METHOD AND DEVICE FOR MANAGING THE ELECTRICAL POWER CONSUMED IN A BUILDING
The energy manager system addresses the challenge of managing smart consumption devices by prioritizing electrical power distribution based on user-defined criteria, ensuring essential energy uses are maintained before disconnection, enhancing comfort and cost efficiency.
Patent Information
- Application Number
- FR2024001013
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-02-01
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2044-02-01
AI Technical Summary
Existing systems face challenges in managing electrical power distribution in buildings with smart consumption devices and energy managers due to varied communication protocols, leading to suboptimal user comfort and energy use, particularly when prioritizing between electric vehicle charging and other essential energy uses.
An energy manager system that measures and prioritizes electrical power distribution by associating priority levels with consumption devices, allowing smart consumption devices to adjust power consumption and controlling other devices based on available power, ensuring essential energy uses are maintained before disconnection.
Ensures optimal electrical power management, prioritizing comfort and cost efficiency by maintaining essential energy uses like heating and hot water while avoiding frequent disconnections, thus enhancing user satisfaction.
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Abstract
Description
Title of the invention: METHOD AND DEVICE FOR MANAGING THE ELECTRICAL POWER CONSUMED IN A BUILDING Technical field
[0001] The present invention relates to a method and device for managing the electrical power consumed in a building. STATE OF PRIOR ART
[0002] Conventionally, the electrical power consumed in a building comes largely from an electrical energy supply network. The electrical energy from the electrical energy supply network is delivered to the building via a meter which measures the power delivered by the electrical energy supply network to the building and, when the power is greater than that intended for the building, causes an interruption in the supply of electrical energy to the building. This interruption is called a disconnection.
[0003] New devices that consume electrical energy are appearing in buildings. These devices are subsequently called smart consumption devices.
[0004] Smart consumption devices are capable of increasing or reducing their consumed electrical power depending on the available electrical power before a disconnection occurs.
[0005] These smart consumption devices are, for example, electric vehicle charging stations or air conditioning systems or heat pumps.
[0006] There are energy managers for electric heating or hot water heating (boiler, heat pump, pellet stove, etc.). Electric energy managers combine several functions to optimize the energy consumption of a home. Energy managers ensure a constant and comfortable temperature according to the time of day and the areas of the home thanks to programming and load shedding functions. Energy managers are complete and efficient devices for controlling heating or air conditioning systems while saving energy.
[0007] Energy managers thus control the operation of various electrical devices by ensuring that the total electrical power consumed is less than the electrical power planned for the building and takes into account the different hourly rates so as to reduce the financial cost of the billing carried out by the operator of the electricity supply network.
[0008] When a building has a smart consumption device and an energy manager, problems arise.
[0009] For example, if the intelligent consumption device is informed that a total electrical power consumed by the building is less than the electrical power planned for the building, it can increase the electrical power delivered to the vehicle. The energy manager, seeing that the total power consumed by the building is almost equal to the electrical power planned for the building, cannot trigger the operation of electrical energy consuming devices such as building heating means or a hot water tank or air conditioning or a heat pump.
[0010] This situation could be resolved by establishing a communication link between the smart consumption device and the energy manager, but the communication protocols used by smart consumption devices are varied or even proprietary. This solution cannot therefore be retained for large-scale implementation.
[0011] Thus, the occupant of the building must make a choice between recharging his electric vehicle with the building's electrical power and not having adequate heating of the building or recharging his electric vehicle with charging stations other than those of the building.
[0012] This situation is not optimal for the satisfaction and well-being of the building occupant. Statement of the invention
[0013] The invention aims to guarantee the comfort of an occupant of a building comprising an intelligent consumption device and an energy manager as well as a good distribution of the electrical power consumed.
[0014] According to a first aspect of the invention, the invention relates to a method for managing the electrical power consumed by devices of a building comprising an intelligent consumption device and an energy manager, the electrical power being at least supplied by an electrical energy supply network via a meter which measures the electrical power delivered by the electrical energy supply network to the building and, when the electrical power is greater than that provided for the building, causes an interruption in the supply of electrical energy to the building, the intelligent consumption device being able to reduce its consumed electrical power or to increase its consumed electrical power as a function of the available electrical power before an interruption in the supply of electrical energy to the building occurs, the manager energy being capable of controlling consumption devices different from the intelligent consumption device; characterized in that the method comprises the steps, executed by the energy manager, of:
[0015] - measurement of the electrical power supplied by the meter,
[0016] - measurement of the electrical power consumed by the consumption device in smart,
[0017] - checking whether a priority is associated with the smart consumption device and in the negative:
[0018] - determination of the remaining electrical power before an interruption of the supply of electrical energy to the building when the electrical power supplied by the meter is greater than that provided for the building, taking into account a first predetermined value of electrical power and the electrical power consumed by the intelligent consumption device,
[0019] - selection, from the determined remaining electrical power, of at least one consumer device among the consumer devices different from the smart consumer device,
[0020] - activation of at least one selected consumption device.
[0021] Correlatively, the invention relates to an energy manager managing the electrical power consumed by devices of a building, the building further comprising an intelligent consumption device, the electrical power being at least supplied by an electrical energy supply network via a meter which measures the electrical power delivered by the electrical energy supply network to the building and, when the power is greater than that provided for the building, causes an interruption in the supply of electrical energy to the building, the intelligent consumption device being able to reduce its consumed electrical power or to increase its consumed electrical power as a function of the available electrical power before an interruption in the supply of electrical energy to the building occurs,the energy manager being able to control consumption devices different from the intelligent consumption device; characterized in that the energy manager comprises: ,
[0022] - means for measuring the electrical power supplied by the meter,
[0023] - means for measuring the electrical power consumed by the device smart consumption,
[0024] - means of verifying whether a priority is associated with the device of smart consumption and in the negative, activation:
[0025] - means for determining the remaining electrical power before an in interruption of the supply of electrical energy to the building when the electrical power supplied by the meter is greater than that provided for the building in taking into account a first predetermined value of electrical power and the electrical power consumed by the intelligent consumption device,
[0026] - selection means, from the determined remaining electrical power, of at least one consumption device among the consumption devices different from the smart consumption device,
[0027] - means for activating at least one selected consumption device.
[0028] Thus, the present invention makes it possible to prioritize urgent energy uses in relation to the intelligent consumption device, such as for example heating, air conditioning, or domestic hot water, or a household appliance.
[0029] According to another aspect of the invention, the selection of the or each consumption device is carried out on the basis of a priority criterion associated with each consumption device.
[0030] Thus, the present invention makes it possible to best manage the electrical consumption of the building according to the user's interest, in terms of cost and comfort, and the non-suspension of its electrical energy supply by disconnection.
[0031] According to another aspect of the invention, the method further comprises the steps of:
[0032] - comparing the electrical power supplied by the meter with the power electrical system provided for the building,
[0033] - selection of at least one consumption device among the consumption devices different consumption of the smart consumption device if the electrical power consumed in the building is greater than the power planned for the building,
[0034] - deactivation of at least one selected consumption device.
[0035] Thus, the present invention allows power to be released for the smart consumption device if there is a high energy demand for it.
[0036] According to another aspect of the invention, the smart consumption device is a charging station for an electric vehicle.
[0037] Thus, the present invention makes it possible to avoid the frequent case where all the electrical power is consumed by charging the electric vehicle, prohibiting other uses in the building.
[0038] According to another aspect of the invention, the method further comprises the step of determining whether the vehicle is at the end of charging or is not charging and determining the remaining electrical power before an interruption in the supply of electrical energy to the building when the electrical power supplied by the meter is greater than that provided for the building does not take into account the power consumed by the intelligent consumption device and the first predetermined energy value and takes into account a second predetermined value.
[0039] Thus, the present invention makes it possible to avoid exceeding the power electricity consumed when the smart consumption device is not in operation and to use all available power before disconnection. Brief description of the drawings
[0040] The above-mentioned features of the invention, as well as others, will appear more clearly on reading the following description of an exemplary embodiment, said description being made in relation to the attached drawings, among which:
[0041] [Fig. 1] represents a building in which the present invention is implemented;
[0042] [Fig.2] represents a block diagram of an energy manager according to the present invention;
[0043] [Fig.3] represents an example of an algorithm executed by the energy manager according to the present invention.
[0044] DETAILED DESCRIPTION OF EMBODIMENTS
[0045] [Fig. 1] shows a building in which the present invention is implemented.
[0046] The Bat building comprises a Cmp meter, a Dint intelligent consumption device, a Cont energy manager and a plurality of Disl, Dis2 and Dis3 consumption devices.
[0047] The Cmp meter measures the electrical power delivered by a Res network supplying electrical energy to the building and, when the measured electrical power is higher than that provided for the building, causes a disconnection. The disconnection is not immediate, it is carried out after a few seconds or tens of seconds after an overconsumption measurement.
[0048] The intelligent consumption device Dint is for example a charging station for an electric vehicle Veh or an air conditioning system or a heat pump.
[0049] The energy manager Cont controls the operation of the consumption devices Disl, Dis2 and Dis3 by ensuring that the electrical power delivered by the meter is less than the electrical power planned for the building and takes into account the different hourly tariffs so as to reduce the financial cost of the billing carried out by the operator of the electricity supply network.
[0050] Associated with the energy manager Cont are means for obtaining the electrical power delivered by the meter as well as means for obtaining the electrical power consumed by the intelligent consumption device Dint.
[0051] The means for obtaining the electrical power delivered by the Cmp meter are, for example, a Senl current sensor.
[0052] The means for obtaining the electrical power consumed by the intelligent consumption device Dint are for example a current sensor Sen2.
[0053] The value of the electrical voltage in the building being known, a measurement of electrical power is equivalent to a measurement of current.
[0054] It should be noted here that other sources of electrical energy supply not shown in [Fig.l], such as photovoltaic panels, wind turbines or any renewable electrical energy supply system can provide electrical energy to the building. The electrical energy delivered by these renewable electrical energy sources is not measured by the Cmp electricity meter.
[0055] [Fig.2] represents a block diagram of an energy manager according to the present invention.
[0056] The Cont energy manager is adapted to carry out, from one or more software modules, the steps of the algorithm as described with reference to [Fig.3].
[0057] The energy manager Cont comprises a communication bus 201 to which are connected a processor 200, a non-volatile memory 202, a random access memory 203, possibly a human machine interface HMI 204, a control interface 206 allowing the control of the consumption devices Disl, Dis2 and Dis3, and a sensor interface 208 to which the sensors Senl and Sen2 are connected.
[0058] The human-machine interface 204 allows the occupant to indicate whether an intelligent consumption device Dint is present in the building and to associate priority levels with at least some of the consumption devices Dis1, Dis2 and Dis3 and with the intelligent consumption device Dint.
[0059] The non-volatile memory 202 stores the software module(s) implementing the invention, as well as the data making it possible to implement the algorithm as described with reference to [Fig.3].
[0060] More generally, the programs according to the present invention are stored in a storage means. This storage means is readable by the microprocessor 200. This storage means is integrated or not into the energy manager Cont, and can be removable.
[0061] When the energy manager Cont is powered up, the software module(s) according to the present invention is or are transferred into the RAM 203 which then contains the executable code according to the present invention as well as the data necessary for implementing the invention.
[0062] Thus, all or part of the algorithm and steps described herein may be implemented in software form by executing a set of instructions by a programmable machine, such as a DSP (Digital Signal Processor) or a microcontroller or a processor. All or part of the algorithm and steps described herein may also be implemented in hardware form by a machine or a component (chip), such as an FPGA (Field-Programmable Gate Array) or an ASIC (Application-Specified Integrated Circuit). Thus, the Cont energy manager comprises electronic circuitry adapted and configured to implement the behaviors, algorithm and steps described here.
[0063] [Fig.3] represents an example of an algorithm executed by the energy manager according to the present invention.
[0064] In step E300, the energy manager Cont enters a waiting loop of a predetermined duration. The predetermined duration is for example defined according to the electrical installation of the building Bat. The predetermined duration is for example between 0.1 seconds and 60 seconds.
[0065] In the following step E301, the energy manager Cont commands the obtaining of a measurement of the electrical power supplied by the electrical meter Cmp. The measurement of the electrical power supplied by the electrical meter Cmp Itot is for example carried out via the current sensor Sensl or obtained via a communication link of the meter Cmp.
[0066] In step E302, the energy manager Cont checks whether the electrical power supplied by the electricity meter Cmp Itot is greater than the power Imax provided for the building by the operator of the electrical energy supply network.
[0067] If so, the energy manager Cont goes to step E303 and if not, the energy manager Cont goes to step E305.
[0068] In step E303, the energy manager Cont selects at least one consumption device from among the consumption devices different from the intelligent consumption device.
[0069] The selection of the or each consumption device is for example carried out from a priority criterion associated with each consumption device.
[0070] The priority criterion is for example defined by the occupant of the building from the human machine interface HMI 204.
[0071] In step E304, the energy manager Cont deactivates the or each selected consumption device and returns to step E300.
[0072] In step E305, the energy manager Cont commands the obtaining of a measurement of the power consumed by the intelligent consumption device Dint. The measurement of the power consumed Ich in the building is for example carried out via the current sensor Sens2.
[0073] In step E306, the energy manager Cont checks whether the intelligent consumption device Dint has a highest priority criterion among the consumption devices.
[0074] If so, the energy manager Cont returns to step E300 and if not, the energy manager Cont goes to step E307.
[0075] In step E307, the energy manager Cont determines the remaining electrical power before an interruption in the supply of electrical energy to the building when the electrical power supplied by the meter Cmp is greater than that planned for the building taking into account a first predetermined power value and the electrical power consumed by the smart consumption device.
[0076] The Cont energy manager determines the remaining power according to the following formula:
[0077] Idispo=Imax-Tot+Ich-Ichmin.
[0078] Where Ichmin is the first predetermined power value.
[0079] Icchmin is for example equal to 6 or 8 Amperes or is defined by the occupant of the building.
[0080] Alternatively, the energy manager Cont determines whether the vehicle Veh is at the end of charging or is not charging.
[0081] The vehicle Veh is not charging when the power of the intelligent consumption device is equal to a second predetermined value. The second predetermined value is equal to the power consumed by the intelligent consumption device without the vehicle Veh being connected to it. The second predetermined value is for example determined by the occupant of the building using the human-machine interface to indicate that the vehicle Veh is not charging. The energy manager Cont then obtains a measurement of the power consumed by the intelligent consumption device and assigns this measurement as the second predetermined value.
[0082] The vehicle Veh is at the end of charging when the power consumed by the intelligent consumption device decreases over time to reach a value close to the sum of the second predetermined value.
[0083] According to this variant, the determination of the remaining electrical power does not take into account the power of the intelligent consumption device and the first predetermined energy value and takes into account the second predetermined value.
[0084] In step E308, the energy manager Cont selects, from the determined remaining power, at least one consumption device from among the consumption devices different from the intelligent consumption device.
[0085] The selection is made by comparing the remaining power with the different energies consumed by the consumption devices Dis1, Dis2 and Dis3 when these are activated.
[0086] For example, the selection is carried out by taking into account a priority criterion associated with each consumption device Dis1, Dis2 and Dis3.
[0087] In step E309, the energy manager Cont controls the activation of at least one selected consumption device.
[0088] Once this step is completed, the energy manager Cont returns to step E300.
[0089] Of course, the present invention is in no way limited to the embodiments described here, but on the contrary encompasses any variation within the reach of those skilled in the art.
Claims
Claims
1. Method for managing the electrical power consumed by devices of a building comprising a smart consumption device and an energy manager, the electrical power being at least supplied by an electrical energy supply network via a meter which measures the electrical power delivered by the electrical energy supply network to the building and, when the electrical power is greater than that provided for the building, causes an interruption in the supply of electrical energy to the building, the smart consumption device being able to reduce its consumed electrical power or to increase its consumed electrical power depending on the available electrical power before an interruption in the supply of electrical energy to the building occurs,the energy manager being able to control consumption devices different from the intelligent consumption device; characterized in that the method comprises the steps, executed by the energy manager, of: - measuring the electrical power supplied by the meter, - measuring (E301) the electrical power consumed by the intelligent consumption device, - verification (E306) whether a priority is associated with the smart consumption device and, if not: - determination (E307) of the remaining electrical power before an interruption in the supply of electrical energy to the building when the electrical power supplied by the meter is greater than that provided for the building by taking into account a first predetermined value of electrical power and the electrical power consumed by the intelligent consumption device, - selection, (E308) from the determined remaining electrical power, of at least one consumption device from among the consumption devices different from the intelligent consumption device, - activation (E309) of at least one selected consumption device.
2. Method according to claim 1, characterized in that the selection of the or each consumption device is carried out from a priority criterion associated with each consumption device.
3. Method according to claim 1 or 2, characterized in that the method further comprises the steps of: - comparing the electrical power supplied by the meter with the electrical power provided for the building, - selecting at least one consumption device from among the consumption devices different from the intelligent consumption device if the electrical power consumed in the building is greater than the power provided for the building, - deactivating the at least one selected consumption device.
4. Method according to any one of claims 1 to 3, characterized in that the intelligent consumption device is a charging station for an electric vehicle.
5. Method according to claim 4, characterized in that the method further comprises the step of determining whether the vehicle is at the end of charging or is not charging and in that the determination of the remaining electrical power before an interruption in the supply of electrical energy to the building when the electrical power supplied by the meter is greater than that provided for the building does not take into account the power consumed by the intelligent consumption device and the first predetermined energy value and takes into account a second predetermined value.
6. Energy manager managing the electrical power consumed by devices in a building, the building further comprising an intelligent consumption device, the electrical power being at least supplied by an electrical energy supply network via a meter which measures the electrical power delivered by the electrical energy supply network to the building and, when the power is greater than that provided for the building, causes an interruption in the supply of electrical energy to the building, the intelligent consumption device being able to reduce its consumed electrical power or to increase its consumed electrical power depending on the available electrical power before an interruption in the supply of electrical energy to the building occurs,the energy manager being able to control consumption devices different from the intelligent consumption device; characterized in that the energy manager comprises: - means for measuring the electrical power supplied by the, counter, - means of measuring the electrical power consumed by the intelligent consumption device, - means of verifying whether a priority is associated with the smart consumption device and, if not, activation: - means for determining the remaining electrical power before an interruption in the supply of electrical energy to the building when the electrical power supplied by the meter is greater than that provided for the building, taking into account a first predetermined value of electrical power and the electrical power consumed by the intelligent consumption device, - means for selecting, from the determined remaining electrical power, at least one consumption device from among the consumption devices different from the intelligent consumption device, - means for activating at least one selected consumption device.
Citation Information
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