Measurement system, distribution board, measurement method, and program

The measurement system accurately separates power supply measurements for EVs and non-EVs by identifying device type, resolving ambiguity and enabling effective utilization of measurement results.

JP7842610B2Active Publication Date: 2026-04-08PANASONIC HOLDINGS CORP
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-03-31
Publication Date
2026-04-08

AI Technical Summary

Technical Problem

Existing systems fail to distinguish between power supply measurements for electric vehicles (EVs) and other electrical devices connected to an EV outlet, leading to ambiguity in measurement utilization.

Method used

A measurement system comprising a measurement unit, acquisition unit, and output unit that separates power supply measurements for EVs and non-EVs by identifying device type information, allowing for accurate classification and utilization of measurement results.

Benefits of technology

Enables the clear utilization of measurement results for specific electricity transactions by distinguishing between EVs and non-EVs, enhancing the accuracy and applicability of power supply measurements.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a measurement system capable of utilizing measurement results.SOLUTION: A measurement system 1 includes a measuring unit, an acquisition unit, and an output unit. The measuring unit measures the power supply amount from a power supply unit 31A to a piece of electrical devices (33A, 33) connected to an EV outlet 32A. The acquisition unit acquires a piece of equipment information relevant to the electrical devices (33A, 33) from the electrical devices (33A, 33). The output unit outputs a measurement result of the measuring unit in a manner that at least the measurement results for EV33A and the measurement results for non-EV33 can be distinguished using the equipment information. A Non-EV33 is the electrical device 33 other than EV33A.SELECTED DRAWING: Figure 1
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Description

Technical Field

[0005]

[0001] The present disclosure relates to a measurement system, a distribution board, a measurement method, and a program, and more particularly, to a measurement system, a distribution board, a measurement method, and a program for measuring the power supply amount to an EV connected to an EV outlet.

Background Art

[0002] Patent Document 1 describes an energy management system including an EV outlet for charging a battery of an electric vehicle (EV charging), a CT sensor for detecting the amount of charging power from the EV outlet to the electric vehicle, and the like.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] An electric device other than an EV (for example, a power conditioner for a solar panel, a capacitor, etc.) can also be connected to the EV outlet. In the case of the device described in Patent Document 1, since it is not clear whether the measured power supply amount (measurement result) is the power supply amount to the EV or the power supply amount to an electric device other than the EV (non-EV), there is a possibility that the utilization of the measurement result (for example, a specific electricity transaction using the measurement result) may be hindered.

[0005] An object of the present disclosure is to provide a measurement system, a distribution board, a measurement method, and a program capable of utilizing the measurement result.

Means for Solving the Problems

[0006] A measurement system according to one aspect of this disclosure comprises a measurement unit, an acquisition unit, and an output unit. The measurement unit measures the amount of power supplied from a power supply to an electrical device connected to an EV outlet. The acquisition unit measures the amount of power supplied from the electrical device. 、 Regarding the aforementioned electrical equipment Information, including type information relating to the type of electrical equipment. The device information is acquired. The output unit uses the device information to output the measurement results from the measurement unit in a manner that allows them to be separated into at least measurement results for EVs and measurement results for non-EVs. Non-EVs are electrical devices other than EVs.

[0007] A distribution board according to one aspect of this disclosure comprises a measuring unit, an acquisition unit, and an output unit. The measuring unit measures the amount of power supplied from a power supply to an electrical device connected to an EV outlet. The acquisition unit measures the amount of power supplied from the electrical device. 、 Regarding the aforementioned electrical equipment Information, including type information relating to the type of electrical equipment. The device information is acquired. The output unit uses the device information to output the measurement results from the measurement unit in a manner that allows them to be separated into at least measurement results for EVs and measurement results for non-EVs. Non-EVs are electrical devices other than EVs.

[0008] A measurement method according to one aspect of this disclosure includes a measurement step, an acquisition step, and an output step. In the measurement step, the amount of power supplied from a power supply to an electrical device connected to an EV outlet is measured. In the acquisition step, from the electrical device 、 Regarding the aforementioned electrical equipment Information, including type information relating to the type of electrical equipment. Equipment information is acquired. In the output step, the measurement results from the measurement step are output using the equipment information in a manner that allows them to be separated into at least the measurement results for EVs and the measurement results for non-EVs. Non-EVs are electrical equipment other than EVs.

[0009] A program according to one aspect of this disclosure causes one or more processors to execute the measurement method. [Effects of the Invention]

[0010] The measurement system, distribution board, measurement method, and program disclosed herein have the effect of enabling the utilization of measurement results. [Brief explanation of the drawing]

[0011] [Figure 1] Figure 1 is a block diagram of a distribution board in which the measurement system according to the embodiment of this disclosure is used. [Figure 2] This is an external view of the same distribution board. [Figure 3] This is a block diagram of the same measurement system as above. [Figure 4] This is a flowchart illustrating the operation of the measurement system described above. [Figure 5] This is a flowchart illustrating an example of the sorted output included in the above operation. [Modes for carrying out the invention]

[0012] (1) Main part First, the essential parts of this disclosure will be described with reference to Figures 1-3 (mainly Figure 3). The measurement system 1 according to the embodiment of this disclosure comprises a measurement unit 121, an acquisition unit 122, and an output unit 13, as shown in Figure 3.

[0013] The measurement system 1 is used, for example, in the distribution board 3 shown in Figures 1 and 2, and performs the sorted output described below. The sorted output function of the measurement system 1 (each part shown in Figure 3) is realized by, for example, one branch breaker 31A (hereinafter sometimes referred to as "one branch breaker 31A" or "branch breaker 31A") among the multiple branch breakers 31 (31A, 31) that make up the distribution board 3, a processing unit 4, and a filter 50.

[0014] (1-1) Measurement Unit The measurement unit 121 measures the amount of power supplied from the power supply unit 31A to the electrical equipment (33A, 33) connected to the EV outlet 32A.

[0015] (1-1-1) EV charging outlet The EV socket 32A is a socket for EV charging. The EV socket 32A in this embodiment is connected to the above-mentioned branch breaker 31A.

[0016] Normally, an EV 33A is connected to the EV socket 32A, but other electrical devices 33 (hereinafter referred to as "non-EV 33") can also be connected.

[0017] Note that the EV socket 32A is, for example, attached to the outer wall of a building where a distribution board 3 is provided, but it may also be in a form installed on the ground near the outer wall (for example, a charging stand, etc.).

[0018] (1-1-2) Measurement object: Electrical device Electrical devices (33A, 33) are devices that operate with electric power. Here, this operation includes charging the battery (built-in battery, etc.: not shown) that the electrical devices (33A, 33) have.

[0019] The electrical devices (33A, 33) in the embodiment have a processor and a memory (both not shown) and a communication module (not shown) for performing power line communication. Programs and various information (device information, etc.: described later) are stored in the memory, and the functions of the electrical devices (33A, 33) are realized by the processor operating based on the programs in the memory, etc.

[0020] Electrical devices (33A, 33) are broadly classified into EV 33A and non-EV 33.

[0021] (1-1-2a) EV EV 33A is a vehicle (electric vehicle) that can run with electric power. EV 33A is, for example, an electric vehicle that runs only with a motor, but it may also be a hybrid vehicle that uses an engine in combination. EV 33A charges the in-vehicle battery with the electric power supplied from the power feeder 31A and runs by driving the motor with the electric power of the in-vehicle battery.

[0022] (1-1-2b) Non-EV Non-EV33 refers to electrical equipment 33 other than EV33A. Examples of non-EV33 include power conditioners and battery storage systems for solar panels. Note that charging is not necessarily required for non-EV33 equipment.

[0023] (1-1-3) Power feeder The power supply unit 31A is a device that supplies power to the EV33A via the EV outlet 32A. In this embodiment, the power supply unit 31A is the aforementioned branch circuit breaker 31A.

[0024] (1-1-4) Power supply amount The amount of power supplied is the amount of electricity supplied from the power supply unit 31A to the electrical equipment (33A, 33) via the EV outlet 32A. Note that the amount of power supplied for EV33A is usually the same as the amount of power used to charge the vehicle's battery.

[0025] (1-1-5) Measurement Sensors The measurement unit 121 measures the amount of power supplied as described above using, for example, a measurement sensor (not shown) built into the power supply unit 31A. However, the measurement sensor may be provided outside the power supply unit 31A. The measurement sensor may be provided, for example, along the main line 40 on the secondary side of the main breaker 30 and measure the amount of power supplied from each of the multiple branch breakers (31A, 31).

[0026] (1-2) Acquisition part The acquisition unit 122 acquires device information from electrical equipment (33A, 33) connected to the EV outlet 32A.

[0027] (1-2-1)Device information Equipment information refers to information about electrical equipment (33A, 33). Equipment information includes, for example, equipment identification information. Equipment identification information is information that identifies electrical equipment (33A, 33). Examples of equipment identification information include MAC address and ID.

[0028] Equipment identification information may further include type information. Type information refers to information about the type of electrical equipment (33A, 33). Type information may also be, for example, the sorting information described later.

[0029] As will be explained in more detail later, the EV equipment information for the EV33 includes, for example, vehicle identification information, vehicle type information, and EV charging specification information.

[0030] (1-2-2) Acquisition of equipment information In this embodiment, device information is acquired via power line communication. Information acquisition via power line communication will be described later. However, device information may also be acquired via wired communication other than power lines, or via wireless communication.

[0031] (1-3) Output section The output unit 13 uses the equipment information acquired by the acquisition unit 122 to output the measurement results from the measurement unit 121 in a manner that allows them to be separated into at least the measurement results for EV33A and the measurement results for non-EV33.

[0032] In this context, output refers to actions such as writing (saving) to memory, transmitting via a communication module, displaying on a screen, and outputting audio from a speaker. The data saved includes, for example, measurement results with associated classification information, as described later. The data transmitted, displayed, and outputted includes, for example, the results of determining whether or not the EV33A is currently charging, as described later.

[0033] (1-3-1) Separate output using device information In this embodiment, "using device information" means, for example, determining whether the electrical equipment (33A, 33) connected to the EV outlet 32A is an EV33A or a non-EV33 based on the device information, and obtaining classification information (described later). Furthermore, "outputting in a separable manner" means, for example, associating the classification information obtained using the device information with the measurement results of the measurement unit 121, thereby enabling the classification of the measurement results.

[0034] (1-3-2) Variation of sorted output using device information Alternatively, "using equipment information" may mean, for example, associating at least a portion of the equipment information (e.g., sorting information, vehicle identification information, etc.) acquired by the acquisition unit 122 from the electrical equipment (33A, 33) with the measurement results of the measurement unit 121. In particular, if the equipment information from the electrical equipment (33A, 33) includes sorting information, the measurement system 1 does not need to make the above judgment, and sorting output of the measurement results becomes possible simply by associating the sorting information with the measurement results (see "(3) Modified Examples").

[0035] (1-3-3) Advantages of this embodiment In this manner, the measurement system 1 measures the amount of power supplied to electrical equipment (33A, 33) connected to the EV outlet 32A, acquires equipment information about the electrical equipment (33A, 33), and uses the equipment information to output the measurement results in a way that allows them to be separated into EV33A and non-EV33.

[0036] According to this embodiment, the measurement results can be utilized (for example, for use in specific electricity transactions) by using separate outputs.

[0037] (2) Details (2-1) Distribution board As shown in Figure 1, the distribution board 3 according to the embodiment of this disclosure comprises a main circuit breaker 30, a plurality (for example, six) of branch circuit breakers (31A, 31), a processing unit 4, and a filter 50.

[0038] (2-1-1) Main circuit breaker and multiple branch circuit breakers The main circuit breaker 30 is connected to the wires from the power source 2. Multiple branch circuit breakers (31A, 31) are each connected to multiple (for example, 6) branch lines 40a that branch off from the secondary wires of the main circuit breaker 30 (referred to as the "trunk line 40" in this embodiment).

[0039] Each of the multiple branch circuit breakers (31A, 31) is connected to a wiring device (32A, 32) via a first wiring (41A, 41), and the wiring device (32A, 32) is connected to an electrical appliance (33A, 33) via a second wiring (42A, 42).

[0040] (2-1-1a) Branch breaker Of the multiple branch circuit breakers (31A, 31) mentioned above, one branch circuit breaker 31A is for EV charging. An EV outlet 32A is connected to the one branch circuit breaker 31A via the first wiring 41A, and an EV 33A is usually detachably connected to the EV outlet 32A via the second wiring 42A.

[0041] However, other electrical equipment 33 (hereinafter simply referred to as "electrical equipment 33") besides EV33A may also be connected to EV outlet 32A.

[0042] (2-1-2) Processing Unit Processing unit 4 is connected to one branch breaker 31A. Processing unit 4 has a processor and memory (neither of which are shown) and a first communication module (not shown) for power line communication. The memory stores programs and various information (measurement results, etc.: described later), and the processor operates based on the programs in the memory to realize the separate output function of the measurement system 1.

[0043] The processing unit 4 in this embodiment may be connected to a network 200. The network 200 may be, for example, the Internet, but it may also be a LAN (Local Area Network), a communication line network, etc. The processing unit 4 further has a second communication module for communicating with a server 300 or a terminal device 5 via the network 200.

[0044] Furthermore, as shown in Figure 2, the processing unit 4 also includes a display 4A and input keys 4B. However, at least one of the display 4A and input keys 4B is not required.

[0045] (2-1-3) Filter The filter 50 is installed on one of the branch lines (40A, 40a) that branch off from the main line 40 and go to one of the branch breakers 31A, specifically on one branch line 40A that goes to one of the branch breakers 31A.

[0046] The filter 50 has the function of preventing interference between the branch lines (40A, 40a) (more specifically, between the first branch line 40A and one or more other branch lines 40a). Specifically, the filter 50 is a magnetic material such as ferrite, but it may also be an active filter composed of an electronic circuit.

[0047] (2-2) Servers and terminal devices Server 300 is, for example, a server for a power company or a maintenance and management company, and has a processor, memory, and a second communication module (none of which are shown in the figure). Programs are stored in the memory, and the functions of server 300 are realized by the processor operating based on the programs in the memory.

[0048] Terminal device 5 is, for example, a user's mobile terminal, but it may also be a fixed terminal. Terminal device 5 has a processor, memory, and a second communication module (none of which are shown). Programs and the like are stored in the memory, and the functions of terminal device 5 are realized by the processor operating based on the programs and the like in the memory.

[0049] (2-3) Measurement System The measurement system 1 of this embodiment includes, for example, a reception unit 11, a processing unit 12, and an output unit 13, as shown in Figure 3.

[0050] (2-3-1) Reception Department The reception unit 11 receives various operations and various types of information. Various operations include, for example, mode selection operations (described later). Various types of information include, for example, vehicle identification information. The reception unit 11 receives operations such as mode selection operations and information such as vehicle identification information via, for example, the input key 4B of the processing unit 4.

[0051] Vehicle identification information is pre-entered and stored in memory, for example, to determine whether a specific EV33A is connected to an EV outlet 32A when multiple EV33A devices can be connected to it. The vehicle identification information stored in memory is compared with the vehicle identification information contained in the EV equipment information obtained from the EV33A connected to the EV outlet 32A to determine whether the EV is a specific EV33A.

[0052] However, the reception unit 11 is not mandatory. For example, if the processing unit 4 does not have an input device such as an input key 4B, the measurement system 1 does not need to have a reception unit 11.

[0053] (2-3-2) Processing The processing unit 12 includes, for example, a measurement unit 121, an acquisition unit 122, and a determination unit 123. However, the determination unit 123 is not essential (see modified example).

[0054] The processing unit 12 performs various processes. These processes include, for example, the processes of the measurement unit 121, the acquisition unit 122, and the judgment unit 123. The processing unit 12 also performs some of the judgments described in the flowchart (steps S1 and S5, etc.).

[0055] The output unit 13 outputs various types of information. These types of information include, for example, measurement results, sorting information, and judgment results. As mentioned above, the output from the output unit 13 can include saving, transmitting, displaying, and audio output.

[0056] (2-3-3) Details of the acquisition unit: Information acquisition via power line communication The acquisition unit 122 acquires equipment information via power line communication through power lines (41A, 42A).

[0057] (2-3-3a) Power line The power lines (41A, 42A) are the wires that run from the power supply unit 31A through the EV outlet 32A to the electrical equipment (33A, 33), and specifically include the first wiring 41A and the second wiring 42A.

[0058] (2-3-3b) Advantages Power line communication via power lines (41A, 42A) limits the source of equipment information acquisition to electrical equipment (33A, 33) connected to EV outlet 32A. In other words, acquisition of equipment information from electrical equipment (33A, 33: normally non-EV 33) connected to wiring devices 32 other than EV outlet 32A is avoided.

[0059] Furthermore, by utilizing existing power lines (41A, 42A), costs can be reduced compared to using wired or wireless communication other than power lines (41A, 42A).

[0060] (2-3-3c) Interference prevention using filters However, as mentioned above, the power supply 31A in this embodiment is one of the branch breakers 31 that make up the distribution board 3 together with the main breaker 30. The power lines (41A, 42A) are wires connected to one branch line 40A that leads to one branch breaker 31A, out of the multiple branch lines 40a that branch off from the main line 40 on the secondary side of the main breaker 30 and lead to the multiple branch breakers 31.

[0061] Therefore, interference may occur between the branch lines (40A, 40a) (i.e., between one branch line 40A and one or more other branch lines 40a) (for example, acquisition of equipment information from electrical equipment 33 connected to wiring devices 32 other than the EV outlet 32A). In this embodiment, a filter 50 is provided on one branch line 40A to avoid interference.

[0062] (2-4) Judgment Unit: Judgment based on equipment information In the measurement system 1 of this embodiment, a decision for separate output (acquisition of separate information) is made based on equipment information from electrical equipment (33A, 33) connected to the EV outlet 32A. The decision for separate output is, for example, whether the electrical equipment (33A, 33) is an EV33A or an electrical equipment other than an EV33A (hereinafter: non-EV) 33.

[0063] (2-4-1) Determination of whether or not it is an EV (First Determination) The determination unit 123 uses the equipment information acquired by the acquisition unit 122 to determine whether the electrical equipment (33A, 33) connected to the EV outlet 32A is an EV33A or not, and acquires classification information based on the result of that determination (first determination).

[0064] (2-4-2)EV device information Among the equipment information, the EV equipment information for EV33A includes at least one of the vehicle type information and EV charging specification information.

[0065] In other words, among the device information obtained from electrical equipment (33A, 33) connected to EV outlet 32A, the EV device information obtained from EV33A includes at least one of vehicle type information and EV charging specification information.

[0066] In contrast, the equipment information obtained from a non-EV33 (which may also be called "non-EV equipment information") typically does not include either vehicle type information or EV charging specification information. Therefore, if the equipment information obtained via the EV outlet 32A includes at least one of vehicle type information and EV charging specification information, the electrical equipment (33A, 33) can be determined to be an EV33A.

[0067] (2-4-2a) Vehicle type information Vehicle type information refers to information about the vehicle type. Vehicle type refers to the type of automobile. For example, vehicle type can be the type of power source, such as electric vehicles or hybrid vehicles, but it can also be a type related to size, such as regular cars or light vehicles, or a type related to use, such as passenger cars or commercial vehicles. Vehicle type information may include, for example, a vehicle name such as "electric vehicle" or an abbreviation such as "EV", or an ID (a unique sequence of characters or symbols) associated with the vehicle name, etc. If the device information obtained via EV outlet 32A includes any information indicating the vehicle type, then the electrical device (33A, 33) can be determined to be an EV33A.

[0068] (2-4-2b) EV Charging Specifications EV charging specification information refers to information regarding the specifications of EV charging. These specifications may include, for example, charging voltage and rated current, but may also include information such as normal charging or fast charging. EV charging specification information may include, for example, a set of numerical values ​​and units indicating the charging voltage (e.g., "100V"), or information indicating whether it is normal charging or fast charging. Furthermore, if the equipment information from an electrical device (33A,33) includes any information regarding EV charging specifications, then that electrical device (33A,33) can be determined to be an EV33A.

[0069] (2-4-3) Sorting information Classification information refers to information used to classify electrical equipment (33A, 33) into EV33A and non-EV33. Classification information is, for example, information indicating "EV" or "non-EV".

[0070] In this embodiment, the sorting information is as follows: Judgment department This information is obtained based on the results of the first judgment by 123, but may also be included in the equipment information from electrical equipment (33A, 33) (see modified example).

[0071] In this way, by determining whether it is an EV33A or not based on equipment information that may include vehicle type information and / or EV charging specification information, and by obtaining the classification information, it is possible to achieve differentiated output even if the equipment information from the electrical equipment (33A, 33) does not include classification information.

[0072] (2-5) Details of the output section: Separate storage The output unit 13 stores the measurement results from the measurement unit 121, for example, in association with the sorting information acquired as described above.

[0073] Furthermore, it is preferable to associate time information with the measurement results to be saved. That is, the output unit 13 may, for example, obtain time information indicating the current time from the processor's built-in clock or an NTP (Network Time Protocol) server (not shown), and save it in association with the judgment result of the judgment unit 123. This makes it possible to determine the period during which the measurement results were obtained (for example, the time when the measurement started, the time when the measurement ended, etc.).

[0074] In this embodiment, the output unit 13 stores the measurement results and associated classification information, time information, etc. (hereinafter referred to as "measurement results, etc.") in the memory of the processing unit 4. However, the storage location for this information can be any memory accessible by the processor of the processing unit 4.

[0075] In this way, by storing measurement results in association with segregation information (segregated storage), the measurement results can be utilized retrospectively. For example, measurement results associated with segregation information "EV" can be used for specific electricity transactions. Furthermore, measurement results associated with segregation information "non-EV" can also be utilized in some way.

[0076] Furthermore, when saving measurement results in association with sorting information as described above, the measurement results will be saved even if the electrical equipment (33A,33) is not EV33. However, as shown in the EV-only saving example below, the measurement results will only be saved if the electrical equipment (33A,33) is EV33A, and will not be saved if it is not EV33.

[0077] (2-6) EV limited storage Alternatively, the output unit 13 may save the measurement result from the measurement unit 121 only if the determination unit 123 determines that the electrical equipment (33A, 33) is EV33A. In this case, it is not necessary to associate the classification information "EV" with the saved measurement result, but it may be done.

[0078] (2-6-1) Non-EV treatment If the electrical equipment (33A, 33) is determined not to be EV33A, the output unit 13 may perform non-EV processing. Note that non-EV processing here (i.e., non-EV processing in EV-only storage) usually involves discarding the measurement result, but it may also involve processing such as associating the classification information "non-EV" with the measurement result and temporarily storing it.

[0079] (2-6-1a) Non-EV treatment in separate storage In separate storage, non-EV processing involves associating the measurement results with the "non-EV" sorting information and saving them.

[0080] In this way, by saving measurement results only when the electrical equipment (33A, 33) is determined to be EV33A (EV-only storage), it is possible to utilize measurement results related to EV33A retrospectively. For example, measurement results related to EV33A can be used for specific electricity transactions. In addition, compared to separate storage, the amount of information to be stored (storage capacity of the storage location) can be reduced.

[0081] (2-6-2) Limited preservation of EVs with identifiable vehicle bodies. EV equipment information may further include vehicle identification information. Vehicle identification information is information that identifies the vehicle. Examples of vehicle identification information include the vehicle registration number (the number written on the license plate) and the vehicle identification number (chassis number) stamped on the vehicle body.

[0082] If the determination unit 123 determines that the electrical equipment (33A, 33) is an EV33A, the output unit 13 stores the measurement result from the measurement unit 121 in association with the vehicle identification information included in the EV equipment information acquired by the acquisition unit 122.

[0083] If there are multiple EV33A vehicles that can be connected to EV outlet 32A (for example, if a family or company owns two or more electric vehicles), the vehicle identification information associated with the measurement result makes it possible to identify which EV33A the measurement result pertains to. However, if there is only one EV33A vehicle that can be connected to EV outlet 32A, vehicle identification information is not required.

[0084] This allows for the retrospective use of measurement results related to EV33A, even if multiple EV33A units exist. For example, measurement results related to specific electricity transactions can be used for multiple EV33A units.

[0085] (2-7) Mode Selection The output unit 13 may selectively perform separate storage and EV-only storage. For example, the reception unit 11 may receive a mode selection operation, and the output unit 13 may perform storage processing corresponding to the mode selected in the mode selection operation from among separate storage and EV-only storage.

[0086] The mode selection operation is the operation of selecting either a first mode for separate storage or a second mode for EV-only storage. The mode selection operation is received, for example, via the input key 4B of the processing unit 4 (see Figure 3), but may also be received via the network 200 through the terminal device 5.

[0087] As a result, if the first mode is selected, separate storage will be performed, and if the second mode is selected, EV-only storage will be performed.

[0088] Such mode selection allows for, for example, saving data according to the remaining memory capacity (separate saving when there is a lot of remaining memory, and EV-only saving when there is little remaining memory). However, the measurement system 1 may not have a mode selection function and may only perform either separate saving or EV-only saving.

[0089] (2-8) Determination of whether or not power is being supplied (Second determination) The determination unit 123 uses the equipment information acquired by the acquisition unit 122 from the electrical equipment (33A, 33) and the measurement results from the measurement unit 121 to determine whether or not power is being supplied to the electrical equipment (33A, 33), and acquires power supply status information.

[0090] (2-8-1) Specific examples of the second type of judgment More specifically, the determination unit 123 determines, for example, that power is being supplied to the electrical equipment (33A, 33) when equipment information is acquired by the acquisition unit 122 and the measurement result from the measurement unit 121 increases over time.

[0091] If the measurement result does not increase, it is determined that power is not being supplied to the electrical equipment (33A, 33). Alternatively, if the measurement result increases and then stabilizes, it may be determined that power supply is complete; if it does not increase and remains constant, it may be determined that power is not being supplied.

[0092] (2-8-2) Power supply status information Power supply status information refers to information regarding the power supply status to electrical equipment (33A, 33). Power supply status information includes, for example, "Powering" which indicates that power is being supplied to the electrical equipment (33A, 33), "No power supply" which indicates that power is not being supplied, "Power supply complete" which indicates that power supply is complete, and "Not powered" which indicates that power supply has not yet started.

[0093] (2-8-3) Determination of whether or not the EV is charging (First determination + Second determination) In this embodiment, the determination unit 123 first makes a determination (first determination) as to whether the electrical equipment (33A, 33) connected to the EV outlet 32A is an EV33A or not. If the result of the first determination is "EV", the determination unit 123 further makes a determination (second determination) as to whether the measurement result of the measurement unit 121 is increasing or not, and acquires charging status information based on the result of the second determination. For example, if the result of the second determination is "increasing", the determination unit 123 acquires the charging status information "EV charging".

[0094] (2-8-4) Charging status information Charging status information refers to information regarding the power supply status to EV33A among the electrical equipment (33A, 33) (in other words, the status of EV charging performed by EV33A with the supplied power). Examples of charging status information include "EV charging in progress," indicating that EV charging is underway; "EV charging complete," indicating that EV charging is finished; and "EV not charging," indicating that EV charging has not yet started.

[0095] (2-9) Output of the judgment result The output unit 13 further outputs the judgment result of the judgment unit 123.

[0096] The output regarding the decision result may be, for example, transmitted to the server 300 or terminal device 5 via the network 200, but it may also be displayed on the display 4A, or output as audio from a speaker (not shown). Alternatively, the output regarding the decision result may be written (saved) to memory.

[0097] The output judgment result may be, for example, the judgment result related to the first judgment (first judgment result: for example, classification information such as "EV" or "non-EV") or the judgment result related to the second judgment (second judgment result: for example, power supply status information such as "powering" or "no power supply", EV charging status information such as "EV charging" or "EV charging complete", etc.).

[0098] Specifically, for example, the classification information based on the result of the first judgment is usually stored in memory in association with the measurement results of the measurement unit 121, but instead of this, or in addition to this, it may be transmitted to at least one of the server 300 and the terminal device 5, either in association with the measurement results of the measurement unit 121 or independently.

[0099] This allows for real-time and / or retrospective use of the judgment results of the judgment unit 123. For example, a user can determine whether an electrical device (33A, 33) connected to the EV outlet 32A is an EV33A or not, without visually inspecting the device. They can also determine whether the electrical device (33A, 33) is currently receiving power (for example, if the electrical device (33A, 33) is an EV33A, whether it is currently charging).

[0100] (2-9-1) Sending the judgment result In this embodiment, the output unit 13 normally transmits the determination result of the determination unit 123. The output unit 13 transmits the determination result to the server 300 or terminal device 5 via the network 200, for example.

[0101] This allows for real-time utilization of the judgment results of the judgment unit 123. For example, a user can remotely determine whether the electrical equipment (33A, 33) connected to the EV outlet 32A is an EV33A, and whether power is being supplied to the said electrical equipment (33A, 33) (for example, whether or not EV charging is in progress for the EV33A). Remote location could be, for example, a room in a house other than the room where the distribution board 3 is installed, or outdoors (for example, when the terminal device 5 is a mobile terminal, the user may be away from home).

[0102] (2-9-2) Preservation of judgment results However, the output unit 13 may store the decision result of the decision unit 123. This allows for the subsequent use of the decision result of the decision unit 123.

[0103] Furthermore, when saving the judgment result, it is preferable to associate time information with the judgment result. That is, the output unit 13 may, for example, obtain time information from the processor's built-in clock and save it in association with the judgment result of the judgment unit 123. This makes it possible to determine the period during which the electrical equipment (33A, 33) was connected to the EV outlet 32A (for example, the time of connection, the time of disconnection, etc.). Furthermore, when transmitting, displaying, or outputting the judgment result as audio, it is not necessary to associate time information with the judgment result, but it is optional.

[0104] (2-10) Operation of the measurement system The measurement system 1 operates, for example, according to the flowcharts shown in Figures 4 and 5. The processing in these flowcharts begins when the processing unit 4 is powered on and ends when it is powered off.

[0105] (2-10-1) Overall operation The processing unit 12, which constitutes the measurement system 1, determines whether or not an electrical device (33A, 33) has been connected to the EV outlet 32A (step S1). If the electrical device (33A, 33) has not yet been connected to the EV outlet 32A, the process returns to step S1.

[0106] When an electrical device (33A, 33) is connected to the EV outlet 32A, the acquisition unit 122 acquires device information from the electrical device (33A, 33) via power line communication through the power lines (41A, 42A) (step S2).

[0107] Next, the acquisition unit 122 measures the amount of power supplied to the electrical equipment (33A, 33) from the power supply unit (one branch circuit breaker) 31A (step S3). In step S3, time information is also acquired from the processor's built-in clock, etc.

[0108] Next, the output unit 13 uses the equipment information acquired in step S2 to perform a separate output of the measurement results from the measurement unit 121 in step S3 (step S4). The separate output will be explained using the flowchart in Figure 5.

[0109] Next, the processing unit 12 determines whether the connection of the electrical equipment (33A, 33) to the EV outlet 32A has been disconnected (step S5). If the connection has not yet been disconnected, the process returns to step S3. If the connection has been disconnected, the process returns to step S1.

[0110] Of the above processes (steps S1 to S5), the loop process in steps S3 to S5 is executed at a predetermined interval (for example, every second).

[0111] (2-10-2) Sorting The sorting process in step S4 above is performed, for example, according to the flowchart in Figure 5.

[0112] The sorting process shown in Figure 5 corresponds to the case where the measurement system 1 makes various judgments (first judgment and second judgment) based on equipment information obtained from the electrical equipment (33A, 33) and obtains sorting information, etc. The sorting process when sorting information is included in the equipment information obtained from the electrical equipment (33A, 33) and the measurement system 1 does not make various judgments will be explained in a modified example.

[0113] The determination unit 123, which constitutes the processing unit 12, determines whether the electrical equipment (33A, 33) connected to the EV outlet 32A is an EV33A (first determination: step S41). If it is determined that the electrical equipment (33A, 33) is not an EV33A, the process proceeds to step S46 (described later).

[0114] If the electrical equipment (33A, 33) is determined to be EV33A in step S41, the output unit 13 stores the measurement result of the measurement unit 121 in step S3, associating it with at least one of the classification information "EV" and the vehicle identification information (step S42). Specifically, the stored measurement result may be associated with only the classification information "EV", or it may be associated with the classification information "EV" and the vehicle identification information included in the equipment information (EV equipment information) acquired in step S2. Alternatively, the stored measurement result may not be associated with the classification information "EV", but rather with, for example, the vehicle identification information and the time information acquired in step S2.

[0115] Next, the determination unit 123 determines whether or not power is being supplied to the electrical equipment (33A, 33) based on the measurement results of the measurement unit 121 in step S3 (the most recent measurement result and past measurement results stored in memory) (second determination: step S43).

[0116] If it is determined in step S43 that power is being supplied, the output unit 13 transmits the EV charging status information "EV charging" (step S44). After this sorting process, the process returns to a higher level (see Figure 4).

[0117] If it is determined in step S43 that power is not being supplied, the output unit 13 transmits, for example, EV charging status information "EV charging complete" (step S45). After this sorting process, the system returns to a higher-level process (see Figure 4).

[0118] If, in step S41 described above, it is determined that the electrical equipment (33A, 33) is not an EV33A, the output unit 13 performs non-EV processing (step S46). Non-EV processing is, for example, a process of associating the classification information "non-EV" with the measurement result and saving it, but it may also be a process of discarding the measurement result (see modified example). After this classification process, the process returns to a higher-level process (see Figure 4).

[0119] (3) Variant In this modified example, the equipment information obtained from the electrical equipment (33A, 33) includes the classification information described above. Therefore, the measurement system 1 does not need to determine whether the electrical equipment (33A, 33) is EV33A or not EV33.

[0120] The measurement system 1 in this modified example has a configuration in which the determination unit 123 is removed from the measurement system 1 in the above-described embodiment (see Figure 3).

[0121] In this modified example, the output unit 13 stores (separately stores) the measurement results from the measurement unit 121 in association with at least the sorting information from the equipment information acquired by the acquisition unit 122.

[0122] In this way, by including sorting information in the equipment information provided from the electrical equipment (33A, 33) to the measurement system 1, sorting and storage can be achieved without the measurement system 1 having to determine whether or not it is an EV33A.

[0123] In this modified example, among the equipment information obtained from the electrical equipment (33A, 33), the EV equipment information obtained from EV33A further includes vehicle identification information in addition to classification information. The EV equipment information further includes at least one of vehicle type information and charging specification information.

[0124] Therefore, the output unit 13 may store the measurement results from the measurement unit 121 in association with the equipment information acquired by the acquisition unit 122.

[0125] The overall operation of the measurement system in this modified example is the same as that shown in Figure 4. However, the sorting output in step S4 is different from that in Figure 5. In the sorting output in this modified example, no various judgments (first judgment and second judgment) are made, and at least a portion of the equipment information acquired in step S2 (for example, sorting information and vehicle identification information) is output (saved, transmitted, etc.) in association with the measurement results of the measurement unit 121 in step S3.

[0126] As a result, measurement results related to EV33A are stored with associated classification information such as "EV" and vehicle identification information. Measurement results related to non-EV33 are stored with associated classification information such as "non-EV". Therefore, it becomes possible to identify vehicles and classify AV charging specifications among multiple EV33A vehicles.

[0127] Furthermore, the device information obtained from the EV33A may also include EV charging status information. This allows us to determine the EV's power supply status.

[0128] According to this modified version, sorting and output can be performed without the measurement system 1 making any decisions.

[0129] (4) Other variations (4-1) Modifications regarding the arrangement of processing units In this embodiment, the processing unit 4 is housed in box 3A of the distribution board 3, but it may also be attached to a cover 3B that covers the front of box 3A, or built into a branch breaker 31A. The processing unit 4 may be located anywhere within the distribution board 3, or it may be a separate unit from the distribution board 3.

[0130] (4-2) Modifications relating to the communication functions of electrical equipment In this embodiment, the electrical equipment (33A, 33) has a communication module for power line communication, but electrical equipment that does not have this type of communication module may be connected to the EV outlet 32A. In this case, since no information is acquired by the acquisition unit 122, the determination unit 123 can determine that the electrical equipment is not an EV 33.

[0131] In this embodiment, separate storage involved associating the measurement results with the storage of the separate information. However, for example, a first storage area for EV33A and a second storage area for non-EV33 could be defined in the memory, and the measurement results could be stored in the first or second storage area according to the separate information.

[0132] (4-3) Variations of information regarding sorting The aforementioned classification information, that is, the classification information for differentiating between EV33A and non-EV33 measurement results, is the "first classification information," and the aforementioned vehicle identification information, vehicle type information, and charging specification information may be the "second classification information" for differentiating between multiple EV33A vehicles (hereinafter simply referred to as "between EV33A vehicles"). Note that vehicle identification information does not have to be included in the second classification information.

[0133] When EV33A is connected to EV outlet 32A and EV equipment information is obtained from EV33A, the output unit 13 may output the measurement results of the measurement unit 121 in a manner that allows for differentiation among EV33A based on the second differentiation information contained in the EV equipment information. Outputting the measurement results in a manner that allows for differentiation among EV33A may also be done, for example, by associating the second differentiation information with the measurement results and outputting them (e.g., saving, transmitting, etc.).

[0134] (4-4) Modifications regarding the determination of whether or not an EV is charging The determination of whether or not power is being supplied to an EV33A (EV charging) may be made by determining, for example, whether or not power is being supplied to a specific EV33A among multiple EV33A units. For example, if the memory stores vehicle identification information for a specific EV, and the acquired equipment information includes the same vehicle identification information as the stored information, and the measurement result from the measurement unit 121 increases over time, the determination unit 123 will determine that power is being supplied to the specific EV33A.

[0135] If the vehicle identification information included in the acquired equipment information differs from the stored vehicle identification information, it is determined that power is being supplied to a different EV33A. In this case, the output unit 13 may output information indicating that power is being supplied to a different EV33A (for example, warning information such as "Charging an unregistered EV").

[0136] (4-5) Variations regarding the source of charging status information In this embodiment, the determination unit 123 uses the equipment information (EV equipment information) obtained from the electrical equipment (33A, 33) and the measurement results of the measurement unit 121 to determine whether or not power is being supplied to the EV33A and to obtain charging status information. However, for example, the EV33A may include the charging status information in the EV equipment information and provide it to the measurement system 1. In this case, the output unit 13 may output (transmit, display, output audio, etc.) the charging status information included in the EV equipment information obtained from the EV33A. This allows the measurement system 1 to output charging status information without making any decisions regarding EV charging.

[0137] (5) Measurement method and program The same functions as those of the measurement system 1 according to this embodiment may be embodied in a measurement method, a (computer) program, or a non-temporary recording medium on which the program is recorded. The measurement method includes at least step S3 (measurement step), step S2 (acquisition step), and step S4 (output step) from among the various steps described above. The program is a program that causes one or more processors to execute the above measurement method. The one or more processors may be the processor of the processing unit 4 alone, or they may include the processor of the server 300, or they may further include the processors of the electrical equipment (33A, 33) and the processor of the terminal device 5.

[0138] (6) Summary A measurement system (1) according to a first aspect of this disclosure comprises a measurement unit (121), an acquisition unit (122), and an output unit (13). The measurement unit (121) measures the amount of power supplied from a power supply unit (31A) to electrical equipment (33A, 33) connected to an EV outlet (32A). The acquisition unit (122) acquires equipment information relating to the electrical equipment (33A, 33) from the electrical equipment (33A, 33). The output unit (13) uses the equipment information to output the measurement results of the measurement unit (121) in a manner that can be separated into at least the measurement results for EV (33A) and the measurement results for non-EV (33). Non-EV (33) refers to electrical equipment (33) other than the EV (33A).

[0139] According to this embodiment, by outputting the measurement results in a way that allows them to be separated into those for EV(33A) and those for non-EV(33), the measurement results can be utilized (for example, for use in specific electricity transactions).

[0140] In the measurement system (1) according to the second embodiment, in the first embodiment, the acquisition unit (122) acquires the equipment information by power line communication via power lines (41A, 42A). The power lines (41A, 42A) are electric wires that run from the power supply (31A) through the EV outlet (32A) to the electrical equipment (33A, 33).

[0141] According to this embodiment, by communicating via power lines (41A, 42A), the source of the equipment information can be limited to electrical equipment (33A, 33) connected to the EV outlet (32A). Furthermore, by utilizing existing power lines (41A, 42A), costs can be reduced compared to using wired communication or wireless communication other than power lines (41A, 42A).

[0142] In the measurement system (1) according to the third embodiment, in the second embodiment, the power supply (31A) is one of the branch breakers (31A, 31) among a plurality of branch breakers (31A, 31). The plurality of branch breakers (31A, 31) together with the main breaker (30) constitute a distribution board (3). The power lines (41A, 42A) are connected to one branch line (40A, 40a) that leads to the aforementioned branch breaker (31A), out of a plurality of branch lines (40A, 40a) that branch off from the main line (40) on the secondary side of the main breaker (30) and lead to the plurality of branch breakers (31A, 31). The aforementioned branch line (40A) is provided with a filter (50) for preventing interference between the branch lines (40A, 40a).

[0143] According to this embodiment, interference between the branch lines (40A, 40a) can be avoided by installing a filter (50) on one of the branch lines (40A, 40a) to which the power lines (41A, 42A) are connected.

[0144] In the measurement system (1) according to the fourth embodiment, in any of the first to third embodiments, the EV equipment information relating to EV(33A) among the equipment information includes at least one of vehicle type information and EV charging specification information. The vehicle type information is information relating to the vehicle type. The EV equipment information is information relating to the specifications of EV charging. The measurement system (1) further comprises a determination unit (123). The determination unit (123) uses the equipment information to determine whether the electrical equipment (33A, 33) is an EV(33A) or not, and acquires classification information. The classification information is information that classifies the electrical equipment (33A, 33) into EV(33A) and non-EV(33).

[0145] According to this embodiment, by determining whether or not it is an EV (33A) based on equipment information which may include vehicle type information and / or EV charging specification information, and obtaining classification information, it is possible to achieve classified output even if the equipment information from the electrical equipment (33A, 33) does not include classification information.

[0146] In the measurement system (1) according to the fifth embodiment, in the fourth embodiment, the output unit (13) stores the measurement results in association with the classification information.

[0147] According to this embodiment, the measurement results are stored in association with classification information (i.e., the measurement results are stored even when the electrical equipment (33A, 33) is not EV (33)). Such separate storage allows for the retrospective use of the measurement results. For example, the measurement results can be used for specific electricity transactions.

[0148] In the measurement system (1) according to the sixth embodiment, in the fourth embodiment, the output unit (13) saves the measurement result only when the determination unit (123) determines that the electrical equipment (33A, 33) is EV (33A).

[0149] According to this embodiment, measurement results are saved only when the electrical equipment (33A, 33) is an EV (33A). This EV-only saving allows for the retrospective use of measurement results related to EV (33A). For example, the measurement results related to EV (33A) can be used for specific electricity transactions.

[0150] In the measurement system (1) according to the seventh embodiment, in the sixth embodiment, the EV equipment information further includes vehicle identification information. The vehicle identification information is information that identifies the vehicle. The output unit (13) stores the measurement results in association with the vehicle identification information.

[0151] According to this embodiment, the EV equipment information includes vehicle identification information, and the measurement results are stored in association with the vehicle identification information. Therefore, even if there are multiple EVs (33A), the measurement results related to each EV (33A) can be used retrospectively. For example, the measurement results related to each EV (33A) can be used for specific electricity transactions.

[0152] In the measurement system (1) according to the eighth embodiment, in any of the fourth to seventh embodiments, the determination unit (123) uses the equipment information and the measurement results to determine whether or not power is being supplied to the EV (33A). The output unit (13) further outputs the determination result of the determination unit (123).

[0153] According to this configuration, since the device information is used to determine whether or not power is being supplied to the EV (33A), the measurement results can be utilized in real time. For example, the user can determine whether or not power is being supplied to the EV (33A) without visually inspecting the electrical equipment (33A, 33) connected to the EV outlet (32A) (specifically, whether or not the EV (33A) is connected, and if the EV (33A) is connected, whether it is charging or charging is complete, etc.).

[0154] In the measurement system (1) according to the ninth embodiment, the output unit (13) transmits the determination result, as in the eighth embodiment.

[0155] In this configuration, the determination result is transmitted, so it is possible to determine remotely whether or not power is being supplied to the EV(33A).

[0156] In the measurement system (1) according to the tenth embodiment, in any of the first to third embodiments, the equipment information includes classification information. The classification information is information that classifies electrical equipment (33A, 33) into EV (33A) and non-EV (33). The output unit (13) stores the measurement results in association with at least the classification information from the equipment information.

[0157] In this embodiment, the equipment information includes sorting information, and the measurement results are stored in association with the sorting information (that is, the measurement results are stored even when the electrical equipment (33A, 33) is not EV (33)). In this way, by including sorting information in the equipment information from the electrical equipment (33A, 33), sorting and storage can be achieved without the measurement system (1) having to determine whether or not it is EV (33A).

[0158] In the measurement system (1) according to the 11th embodiment, in the 10th embodiment, the EV equipment information relating to the EV (33A) among the equipment information further includes vehicle identification information. The vehicle identification information is information that identifies the vehicle. The output unit (13) stores the measurement results in association with the equipment information.

[0159] According to this embodiment, since the EV equipment information among the equipment information includes vehicle identification information, even if there are multiple EV(33A) vehicles, the measurement results related to EV(33A) can be used retrospectively. For example, the measurement results related to specific electricity transactions for multiple EV(33A) vehicles can be used.

[0160] In the measurement system (1) according to the twelfth embodiment, in the first embodiment, the measurement unit (121), the acquisition unit (122), and the output unit (13) are housed in the box (3A) of the distribution board (3).

[0161] According to this embodiment, each component (12, 122, 13) of the measurement system (1) is housed in the box (3A) of the distribution board (3), and the measurement results can be utilized through the separate output performed by the distribution board (3).

[0162] The distribution board (3) according to the 13th embodiment comprises a measuring unit (121), an acquisition unit (122), and an output unit (13). The measuring unit (121) measures the amount of power supplied from the power supply unit (31A) to the electrical equipment (33A, 33) connected to the EV outlet (32A). The acquisition unit (122) acquires equipment information related to the electrical equipment (33A, 33) from the electrical equipment (33A, 33). The output unit (13) uses the equipment information to output the measurement results of the measuring unit (121) in a manner that can be separated into at least the measurement results for EV (33A) and the measurement results for non-EV (33). Non-EV (33) refers to electrical equipment (33) other than EV (33A).

[0163] According to this embodiment, the measurement results can be utilized because they are output separately by the distribution board (3).

[0164] The measurement method according to the 14th embodiment includes a measurement step (S3), an acquisition step (S2), and an output step (S4). In the measurement step (S3), the amount of power supplied from the power supply (31A) to the electrical equipment (33A, 33) connected to the EV outlet (32A) is measured. In the acquisition step (S2), equipment information relating to the electrical equipment (33A, 33) is acquired from the electrical equipment (33A, 33). In the output step (S4), the measurement results of the measurement step (S3) are output using the equipment information in a manner that can be separated into at least the measurement results for EV (33A) and the measurement results for non-EV (33). Non-EV (33) refers to electrical equipment (33) other than EV (33A).

[0165] According to this embodiment, the measurement results can be utilized through separate output.

[0166] The program according to the 15th embodiment causes one or more processors to execute the measurement method according to the 14th embodiment.

[0167] According to this embodiment, the measurement results can be utilized through separate output. [Explanation of Symbols]

[0168] 1. Measurement System 11 Reception Department 12 Processing Units 121 Measurement Unit 122 Acquisition Department 123 Judgment Department 13 Output section 3 Distribution board 30 Main circuit breaker 31,31A Branch Circuit Breaker 40 main line 40a, 40A branch line 3A Box 4 Processing Units 32 Wiring devices 32A EV outlet (wiring device) 33 Electrical equipment 33A EV (Electrical Equipment) 41,41A First wiring 42,42A Second wiring 50 filters

Claims

1. A measuring unit that measures the amount of power supplied from a power supply to electrical equipment connected to an EV outlet, An acquisition unit that acquires equipment information from the aforementioned electrical equipment, which includes type information relating to the type of the electrical equipment, The system includes an output unit that uses the aforementioned equipment information to output the measurement results from the measurement unit in a manner that allows them to be separated into at least measurement results for EVs and measurement results for non-EV electrical equipment other than EVs. Measurement system.

2. The acquisition unit acquires the equipment information via power line communication through the power line from the power supply to the EV outlet and then to the electrical equipment. The measurement system according to claim 1.

3. The aforementioned power supply is one of several branch circuit breakers that make up the distribution board together with the main circuit breaker. The aforementioned power line is connected to one of the branch lines that branch off from the main line on the secondary side of the main circuit breaker and lead to the aforementioned branch circuit breakers, specifically to one of the branch lines that leads to the aforementioned branch circuit breaker. The aforementioned branch line is equipped with a filter to prevent interference between branch lines. The measurement system according to claim 2.

4. Of the aforementioned equipment information, the EV equipment information relating to the EV includes at least one of the aforementioned type information: vehicle type information relating to the vehicle type and EV charging specification information relating to the specifications of EV charging. The system further includes a determination unit that uses the aforementioned equipment information to determine whether the electrical equipment is an EV or not, and acquires classification information to classify the electrical equipment into EVs and non-EVs. The measurement system according to any one of claims 1 to 3.

5. The output unit stores the measurement results in association with the classification information. The measurement system according to claim 4.

6. The output unit saves the measurement result only when the determination unit determines that the electrical device is an EV. The measurement system according to claim 4.

7. The aforementioned EV equipment information further includes vehicle identification information that identifies the vehicle body, The output unit stores the measurement results in association with the vehicle identification information. The measurement system according to claim 6.

8. The determination unit uses the equipment information and the measurement results to determine whether or not power is being supplied to the EV. The output unit further outputs the result of the determination unit's determination. The measurement system according to any one of claims 4-7.

9. The output unit transmits the determination result. The measurement system according to claim 8.

10. The equipment information includes classification information that classifies the electrical equipment into EVs and non-EVs. The output unit stores the measurement results in association with at least the classification information from the equipment information. The measurement system according to any one of claims 1 to 3.

11. The EV equipment information among the aforementioned equipment information further includes vehicle identification information that identifies the vehicle body, The output unit stores the measurement results in association with the instrument information. The measurement system according to claim 10.

12. The measurement unit, the acquisition unit, and the output unit are housed in a box within the distribution board. The measurement system according to claim 1.

13. A measuring unit that measures the amount of power supplied from a power supply to electrical equipment connected to an EV outlet, An acquisition unit that acquires equipment information from the aforementioned electrical equipment, which includes type information relating to the type of the electrical equipment, The system includes an output unit that uses the aforementioned equipment information to output the measurement results from the measurement unit in a manner that allows them to be separated into at least measurement results for EVs and measurement results for non-EV electrical equipment other than EVs. Distribution board.

14. A measurement step to measure the amount of power supplied from the power supply to an electrical device connected to the EV outlet, An acquisition step of acquiring equipment information from the electrical equipment, which includes type information relating to the type of electrical equipment, The output step includes outputting the measurement results of the measurement step in a manner that allows them to be separated into at least measurement results for EVs and measurement results for non-EVs, which are electrical devices other than EVs, using the aforementioned device information. Measurement method.

15. To cause one or more processors to execute the measurement method described in claim 14, program.

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