Information processing apparatus, information processing method, and program
The information processing device facilitates efficient device selection and arrangement within high-voltage power receiving equipment, enhancing space-saving capabilities and installation flexibility by utilizing a memory unit to associate and store relevant data for optimal panel placement.
Patent Information
- Application Number
- JP2025183469
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2026-01-27
AI Technical Summary
Existing high-voltage power receiving equipment systems lack an efficient method for selecting and arranging devices within the equipment units, limiting their space-saving potential and flexibility in installation configurations.
An information processing device and method that receives specification information, acquires circuit and device information, selects appropriate equipment units, and determines optimal panel placement, utilizing a memory unit to associate and store relevant data for device selection and arrangement.
Enables efficient selection and arrangement of devices within high-voltage power receiving equipment, optimizing space utilization and installation flexibility by reducing the number of enclosure surfaces required.
Smart Images

Figure 2026012908000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to an information processing device, an information processing method, and a program. [Background technology]
[0002] High-voltage power receiving equipment is a set of equipment for receiving high-voltage electricity housed in a metal outer box. The electricity received by the high-voltage power receiving equipment at 6600V is transformed to 100V or 200V by the distribution board and supplied to the facility. Consumers who consume more than a certain amount of electricity install high-voltage power receiving equipment.
[0003] Regarding high-voltage power receiving equipment, there is known technology that allows each device to be made into a unit to make it smaller so that it can be installed indoors, and that also allows the units to be connected both vertically and horizontally, allowing for the construction of space-saving equipment that requires such equipment (see, for example, Patent Document 1). According to this technology, the unit has at least a VCT unit incorporating an electric power supply and demand instrument transformer, a VCB unit incorporating a vacuum high-voltage AC circuit breaker, a T unit incorporating a transformer, a C unit incorporating a high-voltage phase-advance capacitor, and an LBS unit incorporating a high-voltage AC load break switch with a current-limiting fuse, and each unit is assembled within a box-shaped frame F that is standardized to the same dimensions in width and depth and that allows connection in the vertical and horizontal directions, and at least two types of units are connected in at least one of the vertical, horizontal, or horizontal directions. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2016-096699 Summary of the Invention [Problem to be solved by the invention]
[0005] An object of the present invention is to provide an information processing device, an information processing method, and a program that can select devices to be placed in power receiving equipment and place the selected devices. [Means for solving the problem]
[0006] (1) One aspect of the present invention is an information processing device comprising: a reception unit that receives specification information of a power receiving equipment and information on equipment to be included in the power receiving equipment; a circuit information acquisition unit that acquires circuit selection information from a memory unit that stores, based on the specification information and the equipment information received by the reception unit, one or more combinations of specification information of a high-voltage power receiving equipment and information on equipment to be included in the power receiving equipment, and circuit selection information for each of the one or more combinations, in association with each other; an equipment selection unit that acquires, based on the selection information of the circuit acquired by the circuit information acquisition unit, selection information of one or more equipment from a memory unit that stores, in association with each other, selection information of one or more equipment for the selection information of the one or more circuits, and selects one or more equipment based on the acquired selection information of the one or more equipment; a unit selection unit that selects a unit for placing each of the one or more equipment selected by the equipment selection unit; and a panel selection unit that selects a panel for placing the unit based on the unit selected by the unit selection unit. (2) In one aspect of the present invention, in the information processing device described in (1) above, the device information includes at least one of high-voltage feed data, capacitor data, and transformer data. (3) In one aspect of the present invention, in the information processing device described in (2) above, when the equipment information includes the high-voltage feed data and the capacitor data, the unit selection unit acquires the placement information of the receiving board from a memory unit that stores one or more combinations of specification information, high-voltage feed data, and capacitor data of high-voltage receiving equipment, associated with placement information of the receiving board for each of the one or more combinations, based on the specification information, the high-voltage feed data, and the capacitor data, and selects a receiving board based on the acquired placement information of the receiving board. (4) In one aspect of the present invention, in the information processing device described in (2) above, when the equipment information includes the high-voltage feed data and the capacitor data, the unit selection unit acquires high-voltage feed platen placement information from a memory unit that stores one or more combinations of high-voltage feed data and capacitor data in association with high-voltage feed platen placement information for each of the one or more combinations based on the high-voltage feed data and the capacitor data, and selects a high-voltage feed platen based on the acquired placement information of the high-voltage feed platen. (5) In one aspect of the present invention, in an information processing device described in any one of (2) to (4) above, when the device information includes the capacitor data, the unit selection unit acquires capacitor board placement information from a memory unit that stores one or more pieces of capacitor data in association with capacitor board placement information for each of the one or more pieces of capacitor data based on the capacitor data, and selects a capacitor board based on the acquired capacitor board placement information. (6) In one aspect of the present invention, in an information processing device described in any one of (2) to (5) above, when the equipment information includes the transformer data, the unit selection unit acquires the transformer panel placement information from a memory unit that stores one or more transformer data in association with transformer panel placement information for each of the one or more transformer data based on the transformer data, and selects a transformer panel based on the acquired transformer panel placement information. (7) In one aspect of the present invention, in an information processing device described in any one of (1) to (6) above, the panel selection unit selects units to be placed on each of one or more rows of the panel based on the units selected by the unit selection unit.
[0007] (8) One aspect of the present invention is an information processing method executed by a computer, the information processing method including: a step of receiving specification information of a power receiving equipment and information on equipment to be included in the power receiving equipment; a step of acquiring circuit selection information from a memory unit that stores, based on the specification information and the equipment information received in the receiving step, one or more combinations of specification information of a high-voltage power receiving equipment and information on equipment to be included in the power receiving equipment, in association with circuit selection information for each of the one or more combinations; a step of acquiring, based on the circuit selection information acquired in the acquiring step, selection information for one or more equipment from a memory unit that stores, in association with the selection information for one or more circuits, selection information for one or more equipment for the selection information for one or more circuits, and selecting one or more equipment based on the acquired selection information for one or more equipment; a step of selecting a unit for placing each of the one or more equipment selected in the equipment selecting step; and a step of selecting a panel on which to place the unit based on the unit selected in the unit selecting step.
[0008] (9) One aspect of the present invention is a program that causes a computer to execute the following steps: receiving specification information of a power receiving equipment and information on equipment to be included in the power receiving equipment; acquiring circuit selection information from a memory unit that stores, based on the specification information and the equipment information received in the receiving step, one or more combinations of specification information of a high-voltage power receiving equipment and information on equipment to be included in the power receiving equipment, in association with circuit selection information for each of the one or more combinations; acquiring selection information of one or more equipment from a memory unit that stores, based on the selection information of the circuit acquired in the acquiring step, selection information of one or more circuits and selection information of one or more equipment for the selection information of the one or more circuits, in association with each other, and selecting one or more equipment based on the acquired selection information of the one or more equipment; selecting units for placing each of the one or more equipment selected in the equipment selecting step; and selecting a panel on which to place the unit based on the unit selected in the unit selecting step. [Effects of the Invention]
[0009] According to the present invention, it is possible to provide an information processing device, an information processing method, and a program that are capable of selecting devices to be installed in power receiving equipment and arranging the selected devices. [Brief explanation of the drawings]
[0010] [Figure 1] 1 is a diagram illustrating an example of the configuration of an information processing device according to an embodiment of the present invention. [Figure 2A] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 2B] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 2C] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 2D] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 2E]FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 2F] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 3A] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 3B] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 4A] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 4B] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 5] 10 is a flowchart illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 6] 10 is a flowchart illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 7A] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 7B] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 7C] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 7D] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 8] 10 is a flowchart illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 9A] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 9B] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 9C] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 9D] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. [Figure 9E] FIG. 10 is a diagram illustrating an example of an operation of the information processing device according to the present embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0011] Next, an information processing device, an information processing method, and a program according to the present embodiment will be described with reference to the drawings. The embodiment described below is merely an example, and the embodiments to which the present invention is applied are not limited to the following embodiments. Note that in all drawings used to explain the embodiments, the same reference numerals are used for components having the same functions, and repeated explanations will be omitted. Furthermore, in this application, "based on XX" means "based on at least XX," and includes cases where it is based on other elements in addition to XX. Furthermore, "based on XX" is not limited to cases where XX is used directly, but also includes cases where it is based on XX that has been calculated or processed. "XX" is any element (for example, any information).
[0012] (Embodiment) (Information processing device) Fig. 1 is a diagram showing an example of the configuration of an information processing device according to an embodiment of the present invention. In Fig. 1, an information processing device 100 selects multiple devices to be installed in a power receiving facility and places the selected multiple devices. An example of the power receiving facility is a high-voltage power receiving facility (cubicle). Below, the explanation will continue for the case where the power receiving facility is a cubicle. The information processing device 100 creates an image in which the selected multiple devices are arranged in a storage box. An example of a storage box is a panel unit. Below, the explanation will continue for the case in which the storage box is a panel unit. The information processing device 100 outputs the created image in which the multiple devices are arranged in the storage box. Specifically, the information processing device 100 receives specification information for the high-voltage power receiving equipment and information on devices to be included in the high-voltage power receiving equipment. The information processing device 100 acquires circuit information based on the received specification information and device information. The information processing device 100 selects multiple devices to be placed in the high-voltage power receiving equipment based on the acquired circuit information. The information processing device 100 selects units for placing each of the selected multiple devices. The information processing device 100 selects a panel unit on which to place the multiple units based on the selected units. The information processing device 100 creates an image in which each of the multiple units is placed on the selected panel unit. The information processing device 100 outputs the result of placing the multiple units on the panel unit.
[0013] The information processing device 100 is realized by including devices such as a personal computer, a server, a smartphone, a tablet computer, an industrial computer, etc. The information processing device 100 includes, for example, an input unit 102, a reception unit 104, an acquisition unit 106, a device selection unit 108-1, a unit selection unit 108-2, a panel selection unit 108-3, a creation unit 110, an output unit 112, a display unit 120, and a storage unit 150. The input unit 102 inputs information. Examples of information input to the input unit 102 include specification information for the high-voltage power receiving equipment and device information to be included in the high-voltage power receiving equipment. As an example, the input unit 102 may have an operation unit such as a keyboard and a mouse. In this case, the input unit 102 inputs information according to operations performed by a user on the operation unit. As another example, the input unit 102 may input information from an external device. The external device may be, for example, a portable storage medium. The display unit 120 displays information. As an example, the display unit 120 may have a display with a screen. In this case, the display unit 120 displays and outputs information on the screen.
[0014] The storage unit 150 is realized by a hard disk drive (HDD), a flash memory, a random access memory (RAM), a read only memory (ROM), or the like. The memory unit 150 includes specification data DBSDB, transformer data DBTDB, capacitor data DBCDB, high voltage feed data DBHPDB, breaker data DBBDB, option data DBBODB, circuit selection DBCSDB, VCB receiving panel layout DBVRDB, LBS receiving panel layout DBLRDB, housing size DBBSDB, VCB feed panel layout DBVFDB, LBS feed panel layout DBLFDB, capacitor panel layout DBCBDB, transformer panel layout DBTBDB, equipment selection DBMSDB, panel layout priority DBPLDB, and panel unit DBPUDB.
[0015] The specification data DBSDB stores specification information of high-voltage power receiving equipment. The specification information of high-voltage power receiving equipment includes main switch data, voltage transformer (VCT) data for power supply and demand, and lightning arrester (LA) data in the high-voltage power receiving equipment (cubicle). For example, the specification data DBSDB stores the specification information of high-voltage power receiving equipment output by the reception unit 104. The trans data DBTDB stores the trans data, for example, the trans data output by the reception unit 104. The capacitor data DBCDB stores capacitor data, for example, the capacitor data output by the receiving unit 104. The high-pressure feed data DBHPDB stores high-pressure feed data. For example, the high-pressure feed data DBHPDB stores high-pressure feed data output by the receiving unit 104. The breaker data DBBDB stores breaker data, for example, the breaker data output by the reception unit 104. The option data DBODB stores option data, for example, option data output by the receiving unit 104.
[0016] The circuit selection DBCSDB stores first identification information for each of one or more combinations of specification information for high-voltage power receiving equipment and equipment information to be included in the power receiving equipment, and associates it with circuit selection information for each of the first identification information for one or more combinations. The VCB receiving panel placement DBVRDB stores second identification information for each of one or more combinations of specification information of high-voltage receiving equipment, high-voltage feed data, and capacitor data, and associates the second identification information for each of the one or more combinations with placement information of vacuum circuit breaker (VCB) receiving panels. The LBS receiving panel placement DBLRDB stores third identification information for each of one or more combinations of specification information of high-voltage receiving equipment, high-voltage feed data, and capacitor data, and placement information of high-voltage AC load break switch (LBS) receiving panels in association with the third identification information for each of one or more combinations.
[0017] The case size DBBSDB stores fourth identification information for each of one or more combinations of high-voltage power receiving equipment specification information, high-voltage feed data, capacitor data, and transformer data, and case size information for each of the one or more combinations of fourth identification information in association with each other. The VCB feed board arrangement DBVFDB stores fifth identification information for each of one or more combinations of high-voltage feed data and capacitor data, and VCB feed board arrangement information for each of the one or more combinations of fifth identification information, in association with each other. The LBS feed platen arrangement DBLFDB stores sixth identification information for each of one or more combinations of high-voltage feed data and capacitor data, and LBS feed platen arrangement information for each of the one or more combinations of sixth identification information in association with each other. The capacitor board arrangement DBCBDB stores seventh identification information of each of one or more pieces of capacitor data and capacitor board arrangement information for each of the one or more pieces of seventh identification information in association with each other.
[0018] The transformer board arrangement DBTBDB stores one or more eighth identification information of transformer data and, for each of the one or more eighth identification information, information on the arrangement of the transformer board in association with each other. The equipment selection DBMS DB stores ninth identification information of one or more circuit selection information in association with one or more equipment selection information for realizing the circuit selection information for the one or more ninth identification information. The panel arrangement priority DBPLDB stores tenth identification information of one or more devices and a panel arrangement priority for each of the one or more tenth identification information in association with each other. The panel unit DBPUDB stores eleventh identification information of one or more panel units and panel unit information for each of the one or more pieces of eleventh identification information in association with each other.
[0019] The input unit 102 receives input of specification information of the high-voltage power receiving equipment and information on devices to be included in the high-voltage power receiving equipment. Fig. 2A is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 2A shows an example of an input screen for inputting specification information of high-voltage power receiving equipment. The example of the input screen is displayed on display unit 120. In the example shown in Fig. 2A, among the specifications of the high-voltage power receiving equipment, a field for inputting main switch data, a field for inputting VCT space data, and a field for inputting cubicle LA data are shown. In one example of a field for entering main switch data, it is configured so that either LBS or VCB 600A can be selected. In a field for entering VCT space data, it is configured so that either external or internal can be selected. In a field for entering cubicle LA data, it is configured so that either yes or no can be selected.
[0020] Fig. 2B is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 2B shows an example of an input screen for inputting device information to be included in the high-voltage power receiving facility. The example of the input screen is displayed on the display unit 120. In the example shown in Fig. 2B, transformer data of the devices to be included in the high-voltage power receiving facility is shown. An example of transformer data includes number data, switch data, phase type data, capacity data, secondary voltage data, space data, LC unit data, and selection data. In the example shown in Figure 2B, "1" is input as number data, "LBS" as switch data, "1φ" as phase type data, "75kVA" as capacity data, and "210-105V" as secondary voltage data. In the example shown in Figure 2B, "2" is input as number data, "LBS" as switch data, "3φ" as phase type data, "100kVA" as capacity data, and "210V" as secondary voltage data.
[0021] Fig. 2C is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 2C shows an example of an input screen for inputting device information to be included in the high-voltage power receiving facility. The example of the input screen is displayed on the display unit 120. In the example shown in Fig. 2C, capacitor data is displayed among the devices to be included in the high-voltage power receiving facility. An example of capacitor data for a high-voltage capacitor / reactor (6%) includes No. data, switch data, capacity data, reactor data, and selection data. In the example shown in Figure 2C, "1" is input as No. data, "LBS" as switch data, "100 kVar" as capacity data, and "Yes" as reactor data. In the example shown in Figure 2C, "2" is input as No. data, "LBS" as switch data, "150 kVar" as capacity data, and "Yes" as reactor data.
[0022] Fig. 2D is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 2D shows an example of an input screen for inputting device information to be included in the high-voltage power receiving facility. The example of the input screen is displayed on the display unit 120. In the example shown in Fig. 2D, high-voltage transmission data of the devices to be included in the high-voltage power receiving facility is displayed. An example of high-voltage feed data includes switch data, phase type data, destination capacity data, phase sequence data, and selection data. In the example shown in Figure 2D, "LBS" is input as switch data, "1φ" as phase type data, "150kVA" as destination capacity data, and "ST" as phase sequence data. In the example shown in Figure 2D, "VCB400A" is input as switch data, "1φ" as phase type data, "150kVA" as destination capacity data, and "ST" as phase sequence data.
[0023] Fig. 2E is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 2E shows an example of an input screen for inputting device information to be included in the high-voltage power receiving facility. The example of the input screen is displayed on the display unit 120. In the example shown in Fig. 2E, breaker data of the devices to be included in the high-voltage power receiving facility is displayed. An example of breaker data includes No. data, phase type data, capacity data, breaker type data, trip capacity data, load name data, main line type data, main line size data, bulkhead data, and selection data. In the example shown in Figure 2E, the following data have been entered: No. data "1", phase type data "1φ", capacity data "75kVA", breaker type data "MCCB", trip capacity data "200AT", main line type data "CVT", and main line size data "not specified". In the example shown in Figure 2E, the following data have been entered: No. data "1", phase type data "1φ", capacity data "75kVA", breaker type data "MCCB", trip capacity data "100AT", main line type data "CVT", and main line size data "not specified".
[0024] In the example shown in Figure 2E, "1" is input as the No. data, "1φ" as the phase type data, "75kVA" as the capacity data, "MCCB" as the breaker type data, "15AT" as the trip capacity data, "CVT" as the main line type data, and "8" as the main line size data. In the example shown in Figure 2E, "2" is input as the No. data, "3φ" as the phase type data, "100kVA" as the capacity data, "MCCB" as the breaker type data, "200AT" as the trip capacity data, "CVT" as the main line type data, and "not specified" as the main line size data. An example of the breaker data includes low-voltage leakage data. In the example shown in Fig. 2E, either "present" or "absent" can be selected as the low-voltage leakage data.
[0025] Fig. 2F is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 2F shows an example of an input screen for inputting device information to be included in the high-voltage power receiving facility. The example of the input screen is displayed on the display unit 120. In the example shown in Fig. 2F, optional data of the devices to be included in the high-voltage power receiving facility is displayed. An example of the optional data includes ground fault relay type data. In the example shown in Fig. 2F, the ground fault relay type data can be selected from "SOG supply item (directional)", "SOG supply item (non-directional)", "ground fault directional relay (DGR)", and "ground fault relay (GR)". Returning to Fig. 1, the explanation will be continued.
[0026] The receiving unit 104 acquires specification information of the high-voltage power receiving equipment and device information to be included in the high-voltage power receiving equipment from the input unit 102, and receives the acquired specification information of the high-voltage power receiving equipment and device information to be included in the power receiving equipment. The reception unit 104 stores the received specification information of the high-voltage power receiving equipment in the specification data DBSDB of the storage unit 150. The reception unit 104 stores the transformer data included in the received equipment information to be included in the high-voltage power receiving equipment in the transformer data DBTDB of the storage unit 150. The reception unit 104 stores the capacitor data included in the received equipment information to be included in the high-voltage power receiving equipment in the capacitor data DBCDB of the storage unit 150. The reception unit 104 stores the high-voltage feed data included in the received device information to be included in the high-voltage power receiving equipment in the high-voltage feed data DBHPDB of the storage unit 150. The reception unit 104 stores the breaker data included in the received device information to be included in the high-voltage power receiving equipment in the breaker data DBBDB of the storage unit 150. The reception unit 104 stores the option data included in the received device information to be included in the high-voltage power receiving equipment in the option data DBODB of the storage unit 150.
[0027] The acquisition unit 106 acquires specification information of the high-voltage power receiving equipment and device information to be included in the high-voltage power receiving equipment from the storage unit 150. The acquisition unit 106 acquires, from the circuit selection DBCSDB, selection information for a circuit associated with first identification information corresponding to the combination of the acquired specification information of the high-voltage power receiving equipment and the device information to be included in the high-voltage power receiving equipment, and selects a circuit based on the selection information of the acquired circuit information. This makes it possible to predict the circuit to be used in the high-voltage power receiving equipment.
[0028] The device selection unit 108-1 acquires selection information for the circuit to be used from the acquisition unit 106. The device selection unit 108-1 acquires selection information for one or more devices associated with the ninth identification information corresponding to the acquired selection information for the circuit from the device selection DBMSDB, and selects one or more devices based on the acquired selection information for the one or more devices. If there is an associated device, the device selection unit 108-1 additionally selects information about the associated device.
[0029] The unit selection unit 108-2 acquires selection information for one or more devices from the device selection unit 108-1. The unit selection unit 108-2 selects a planar unit based on the acquired selection information for one or more devices. A planar unit is one or more devices arranged on a plane (two-dimensionally), and an arrangement of one or more devices is called a unit. The unit selection unit 108-2 provisionally determines the housing size based on the selection result of the planar unit.
[0030] Specifically, the unit selection unit 108-2 acquires, from the box size DB BSDB, box size information associated with the fourth identification information corresponding to the combination of the specification information of the high-voltage power receiving equipment, the high-voltage feed data, and the capacitor data, and provisionally determines the box size based on the acquired box size information.The unit selection unit 108-2 selects a power receiving panel based on the provisionally determined box size. The unit selection unit 108-2 acquires specification information of the high-voltage power receiving equipment and placement information of vacuum circuit breaker (VCB) receiving panels associated with second identification information corresponding to a combination of high-voltage feed data and capacitor data from the VCB receiving panel placement DBVRDB, and selects the placement of the vacuum circuit breaker (VCB) receiving panels based on the acquired placement information of the vacuum circuit breaker (VCB) receiving panels. The unit selection unit 108-2 selects one or more units based on the placement information of the vacuum circuit breaker (VCB) receiving panels. By selecting the placement information of the vacuum circuit breaker (VCB) receiving panels based on a combination of specification information of the high-voltage power receiving equipment, high-voltage feed data, and capacitor data, it is possible to determine whether the high-voltage feed and capacitor can be combined with the receiving panel, thereby reducing the number of box surfaces.
[0031] The unit selection unit 108-2 acquires specification information of the high-voltage power receiving equipment and placement information of a high-voltage AC load break switch (LBS) receiving panel associated with third identification information corresponding to a combination of high-voltage feed data and capacitor data from the LBS receiving panel placement DB (LRDB), and selects the placement of a high-voltage AC load break switch (LBS) receiving panel based on the acquired placement information of the high-voltage AC load break switch (LBS) receiving panel. The unit selection unit 108-2 selects one or more units based on the placement information of the high-voltage AC load break switch (LBS) receiving panel. By selecting placement information of the high-voltage AC load break switch (LBS) receiving panel based on a combination of the specification information of the high-voltage power receiving equipment, the high-voltage feed data, and the capacitor data, it is possible to determine whether the high-voltage feeder and capacitor can be combined with the receiving panel, thereby reducing the number of enclosure surfaces. The unit selection unit 108-2 selects a power receiving panel based on the main switch data and VCT space data included in the specification information of the high-voltage power receiving equipment, the series reactor (SR) data and power capacitor (SC) data included in the high-voltage feed data, and the LBS data. Based on the selection result of the power receiving panel, the unit selection unit 108-2 acquires candidates for the minimum width, depth and height of the box that can be placed from the box size DBBSDB.
[0032] The unit selection unit 108-2 acquires the box size information corresponding to the fourth identification information corresponding to the combination of the high-voltage feed data and the capacitor data from the box size DBBSDB, and selects a high-voltage feed platen based on the acquired box size information. The unit selection unit 108-2 acquires, from the VCB feed panel arrangement DB (VFDB), arrangement information for the vacuum circuit breaker (VCB) feed panel associated with the fifth identification information corresponding to the combination of the high-voltage feed data and the capacitor data, and selects the arrangement of the vacuum circuit breaker (VCB) feed panel based on the acquired arrangement information for the vacuum circuit breaker (VCB). The unit selection unit 108-2 selects one or more units based on the arrangement information for the vacuum circuit breaker (VCB) feed panel. By selecting the arrangement information for the vacuum circuit breaker (VCB) feed panel based on the combination of the high-voltage feed data and the capacitor data, it is possible to determine whether a capacitor can be bundled with the vacuum circuit breaker (VCB) feed panel, thereby reducing the number of housing surfaces.
[0033] The unit selection unit 108-2 acquires, from the LBS feed panel layout DBLFDB, layout information for the high-voltage AC load break switch (LBS) feed panel associated with the sixth identification information corresponding to the combination of the high-voltage feed data and the capacitor data, and selects the layout of the high-voltage AC load break switch (LBS) feed panel based on the acquired layout information for the high-voltage AC load break switch (LBS). The unit selection unit 108-2 selects one or more units based on the layout information for the high-voltage AC load break switch (LBS) feed panel. By selecting the layout information for the high-voltage AC load break switch (LBS) feed panel based on the combination of the high-voltage feed data and the capacitor data, it is possible to determine whether a capacitor can be bundled with the high-voltage AC load break switch (LBS) feed panel, thereby reducing the number of box surfaces. The unit selection unit 108-2 selects a high-voltage feed panel based on the main switch data included in the specification information of the high-voltage power receiving equipment, the series reactor (SR) data and power capacitor (SC) data included in the high-voltage feed data, and the LBS data. Based on the selection result of the high-voltage feed panel, the unit selection unit 108-2 acquires candidates for the minimum width, depth that can be placed, and height of the box from the box size DBBSDB.
[0034] The unit selection unit 108-2 acquires the case size information corresponding to the fourth identification information corresponding to the capacitor data from the case size DBBSDB, and selects a capacitor board based on the acquired case size information. The unit selection unit 108-2 removes the capacitor data placed on the power receiving panel and the high-voltage sending panel, and acquires the capacitor board placement information corresponding to the seventh identification information corresponding to the remaining capacitor data from the capacitor board placement DBCBDB, and selects a unit based on the acquired capacitor board placement information. The unit selection unit 108-2 selects a capacitor board based on the capacitor capacity data and capacitor system number data included in the capacitor data, the main switch data included in the specification information of the high-voltage power receiving equipment, and the series reactor (SR) data and vacuum electromagnetic contactor (VMC) data included in the high-voltage feed data. Based on the capacitor board selection result, the unit selection unit 108-2 acquires candidates for the minimum width, depth and height of the box from the box size DBBSDB.
[0035] The unit selection unit 108-2 acquires the case size information corresponding to the fourth identification information of the transformer data from the case size DBBSDB, and selects a transformer board based on the acquired case size information. The unit selection unit 108-2 acquires the layout information of the transformer board corresponding to the eighth identification information of the transformer data from the transformer board layout DBTBDB, and selects a unit based on the acquired layout information of the transformer board. When selecting a capacitor board, if there is a capacitor system arranged in only one system, the unit selection unit 108-2 may take into consideration bundling with a transformer board. The unit selection unit 108-2 selects a transformer panel based on the transformer capacity data, phase type data, transformer switch type data, power capacitor (SC) capacity data, SC switch type data, and data on the presence or absence of vibration-isolating rubber included in the transformer data. Based on the selection result of the transformer panel, the unit selection unit 108-2 acquires candidates for the minimum width, depth and height of the box that can be placed from the box size DBBSDB.
[0036] FIG. 3A is a diagram for explaining an example of the operation of the information processing device according to this embodiment. FIG. 3A is an example of a view from above of a selected unit. In the example shown in FIG. 3A, one power receiving board PRB, one capacitor board CB, and three transformer boards TB-1 to TB-3 are shown. Each of the one power receiving board PRB, one capacitor board CB, and three transformer boards TB is 800mm wide. The power receiving panel PRB includes a space for a power supply and demand measuring transformer (VCT-SP) and a vacuum circuit breaker (VCB). The capacitor panel CB includes two power capacitors SC. The transformer panel TB-1 includes one transformer TR1. The transformer panel TB-2 and the transformer panel TB-3 each include one transformer TR2.
[0037] FIG. 3B is a diagram for explaining an example of the operation of the information processing device according to this embodiment. FIG. 3B is an example of a view from above of a selected unit. In the example shown in FIG. 3B, one power receiving board PRB, one capacitor board CB, and three transformer boards TB-1a to TB-3a are shown. One example of each of the one power receiving board PRB, one capacitor board CB, and one transformer board TB-2a is 800mm wide, and one example of each of the one transformer board TB-1a and one transformer board TB-3a is 1000mm wide. The power receiving panel PRB includes a space for a power supply and demand measuring transformer (VCT-SP) and a vacuum circuit breaker (VCB). The capacitor panel CB includes two power capacitors SC. The transformer panel TB-1a includes one transformer TR1. The transformer panel TB-2a and the transformer panel TB-3a each include one transformer TR2. Returning to Figure 1, we will continue the explanation.
[0038] The panel selection unit 108-3 acquires the selection result of the transformer board from the unit selection unit 108-2. Based on the acquired selection result of the transformer board, the panel selection unit 108-3 associates each of the one or more devices selected by the device selection unit 108-1 with the selected transformer board. If the breaker does not fit in the first tier, the panel selection unit 108-3 resets the arrangement of optional equipment and again selects only the breaker, obtains the panel arrangement priority associated with the tenth identification information corresponding to one or more breakers from the panel arrangement priority DB PLDB, and selects one or more panel units based on the obtained panel arrangement priority. The panel selection unit 108-3 acquires, from the panel unit DBPUDB, panel unit information corresponding to the eleventh identification information corresponding to the selected one or more panel units, and selects the acquired panel unit information.
[0039] The panel selection unit 108-3 acquires the panel arrangement priority associated with the tenth identification information corresponding to one or more optional devices excluded from the first tier from the panel arrangement priority DBPLDB, and selects one or more panel units for the second tier based on the acquired panel arrangement priority. The panel selection unit 108-3 acquires, from the panel unit DBPUDB, panel unit information corresponding to the eleventh identification information corresponding to the selected one or more panel units, and selects the acquired panel unit information. The panel selection unit 108-3 selects the panel width in accordance with the contents of the transformer board data. If there are other transformer systems, the panel selection unit 108-3 performs the processing sequentially.
[0040] 4A is a diagram for explaining an example of the operation of the information processing device according to this embodiment. Fig. 4A is an example of a view from above of a selected unit. In the example shown in Fig. 4A, in addition to three transformer boards TB-1 to TB-3, one power receiving board PRB and one capacitor board CB are shown. Based on the selection result of the transformer board, the panel selection unit 108-3 tentatively determines the placement position of the transformer by linking each of the one or more devices selected by the device selection unit 108-1 to the transformer board (1-1, 1-2, 2-2). The panel selection unit 108-3 acquires the panel placement priority associated with the 10th identification information corresponding to the combination of the earth leakage fire alarm (LGR), the outlet, and the ground fault relay from the panel placement priority DB PLDB, and provisionally determines the placement locations of the earth leakage fire alarm (LGR), the outlet, and the ground fault relay other than the general load breaker based on the acquired panel placement priority (2-1). The panel selection unit 108-3 acquires panel unit information associated with the eleventh identification information corresponding to the provisional placement content of the optional device from the panel unit DBPUDB, and selects an arrangable panel pattern from the acquired panel unit information. The panel selection unit 108-3 selects the panel width in accordance with the content of the transformer panel data.
[0041] FIG. 4B is a diagram for explaining an example of the operation of the information processing device according to this embodiment. FIG. 4B is an example of a view from above of a selected unit. In the example shown in FIG. 4B, three transformer boards TB-1a to TB-3a are shown, as well as one power receiving board PRB and one capacitor board CB. The transformer boards TB-1a and TB-3a are 1000mm wide. The panel selection unit 108-3 selects the panel width in accordance with the contents of the transformer board data. Based on the selection result of the transformer panel, the panel selection unit 108-3 tentatively determines the placement position of the transformer by linking each of the one or more devices selected by the device selection unit 108-1 to the transformer panel (1-1a, 1-2a, 2-2a). The panel selection unit 108-3 acquires the panel placement priority associated with the 10th identification information corresponding to the combination of the earth leakage fire alarm (LGR), the outlet, and the earth fault relay from the panel placement priority DB PLDB, and provisionally determines the placement locations of the earth leakage fire alarm (LGR), the outlet, and the earth fault relay other than the general load breaker based on the acquired panel placement priority (2-1a). The panel selection unit 108-3 acquires panel unit information associated with the eleventh identification information corresponding to the provisional placement content of the optional device from the panel unit DBPUDB, and selects an arrangable panel pattern from the acquired panel unit information. The panel selection unit 108-3 selects the panel width in accordance with the content of the transformer panel data. The panel selection unit 108-3 stores the selection result of the panel pattern in the storage unit 150. Returning to FIG.
[0042] The creation unit 110 acquires the panel pattern selection results stored in the storage unit 150. The creation unit 110 creates an image representing the panel pattern selection results based on the acquired panel pattern selection results. Examples of images representing the panel pattern selection results include an external front view, an external side view, a foundation view, and a wiring diagram of the high-voltage power receiving equipment. The creation unit 110 stores the created images representing the panel pattern selection results in the storage unit 150.
[0043] The output unit 112 acquires an image showing the selection result of the panel pattern from the storage unit 150. The output unit 112 outputs the acquired image. For example, the output unit 112 causes the display unit 120 to display the image.
[0044] The reception unit 104, acquisition unit 106, equipment selection unit 108-1, unit selection unit 108-2, panel selection unit 108-3, creation unit 110, and output unit 112 are realized, for example, by a hardware processor such as a CPU (Central Processing Unit) executing a computer program (software) stored in the memory unit 150. Furthermore, some or all of these functional units may be realized by hardware (including circuitry) such as an LSI (Large Scale Integration), an ASIC (Application Specific Integrated Circuit), an FPGA (Field-Programmable Gate Array), or a GPU (Graphics Processing Unit), or may be realized by a combination of software and hardware.
[0045] (Operation of information processing device) Fig. 5 is a flowchart showing an example of the operation of the information processing device according to this embodiment. With reference to Fig. 5, the operation after the specification information of the high-voltage power receiving equipment and the device information to be included in the high-voltage power receiving equipment are input to the input unit 102 of the information processing device 100 will be described. (Step S1-1) The receiving unit 104 acquires specification information of the high-voltage power receiving equipment and device information to be included in the high-voltage power receiving equipment from the input unit 102, and receives the acquired specification information of the high-voltage power receiving equipment and device information to be included in the high-voltage power receiving equipment. The reception unit 104 stores the received specification information of the high-voltage power receiving equipment in specification data DBSDB of the storage unit 150. The reception unit 104 stores the transformer data included in the received equipment information to be included in the high-voltage power receiving equipment in transformer data DBTDB of the storage unit 150. The reception unit 104 stores the capacitor data included in the received equipment information to be included in the high-voltage power receiving equipment in capacitor data DBCDB of the storage unit 150. The reception unit 104 stores the high-voltage feed data included in the received equipment information to be included in the high-voltage power receiving equipment in high-voltage feed data DBHPDB of the storage unit 150. The reception unit 104 stores the breaker data included in the received equipment information to be included in the high-voltage power receiving equipment in breaker data DBBDB of the storage unit 150. The reception unit 104 stores the option data included in the received equipment information to be included in the high-voltage power receiving equipment in option data DBODB of the storage unit 150. (Step S2-1) The acquisition unit 106 acquires specification information of the high-voltage power receiving equipment and device information to be included in the high-voltage power receiving equipment from the storage unit 150. The acquisition unit 106 acquires, from the circuit selection DBCSCB, selection information of a circuit associated with first identification information that corresponds to a combination of the acquired specification information of the high-voltage power receiving equipment and the device information to be included in the high-voltage power receiving equipment, and selects a circuit based on the selection information of the acquired circuit information.
[0046] (Step S3-1) The device selection unit 108-1 acquires selection information for the circuit to be used from the acquisition unit 106. The device selection unit 108-1 acquires selection information for one or more devices associated with the ninth identification information corresponding to the acquired selection information for the circuit from the device selection DBMSDB, and selects one or more devices based on the acquired selection information for the one or more devices. If there is an associated device, the device selection unit 108-1 additionally selects information about the associated device. (Step S4-1) Unit selection unit 108-2 acquires selection information for one or more devices from device selection unit 108-1. Unit selection unit 108-2 selects a flat unit based on the acquired selection information for one or more devices. Unit selection unit 108-2 provisionally determines a housing size based on the selection result of the flat unit.
[0047] (Step S5-1) The panel selection unit 108-3 acquires the selection result of the transformer board from the unit selection unit 108-2. Based on the acquired selection result of the transformer board, the panel selection unit 108-3 associates each of the one or more devices selected by the device selection unit 108-1 with the selected transformer board. If the breaker does not fit in the first tier, the panel selection unit 108-3 resets the arrangement of optional equipment and again selects only the breaker, obtains the panel arrangement priority associated with the tenth identification information corresponding to one or more breakers from the panel arrangement priority DB PLDB, and selects one or more panel units based on the obtained panel arrangement priority. The panel selection unit 108-3 acquires, from the panel unit DBPUDB, panel unit information corresponding to the eleventh identification information corresponding to the selected one or more panel units, and selects the acquired panel unit information. The panel selection unit 108-3 acquires the panel arrangement priority associated with the tenth identification information corresponding to one or more optional devices excluded from the first tier from the panel arrangement priority DBPLDB, and selects one or more panel units for the second tier based on the acquired panel arrangement priority. The panel selection unit 108-3 acquires, from the panel unit DBPUDB, panel unit information corresponding to the eleventh identification information corresponding to the selected one or more panel units, and selects the acquired panel unit information. The panel selection unit 108-3 selects a panel pattern based on the panel width in accordance with the contents of the transformer board data. If there are other transformer systems, the panel selection unit 108-3 performs the processing sequentially.
[0048] (Step S6-1) The panel selection unit 108-3 determines whether there is any excess equipment (equipment that has not been arranged). (Step S7-1) If panel selection unit 108-3 determines that there are no overflowing devices, it finalizes the device layout. Panel selection unit 108-3 causes storage unit 150 to store the panel pattern selection results. The creation unit 110 acquires the panel pattern selection results stored in the storage unit 150. The creation unit 110 creates an image representing the panel pattern selection results based on the acquired panel pattern selection results. Examples of images representing the panel pattern selection results include an external front view, an external side view, a foundation view, and a wiring diagram of the high-voltage power receiving equipment. The creation unit 110 stores the created images representing the panel pattern selection results in the storage unit 150.
[0049] (Step S8-1) The output unit 112 acquires an image showing the selection result of the panel pattern from the storage unit 150. The output unit 112 outputs the acquired image. For example, the output unit 112 causes the display unit 120 to display the image. (Step S9-1) If panel selection unit 108-3 determines that there is an overflowing device, it counts the overflowing devices for each transformer system.
[0050] (Step S10-1) Panel selection unit 108-3 determines whether there are any devices that would overflow if the size of the housing were increased, and if it determines that there are any devices that would overflow, the process proceeds to step S6-1. (Step S11-1) If the panel selection unit 108-3 determines that there are no overflowing devices when the size of the housing is increased, it returns the size of the housing to its original size. (Step S12-1) Panel selection unit 108-3 determines whether there are any overflowing devices when the panels and housings are added. If there are any overflowing devices, the process proceeds to step S10-1, and if there are no overflowing devices, the process proceeds to step S6-1.
[0051] 6 is a flowchart showing an example of the operation of the information processing device according to this embodiment. Details of the process of step S4-1 in FIG. 5 will be described with reference to FIG. (Step S1-2) The unit selection unit 108-2 acquires, from the box size DBBSDB, box size information associated with the fourth identification information corresponding to the combination of the specification information of the high-voltage receiving equipment, the high-voltage feed data, and the capacitor data, and selects a receiving panel based on the acquired box size. 7A is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 7A, the process of unit selection section 108-2 selecting power receiving panel data will be described. When the main switch data included in the specification information of the high-voltage power receiving equipment is a VCB, the unit selection unit 108-2 acquires, from the VCB power receiving board placement DBVRDB, VCB receiving board placement information associated with second identification information corresponding to a combination of VCT space data included in the specification information of the high-voltage power receiving equipment, series reactor (SR) data and power capacitor (SC) data included in the high-voltage feed data, and LBS data, and selects the placement of the VCB power receiving board based on the acquired VCB power receiving board placement information. The unit selection unit 108-2 selects a unit based on the placement of the selected VCB receiving panel. By selecting placement information for the vacuum circuit breaker (VCB) receiving panel based on a combination of specification information for the high-voltage power receiving equipment, high-voltage feed data, and capacitor data, it is possible to determine whether the high-voltage feed and capacitor can be combined with the receiving panel, thereby reducing the number of enclosure surfaces.
[0052] When the main switch data included in the specification information of the high-voltage power receiving equipment is LBS, the unit selection unit 108-2 acquires, from the LBS power receiving board placement DBLRDB, LBS receiving board placement information associated with third identification information corresponding to a combination of the VCT space data included in the specification information of the high-voltage power receiving equipment, the series reactor (SR) data and power capacitor (SC) data included in the high-voltage feed data, and the LBS data, and selects the placement of the LBS power receiving board based on the acquired LBS power receiving board placement information. The unit selection unit 108-2 selects a unit based on the layout of the selected LBS receiving panel. By selecting layout information for the high-voltage AC load break switch (LBS) receiving panel based on a combination of specification information for the high-voltage power receiving equipment, high-voltage feed data, and capacitor data, it is possible to determine whether the high-voltage feed and capacitor can be combined with the receiving panel, thereby reducing the number of enclosure surfaces. Examples of conditions for selecting a unit include the type of main switch, the presence or absence of VCT space, the presence or absence of SR-SC, and the presence or absence of LBS feed. Based on the selection result of the power receiving panel, the unit selection unit 108-2 acquires, from the box size DB BSDB, box size information associated with the fourth identification information corresponding to the combination of the specification information of the high-voltage power receiving equipment, the high-voltage feed data, and the capacitor data, and acquires candidates for the minimum width, depth and height of the box that can be placed from the acquired box size information. Returning to Figure 6, we will continue the explanation.
[0053] (Step S2-2) When the switch information included in the high-voltage feed data is a VCB, the unit selection unit 108-2 acquires, from the VCB feed panel arrangement DB VFDB, the arrangement information of the VCB feed panel associated with the fifth identification information corresponding to the combination of the high-voltage feed data and the capacitor data, and selects the arrangement of the VCB feed panel based on the acquired VCB feed panel arrangement information.The unit selection unit 108-2 selects a unit based on the arrangement of the selected VCB feed panel. When the switch information included in the high-voltage feed data is an LBS, the unit selection unit 108-2 acquires, from the VCB feed panel arrangement DB (LRDB), the LBS feed panel arrangement information associated with the fifth identification information corresponding to the combination of the high-voltage feed data and the capacitor data, and selects the arrangement of the LBS feed panel based on the acquired VCB feed panel arrangement information. The unit selection unit 108-2 selects a unit based on the selected VCB feed panel arrangement. Examples of conditions for selecting a unit include the type of main switch, the presence or absence of SR-SC, and the presence or absence of LBS feed.
[0054] 7B is a diagram showing an example of the operation of the information processing apparatus according to this embodiment. Referring to FIG. 7B, the process of the unit selection unit 108-2 selecting a high-voltage feed platen will be described. The unit selection unit 108-2 acquires, from the high-voltage feed data and the capacitor data, one or more pieces of location information for vacuum circuit breaker (VCB) feed panels included in the VCB feed panel location DBVFDB and one or more pieces of location information for high-voltage AC load break switch (LBS) feed panels included in the LBS feed panel location DBLFDB, and selects a unit based on the acquired location information.The unit selection unit 108-2 selects a high-voltage feed panel based on the selected unit. When the main switch data included in the high-voltage feed data is a VCB, the unit selection unit 108-2 acquires, from the VCB feed panel arrangement DB VFDB, the arrangement information of the VCB feed panel associated with the fifth identification information corresponding to the combination of the series reactor (SR) data, the power capacitor (SC) data, and the VCB data, and selects a high-voltage feed panel based on the acquired arrangement information of the VCB feed panel. If the main switch data included in the high-voltage feed data is an LBS, the unit selection unit 108-2 acquires, from the LBS feed panel arrangement DBLFDB, the arrangement information of the LBS feed panel associated with the sixth identification information corresponding to the combination of the series reactor (SR) data, the power capacitor (SC) data, and the LBS data, and selects a high-voltage feed panel based on the acquired arrangement information of the LBS feed panel. Based on the selection result of the high-voltage feed platen, the unit selection unit 108-2 acquires, from the box size DBBSDB, box size information associated with the fourth identification information corresponding to the selection result of the high-voltage feed platen, and acquires candidates for the minimum box width, depth that can be placed, and height from the acquired box size information. Returning to Figure 6, we will continue the explanation.
[0055] (Step S3-2) The unit selection unit 108-2 determines whether or not there is any remaining high-pressure feed. If there is any remaining high-pressure feed, the process proceeds to step S2-2. (Step S4-2) If there is no remaining high-voltage feed, the unit selection unit 108-2 acquires capacitor board placement information associated with the seventh identification information corresponding to the capacitor data from the capacitor board placement DBCBDB, and selects a capacitor board based on the acquired capacitor board placement information. 7C is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 7C, the process of unit selection section 108-2 selecting a capacitor board will be described. The unit selection unit 108-2 removes the capacitor data placed on the power receiving panel and the high-voltage feed panel, and acquires capacitor board placement information associated with the seventh identification information corresponding to the remaining capacitor data from the capacitor board placement DBCBDB, and selects a capacitor board based on the acquired capacitor board placement information. The unit selection unit 108-2 selects a capacitor board based on the capacitor capacity data and capacitor system number data included in the capacitor data, the main switch data included in the specification information of the high-voltage power receiving equipment, and the series reactor (SR) data and vacuum electromagnetic contactor (VMC) data included in the high-voltage feed data. Based on the capacitor board selection result, the unit selection unit 108-2 obtains, from the box size DBBSDB, box size information stored in association with the fourth identification information corresponding to the capacitor board selection result, and obtains candidates for the minimum box width, depth and height that can be placed from the obtained box size information. Returning to Figure 6, the explanation will continue.
[0056] (Step S5-2) The unit selection section 108-2 determines whether or not there are any remaining capacitors, and if there are any remaining capacitors, the process proceeds to step S4-2. (Step S6-2) When there are no remaining capacitors, the unit selection unit 108-2 acquires the placement information of the transformer panel associated with the eighth identification information corresponding to the transformer data from the transformer panel placement DBTBDB, and selects a transformer panel based on the acquired placement information of the transformer panel. 7D is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 7D, the process of unit selection section 108-2 selecting a transformer board will be described. The unit selection unit 108-2 acquires the placement information of the transformer board associated with the eighth identification information corresponding to the transformer data from the transformer board placement DBTBDB, and selects a unit and a transformer board based on the acquired placement information of the transformer board. When selecting a capacitor board, if there is a capacitor system arranged in only one system, the unit selection unit 108-2 takes into consideration combining with a transformer board. The unit selection unit 108-2 selects a transformer panel based on the transformer capacity data, phase type data, transformer switch type data, power capacitor (SC) capacity data, SC switch type data, and data on the presence or absence of vibration isolating rubber, which are included in the transformer data. Returning to FIG. 6, the explanation will be continued.
[0057] (Step S7-2) The unit selection section 108-2 determines whether or not there are any remaining transformers, and if there are any remaining transformers, the process proceeds to step S6-2. (Step S8-2) Based on the selection result of the transformer panel, the unit selection unit 108-2 acquires, from the box size DBBSDB, box size information associated with the fourth identification information corresponding to the selection result of the transformer panel, and acquires candidates for the minimum width, depth that can be placed, and height of the box from the acquired box size information. An example of an image of the completed arrangement can be seen in FIGS. 3A and 3B.
[0058] 8 is a flowchart showing an example of the operation of the information processing device according to this embodiment. Details of the processes from steps S5-1 to S12-1 in FIG. 5 will be described with reference to FIG. (Step S1-3) The panel selection unit 108-3 acquires the selection result of the transformer board from the unit selection unit 108-2. Based on the acquired selection result of the transformer board, the panel selection unit 108-3 associates the equipment stored in the equipment selection DBMSDB with the selected transformer board. (Step S2-3) The panel selection unit 108-3 temporarily arranges the optional devices. 9A is a diagram showing an example of the operation of the information processing apparatus according to this embodiment. Referring to FIG. 9A, the process of the panel selection unit 108-3 temporarily placing optional devices will be described. The panel selection unit 108-3 provisionally places optional devices using one or more panel placement priorities contained in the panel placement priority database PLDB. For example, as shown in Fig. 9A, the panel selection unit 108-3 acquires, from the panel placement priority database PLDB, the panel placement priority associated with the tenth identification information corresponding to the combination of an earth leakage fire alarm (LGR), a directional ground fault relay (DGR), and an outlet, and provisionally places the LGR, DGR, and outlet based on the acquired panel placement priority. Returning to Fig. 8, the explanation will continue.
[0059] (Step S3-3) The panel selection unit 108-3 selects a panel pattern for the first row. The panel selection unit 108-3 acquires panel unit information associated with the eleventh identification information corresponding to the panel unit for the first row from the panel unit DBPUDB, and selects a panel pattern that can be arranged based on the acquired panel unit information. The panel selection unit 108-3 selects a panel pattern based on the panel width in accordance with the contents of the transformer panel data. 9B is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 9B, the process of selecting a panel pattern for the first row by panel selection unit 108-3 will be described. The panel selection unit 108-3 acquires panel unit information associated with the eleventh identification information corresponding to the first-row panel unit from the panel unit DB PLDB, and selects a panel unit based on the acquired panel unit information. For example, as shown in the left diagram of FIG. 9B, the panel selection unit 108-3 selects an 800mm wide panel and digitizes patterns that can be arranged on the 800mm wide panel.
[0060] In the example shown in the left diagram of Figure 9B, a pattern with three 400AFs is converted into data "444", a pattern with six 225AFs is converted into data "222222", a pattern with two 400AFs and two 225AFs is converted into data "4422", and a pattern with one LGR and four 225AFs is converted into data "L2222". For example, as shown in the right diagram of Fig. 9B, the panel selection unit 108-3 selects a 1000mm wide panel and digitizes patterns that can be arranged on the 1000mm wide panel. In the example shown in the right diagram of Fig. 9B, a pattern in which four 400AFs are arranged is digitized as "4444," a pattern in which seven 225AFs are arranged is digitized as "2222222," a pattern in which two 400AFs and three 225AFs are arranged is digitized as "44222," and a pattern in which one LGR and five 225AFs are arranged is digitized as "L22222." Returning to Fig. 8, the explanation will continue.
[0061] (Step S4-3) The panel selection unit 108-3 determines whether or not the breaker fits in the first stage. (Step S5-3) If the breaker does not fit in the first tier, the panel selection unit 108-3 resets the layout of the optional devices, acquires panel unit information associated with the eleventh identification information corresponding to the panel unit in the first tier from the panel unit DBPUDB using only the breaker again, and selects an available panel pattern based on the acquired panel unit information. Then, the process proceeds to step S3-3.
[0062] (Step S6-3) The panel selection unit 108-3 determines the panel layout for the first tier when the breaker fits in the first tier. 9C is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 9C, the process of determining the panel arrangement for the first row by panel selection unit 108-3 will be described. The panel selection unit 108-3 selects a panel unit from the results of digitizing the patterns that can be arranged on the 800-width panel. For example, as shown in Figure 9C, the panel selection unit 108-3 selects an 800-width panel, and from the results of digitizing the patterns that can be arranged on the 800-width panel, selects a pattern that is digitized as "2244" and includes two 225AFs and two 400AFs. Returning to Figure 8, the explanation will continue. (Step S7-3) The panel selection unit 108-3 places the optional devices excluded from the first row in the second row using the panel placement priority order DBPLDB. 9D is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 9D, a process in which panel selection unit 108-3 arranges optional devices removed from the first row in the second row will be described. The panel selection unit 108-3 acquires, from the panel arrangement priority DB PLDB, the panel arrangement priority order associated with the tenth identification information corresponding to the combination of the LGR and the outlet, which are optional devices excluded from the first tier, and arranges the LGR and the outlet in the second tier based on the acquired panel arrangement priority order. Returning to Figure 8, the explanation will continue.
[0063] (Step S8-3) The panel selection unit 108-3 determines the panel arrangement for the second row. 9E is a diagram showing an example of the operation of the information processing device according to this embodiment. Referring to FIG. 9E, the process of determining the panel layout for the second row by panel selection unit 108-3 will be described. The panel selection unit 108-3 selects a panel unit from the result of arranging the optional devices excluded from the first row in the second row. For example, as shown in Fig. 9E, the panel selection unit 108-3 selects a pattern in which an LGR, an outlet, and three 225AFs are arranged, which is converted into data as "L22222." Returning to Fig. 8, the explanation will be continued. (Step S9-3) The panel selection unit 108-3 determines the panel layout of this transformer system. (Step S10-3) The panel selection unit 108-3 determines whether or not there are other transformer systems, and if there are other transformer systems, the process proceeds to step S2-3. (Step S11-3) If there are no other transformer systems, panel selection unit 108-3 completes the panel unit selection.
[0064] In the above-described embodiment, the information processing device 100 selects a power receiving panel, a high-voltage feed panel, a capacitor panel, and a transformer panel, but the present invention is not limited to this example. For example, the information processing device 100 may select at least one of a power receiving panel, a high-voltage feed panel, a capacitor panel, and a transformer panel. In this case, in the information processing device 100, when the device information includes high-voltage feed data and capacitor data, the unit selection unit 108-2 selects a power receiving panel based on the specification information, high-voltage feed data, and capacitor data. Also, in the information processing device 100, when the device information includes high-voltage feed data and capacitor data, the unit selection unit 108-2 selects a high-voltage feed panel based on the high-voltage feed data and capacitor data. In the information processing device 100, when the device information includes capacitor data, the unit selection unit 108-2 selects a capacitor board based on the capacitor data. In the information processing device 100, when the device information includes transformer data, the unit selection unit 108-2 selects a transformer board based on the transformer data.
[0065] In the above-described embodiment, as an example, the case where the information processing device 100 selects the power receiving panel, the high-voltage feed panel, the capacitor panel, and the transformer panel in this order has been described, but this is not a limitation. For example, the information processing device 100 may select the power receiving panel, the high-voltage feed panel, the capacitor panel, and the transformer panel in any order. In the above-described embodiment, a case was described in which the information processing device 100 stores specification data DBSDB, transformer data DBTDB, capacitor data DBCDB, high voltage feed data DBHPDB, breaker data DBBDB, option data DBBODB, circuit selection DBCSDB, VCB receiving panel layout DBVRDB, LBS receiving panel layout DBLRDB, housing size DBBSDB, VCB feed panel layout DBVFDB, LBS feed panel layout DBLFDB, capacitor panel layout DBCBDB, transformer panel layout DBTBDB, equipment selection DBMSDB, panel layout priority DBPLDB, and panel unit DBPUDB, but this example is not limiting. For example, at least some of the specification data DBSDB, transformer data DBTDB, capacitor data DBCDB, high voltage feed data DBHPDB, breaker data DBBDB, option data DBBODB, circuit selection DBCSDB, VCB receiving panel layout DBVRDB, LBS receiving panel layout DBLRDB, housing size DBBSDB, VCB feed panel layout DBVFDB, LBS feed panel layout DBLFDB, capacitor panel layout DBCBDB, transformer panel layout DBTBDB, equipment selection DBMSDB, panel layout priority DBPLDB, and panel unit DBPUDB may be stored in a memory unit other than the information processing device 100, such as a cloud.
[0066] According to the information processing device 100 of this embodiment, the information processing device 100 includes a receiving unit 104 that receives specification information of the power receiving equipment and device information to be included in the power receiving equipment, a circuit information acquiring unit as an acquiring unit 106 that acquires circuit selection information from a storage unit that stores one or more combinations of specification information of the high-voltage power receiving equipment and device information to be included in the power receiving equipment, and circuit selection information for each of the one or more combinations, in association with each other, based on the specification information and device information received by the receiving unit 104, and The system is provided with an equipment selection unit 108-1 that acquires selection information for one or more devices from a storage unit that stores selection information for one or more circuits in association with selection information for one or more devices for the selection information for one or more circuits, and selects one or more devices based on the acquired selection information for the one or more devices, a unit selection unit 108-2 that selects a unit for placing each of the one or more devices selected by the equipment selection unit 108-1, and a panel selection unit 108-3 that selects a panel on which to place the unit based on the unit selected by the unit selection unit 108-2. With this configuration, the information processing device 100 can acquire circuit information based on the specification information of the power receiving equipment and the device information included in the power receiving equipment, and select multiple devices to be placed on the power receiving equipment based on the acquired circuit information.The information processing device 100 can select units for placing each of the selected multiple devices, and therefore can tentatively determine the size of the housing.The information processing device 100 can select panels for placing the multiple units based on the selected units, and therefore can tentatively determine the placement of the panels.
[0067] In the information processing device 100, the device information includes at least one of high voltage feed data, capacitor data, and transformer data. With this configuration, the information processing device 100 can acquire circuit information based on the specification information of the power receiving equipment and any one of high-voltage feed data, capacitor data, and transformer data included in the power receiving equipment.
[0068] In the information processing device 100, when the equipment information includes high-voltage feed data and capacitor data, the unit selection unit 108-2 selects a receiving panel from a memory unit that stores one or more combinations of specification information, high-voltage feed data, and capacitor data of high-voltage receiving equipment, in association with placement information of the receiving panel for each of the one or more combinations, based on the specification information, high-voltage feed data, and capacitor data. With this configuration, in the information processing device 100, the unit selection unit 108-2 can select a power receiving panel based on the specification information, high voltage feed data, and capacitor data, and therefore can tentatively determine the size of the power receiving panel.
[0069] In the information processing device 100, when the equipment information includes high-voltage feed data and capacitor data, the unit selection unit 108-2 acquires the placement information of the high-voltage feed platen from a memory unit that stores one or more combinations of high-voltage feed data and capacitor data in association with placement information of the high-voltage feed platen for each of the one or more combinations based on the high-voltage feed data and capacitor data, and selects a high-voltage feed platen based on the acquired placement information of the high-voltage feed platen. With this configuration, in the information processing device 100, the unit selection section 108-2 can select the units to be placed on the high-voltage feed panel based on the high-voltage feed data and the capacitor data, and therefore can tentatively determine the size of the high-voltage feed panel.
[0070] In the information processing device 100, when the device information includes capacitor data, the unit selection unit 108-2 acquires capacitor board placement information from a memory unit that stores one or more pieces of capacitor data in association with capacitor board placement information for each of the one or more pieces of capacitor data based on the capacitor data, and selects a capacitor board based on the acquired capacitor board placement information. With this configuration, in the information processing device 100, the unit selection section 108-2 can select the units to be placed on the capacitor board based on the capacitor data, and therefore can tentatively determine the size of the capacitor board.
[0071] In the information processing device 100, when the device information includes transformer data, the unit selection unit 108-2 acquires the placement information of the transformer panel from a memory unit that stores one or more pieces of transformer data in association with the placement information of the transformer panel for each of the one or more pieces of transformer data, based on the transformer data, and selects a transformer panel based on the acquired placement information of the transformer panel. With this configuration, in the information processing device 100, the unit selection unit 108-2 can select units to be placed on the transformer board based on the transformer data, and therefore the size of the transformer board can be tentatively determined.
[0072] In the information processing device 100, the panel selection section 108-3 selects units to be arranged on one or more stages of the panel, based on the units selected by the unit selection section 108-2. By configuring the information processing device 100 in this manner, the panel selection unit 108-3 can select units to be placed on one or more rows of the panel based on the units selected by the unit selection unit 108-2, thereby tentatively determining the placement of the panels.
[0073] Although the embodiments of the present invention have been described above in detail with reference to the drawings, the specific configuration is not limited to this embodiment, and design modifications and the like are also included within the scope of the present invention. For example, a computer program for realizing the functions of each of the above-described devices may be recorded on a computer-readable recording medium, and the computer program recorded on this recording medium may be read and executed by a computer system. Note that the "computer system" referred to here may also include hardware such as an OS and peripheral devices. Additionally, "computer-readable recording media" refers to writable non-volatile memory such as flexible disks, optical magnetic disks, ROMs, and flash memories, portable media such as DVDs (Digital Versatile Discs), and storage devices such as hard disks built into computer systems. Furthermore, "computer-readable recording media" also includes devices that retain a program for a certain period of time, such as volatile memory (e.g., DRAM (Dynamic Random Access Memory)) within computer systems that act as servers or clients when a computer program is transmitted via a network such as the Internet or a communication line such as a telephone line. The program may be transmitted from a computer system storing the program in a storage device or the like to another computer system via a transmission medium or by transmission waves in the transmission medium. Here, the "transmission medium" that transmits the program refers to a medium that has the function of transmitting information, such as a network (communication network) such as the Internet or a communication line (communication line) such as a telephone line. The program may also be for realizing part of the above-mentioned functions. Furthermore, it may be a so-called differential file (differential program) that can realize the above-mentioned functions in combination with a program already recorded in the computer system. [Explanation of symbols]
[0074] 100...information processing device, 102...input unit, 104...reception unit, 106...acquisition unit, 108-1...device selection unit, 108-2...unit selection unit, 108-3...panel selection unit, 110...creation unit, 112...output unit, 120...display unit, 150...storage unit
Claims
[Claim 1] a reception unit that receives specification information of the power receiving equipment and device information to be included in the power receiving equipment; a circuit information acquisition unit that acquires circuit selection information from a storage unit that stores one or more combinations of specification information of high-voltage power receiving equipment and equipment information to be included in the power receiving equipment, in association with circuit selection information for each of the one or more combinations, based on the specification information and the equipment information received by the reception unit; an equipment selection unit that acquires selection information of one or more devices from a storage unit that stores selection information of one or more circuits and selection information of one or more devices for the selection information of one or more circuits in association with each other based on the selection information of the circuit acquired by the circuit information acquisition unit, and selects one or more devices based on the acquired selection information of the one or more devices; a unit selector that selects a unit for arranging each of the one or more devices selected by the device selector; a panel selection unit that selects a panel on which the unit is to be placed based on the unit selected by the unit selection unit; An information processing device comprising:
Citation Information
Patent Citations
High voltage power incoming installation
JP2016096699A