WO2015019744A1 - みなし消費量計算システム、サーバ、みなし消費量計算方法およびプログラムを記録したコンピュータ読み取り可能な記録媒体 - Google Patents
みなし消費量計算システム、サーバ、みなし消費量計算方法およびプログラムを記録したコンピュータ読み取り可能な記録媒体 Download PDFInfo
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- 238000004364 calculation method Methods 0.000 title claims abstract description 235
- 238000005265 energy consumption Methods 0.000 claims description 115
- 238000000034 method Methods 0.000 claims description 24
- 238000004378 air conditioning Methods 0.000 abstract description 5
- 238000001816 cooling Methods 0.000 description 96
- 230000009471 action Effects 0.000 description 15
- 230000008569 process Effects 0.000 description 8
- 230000005540 biological transmission Effects 0.000 description 7
- 238000004891 communication Methods 0.000 description 7
- 238000004590 computer program Methods 0.000 description 7
- 238000012545 processing Methods 0.000 description 7
- 230000006870 function Effects 0.000 description 6
- 238000005259 measurement Methods 0.000 description 4
- 238000010586 diagram Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000004134 energy conservation Methods 0.000 description 1
- 238000005286 illumination Methods 0.000 description 1
- 239000004973 liquid crystal related substance Substances 0.000 description 1
- 230000007246 mechanism Effects 0.000 description 1
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05F—SYSTEMS FOR REGULATING ELECTRIC OR MAGNETIC VARIABLES
- G05F1/00—Automatic systems in which deviations of an electric quantity from one or more predetermined values are detected at the output of the system and fed back to a device within the system to restore the detected quantity to its predetermined value or values, i.e. retroactive systems
- G05F1/66—Regulating electric power
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05B—CONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
- G05B15/00—Systems controlled by a computer
- G05B15/02—Systems controlled by a computer electric
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q50/00—Information and communication technology [ICT] specially adapted for implementation of business processes of specific business sectors, e.g. utilities or tourism
- G06Q50/06—Energy or water supply
Definitions
- the present invention relates to a technique for calculating the amount of energy consumed that is considered to be consumed by an individual in a shared space.
- energy consumption Measured and measured energy consumed in homes, buildings, office floors, etc. (hereinafter referred to as energy consumption) in order to promote actions that people perform to save energy (hereinafter referred to as energy-saving actions)
- energy-saving actions A mechanism to display (visualize) energy consumption is provided.
- Patent Document 1 discloses an energy consumption display system for easily grasping the energy consumption for each energy usage act.
- the energy consumption display system disclosed in Patent Document 1 calculates an individual's energy consumption by measuring who has used each utility (home appliance) for how long.
- Patent Document 2 discloses energy consumption management that manages the amount of energy consumed in one or more unit management spaces used by a plurality of consumers, and performs fair charging based on the amount of energy consumed by each individual consumer.
- a system is disclosed.
- the energy consumption management system disclosed in Patent Literature 2 determines whether each user is in a unit management space (room / area) to be managed by a known technique such as a card reader or video analysis.
- the energy consumption management system disclosed in Patent Document 2 divides the amount of power consumed in a unit management space in a certain time (power consumption amount) by the number of consumers in the unit management space during the certain time. Then, the power consumption of each individual is calculated.
- Patent Document 3 discloses an energy saving support system that acquires an individual usage status of an electric device and presents the acquired usage status to a user.
- Patent Document 4 discloses an action time ratio calculation apparatus that presents action guidelines for energy saving while maintaining a user's action pattern.
- Patent Document 5 discloses an energy saving support system that provides support so that energy saving results can be obtained.
- the energy saving support system disclosed in Patent Literature 5 improves the individual's awareness of energy saving by clarifying what each individual such as an employee should do for energy saving and the result of the energy saving.
- Patent Document 6 discloses an energy consumption management device that manages the consumption state of energy resources for each user who uses equipment at a predetermined office.
- the energy consumption management system described in Patent Document 2 calculates the power consumption for each user in the unit management space by a simple equal number of people. Therefore, the number of users who selected an energy-saving space [Example: Room with high cooling temperature (lightly-cooled room)] selects a space that is not energy-saving space [Example: Room with low cooling temperature (highly-cooled room)]. If the number of users is larger than the number of users, it may be calculated that the power consumption per user of the user who selected the energy saving space is larger than the power consumption per user of the user who uses the non-energy saving space. . Then, the user who worked on energy saving consumed power more than the user who did not work on energy saving. This is an unfair result for a user who has worked on energy saving, and a user who has worked on energy saving cannot get a sense of satisfaction. Therefore, the user may not save energy.
- Patent Document 1 cannot originally calculate individual energy consumption for a plurality of users at the same time such as air conditioning and lighting.
- the present invention has been made in view of the above-described circumstances, and an object of the present invention is to calculate a non-consumed consumption for each user who can be satisfied with a user who has performed an energy saving action in a shared space that can be used simultaneously by a plurality of users. To do.
- the deemed consumption calculation system is: A device that is provided for each shared space that can be used simultaneously by a plurality of users, has a different energy consumption, a sensor that detects a user entering or leaving the shared space, and a server that is connected to the device and the sensor via a network
- a deemed consumption calculation system comprising: The server An energy consumption information receiving unit that receives energy consumption information indicating the energy consumption per unit time from the device; An entrance / exit information receiving unit that receives entrance / exit information indicating entry / exit from the sensor into the shared space of the user, A storage unit that stores calculation method information indicating a calculation method for calculating the amount of energy consumption per unit time per user in the shared space as a consumption amount; Based on the calculation method information and the entrance / exit information, the user who entered the energy-saving space, which is the shared space where the device has a smaller amount of energy consumption than the device provided in any of the shared spaces.
- the deemed consumption is smaller than the deemed consumption of a user who has entered a non-energy-saving space that is the shared space where the device is provided with a larger amount of energy consumption than the device provided in the energy-saving space.
- a calculation method determination unit for determining a calculation method of the deemed consumption Based on the entrance / exit information and the energy consumption information, the assumed consumption calculation unit that calculates the deemed consumption of the user by the calculation method determined by the calculation method determination unit; It is characterized by providing.
- the server is: A server connected via a network to a device with different energy consumption provided for each shared space that can be used simultaneously by a plurality of users, and a sensor that detects the user entering and exiting the shared space, An energy consumption information receiving unit that receives energy consumption information indicating the energy consumption per unit time from the device; An entrance / exit information receiving unit that receives entrance / exit information indicating entry / exit from the sensor into the shared space of the user, A storage unit that stores calculation method information indicating a calculation method for calculating the amount of energy consumption per unit time per user in the shared space as a consumption amount; Based on the calculation method information and the entrance / exit information, the user who entered the energy-saving space, which is the shared space where the device has a smaller amount of energy consumption than the device provided in any of the shared spaces.
- the deemed consumption is smaller than the deemed consumption of a user who has entered a non-energy-saving space that is the shared space where the device is provided with a larger amount of energy consumption than the device provided in the energy-saving space.
- a calculation method determination unit for determining a calculation method of the deemed consumption Based on the entrance / exit information and the energy consumption information, the assumed consumption calculation unit that calculates the deemed consumption of the user by the calculation method determined by the calculation method determination unit; It is characterized by providing.
- the deemed consumption calculation method is: A server connected by a network to a device that is provided for each shared space that can be used simultaneously by a plurality of users and that has a different energy consumption, and a sensor that detects the user's entry into and exit from the shared space, is executed.
- Energy consumption amount information receiving step for receiving energy consumption amount information indicating the amount of energy consumption per unit time from the device; Entry / exit information reception step for receiving entry / exit information indicating entry / exit from the sensor into the shared space of the user; Based on the calculation method information indicating the calculation method for calculating the amount of energy consumed per unit time per user in the shared space as the amount of consumption and the entrance / exit information, provided in any of the shared spaces
- a computer-readable recording medium is provided.
- a computer connected via a network to a device with different energy consumption provided for each shared space that can be used simultaneously by a plurality of users, and a sensor that detects a user's entry into and exit from the shared space,
- An energy consumption amount information receiving unit for receiving energy consumption amount information indicating the amount of energy consumption per unit time from the device;
- An entrance / exit information receiving unit that receives entrance / exit information indicating entry / exit from the sensor into the shared space of the user,
- a storage unit for storing calculation method information indicating a calculation method for calculating the amount of energy consumed per unit time per user in the shared space as a consumption amount; Based on the calculation method information and the entrance / exit information, the user who entered the energy-saving space, which is the shared space where the device has a smaller amount of energy consumption than the device provided in any of the shared spaces.
- the deemed consumption is smaller than the deemed consumption of a user who has entered a non-energy-saving space that is the shared space where the device is provided with a larger amount of energy consumption than the device provided in the energy-saving space.
- a calculation method determination unit for determining a calculation method of the deemed consumption Based on the entrance / exit information and the energy consumption information, the assumed consumption calculation unit that calculates the assumed consumption of the user by the calculation method determined by the calculation method determination unit; It is characterized by recording a program for making it function as.
- the present invention in a shared space that can be used simultaneously by a plurality of users, it is possible to calculate the consumption amount only for each user who can be satisfied with the user who performed the energy saving action.
- the deemed consumption calculation system 100 includes a server 1, an air conditioner 2A, an air conditioner 2B, a sensor 3A, and a sensor 3B.
- Server 1, air conditioner 2A, air conditioner 2B, sensor 3A, and sensor 3B are connected to each other via a network.
- the air conditioner 2A and the air conditioner 2B adjust the indoor environment such as temperature and humidity.
- the air conditioner 2A and the air conditioner 2B generate power consumption information (energy consumption information) indicating the power consumption (energy consumption) per unit time and transmit it to the server 1.
- power consumption information energy consumption information
- FIG. 1 there are a weak cooling room (a room with a high cooling temperature setting) and a strong cooling room (a room with a low cooling temperature setting), and the weak cooling room and the strong cooling room are respectively connected to an air conditioner 2A and an air conditioner 2B.
- the weak cooling room is an energy saving space
- the strong cooling room is a non-energy saving space (a space that is not an energy saving space).
- Each of the sensors 3A and 3B includes an IC (Integrated Circuit) tag reader, reads information (hereinafter referred to as user identification information) for identifying the user from an IC tag possessed by the user using the IC tag reader, and enters and exits the user. Is detected.
- the sensors 3 ⁇ / b> A and 3 ⁇ / b> B generate user information in which user identification information and entry / exit information indicating user entry / exit are associated with each other, and transmit the user information to the server 1.
- the sensor 3A is installed in the weak cooling room
- the sensor 3B is installed in the strong cooling room.
- the server 1 enters the weak cooling room based on the power consumption information (energy consumption information) received from the air conditioners 2A and 2B and the user information received from the sensors 3A and 3B (weak).
- Calculation mode of power consumption per unit time (deemed consumption) per user (selected cooling room) and power consumption per unit time (deemed consumption) per user who entered the strong cooling room (Calculation method) is determined.
- the server 1 determines the calculation mode of the deemed consumption so that the consumption of only the user who has entered the weak cooling room is smaller than the consumption of only the user who has entered the strong cooling room.
- the server 1 calculates the user-only consumption amount in the determined calculation mode, and outputs (visualizes) the calculated deemed consumption amount.
- the server 1 shown in FIG. 2 includes a power consumption information receiving unit (energy consumption information receiving unit) 11, a user information receiving unit (entrance / exit information receiving unit) 12, a storage unit 13, and a mode determining unit (calculation method determining unit). 14.
- a deemed consumption calculation unit (deemed consumption calculation unit) 15 and a deemed consumption output unit 16 are provided.
- the power consumption information receiving unit 11 receives power consumption information indicating the power consumption consumed by the air conditioner 2A and the air conditioner 2B from the air conditioner 2A and the air conditioner 2B, respectively. Then, the power consumption information receiving unit 11 stores the received power consumption information in the storage unit 13.
- the user information receiving unit 12 receives user information indicating entry / exit of the user into the weak cooling room and entry / exit into the strong cooling room from the sensor 3A and the sensor 3B.
- the user information receiving unit 12 stores the received user information in the storage unit 13.
- the storage unit 13 stores in advance mode information (calculation method information) indicating a calculation mode (calculation method) of deemed consumption.
- the storage unit 13 stores power consumption information supplied from the air conditioner 2A and the air conditioner 2B and user information supplied from the sensors 3A and 3B.
- the mode determining unit 14 determines the deemed consumption calculation mode based on the user information and the mode information stored in the storage unit 13. At this time, the mode determination unit 14 determines the calculation mode so that the consumption amount of the user who has entered the weak cooling room is smaller than the consumption amount of the user who has entered the strong cooling room. The mode determination unit 14 regards mode information indicating the determined calculation mode and sends it to the consumption calculation unit 15.
- the deemed consumption calculation unit 15 calculates the consumption amount without a user in the calculation mode indicated by the mode information received from the mode determination unit 14 based on the user information and the power consumption information stored in the storage unit 13. calculate.
- the deemed consumption calculation unit 15 sends deemed consumption information indicating the calculated deemed consumption to the deemed consumption output unit 16.
- the deemed consumption output unit 16 outputs the deemed consumption information received from the deemed consumption calculation unit 15.
- the output method of the deemed consumption information may be, for example, a method in which the deemed consumption output unit 16 transmits the deemed consumption information to the user's terminal via the network, or the deemed consumption information is displayed on the screen of the server 1. A method of displaying information may be used. Further, the deemed consumption information output method may be a method in which the deemed consumption output unit 16 outputs a sound indicating the deemed consumption.
- the deemed consumption calculation unit 15 may store the deemed consumption information in the storage unit 13. In this case, the user can browse the deemed consumption information by accessing the server 1 in order to know the deemed consumption. Further, the deemed consumption output unit 16 may output not only the deemed consumption information but also calculation mode information indicating the calculation mode determined by the mode determination unit 14.
- the method for determining the calculation mode of deemed consumption will be specifically described with reference to FIGS.
- the total number of users is 10
- the power consumption per unit time in the weak cooling room is 7 kWh
- the power consumption per unit time in the strong cooling room is 10 kWh.
- the deemed consumption calculation unit 15 calculates the power consumption per unit time of each room as the number of users in the room. Divide by to calculate deemed consumption.
- the calculation formula of the first mode is 7 (kWh) ⁇ number of users (persons) in the weak cooling room in the case of the weak cooling room. In the case of a strong cooling room, 10 (kWh) ⁇ the number of users (persons) in the strong cooling room.
- the number of users in the weak cooling room is less than half of the total number of users who selected the weak cooling room and the number of users who selected the strong cooling room (total number of users)
- the amount of consumption only by the user who selected the weak cooling room that is the energy saving action exceeds the amount of consumption by the user who selected the strong cooling room that is not the energy saving action.
- the number of users in the weak cooling room is one and the number of users in the strong cooling room is nine, only the users in the weak cooling room have a consumption of 7. While it is 00 kWh, the consumption amount of only the user in the strong cooling room is 1.11 kWh.
- the only consumption of the user who has entered the weak cooling room for energy saving is reduced to the strong cooling room. Exceeded consumption of users who entered the room.
- a user who has entered a weak cooling room is considered to have consumed more power than a user who has not performed an energy saving action (a user who has entered a strong cooling room) despite having performed an energy saving action.
- the user who has entered the weak cooling room cannot obtain a satisfactory feeling. Therefore, a second mode (second calculation method) is prepared.
- the consumption amount of only the user who has entered the weak cooling room is 1.40 kWh regardless of the number of users who have entered the weak cooling room. This value is based on the assumption that the power consumption per unit time of the strong cooling room is 7 kWh, which is the same as the power consumption per unit time of the weak cooling room.
- the total amount of power consumption is a value obtained by dividing the total number of users who entered the weak cooling room and the users who entered the strong cooling room.
- the consumption amount of only the user who entered the strong cooling room can be obtained by the following procedure. First, the product of the consumption of only users who have entered the weak cooling room and the number of users who have entered the weak cooling room (the sum of the consumption of only users who have entered the weak cooling room) is obtained. Next, the total power consumption (total energy consumption) in the weak cooling room and the strong cooling room is the value obtained by subtracting the total consumption of only users who are in the weak cooling room (only consumption of users who are in the strong cooling room) Total amount). Then, a value obtained by dividing the total consumption of only users who are in the strong cooling room by the number of users who are in the strong cooling room is obtained. The value obtained in this way is the consumption amount only for the user who entered the strong cooling room.
- the calculation formula for the second mode is (7 + 7) (kWh) ⁇ total number of users (persons) in the case of a weak cooling room.
- the consumption of only the user who has selected the weak cooling room is determined as the strong cooling room regardless of the number of users who have selected the weak cooling room. It becomes smaller than the consumption of only the selected user. Therefore, even if the number of users who selected the weak cooling room is less than half of the total number of users, there is only the user who selected the weak cooling room for energy saving. Below consumption.
- the consumption amount of only the user who has selected the weak cooling room determined by the calculation formula of the second mode is that of the first mode. It becomes larger than the amount of consumption (value in parentheses shown in FIG. 4) of the user who has selected the weak cooling room determined by the calculation formula. That is, the consumption amount of only the user who has selected the weak cooling room is larger than the amount of power actually consumed in the weak cooling room per user. This reduces the user's willingness to save energy.
- the number of users who have selected the weak cooling room is less than half of the total number of users and It is necessary to switch the calculation mode when it exceeds half of the total number of people.
- the mode determination unit 14 selects the weak cooling room so that the consumption amount of the user who has selected the weak cooling room, which is an energy saving action, is always smaller than the consumption amount of the user who has selected the strong cooling room.
- the second mode is regarded as the consumption calculation mode.
- the mode determination unit 14 regards the first mode and determines the consumption calculation mode.
- the mode determination unit 14 regards the first mode as the consumption calculation mode, and selects the strong cooling room.
- the second mode is regarded as the consumption calculation mode.
- the server 1 executes a deemed consumption calculation process when the server 1 is powered on.
- the user information receiving unit 12 determines whether user information has been received from the sensor 3A or the sensor 3B (step S11). When it is determined that user information has not been received (step S11; NO), the user information receiving unit 12 repeatedly executes the process of step S11.
- the user information receiving unit 12 stores the received user information in the storage unit 13 and transfers control to the mode determination unit 14.
- the mode determination unit 14 determines whether or not the room where the user has entered is a weak cooling room (step S12).
- the mode determination unit 14 determines that the room where the user has entered is a weak cooling room (step S12; YES)
- the number of users in the weak cooling room is determined based on the user information stored in the storage unit 13. It is determined whether the number of users is more than half of the total number of users (step S13).
- the mode determination unit 14 determines the first mode as the consumption calculation mode (step S13). S14). On the other hand, when the mode determination unit 14 determines that the number of users in the weak cooling room is less than half of the total number of users (step S13; NO), the mode determination unit 14 determines the second mode as the consumption calculation mode. (Step S15).
- step S12 if the mode determination unit 14 determines that the room where the user has entered is not a weak cooling room (a strong cooling room) (step S12; NO), the user information stored in the storage unit 13 Based on the above, it is determined whether the number of users in the strong cooling room exceeds half of the total number of users (step S16).
- the mode determination unit 14 determines the second mode as the consumption calculation mode (step S16). Step S15).
- the mode determination unit 14 determines that the number of users in the strong cooling room does not exceed half of the total number of users (less than half of the total number of users) (step S16; NO).
- One mode is regarded as a consumption calculation mode (step S14). Then, the mode determination unit 14 regards mode information indicating that the determined calculation mode is the first mode or the second mode, and sends the mode information to the consumption calculation unit 15.
- the deemed consumption calculation unit 15 receives the mode information, and based on the received mode information, the user information stored in the storage unit 13, and the power consumption information, the calculation formula of the calculation mode indicated by the mode information Deemed consumption is calculated (step S17). Then, the deemed consumption calculation unit 15 sends deemed consumption information indicating the calculated deemed consumption to the deemed consumption output unit 16.
- the deemed consumption output unit 16 receives the deemed consumption information, and outputs the received deemed consumption information to the user's terminal via, for example, the network (step S18).
- the deemed consumption output unit 16 determines whether or not the power of the server 1 is turned off (step S19). If the deemed consumption output unit 16 determines that the power of the server 1 is not turned off [ON (on)] (step S19; NO), it returns to step S11 and repeats steps S11 to S19. On the other hand, when the deemed consumption output unit 16 determines that the power of the server 1 has been turned off (step S19; YES), the deemed consumption calculation processing ends.
- the deemed consumption calculation system 100 allows the user's non-consumed consumption to be smaller than the non-consumed consumption of the user who selected the non-energy-saving space. Switch to an appropriate calculation mode according to the ratio of the number of users who have selected the energy-saving space to the total number of people. By doing so, the deemed consumption calculation system 100 can calculate the non-consumed consumption for each user who can be satisfied with the user who performed the energy saving action. Thereby, the energy-saving action by a user is promoted.
- the air conditioner 2A and the air conditioner 2B transmit power consumption information indicating the power consumption per unit time to the server 1.
- a device that transmits power consumption information to the server 1 is not limited to an air conditioner, and may be, for example, a lighting device or an office device as long as the device is used by a plurality of users at the same time.
- the devices whose power consumption is to be measured in the shared space may be a plurality of devices among the devices provided in the shared space.
- the illumination and air conditioner provided in the weak cooling room may be power consumption measurement targets.
- the power consumption amount information transmitted to the server 1 is each device that is the power consumption measurement target in the shared space. Indicates the total power consumption per unit time.
- the server 1 includes a control unit 41, a main storage unit 42, an external storage unit 43, an operation unit 44, a display unit 45, and a transmission / reception unit 46.
- the control unit 41, the main storage unit 42, the external storage unit 43, the operation unit 44, the display unit 45, and the transmission / reception unit 46 are connected to each other via the internal bus 40.
- the control unit 41 includes a CPU (Central Processing Unit) and the like, and executes each process according to the control program 49 stored in the external storage unit 43.
- the control unit 41 executes processing executed by the mode determination unit 14 of the server 1, processing executed by the deemed consumption calculation unit 15, and the like.
- the main storage unit 42 includes a RAM (Random-Access Memory) or the like, loads a control program 49 stored in the external storage unit 43, and is used as a work area of the control unit 41.
- RAM Random-Access Memory
- the external storage unit 43 includes a hard disk, and shows a calculation mode for calculating power consumption information supplied from the air conditioners 2A and 2B, user information supplied from the sensors 3A and 3B, and deemed consumption. Store mode information.
- the external storage unit 43 also stores a control program 49 for causing the control unit 41 to execute various processes such as a deemed consumption calculation process.
- the external storage unit 43 may include a non-volatile memory such as a flash memory, a DVD-RAM (Digital Versatile Disc Random Access Memory), a DVD-RW (Digital Versatile Disc ReWritable) instead of the hard disk.
- the storage unit 13 included in the server 1 includes an external storage unit 43.
- the operation unit 44 includes a pointing device such as a keyboard and a mouse, and an interface device for connecting the keyboard and the pointing device to the internal bus 40.
- a pointing device such as a keyboard and a mouse
- an interface device for connecting the keyboard and the pointing device to the internal bus 40.
- the display unit 45 includes a CRT (Cathode Ray Tube) or an LCD (Liquid Crystal Display) or the like, and displays information supplied from the control unit 41.
- the display unit 45 displays various operation screens for the user to input information such as mode information to the server 1.
- the display unit 45 displays deemed consumption information. At this time, the display unit 45 functions as the deemed consumption output unit 16.
- the transmission / reception unit 46 includes a network termination device or a wireless communication device connected to the communication network, and a serial interface or a LAN (Local Area Network) interface connected to the network termination device or the wireless communication device.
- the transmission / reception unit 46 functions as the power consumption information receiving unit 11 and the user information receiving unit 12 of the server 1.
- the server 1 may be connected to the air conditioner 2A, the air conditioner 2B, the sensor 3A, and the sensor 3B by wire. Further, when the deemed consumption output unit 16 transmits the deemed consumption information to the user's terminal, the transmission / reception unit 46 functions as the deemed consumption output unit 16.
- the control unit 41 includes a power consumption information reception unit 11, a user information reception unit 12, a storage unit 13, a mode determination unit 14, a deemed consumption calculation unit 15, and the server 1 illustrated in FIG.
- the process which the deemed consumption output part 16 performs is performed.
- the control unit 41 uses the main storage unit 42, the external storage unit 43, the operation unit 44, the display unit 45, the transmission / reception unit 46, and the like as computer resources.
- the central part that performs the assumed consumption calculation process including the control unit 41, the main storage unit 42, the external storage unit 43, the operation unit 44, the internal bus 40, etc. is not a dedicated system, but a normal computer system. It can be realized using For example, a computer program for executing the above-described operation is stored on a computer-readable recording medium [flexible disk, CD-ROM (Compact Disc Read-Only Memory), DVD-ROM (Digital Versatile Disk Read-Only Memory), etc.].
- the server 1 that executes the above-described processing may be configured by storing and distributing and installing the computer program in the computer. Alternatively, the server 1 may be configured by storing the computer program in a storage device included in a computer on a communication network such as the Internet and downloading it by a normal computer system.
- the functions of the deemed consumption calculation system 100 are realized by sharing an OS (Operating System) and an application program, or by cooperation between the OS and the application program, only the application program portion is recorded on a recording medium or a storage device. May be stored.
- OS Operating System
- the computer program may be posted on a bulletin board [BBS (Bulletin Board System)] on the communication network, and the computer program may be distributed via the communication network.
- BBS Billerin Board System
- the computer program may be started and executed in the same manner as other application programs under the control of the OS, so that the above-described processing may be executed.
- a deemed consumption calculation system comprising: The server An energy consumption information receiving unit that receives energy consumption information indicating the energy consumption per unit time from the device; An entrance / exit information receiving unit that receives entrance / exit information indicating entry / exit from the sensor into the shared space of the user, A storage unit that stores calculation method information indicating a calculation method for calculating the amount of energy consumption per unit time per user in the shared space as a consumption amount; Based on the calculation method information and the entrance / exit information, the user who entered the energy-saving space, which is the shared space where the device has a smaller amount of energy consumption than the device provided in any of the shared spaces.
- the deemed consumption is smaller than the deemed consumption of a user who has entered a non-energy-saving space that is the shared space where the device is provided with a larger amount of energy consumption than the device provided in the energy-saving space.
- a calculation method determination unit for determining a calculation method of the deemed consumption; Based on the entrance / exit information and the energy consumption information, the assumed consumption calculation unit that calculates the deemed consumption of the user by the calculation method determined by the calculation method determination unit;
- a deemed consumption calculation system characterized by comprising:
- the calculation method indicated by the calculation method information is a first method of calculating the deemed consumption by dividing the energy consumption per unit time of the device provided in the shared space by the number of users in the shared space.
- a calculation method and a value obtained by multiplying the amount of energy consumed per unit time of the device provided in the energy saving space by the number of all the shared spaces are calculated, and the calculated value is divided by the total number of users to save the energy.
- the deemed consumption of the user who entered the space is calculated, and from the total energy consumption of the devices provided in all the shared spaces, the deemed consumption of the user who entered the energy saving space is in the energy saving space.
- the calculation method deciding unit determines that the deemed consumption of the user who has entered the energy-saving space is the deemed amount of the user who has entered the non-energy-saving space based on the ratio of the number of users in the energy-saving space to the total number of users.
- the calculation method of the deemed consumption is determined to be one of the first calculation method and the second calculation method so as to be smaller than the consumption,
- the deemed consumption calculation unit calculates the deemed consumption of the user by the first calculation method or the second calculation method determined by the calculation method determination unit.
- a server connected via a network to a device with different energy consumption provided for each shared space that can be used simultaneously by a plurality of users, and a sensor that detects the user entering and exiting the shared space,
- An energy consumption information receiving unit that receives energy consumption information indicating the energy consumption per unit time from the device;
- An entrance / exit information receiving unit for receiving entrance / exit information indicating entry / exit from the sensor into the shared space of the user;
- a storage unit that stores calculation method information indicating a calculation method for calculating the amount of energy consumption per unit time per user in the shared space as a consumption amount; Based on the calculation method information and the entrance / exit information, the user who entered the energy-saving space, which is the shared space where the device has a smaller amount of energy consumption than the device provided in any of the shared spaces.
- the deemed consumption is smaller than the deemed consumption of a user who has entered a non-energy-saving space that is the shared space where the device is provided with a larger amount of energy consumption than the device provided in the energy-saving space.
- a calculation method determination unit for determining a calculation method of the deemed consumption; Based on the entrance / exit information and the energy consumption information, the assumed consumption calculation unit that calculates the deemed consumption of the user by the calculation method determined by the calculation method determination unit;
- a server comprising:
- the calculation method indicated by the calculation method information is a first method of calculating the deemed consumption by dividing the energy consumption per unit time of the device provided in the shared space by the number of users in the shared space.
- a calculation method and a value obtained by multiplying the amount of energy consumed per unit time of the device provided in the energy saving space by the number of all the shared spaces are calculated, and the calculated value is divided by the total number of users to save the energy.
- the deemed consumption of the user who entered the space is calculated, and from the total energy consumption of the devices provided in all the shared spaces, the deemed consumption of the user who entered the energy saving space is in the energy saving space.
- the calculation method determination unit is configured to determine whether the deemed consumption of the user who has entered the energy-saving space is the deemed amount of the user who has entered the non-energy-saving space based on the ratio of the number of users in the energy-saving space to the total number of users.
- the calculation method of the deemed consumption is determined to be one of the first calculation method and the second calculation method so as to be smaller than the consumption,
- the deemed consumption calculation unit calculates the deemed consumption of the user by the first calculation method or the second calculation method determined by the calculation method determination unit.
- the server according to supplementary note 3, characterized by:
- Energy consumption amount information receiving step for receiving energy consumption amount information indicating the amount of energy consumption per unit time from the device; Entry / exit information reception step for receiving entry / exit information indicating entry / exit from the sensor into the shared space of the user; Based on the calculation method information indicating the calculation method for calculating the amount of energy consumed per unit time per user in the shared space as the amount of consumption and the entrance / exit information, provided in any of the shared spaces
- a deemed consumption calculation method characterized by comprising:
- the calculation method indicated by the calculation method information is a first method of calculating the deemed consumption by dividing the energy consumption per unit time of the device provided in the shared space by the number of users in the shared space.
- a calculation method and a value obtained by multiplying the amount of energy consumed per unit time of the device provided in the energy saving space by the number of all the shared spaces are calculated, and the calculated value is divided by the total number of users to save the energy.
- the deemed consumption of the user who entered the space is calculated, and from the total energy consumption of the devices provided in all the shared spaces, the deemed consumption of the user who entered the energy saving space is in the energy saving space.
- a second calculation method for calculating a In the calculation method determining step, based on the ratio of the number of users in the energy-saving space to the total number of users, the deemed consumption of the user who has entered the energy-saving space is the deemed amount of the user who has entered the non-energy-saving space.
- the calculation method of the deemed consumption is determined to be one of the first calculation method and the second calculation method so as to be smaller than the consumption,
- the deemed consumption of the user is calculated by the first calculation method or the second calculation method determined by the calculation method determination unit.
- the consumption calculation method according to appendix 5 characterized in that:
- a computer connected via a network to a device with different energy consumption provided for each shared space that can be used simultaneously by a plurality of users, and a sensor that detects a user's entry into and exit from the shared space
- An energy consumption amount information receiving unit for receiving energy consumption amount information indicating the amount of energy consumption per unit time from the device;
- An entrance / exit information receiving unit that receives entrance / exit information indicating entry / exit from the sensor into the shared space of the user,
- a storage unit for storing calculation method information indicating a calculation method for calculating the amount of energy consumed per unit time per user in the shared space as a consumption amount; Based on the calculation method information and the entrance / exit information, the user who entered the energy-saving space, which is the shared space where the device has a smaller amount of energy consumption than the device provided in any of the shared spaces.
- the deemed consumption is smaller than the deemed consumption of a user who has entered a non-energy-saving space that is the shared space where the device is provided with a larger amount of energy consumption than the device provided in the energy-saving space.
- a calculation method determination unit for determining a calculation method of the deemed consumption; Based on the entrance / exit information and the energy consumption information, the assumed consumption calculation unit that calculates the assumed consumption of the user by the calculation method determined by the calculation method determination unit;
- a computer-readable recording medium which records a program for functioning as a computer.
- the calculation method indicated by the calculation method information is a first method of calculating the deemed consumption by dividing the energy consumption per unit time of the device provided in the shared space by the number of users in the shared space.
- a calculation method and a value obtained by multiplying the amount of energy consumed per unit time of the device provided in the energy saving space by the number of all the shared spaces are calculated, and the calculated value is divided by the total number of users to save the energy.
- the deemed consumption of the user who entered the space is calculated, and from the total energy consumption of the devices provided in all the shared spaces, the deemed consumption of the user who entered the energy saving space is in the energy saving space.
- the calculation method determination unit is configured to determine whether the deemed consumption of the user who has entered the energy-saving space is the deemed amount of the user who has entered the non-energy-saving space based on the ratio of the number of users in the energy-saving space to the total number of users.
- the calculation method of the deemed consumption is determined to be one of the first calculation method and the second calculation method so as to be smaller than the consumption,
- the deemed consumption calculation unit calculates the deemed consumption of the user by the first calculation method or the second calculation method determined by the calculation method determination unit.
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Abstract
Description
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、前記機器と前記センサとにネットワークで接続されたサーバと、で構成されるみなし消費量計算システムであって、
前記サーバは、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部と、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部と、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部と、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部と、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とする。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたサーバであって、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部と、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部と、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部と、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部と、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とする。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたサーバが実行する、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信ステップと、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信ステップと、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定ステップと、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定ステップで決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とする。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたコンピュータを、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部、
として機能させるためのプログラムを記録することを特徴とする。
そこで、弱冷房室を選択したユーザの人数に応じて適当なみなし消費量が算出されるためには、弱冷房室を選択したユーザの人数がユーザの総人数の半数未満である場合とユーザの総人数の半数を越えた場合とで、計算モードの切り替えが必要となる。
モード決定部14は、省エネ行動である弱冷房室の選択を行ったユーザのみなし消費量が強冷房室の選択を行ったユーザのみなし消費量より常に小さくなるように、弱冷房室を選択したユーザの人数がユーザの総人数の半数未満の場合、第2モードをみなし消費量の計算モードに決定する。一方、モード決定部14は、弱冷房室を選択したユーザの人数がユーザの総人数の半数以上の場合、第1モードをみなし消費量の計算モードに決定する。
また、モード決定部14は、強冷房室を選択したユーザの人数がユーザの総人数の半数以下の場合、第1モードをみなし消費量の計算モードに決定し、強冷房室を選択したユーザの人数がユーザの総人数の半数を超えた場合、第2モードをみなし消費量の計算モードに決定する。
制御が移ると、モード決定部14は、ユーザが入室した部屋が弱冷房室であるか否かを判定する(ステップS12)。
そして、モード決定部14は、決定した計算モードが第1モードであることまたは第2モードであることを示すモード情報をみなし消費量算出部15に送る。
そして、みなし消費量算出部15は、算出したみなし消費量を示すみなし消費量情報をみなし消費量出力部16に送る。
なお、外部記憶部43は、ハードディスクの代わりに、フラッシュメモリ、DVD-RAM(Digital Versatile Disc Random-Access Memory)、DVD-RW(Digital Versatile Disc ReWritable)等の不揮発性メモリを備えていてもよい。
また、サーバ1が備える記憶部13は、外部記憶部43から構成される。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、前記機器と前記センサとにネットワークで接続されたサーバと、で構成されるみなし消費量計算システムであって、
前記サーバは、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部と、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部と、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部と、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部と、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とするみなし消費量計算システム。
前記計算方法情報が示す前記計算方法は、前記共有空間に設けられた前記機器の単位時間あたりの消費エネルギー量を、前記共有空間にいるユーザの人数で割って前記みなし消費量を計算する第1計算方法と、前記省エネ空間に設けられた前記機器の単位時間あたりの消費エネルギー量にすべての前記共有空間の数を乗算した値を計算し、計算した値をユーザの総人数で割って前記省エネ空間に入室したユーザの前記みなし消費量を計算し、すべての前記共有空間に設けられた前記機器の総消費エネルギー量から、前記省エネ空間に入室したユーザの前記みなし消費量に前記省エネ空間にいるユーザの人数を乗算した値を引き、引いて得た値を前記非省エネ空間にいるユーザの人数で割って前記非省エネ空間にいたユーザの前記みなし消費量を計算する第2計算方法と、であり、
前記計算方法決定部は、ユーザの総人数に対する前記省エネ空間にいるユーザの人数の割合に基づいて、前記省エネ空間に入室したユーザの前記みなし消費量が前記非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を前記第1計算方法と前記第2計算方法のいずれかに決定し、
前記みなし消費量計算部は、前記計算方法決定部が決定した前記第1計算方法または前記第2計算方法で、ユーザの前記みなし消費量を計算する、
ことを特徴とする付記1に記載のみなし消費量計算システム。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたサーバであって、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部と、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部と、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部と、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部と、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とするサーバ。
前記計算方法情報が示す前記計算方法は、前記共有空間に設けられた前記機器の単位時間あたりの消費エネルギー量を、前記共有空間にいるユーザの人数で割って前記みなし消費量を計算する第1計算方法と、前記省エネ空間に設けられた前記機器の単位時間あたりの消費エネルギー量にすべての前記共有空間の数を乗算した値を計算し、計算した値をユーザの総人数で割って前記省エネ空間に入室したユーザの前記みなし消費量を計算し、すべての前記共有空間に設けられた前記機器の総消費エネルギー量から、前記省エネ空間に入室したユーザの前記みなし消費量に前記省エネ空間にいるユーザの人数を乗算した値を引き、引いて得た値を前記非省エネ空間にいるユーザの人数で割って前記非省エネ空間にいたユーザの前記みなし消費量を計算する第2計算方法と、であり、
前記計算方法決定部は、ユーザの総人数に対する前記省エネ空間にいるユーザの人数の割合に基づいて、前記省エネ空間に入室したユーザの前記みなし消費量が前記非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を前記第1計算方法と前記第2計算方法のいずれかに決定し、
前記みなし消費量計算部は、前記計算方法決定部が決定した前記第1計算方法または前記第2計算方法で、ユーザの前記みなし消費量を計算する、
ことを特徴とする付記3に記載のサーバ。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたサーバが実行する、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信ステップと、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信ステップと、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定ステップと、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定ステップで決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とするみなし消費量計算方法。
前記計算方法情報が示す前記計算方法は、前記共有空間に設けられた前記機器の単位時間あたりの消費エネルギー量を、前記共有空間にいるユーザの人数で割って前記みなし消費量を計算する第1計算方法と、前記省エネ空間に設けられた前記機器の単位時間あたりの消費エネルギー量にすべての前記共有空間の数を乗算した値を計算し、計算した値をユーザの総人数で割って前記省エネ空間に入室したユーザの前記みなし消費量を計算し、すべての前記共有空間に設けられた前記機器の総消費エネルギー量から、前記省エネ空間に入室したユーザの前記みなし消費量に前記省エネ空間にいるユーザの人数を乗算した値を引き、引いて得た値を前記非省エネ空間にいるユーザの人数で割って前記非省エネ空間にいたユーザの前記みなし消費量を計算する第2計算方法と、であり、
前記計算方法決定ステップでは、ユーザの総人数に対する前記省エネ空間にいるユーザの人数の割合に基づいて、前記省エネ空間に入室したユーザの前記みなし消費量が前記非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を前記第1計算方法と前記第2計算方法のいずれかに決定し、
前記みなし消費量計算ステップでは、前記計算方法決定部が決定した前記第1計算方法または前記第2計算方法で、ユーザの前記みなし消費量を計算する、
ことを特徴とする付記5に記載のみなし消費量計算方法。
複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたコンピュータを、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部、
として機能させるためのプログラムを記録することを特徴とするコンピュータ読み取り可能な記録媒体。
前記計算方法情報が示す前記計算方法は、前記共有空間に設けられた前記機器の単位時間あたりの消費エネルギー量を、前記共有空間にいるユーザの人数で割って前記みなし消費量を計算する第1計算方法と、前記省エネ空間に設けられた前記機器の単位時間あたりの消費エネルギー量にすべての前記共有空間の数を乗算した値を計算し、計算した値をユーザの総人数で割って前記省エネ空間に入室したユーザの前記みなし消費量を計算し、すべての前記共有空間に設けられた前記機器の総消費エネルギー量から、前記省エネ空間に入室したユーザの前記みなし消費量に前記省エネ空間にいるユーザの人数を乗算した値を引き、引いて得た値を前記非省エネ空間にいるユーザの人数で割って前記非省エネ空間にいたユーザの前記みなし消費量を計算する第2計算方法と、であり、
前記計算方法決定部は、ユーザの総人数に対する前記省エネ空間にいるユーザの人数の割合に基づいて、前記省エネ空間に入室したユーザの前記みなし消費量が前記非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を前記第1計算方法と前記第2計算方法のいずれかに決定し、
前記みなし消費量計算部は、前記計算方法決定部が決定した前記第1計算方法または前記第2計算方法で、ユーザの前記みなし消費量を計算する、
ことを特徴とする付記7に記載のコンピュータ読み取り可能な記録媒体。
2A、2B 空調機
3A、3B センサ
11 消費電力量情報受信部
12 ユーザ情報受信部
13 記憶部
14 モード決定部
15 みなし消費量算出部
16 みなし消費量出力部
41 制御部
42 主記憶部
43 外部記憶部
44 操作部
43 表示部
46 送受信部
49 制御プログラム
100 みなし消費量計算システム
Claims (5)
- 複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、前記機器と前記センサとにネットワークで接続されたサーバと、で構成されるみなし消費量計算システムであって、
前記サーバは、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部と、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部と、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部と、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部と、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とするみなし消費量計算システム。 - 前記計算方法情報が示す前記計算方法は、前記共有空間に設けられた前記機器の単位時間あたりの消費エネルギー量を、前記共有空間にいるユーザの人数で割って前記みなし消費量を計算する第1計算方法と、前記省エネ空間に設けられた前記機器の単位時間あたりの消費エネルギー量にすべての前記共有空間の数を乗算した値を計算し、計算した値をユーザの総人数で割って前記省エネ空間に入室したユーザの前記みなし消費量を計算し、すべての前記共有空間に設けられた前記機器の総消費エネルギー量から、前記省エネ空間に入室したユーザの前記みなし消費量に前記省エネ空間にいるユーザの人数を乗算した値を引き、引いて得た値を前記非省エネ空間にいるユーザの人数で割って前記非省エネ空間にいたユーザの前記みなし消費量を計算する第2計算方法と、であり、
前記計算方法決定部は、ユーザの総人数に対する前記省エネ空間にいるユーザの人数の割合に基づいて、前記省エネ空間に入室したユーザの前記みなし消費量が前記非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を前記第1計算方法と前記第2計算方法のいずれかに決定し、
前記みなし消費量計算部は、前記計算方法決定部が決定した前記第1計算方法または前記第2計算方法で、ユーザの前記みなし消費量を計算する、
ことを特徴とする請求項1に記載のみなし消費量計算システム。 - 複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたサーバであって、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部と、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部と、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部と、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部と、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とするサーバ。 - 複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたサーバが実行する、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信ステップと、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信ステップと、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定ステップと、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定ステップで決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部と、
を備えることを特徴とするみなし消費量計算方法。 - 複数のユーザで同時に使用できる共有空間ごとに設けられた消費エネルギー量が異なる機器と、ユーザの前記共有空間への入退室を検知するセンサと、にネットワークで接続されたコンピュータを、
前記機器から単位時間あたりの消費エネルギー量を示す消費エネルギー量情報を受信する消費エネルギー量情報受信部、
前記センサからユーザの前記共有空間への入退室を示す入退室情報を受信する入退室情報受信部、
前記共有空間にいるユーザ1人あたりの単位時間あたりの消費エネルギー量をみなし消費量として計算する計算方法を示す計算方法情報を記憶する記憶部、
前記計算方法情報と前記入退室情報とに基づいて、前記共有空間のいずれかに設けられた前記機器より消費エネルギー量が小さい前記機器が設けられた前記共有空間である省エネ空間に入室したユーザの前記みなし消費量が、前記省エネ空間に設けられた前記機器より消費エネルギー量が大きい前記機器が設けられた前記共有空間である非省エネ空間に入室したユーザの前記みなし消費量より小さくなるように、前記みなし消費量の計算方法を決定する計算方法決定部、
前記入退室情報と前記消費エネルギー量情報とに基づいて、前記計算方法決定部が決定した計算方法で、ユーザの前記みなし消費量を計算するみなし消費量計算部、
として機能させるためのプログラムを記録することを特徴とするコンピュータ読み取り可能な記録媒体。
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JP2002269172A (ja) * | 2001-03-12 | 2002-09-20 | Misawa Homes Institute Of Research & Development Co Ltd | エネルギー消費量評価システム、エネルギー消費量評価方法、およびエネルギー消費量評価プログラムを記録したコンピュータ読み取り可能な記録媒体 |
JP2005230340A (ja) * | 2004-02-20 | 2005-09-02 | Intelligent Cosmos Research Institute | エネルギー消費量推定装置、エネルギー消費量推定システムおよびデータベース |
JP2008047075A (ja) * | 2006-08-21 | 2008-02-28 | Daikin Ind Ltd | 設備機器の推定コスト計算システム、推定コスト計算プログラム、推定二酸化炭素排出量計算システム、及び推定二酸化炭素排出量計算プログラム |
JP2009106086A (ja) * | 2007-10-23 | 2009-05-14 | Fuji Electric Fa Components & Systems Co Ltd | エネルギー管理装置、パターン修正装置、及びプログラム |
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WO2019003293A1 (ja) * | 2017-06-27 | 2019-01-03 | 株式会社日立製作所 | 個人エネルギー消費量推定システムおよび方法 |
JPWO2019003293A1 (ja) * | 2017-06-27 | 2020-02-27 | 株式会社日立製作所 | 個人エネルギー消費量推定システムおよび方法 |
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