KR101728722B1 - A refrigerator comprising a displaying device and a control method thereof - Google Patents
A refrigerator comprising a displaying device and a control method thereof Download PDFInfo
- Publication number
- KR101728722B1 KR101728722B1 KR1020100016208A KR20100016208A KR101728722B1 KR 101728722 B1 KR101728722 B1 KR 101728722B1 KR 1020100016208 A KR1020100016208 A KR 1020100016208A KR 20100016208 A KR20100016208 A KR 20100016208A KR 101728722 B1 KR101728722 B1 KR 101728722B1
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- KR
- South Korea
- Prior art keywords
- power consumption
- refrigerator
- displayed
- touch screen
- display window
- Prior art date
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25B—REFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
- F25B2400/00—General features or devices for refrigeration machines, plants or systems, combined heating and refrigeration systems or heat-pump systems, i.e. not limited to a particular subgroup of F25B
- F25B2400/01—Heaters
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25D—REFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
- F25D2400/00—General features of, or devices for refrigerators, cold rooms, ice-boxes, or for cooling or freezing apparatus not covered by any other subclass
- F25D2400/36—Visual displays
- F25D2400/361—Interactive visual displays
Abstract
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a refrigerator having a terminal capable of easily managing power consumption or electric power charges and a control method thereof.
The present invention provides a refrigerator comprising: a touch screen having a control icon for inputting a refrigerator operation control command and a display window for displaying operation information and power information of the refrigerator; And a control unit connected to the touch screen to display an operation mode of the refrigerator according to an operation of the control icon and to control the operation data of the refrigerator according to each operation mode to be displayed on the display unit A refrigerator and a control method thereof.
Description
The present invention relates to a refrigerator having a terminal and a control method thereof. More particularly, the present invention relates to a refrigerator which can easily control power consumption, A refrigerator and a control method thereof.
In the case of electric power supplied to electric appliances or lighting products including refrigerators, it is common to apply a fixed electric power charging system in which charges are kept constant irrespective of changes in demand, except for nighttime electric power.
However, when the recently introduced intelligent grid (smart grid) is introduced, it will inevitably be accompanied by a variable power tariff, in which the electricity tariff varies depending on the demand for electricity.
In other words, if the overall demand for electricity increases significantly, the electricity tariff will increase proportionally, and if the demand for electricity decreases, the electricity tariff will also decrease.
If such a variable rate system is introduced, users will be interested in how the current amount of electricity consumed in the home or electric power rate fluctuates over time, and also compare with the average household electricity consumption and electricity rates There is a need to see.
Also, in the case of the conventional refrigerator, since the operation of the refrigerator was operated in accordance with the predetermined operation mode at the time of producing the product, there was very little room for adjusting the power consumption based on the user's intention.
Therefore, there is a need to provide a function for the consumer to adjust the power consumption of the refrigerator in consideration of the current electric power charge and the electric power consumption.
SUMMARY OF THE INVENTION The present invention has been made in order to satisfy such a need, and in particular, it is an object of the present invention to provide a refrigerator and a control method thereof that can easily control and manage power consumption based on the user's intention.
To achieve these objects and other advantages and in accordance with the purpose of the invention, as embodied and broadly described herein, there is provided a refrigerator comprising: a touch screen having a control icon for inputting a refrigerator operation control command and a display window for displaying operation information and power information of the refrigerator; And a control unit connected to the touch screen to display an operation mode of the refrigerator according to an operation of the control icon and to control the operation data of the refrigerator according to each operation mode to be displayed on the display unit Provide refrigerator.
The adjustment icon is provided in a draggable form so that the user can select an operation mode of the refrigerator.
Wherein the touch screen displays a movement path through which the adjustment icon is moved and an operation mode in which the power consumption of the refrigerator is maximized and a minimum operation mode are displayed at one end and the other end of the movement path,
And movement of the adjustment icon by the user's touch and drag is performed between one end and the other end of the movement path.
Wherein the control unit controls the touch screen to display a change in data related to an operation state of the refrigerator including a target temperature of each storage room corresponding to the movement of the control icon.
The data related to the operation mode of the refrigerator includes the temperature and power consumption of each storage room,
As the user moves the control icon adjacent to the one end of the movement path, the target temperature of each storage room displayed on the touch screen is decreased and the target power consumption is displayed to increase. When the user touches the control icon The target temperature of each storage room displayed on the touch screen is increased and the target power consumption is displayed to be decreased as the touch panel moves closer to the end portion.
And a communication unit connected to the control unit, the power control unit receiving power rate data of the electric appliances,
The touch screen displays the actual power consumption of each of the other electrical products,
Actual power consumption or actual power charges in the current home,
A reference power consumption amount or a reference power charge amount to be compared with the actual power consumption amount or the electric power charge amount is displayed.
The control unit compares the actual power consumption amount or the actual power charge in the current home with the reference power consumption amount or the reference power charge and controls the display unit to display on the touch screen whether the former is less than or equal to or greater than or equal to the latter range.
The touch screen displays a result of comparison between the actual power consumption or the actual power consumption in the home and the reference power consumption or the reference power consumption with the color corresponding to each result.
A color display window for displaying the comparison result value as a color is displayed on the touch screen,
If the result of the comparison is less than a predetermined value,
If the comparison result is in the same range, it is displayed in yellow,
And when the comparison result is greater than the predetermined value, it is displayed in red.
Further, the present invention provides a method for controlling a refrigerator, comprising the steps of: (A) determining whether a control icon provided on a touch screen and capable of issuing an operation mode change command of a refrigerator is moved and its position is changed;
(B) displaying the refrigerator operation mode corresponding to the moved position and the related operation information on the touch screen when the adjustment icon is moved and its position is changed, and do.
The control icon is provided to be able to select between a plurality of operation modes provided between the operation mode display in which the power consumption of the refrigerator is maximized and the operation mode display in which the power consumption is minimized,
Wherein the operation information related to the operation mode of the refrigerator corresponding to each position point is displayed when the adjustment icon moves according to a user's touch and drag.
Wherein, in the step (B), the target temperature of each storage room is lowered and the target consumption power of the refrigerator is increased as the control icon moves closer to the driving mode display in which the power consumption is maximized,
The target temperature of each storage room rises and the target consumption power of the refrigerator decreases as the control icon moves closer to the driving mode display in which the power consumption is minimized.
Further, the present invention provides a method of controlling a home appliance, comprising the steps of: (C) receiving an actual power consumption of each appliance in the current household; (D) receiving a reference power consumption amount or reference electricity rate data to be compared with an actual power consumption or actual electricity fee from the outside; (E) comparing the actual power consumption amount or the actual electricity cost with the reference power consumption amount or the reference electricity cost to determine whether the former is less than or equal to or greater than or equal to the latter; And displaying the result using the character or color corresponding to the determination result of the refrigerator (F).
In the step (E), the color display window provided on the touch screen may be displayed in green when the comparison result is not satisfied. Displaying in yellow if the comparison result is within the same range; And displaying in red if the comparison result is exceeded.
Meanwhile, the present invention is characterized in that (G) a change state of an actual power consumption amount or an actual power charge according to a change of time is displayed in a graph form so as to be visually comparable with the reference power consumption amount or a reference power cost .
According to the present invention, the user can adjust the target temperature of the refrigerator compartment or the freezer compartment of the refrigerator according to his / her intention.
Particularly, it is possible to provide convenience to the user by touching and dragging the adjustment icon rather than complicated setting of the target temperature.
Since the estimated power consumption and the status of each component can be displayed at a glance by operating the adjustment icon of the user, the convenience of the user can be provided.
Meanwhile, the present invention can visually display the comparison result while real-time comparison is performed between the actual power consumption (or the actual power charge) and the reference power consumption amount (or the reference power charge) There is an advantage that it can be easily recognized.
In addition, since the reference value is composed of a first reference value based on the average value of other assumptions or a second reference value that is a kind of target value, the user can compare the power use pattern of his / her home with the average power use pattern of other assumptions , And the ability of the user to know whether the power consumption (or the electric power charge) targeted by the user is being properly monitored.
1 is a perspective view of a refrigerator according to the present invention.
2 is a control block diagram of a refrigerator according to the present invention.
3 is an initial screen of a terminal of a refrigerator according to the present invention.
FIG. 4 is a view showing the operating state and information of the refrigerator shown in the refrigerator terminal according to the present invention.
FIG. 5 shows a screen state of the terminal at the time of the power consumption reduction operation mode (or the refrigeration / freezing capability reduction operation mode) of the refrigerator according to the present invention.
FIG. 6 shows a state of the screen of the terminal at the time of the power consumption increasing operation mode (or the refrigeration / freezing capability increasing operation mode) of the refrigerator according to the present invention.
FIG. 7 is a graph showing a trend of a change in electric power charge in a terminal of a refrigerator according to the present invention.
8 and 9 are control flow charts of a refrigerator according to the present invention.
Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.
1, a
The
The
The
The
2, a
Hereinafter, the components will be described in order.
The
For example, the
Under the control of the
The
The
The short
The A / V (Audio / Video)
The
The image data processed by the
The
The
The
The
For example, when information related to the
The
The
The touch sensor may have the form of, for example, a touch film, a touch sheet, a touch pad, or the like.
The touch sensor may be configured to convert a change in a pressure applied to a specific portion of the
If there is a touch input to the touch sensor, the corresponding signal (s) is sent to the touch controller (not shown). The touch controller processes the signal (s) and transmits the corresponding data to the
The
The
In addition, the
Here, the electric power information includes information related to the change in the electric power rate change by time, the first reference electric power consumption amount and the first reference electric power amount by the time base in a typical home provided by the electric power company or the electric power service company.
The power information may be obtained through an external service server, a web server, or the like through the
In addition, the
The memory 160 may be a flash memory type, a hard disk type, a multimedia card micro type, a card type memory (for example, an SD or XD memory A static random access memory (SRAM), a read-only memory (ROM), an electrically erasable programmable read-only memory (EEPROM), a programmable read-only memory (PROM) Magnetic disk, magnetic disk, magnetic disk, or optical disk.
The interface unit 260 serves as a channel with all the external devices connected to the
The
The
The various embodiments described herein may be embodied in a recording medium readable by a computer or similar device using, for example, software, hardware, or a combination thereof.
According to a hardware implementation, the embodiments described herein may be implemented as application specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable gate arrays May be implemented using at least one of a processor, controllers, micro-controllers, microprocessors, and other electronic units for performing other functions. In some cases, The embodiments described may be implemented by the
According to a software implementation, embodiments such as the procedures and functions described herein may be implemented with separate software modules. Each of the software modules may perform one or more of the functions and operations described herein. Software code can be implemented in a software application written in a suitable programming language. The software code is stored in the
The
3 is an initial screen displayed on the terminal according to the present invention. Hereinafter, it is assumed that the
On the initial screen, the current date, the family's schedule, and the current weather are displayed. On the right side thereof, the storage state of the stored product currently stored in the refrigerator is displayed.
In this embodiment, when the user presses the menu icon indicated by Eco, a screen as shown in Fig. 4 appears. Here, the icon labeled Eco relates to a menu related to energy usage information of the refrigerator.
FIG. 4 shows a state in which the electric power consumption of other electric appliances including the refrigerator, the total and the electric power charge information thereof, and the operating state of the refrigerator are displayed.
In the upper left corner, a predetermined
One end of the
As shown in FIG. 5, when the user touches and drags the
Accordingly, the target temperature inside the storage room (the freezer compartment and the refrigerating compartment) displayed in the
In order to achieve this target temperature, the operation rate of the compressor (see FIG. 2) 310 is lower than that of the previous compressor, or the operation frequency thereof is decreased.
6, when the user touches the
To achieve this target temperature, the operating rate or operating frequency of the compressor (see FIG. 2) 310 increases.
The
A power
As shown in FIG. 7, the
A straight line extending straight up and down in the
Here, the
Therefore, hereinafter, the average value of the strategic consumption amount (or electric power charge) used in various households will be referred to as a first reference power consumption amount (or a first reference power consumption rate).
Here, the first reference power consumption amount (or the first reference power consumption amount) provided by the utility company is not fixed but may vary from day to day. The average reference consumption amount (or the first reference power consumption rate) Lt; / RTI >
A
The
The comparison between the actual power consumption (or power charge) and the first reference power consumption (or first reference power charge) is a relative comparison between the user's home and another home using the first reference power consumption (or the first reference power charge) to be.
This allows users to easily see how their home's power consumption patterns are compared to other assumptions.
However, the second reference power consumption amount (or the second reference power charge) has a function of allowing the user to set the usage target value of the actual power consumption amount (or the actual power charge).
Thus, by comparing the second reference power consumption amount (or the second reference power consumption rate) with the actual power consumption amount (or the actual power consumption rate), it is possible to view the current power consumption pattern of the user's own home, If the set reference value is exceeded, the user can provide a motive to reduce the exceeded value by his or her own choice.
Here, the high-level billing section is defined as a section exceeding the
That is, the first reference power consumption amount (or the first reference power fee) provides a kind of relative reference value, and the second reference power consumption amount (or the second reference power fee) provides an absolute reference value.
A
Thus, the reason why the color display window in the form of a traffic light is provided is that the power consumption (or electric power charge) in the current household exceeds or falls below the first reference power consumption amount (or the first reference electricity cost) This is to inform you of this condition.
In addition, a comparison result between the actual power consumption (or the power charge) and the second reference power consumption amount (or the second reference power charge) may be displayed using the
FIG. 8 is a flow chart of the refrigerator according to the present invention.
First, the amount of power consumption of the refrigerator and the status information of the components (compressor, ice maker, etc.) are displayed on the display unit provided in the display module (S801).
In this state, it is determined whether there is an input for changing the operation mode of the refrigerator. Here, the input for changing the operation mode means that the user touches and drags the adjustment icon to change the position of the adjustment icon on the movement route, The hand will be dropped (S802).
If it is determined that a change in the position of the adjustment icon for changing the operation mode has occurred, it is determined whether the change in the position of the adjustment icon is related to an increase in refrigeration / refrigeration capability (or power consumption) of the refrigerator or decrease in the refrigerator ).
Here, the change of the position of the control icon for increasing the refrigerator / freezing capacity of the refrigerator will occur when the user judges that the refrigerator / refrigerator capacity of the refrigerator is insufficient or exceeds the criterion that he thinks.
In the case where it relates to an increase in the refrigeration / refrigeration capacity (or power consumption) of the refrigerator, the target temperature of the refrigerator compartment or the freezer compartment is set to be lowered and the target temperature set in the status window on the display unit of the display module is displayed (S804).
Then, the compression capacity is increased as the operation rate of the compressor or the operation frequency is increased, and information related thereto is displayed on the status display window (S805)
At the same time, the increased estimated power consumption is displayed so that the user can recognize this (S806).
On the other hand, if a control command is received in a direction in which the refrigeration / refrigeration capability is decreased in step S803, first, the target temperature of the refrigerator compartment or the refrigerating compartment is set to be increased, and the set target temperature is displayed on the status window (S807).
Then, the operation rate or the operating frequency of the compressor is set to be reduced so that the compression capacity of the compressor is set to be reduced, and the state display window shows a change in the operation capability of the compressor (S808).
Then, the expected power consumption to be reduced in the future is displayed by this control so that the user can know the change in the power consumption (S809).
The display module is provided with a power information display window (refer to FIG. 7, 430) as described above. Hereinafter, with reference to FIG. 9, a state corresponding to a change in the amount of power consumption Let's see how to control the display.
Here, the first reference power consumption amount (or the first reference power amount) and the second reference power consumption amount (or the second reference power amount) will be referred to as the reference power consumption amount (or the reference power amount).
As shown in Fig. 9, when the refrigerator is first operated (S801) and the electric power starts to be consumed, the current actual electric power consumption amount (or actual electric power charge) is lower than the reference electric power consumption amount Or in the same range or in excess (S802).
If it is judged that it is not enough, light enters the green window (refer to FIG. 7, 432c) provided in the color display window (see FIG. 7, 432) and green light is displayed on the outside (S903).
Through this, the user can easily recognize that the power consumption or power charge in his / her home is lower than other assumptions.
When the result of the determination in step S802 is in the same range, light enters the yellow window (see FIG. 7, 432b) of the color display window (see FIG. 7) 432 and yellow light (S904).
Here, the same range is preferably defined as a range of about 95 to 100% of a reference power consumption amount (or a reference power fee), but the present invention is not limited thereto, and the range may be changed depending on the situation.
Thus, if the actual power consumption (or actual power charge) in the home is in the range of 95 to 100% of the reference power consumption (or the reference power charge), the yellow window will light up and alert the user .
On the other hand, if it is determined in step S902 that the actual power consumption (or the actual power charge) in the home exceeds the reference power consumption amount (or the reference power charge), in order to inform the user of the excess state in a noticeable manner A red window of the color display window (refer to FIG. 7, 432) (see FIG. 7, 432a) comes in and a red light is displayed on the outside (S905).
Thus, the user can easily recognize that the consumption state of the current power is out of the ordinary household power consumption pattern.
When the refrigerator is operated in a state where the red light is displayed on the color display window as described above, when the refrigerator is operated with the power consumption exceeding the power consumption state, the power management program It is determined whether the power consumption reduction operation is set (S906).
If it is determined that the power consumption reduction operation has been set, a command is issued to the refrigerator to decrease the operation rate or the operating frequency of the compressor, or to reduce the power consumption in defrosting operation of the defrost heater (S907).
If the power consumption reduction operation is set for other electric appliances other than the refrigerator, each appliance will be controlled in such a direction as to reduce the current power consumption according to the setting.
In this state, the current actual power consumption (or the actual power charge) in real time is compared with the reference power consumption amount (or the reference power charge), and the result is displayed with different color light as described above.
200: Refrigerator terminal 210:
211: broadcast receiving module 212: mobile communication module
213: Internet module 214: Local area communication module
220: A / V input unit 221: camera
222: microphone 230: user input
240: Display section 241: Display module
242: sound output module 250: memory
260: interface unit 270: RFID reader unit
280: control unit 290: power supply unit
330: Menu icon 400: Adjustment icon
410: travel path 420: status display window
430: Power information display window 431: Graph display section
432: color display window 433: power consumption display window
Claims (15)
And a control unit connected to the touch screen to display an operation mode of the refrigerator according to the operation of the control icon and to control the operation data of the refrigerator according to each operation mode to be displayed on the display window,
In the display window,
A status display window provided at a lower portion of the adjustment icon and displaying a change in the operating state of the compressor and a state of the compressor according to the operation of the adjustment icon,
And a power information display window provided on one side of the status display window,
The power information display window is displayed in the form of a traffic light including a red window, a yellow window, and a green window, so that the power consumption (or electric power charge) A color display window for notifying this state when the power consumption amount (or the first reference power amount) is exceeded, or the same range is exceeded or not, and the power consumption indicating the power consumption of the whole household and the power consumption of each electric product, A display window,
The display window is shown on one screen,
The adjustment icon is provided in a dragable form so that the user can select an operation mode of the refrigerator,
Wherein the touch screen displays a movement path through which the adjustment icon is moved and an operation mode in which the power consumption of the refrigerator is maximized and an operation mode in which the power consumption is minimized are displayed at one end and the other end of the movement path,
Wherein movement of the adjustment icon by a user's touch and drag is made between one end and the other end of the movement path.
Wherein the control unit controls the display unit to display a change in data related to an operation state of the refrigerator including a target temperature of each storage room corresponding to the movement of the adjustment icon on the touch screen.
The data related to the operation mode of the refrigerator includes the temperature and power consumption of each storage room,
As the user moves the control icon adjacent to the one end of the movement path, the target temperature of each storage room displayed on the touch screen is decreased and the target power consumption is displayed to increase. When the user touches the control icon Wherein the controller is controlled by the controller such that the target temperature of each storage room displayed on the touch screen increases as the movement of the touch screen moves closer to the end, and the target power consumption decreases.
And a communication unit connected to the control unit, the power control unit receiving power rate data of the electric appliances,
The touch screen displays the actual power consumption of each of the other electrical products,
Actual power consumption or actual power charges in the current home,
Wherein the reference power consumption amount or the reference power amount to be compared with the actual power consumption amount or the power amount is provided from outside.
Wherein the control unit compares the actual power consumption amount or the actual power charge in the current home with the reference power consumption amount or the reference power charge and controls the display unit to display on the touch screen whether the former is less than or equal to the latter, .
Wherein the touch screen displays a result of comparing the actual power consumption or the actual power charge in the home with the reference power consumption amount or the reference power charge, (1).
The color display window
If the result of the comparison is less than a predetermined value,
If the comparison result is in the same range, it is displayed in yellow,
And the indicator is displayed in red when the comparison result is over.
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR1020100016208A KR101728722B1 (en) | 2010-02-23 | 2010-02-23 | A refrigerator comprising a displaying device and a control method thereof |
PCT/KR2011/001209 WO2011105768A2 (en) | 2010-02-23 | 2011-02-23 | Refrigerator including a terminal, and method for controlling same |
US13/580,422 US9353990B2 (en) | 2010-02-23 | 2011-02-23 | Refrigerator including a terminal, and method for controlling same |
US15/143,051 US10055117B2 (en) | 2010-02-23 | 2016-04-29 | Refrigerator including a terminal to provide content related to the refrigerator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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KR1020100016208A KR101728722B1 (en) | 2010-02-23 | 2010-02-23 | A refrigerator comprising a displaying device and a control method thereof |
Publications (2)
Publication Number | Publication Date |
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KR20110096772A KR20110096772A (en) | 2011-08-31 |
KR101728722B1 true KR101728722B1 (en) | 2017-04-20 |
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KR1020100016208A KR101728722B1 (en) | 2010-02-23 | 2010-02-23 | A refrigerator comprising a displaying device and a control method thereof |
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CN105209840B (en) * | 2013-02-05 | 2018-01-12 | 真实制造有限公司 | Refrigeration plant is controlled using portable electron device |
CN106766658A (en) * | 2016-12-27 | 2017-05-31 | 佛山市小鲜互联电器科技有限公司 | A kind of refrigerator system that networking control is carried out by mobile terminal |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2000193695A (en) * | 1998-12-28 | 2000-07-14 | Energy Conservation Center Japan | Electric power using state monitoring method and its device |
JP2003162787A (en) * | 2001-08-03 | 2003-06-06 | Matsushita Electric Ind Co Ltd | System for managing energy |
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Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2000193695A (en) * | 1998-12-28 | 2000-07-14 | Energy Conservation Center Japan | Electric power using state monitoring method and its device |
JP2003162787A (en) * | 2001-08-03 | 2003-06-06 | Matsushita Electric Ind Co Ltd | System for managing energy |
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