apparatus for producing an energy flow graph according to claim 8, wherein said at least one processor produces a proposal of a newly installed instrumentation device corresponding to said extracted energy device using a learning model that outputs a proposal of a newly installed instrumentation device according to an input of information related to the energy device.
  10. 10. The apparatus for producing an energy flow graph of claim 8, wherein the at least one processor produces the proposal for the newly installed instrumentation device based on at least one of the number of branches of the energy transmission path and other of the energy devices connected to the input or output of the extracted energy device.
  11. 11. The apparatus for producing an energy flow map according to claim 8, wherein said at least one processor produces a proposal for said newly installed instrumentation based on the number of said plurality of energy devices of the same kind extracted connected in parallel.
  12. 12. A method of constructing an energy flow graph, performed by at least one processor, characterized in that, Information of a configuration map related to one or more energy devices generating or consuming energy and one or more energy transmission paths connected to the energy devices is acquired, Selecting a device comprised in the first energy flow graph from the configuration graph, Based on the selected device, information representing the energy device, the energy transmission path, and the first energy flow graph of one or more meter devices that measure energy-related parameters is output.
  13. 13. A computer program product comprising a computer program, characterized in that, The computer program is for causing a computer to: Information of a configuration map related to one or more energy devices generating or consuming energy and one or more energy transmission paths connected to the energy devices is acquired, Selecting a device comprised in the first energy flow graph from the configuration graph, Based on the selected device, information representing the energy device, the energy transmission path, and the first energy flow graph of one or more meter devices that measure energy-related parameters is output.

Description

Apparatus, method and computer program product for producing an energy flow graph Technical Field The present invention relates to an apparatus, method and computer program product for producing an energy flow graph. Background Patent document 1 describes that the flow of processing field data of a factory or the like is converted and displayed according to the execution environment and the requirements. Prior art literature Patent document 1 Japanese patent laid-open publication No. 2018-181262 Disclosure of Invention In a first aspect of the present invention, there is provided an apparatus for producing an energy flow graph, including at least one processor, the at least one processor acquiring information of a configuration graph related to one or more energy devices that generate or consume energy and one or more energy transmission paths connected to the energy devices, the at least one processor selecting devices included in a first energy flow graph from the configuration graph, the at least one processor outputting information of the first energy flow graph indicating the energy devices, the energy transmission paths, and one or more meter devices that measure parameters related to energy, based on the selected devices. In the above apparatus, the at least one processor may acquire a user input for the configuration map, and the at least one processor may select a device included in the first energy flow graph based on the user input. In any of the above-described apparatuses, at least one processor may acquire a plurality of configuration diagrams, select a device labeled with a common label from the plurality of configuration diagrams as a device to be included in the first energy flow diagram, and combine the devices labeled with the common label from the plurality of configuration diagrams to output information of the first energy flow diagram. In any of the above devices, the at least one processor may acquire a user input for the first energy flow graph, and the at least one processor may output information of the second energy flow graph based on the user input for the first energy flow graph and the first energy flow graph. In the above apparatus, the at least one processor may generate a second energy flow graph for displaying the non-deterministic device, and the at least one processor may acquire a user input for the non-deterministic device. In any of the above arrangements, the at least one processor may generate the second energy flow graph together with a list of input points representing information relating to respective data of the meter device. In any of the above-described apparatuses, at least one processor may extract an energy device in which a corresponding meter device is not provided, and create a proposal of one or more newly provided meter devices in the first energy flow graph. In the above apparatus, the at least one processor may make a proposal for the newly installed meter device based on at least one of the information of the extracted energy device and the allowable cost. In the above-described apparatus, the at least one processor may generate the proposal of the newly installed instrument device corresponding to the extracted energy device, using a learning model that outputs the proposal of the newly installed instrument device based on the input of the information related to the energy device. In any of the above-described devices, the at least one processor may create a proposal for a new instrument device based on at least one of the number of branches of the energy transmission path and other energy devices connected to the input or output of the extracted energy device. In any of the above devices, at least one processor may create a proposal for newly installing the meter device based on the number of the plurality of energy devices of the same kind extracted and connected in parallel. In a second aspect of the present invention, there is provided a method for producing an energy flow graph, which is executed by at least one processor, acquires information on a configuration map of one or more energy devices that generate or consume energy and one or more energy transmission paths connected to the energy devices, selects a device included in a first energy flow graph from the configuration map, and outputs information on the first energy flow graph indicating the energy device, the energy transmission paths, and one or more meter devices that measure parameters related to energy, based on the selected device. In a third aspect of the present invention, there is provided a computer program product comprising a computer program for causing a computer to acquire information on a configuration map of one or more energy devices that generate or consume energy and one or more energy transmission paths connected to the energy devices, select devices included in a first energy flow graph from the configuration map, and output information on the first energy flow