JP3169265U - Centralized air conditioning management system - Google Patents
Centralized air conditioning management system Download PDFInfo
- Publication number
- JP3169265U JP3169265U JP2011002617U JP2011002617U JP3169265U JP 3169265 U JP3169265 U JP 3169265U JP 2011002617 U JP2011002617 U JP 2011002617U JP 2011002617 U JP2011002617 U JP 2011002617U JP 3169265 U JP3169265 U JP 3169265U
- Authority
- JP
- Japan
- Prior art keywords
- heating
- management system
- computer
- heat storage
- management
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
- 238000004378 air conditioning Methods 0.000 title abstract description 19
- 238000010438 heat treatment Methods 0.000 claims abstract description 34
- 230000001172 regenerating effect Effects 0.000 claims abstract description 19
- 238000004891 communication Methods 0.000 claims abstract description 10
- 238000001816 cooling Methods 0.000 claims abstract description 9
- 238000005338 heat storage Methods 0.000 claims description 29
- 230000005611 electricity Effects 0.000 abstract 1
- 238000007726 management method Methods 0.000 description 26
- 238000000034 method Methods 0.000 description 6
- 238000010586 diagram Methods 0.000 description 3
- 230000005855 radiation Effects 0.000 description 3
- 238000013500 data storage Methods 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 238000004364 calculation method Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000000474 nursing effect Effects 0.000 description 1
- 238000007639 printing Methods 0.000 description 1
Images
Landscapes
- Air Conditioning Control Device (AREA)
Abstract
【課題】本考案は、複数の蓄熱電気暖房器と蓄熱電気床暖房を制御・パターン管理し、省エネ、省コストを実現する冷暖房集中管理システムを提供する。【解決手段】本考案の冷暖房集中管理システムは、地域の気温予報(日射量、曇量、気温)データを気象庁サーバからインターネットを介して接続され、また管理サーバによって暖房制御・パターン管理されるコンピュータと、該コンピュータと無線/有線LANによって通信される知能型通信サーバと、該知能型通信サーバを介して前記コンピュータの制御信号を受信して駆動される多数の蓄熱電気暖房器、多数の蓄熱電気床暖房、多数のエアコン、照明機器、セキュリティカメラとから構成される。【選択図】図1The present invention provides a centralized cooling and heating management system that controls and patterns a plurality of regenerative electric heaters and regenerative electric floor heating to realize energy saving and cost saving. A central air conditioning management system according to the present invention is a computer in which local temperature forecast (irradiance, cloudiness, temperature) data is connected from the Meteorological Agency server via the Internet, and heating control and pattern management are performed by the management server. An intelligent communication server that communicates with the computer by a wireless / wired LAN, a plurality of regenerative electric heaters that are driven by receiving control signals of the computer via the intelligent communication server, and a large number of regenerative electricity It consists of floor heating, many air conditioners, lighting equipment, and security cameras. [Selection] Figure 1
Description
本考案は、複数の蓄熱電気暖房器と蓄熱電気床暖房を制御・パターン管理し、省エネ、省コストを実現する冷暖房集中管理システムに関するものである。 The present invention relates to a centralized cooling and heating management system that controls and patterns a plurality of regenerative electric heaters and regenerative electric floor heating to realize energy saving and cost saving.
従来、ビルなどの建物に設置されている空調設備の省エネを図る手段としては、中央制御装置を導入し、空調機を周期的に起動、停止を繰り返す間欠運転制御や、一日の[入]及び[切]のスケジュールを予め作成し、そのスケジュールに合わせて実行するスケジュール運転制御がある。
しかし、間欠運転制御やスケジュール運転制御では、制御方法が[入]・[切]のみの制御であり、空調の温度設定ができないため、きめ細かな制御ができなかった。
Conventionally, as a means to save energy in air-conditioning equipment installed in buildings and the like, a central control device has been introduced, intermittent operation control that periodically starts and stops the air conditioner, and daily [on] In addition, there is a schedule operation control in which a schedule of [Off] is created in advance and executed according to the schedule.
However, in intermittent operation control and scheduled operation control, the control method is only [ON] / [OFF] control, and the temperature of the air conditioning cannot be set, so detailed control cannot be performed.
そこで、所望の時刻に所望の運転設定で室内機や室外機を自動運転させることを可能とした集中制御型空気調和システム及び空気調和システムの制御方法が知られている(特許文献1を参照)。
この公知技術は、複数の被制御装置と通信回線を介して接続される中央制御装置を有する集中制御型空気調和システムにおいて、データ記憶手段は各被制御装置毎に各被制御装置が所定時刻に行うべき動作を所定時刻と共に運転設定データとして予め記憶し、運転制御手段は前記データ記憶手段から読み出した運転設定データに基づいて被制御装置に運転を行わせるため、運転/停止の制御のみならず、冷房/暖房切換、室温設定、風速設定、リモコン制御禁止等の制御を所定の時間に行わせることができる集中制御型空気調和システム及び空気調和システムの制御方法である。
Therefore, a centralized control type air conditioning system and an air conditioning system control method capable of automatically operating an indoor unit or an outdoor unit at a desired time with a desired operation setting are known (see Patent Document 1). .
In this known technique, in a centralized control type air conditioning system having a central control device connected to a plurality of controlled devices via communication lines, the data storage means is controlled by each controlled device at a predetermined time for each controlled device. The operation to be performed is stored in advance as operation setting data together with a predetermined time, and the operation control means causes the controlled device to operate based on the operation setting data read from the data storage means, so that not only the operation / stop control is performed. A centralized control type air conditioning system and a control method for the air conditioning system capable of performing control such as cooling / heating switching, room temperature setting, wind speed setting, remote control prohibition, and the like at a predetermined time.
同様に、快適性を損なわず省エネが実現できる空調省エネ制御装置が知られている(特許文献2を参照)。
この公知技術は、空調機の設定温度の許容範囲と空調電力使用量の目標値を入力し、そのデータの基に目標値を満たすような最適な空調運転スケジュールを予測し、空調機の運転を制御し、且つ翌日以降の気象データをインターネット経由で取得する手段を備えた空調省エネ制御装置である。
Similarly, an air conditioning energy saving control device that can realize energy saving without impairing comfort is known (see Patent Document 2).
This known technology inputs the allowable range of the set temperature of the air conditioner and the target value of air conditioning power consumption, predicts the optimal air conditioning operation schedule that satisfies the target value based on the data, and operates the air conditioner. It is an air-conditioning energy-saving control device provided with means for controlling and acquiring weather data from the next day via the Internet.
また、学校やホテル等で多数の蓄熱式電気暖房機を用いる場合であっても、各暖房機の集中管理を確実且つ容易に行う蓄熱式電気暖房機の管理システムが知られている(特許文献3を参照)。
この公知技術は、全体的な管理を行う親機ユニット及びこの親機ユニットからネットワークケーブルを介して与えられる指示に従って蓄熱式電気暖房機を制御する複数の子機ユニットより成り、親機ユニットは予め暖房の管理スケジュールを記憶し、この管理スケジュール、室温、外気温に基づいて蓄熱式電気暖房機の放熱量を算出し、この放熱量から蓄熱量を決定し、各子機ユニットは前記記憶した管理スケジュールに従って受け持ちのブロックの蓄熱式電気暖房機の蓄熱及び放熱動作を制御する蓄熱式電気暖房機の管理システムである。
Further, even when a large number of regenerative electric heaters are used in schools, hotels, etc., there is known a regenerative electric heater management system that reliably and easily performs centralized management of each heater (Patent Document). 3).
This known technique is composed of a master unit that performs overall management and a plurality of slave units that control the regenerative electric heater in accordance with instructions given via a network cable from the master unit. The management schedule of heating is memorized, the amount of heat release of the regenerative electric heater is calculated based on this management schedule, room temperature, and outside temperature, the amount of heat storage is determined from this amount of heat release, and each slave unit is stored in the management It is the management system of the thermal storage type electric heater which controls the thermal storage and heat radiation operation of the thermal storage type electric heater of the block in charge according to a schedule.
本考案は、複数の蓄熱電気暖房器と蓄熱電気床暖房を制御・パターン管理し、省エネ、省コストを実現する冷暖房集中管理システムを提供することを目的とする。 An object of the present invention is to provide a centralized cooling and heating management system that controls and patterns a plurality of regenerative electric heaters and regenerative electric floor heating to realize energy saving and cost saving.
本考案の冷暖房集中管理システムは、地域の気温予報データを気象庁サーバからインターネットを介して接続され、また管理サーバによって暖房制御・パターン管理されるコンピュータと、該コンピュータと無線/有線LANによって通信される知能型通信サーバと、該知能型通信サーバを介して前記コンピュータの制御信号を受信して駆動される多数の蓄熱電気暖房器及び蓄熱電気床暖房とから構成される冷暖房集中管理システムにおいて、前記コンピュータは、全ての機器の暖房温度を時間帯別にパターンで設定するパターン設定機能と、平日、休日、休日前、休日後、土曜日のカレンダーに対応した決め細やかな室温設定と蓄熱のスケジュール設定を行うスケジュール設定機能と、過去の残熱量データ又は地域の明日の気温予報から自動的に蓄熱電気暖房器の蓄熱量の設定を行う蓄熱量自動設定機能と、管理画面に個別及びグループ別の仕様電力量を表示する省エネナビゲーション機能及び施設の電力使用状況を常時監視し、目標電力を超えないように制御するデマンド制御機能を備えている。 The central heating / cooling management system according to the present invention is connected to the local temperature forecast data from the Japan Meteorological Agency server via the Internet, and is controlled by the management server for heating control and pattern management, and communicated with the computer via a wireless / wired LAN. In the centralized cooling and heating management system comprising an intelligent communication server, and a plurality of regenerative electric heaters and regenerative electric floor heating driven by receiving control signals of the computer via the intelligent communication server, the computer Is a pattern setting function that sets the heating temperature of all devices in a pattern by time zone, and a schedule that performs detailed room temperature settings and heat storage schedule settings corresponding to the calendar on weekdays, holidays, before holidays, after holidays, and Saturdays From the setting function and past residual heat data or local tomorrow's temperature forecast Automatically set the heat storage amount of the heat storage electric heater, the energy saving navigation function that displays individual and group specific power amount on the management screen, and constantly monitor the power usage status of the facility, and target power It has a demand control function to control so as not to exceed.
本考案の冷暖房集中管理システムは、全ての機器の暖房温度を時間帯別にパターンで設定するパターン設定機能と、平日、休日、休日前、休日後、土曜日のカレンダーに対応した決め細やかな室温設定と蓄熱のスケジュール設定を行うスケジュール設定機能と、過去の残熱量データ又は地域の明日の気温予報から自動的に蓄熱電気暖房器の蓄熱量の設定を行う蓄熱量自動設定機能と、管理画面に個別及びグループ別の仕様電力量を表示する省エネナビゲーション機能及び施設の電力使用状況を常時監視し、目標電力を超えないように制御するデマンド制御機能を備えているため、省エネ、省コストを実現することが可能となる。 The central air conditioning management system of the present invention has a pattern setting function that sets the heating temperature of all devices in a pattern for each time zone, and a delicate room temperature setting corresponding to the calendar on weekdays, holidays, before holidays, after holidays, and Saturdays. Schedule setting function to set heat storage schedule, heat storage automatic setting function to automatically set heat storage amount of heat storage electric heater from past residual heat amount data or local tomorrow's temperature forecast, and management screen individually and It is possible to realize energy saving and cost saving because it has an energy saving navigation function that displays the specified amount of power by group and a demand control function that constantly monitors the power usage status of the facility and controls so as not to exceed the target power. It becomes possible.
本考案の冷暖房集中管理システムの一実施例を添付図面に基づいて、以下に説明する。
図1の概要図に示すように、本考案の冷暖房集中管理システムは、地域の気温予報(日射量、曇量、気温)データを気象庁サーバからインターネットを介して接続され、また管理サーバによって暖房制御・パターン管理されるコンピュータと、該コンピュータと無線/有線LANによって通信される知能型通信サーバと、該知能型通信サーバを介して前記コンピュータの制御信号を受信して駆動される多数の蓄熱電気暖房器、多数の蓄熱電気床暖房、多数のエアコン、照明機器、セキュリティカメラとから構成される。
前記コンピュータには、必要に応じてプリンターが接続される。
An embodiment of the air conditioning centralized management system of the present invention will be described below with reference to the accompanying drawings.
As shown in the schematic diagram of FIG. 1, the central heating / cooling management system of the present invention is connected to the regional temperature forecast (irradiation amount, cloudiness, temperature) data from the Japan Meteorological Agency server via the Internet, and heating control is performed by the management server. A pattern-managed computer, an intelligent communication server that communicates with the computer via a wireless / wired LAN, and a large number of regenerative electric heaters that are driven by receiving control signals of the computer via the intelligent communication server Equipment, a large number of regenerative electric floor heaters, a large number of air conditioners, lighting equipment, and security cameras.
A printer is connected to the computer as necessary.
次に、前記コンピュータの制御・パターン管理について、以下に詳細に説明する。
前記コンピュータは、全ての機器の暖房温度を時間帯別にパターンで設定するパターン設定機能と、平日、休日、休日前、休日後、土曜日のカレンダーに対応した決め細やかな室温設定と蓄熱のスケジュール設定を行うスケジュール設定機能と、過去の残熱量データ又は地域の明日の気温予報(日射量、曇量、気温)から自動的に蓄熱電気暖房器の蓄熱量の設定を行う蓄熱量自動設定機能と、管理画面に個別及びグループ別の仕様電力量を表示する省エネナビゲーション機能及び施設の電力使用状況を常時監視し、目標電力を超えないように制御するデマンド制御機能を備えている。
Next, control and pattern management of the computer will be described in detail below.
The computer has a pattern setting function that sets the heating temperature of all devices in a pattern for each time zone, and a detailed room temperature setting and heat storage schedule setting corresponding to the calendar for weekdays, holidays, before holidays, after holidays, and Saturdays. Schedule setting function to be performed, heat storage amount automatic setting function to automatically set the heat storage amount of the heat storage electric heater from past residual heat amount data or local tomorrow's temperature forecast (irradiation amount, cloudiness, temperature) and management It has an energy-saving navigation function that displays the specified power amount for each individual and group on the screen, and a demand control function that constantly monitors the power usage status of the facility and controls so as not to exceed the target power.
更に詳細に、パターン設定機能、スケジュール設定機能、蓄熱量自動設定機能、省エネナビゲーション機能、デマンド制御機能の各々について説明する。
「パターン設定機能」
コンピュータのパターン画面から暖房温度を時間帯別に複数のパターンを予め設定し、設定した複数のパターンの中から一つを選択すると、選択されたパターンの暖房モード及び蓄熱モードの情報が表示され、前記暖房モードの「自動」を選択すると暖房時間別温度で設定された通りの暖房が進行し、前記蓄熱モードの「自動」を選択するとエコモードにより自動的に蓄熱量を設定する。
尚、「手動」の場合は、手動設定された温度の通り24時間の暖房を維持し、手動設定された設定量位の蓄熱を進行する。
In more detail, each of the pattern setting function, the schedule setting function, the heat storage amount automatic setting function, the energy saving navigation function, and the demand control function will be described.
"Pattern setting function"
By presetting a plurality of patterns for each heating time for the heating temperature from the pattern screen of the computer, and selecting one of the set plurality of patterns, information on the heating mode and the heat storage mode of the selected pattern is displayed, When “automatic” of the heating mode is selected, the heating proceeds as set by the temperature for each heating time, and when “automatic” of the heat storage mode is selected, the heat storage amount is automatically set by the eco mode.
In the case of “manual”, the heating for 24 hours is maintained according to the manually set temperature, and the heat storage of the manually set amount is advanced.
「スケジュール設定機能」
コンピュータのカレンダー画面から日付を選択し、スケジュールを指定する平日、休日、休日前、休日後、土曜日の5個の日タイプの中から一つを選択すると、カレンダーに選択日タイプが表示される。
また、前記パターン画面で平日、休日、休日前、休日後、土曜日の5個の日タイプの温度設定を行う。
その日付になると、暖房モード及び蓄熱モードは、その日タイプに応じて適用される温度設定パターンに従って制御される。
"Schedule setting function"
When a date is selected from the calendar screen of the computer and one of the five day types of weekday, holiday, before holiday, after holiday, and Saturday for specifying the schedule is selected, the selected date type is displayed on the calendar.
Further, the temperature setting of five day types of weekdays, holidays, before holidays, after holidays, and Saturdays is performed on the pattern screen.
When that date is reached, the heating mode and the heat storage mode are controlled according to the temperature setting pattern applied according to the day type.
「蓄熱量自動設定機能」
負荷計算上での外気温の設定温度と、過去の蓄熱量又は地域の気温予報(日射量、曇量、気温)から演算した設定温度と、パターン設定温度とから自動設定(エコモード)する。
“Heat storage automatic setting function”
It is automatically set (eco-mode) from the set temperature of the outside temperature in the load calculation, the set temperature calculated from the past heat storage amount or the local temperature forecast (the amount of solar radiation, the amount of cloudiness, the temperature), and the pattern set temperature.
「省エネナビゲーション機能」
コンピュータの管理画面に個別及びグループ別の室温、外部気温、設定温度、電力量のデータを期間別に折れ線グラフや棒グラフで表示する
"Energy saving navigation function"
Display the data of room temperature, external temperature, set temperature, and electric energy for each and each group as a line graph or bar graph for each period on the computer management screen.
「デマンド制御機能」
業務用時間帯別での夜間電力で、22時〜8時までの10時間に設定されたメニューを使用し、この夜間電力帯にネットワーク内の蓄熱電気暖房器などの電力負荷を30分ごとに制御して、使用電力を20%抑える。
例えば、総時間10時間に対し通電時間を8時間、不通電時間を2時間とすれば、5グループの内1グループを順繰りに30分間停止する制御を行うことで、トータルワット数:twとし、tw/5の値でグループ化することにより、2割カットすることができる。
Demand control function
Using the menu set for 10 hours from 22:00 to 8:00 with nighttime power by business hours, the power load such as heat storage electric heaters in the network is loaded every 30 minutes in this nighttime power band Control power consumption by 20%.
For example, if the energization time is 8 hours and the non-energization time is 2 hours with respect to the total time of 10 hours, the total wattage: tw is set by performing control to stop one group out of 5 groups in order for 30 minutes. By grouping with the value of tw / 5, it is possible to cut 20%.
次に、本考案の冷暖房集中管理システムの操作動作について、以下に説明する。
小学校、中学校、高校、幼稚園、保育所、病院、老人ホーム、商業施設、事務所、工場、住宅、スポーツジム、リゾート施設、別荘、農業用ハウスなどで図1の概要図に示す冷暖房集中管理システムが利用される。
コンピュータの初期画面には、メイン、配置図、グループ、設定、日状態、印刷などがボタン表示される。
Next, the operation of the air conditioning centralized management system of the present invention will be described below.
Air conditioning centralized management system shown in the schematic diagram of Fig. 1 in elementary school, junior high school, high school, kindergarten, nursery school, hospital, nursing home, commercial facility, office, factory, housing, sports gym, resort facility, villa, agricultural house, etc. Is used.
On the initial screen of the computer, buttons such as main, layout, group, setting, date status, and printing are displayed.
メイン画面で暖房期間を年/月/日単位で入力して設定し、蓄熱時間帯を蓄熱が開始される時間と終了時間で設定し、設置地域をユーザーの居住地域で設定する。
前記設置地域は、地域番号で、蓄熱自動モードで、気温予報(日射量、曇量、気温)の情報を連動するために使用される。
その他にメイン画面には、現在蓄熱電気暖房器などの装置が稼動しているかどうかの動作状態、暖房モードの自動又は手動、蓄熱モードの自動又は手動、外部の温度計のセンサから読み取った外気温、通信方式の無線かLANかを表示する。
設定画面では、上記パターン設定機能やスケジュール設定機能に基づく処理が行われ、それぞれのパターンが設定される。
したがって、本考案の冷暖房集中管理システムでは、その日付になると、暖房モード及び蓄熱モードは、平日、休日、休日前、休日後、土曜日の5個の日タイプに応じて適用される温度設定パターンに従って制御される。
On the main screen, the heating period is input and set in units of year / month / day, the heat storage time zone is set by the time when heat storage starts and the end time, and the installation area is set by the user's residence area.
The installation area is an area number, and is used to link the information of the temperature forecast (the amount of solar radiation, the amount of cloudiness, the temperature) in the automatic heat storage mode.
In addition, the main screen displays the operating status of whether or not a device such as a regenerative electric heater is currently in operation, automatic or manual heating mode, automatic or manual heat storage mode, or the outside temperature read from an external thermometer sensor Displays whether the communication method is wireless or LAN.
On the setting screen, processing based on the pattern setting function and the schedule setting function is performed, and each pattern is set.
Therefore, in the air conditioning centralized management system of the present invention, when the date comes, the heating mode and the heat storage mode are in accordance with the temperature setting pattern applied according to the five day types of weekdays, holidays, before holidays, after holidays, and Saturdays. Be controlled.
Claims (1)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2011002617U JP3169265U (en) | 2011-05-12 | 2011-05-12 | Centralized air conditioning management system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2011002617U JP3169265U (en) | 2011-05-12 | 2011-05-12 | Centralized air conditioning management system |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| JP3169265U true JP3169265U (en) | 2011-07-21 |
Family
ID=54880150
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP2011002617U Expired - Fee Related JP3169265U (en) | 2011-05-12 | 2011-05-12 | Centralized air conditioning management system |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JP3169265U (en) |
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2013134037A (en) * | 2011-12-27 | 2013-07-08 | Shimizu Corp | Air-conditioning operation navigation device |
| JP2014009932A (en) * | 2012-07-03 | 2014-01-20 | Sharp Corp | Air conditioner and control method of air conditioner |
| JP2016044911A (en) * | 2014-08-25 | 2016-04-04 | 荏原冷熱システム株式会社 | Composite heat source unit system |
| CN116007045A (en) * | 2022-12-27 | 2023-04-25 | 吉林化工学院 | A Smart City Heat Supply Management System Based on Internet of Things |
-
2011
- 2011-05-12 JP JP2011002617U patent/JP3169265U/en not_active Expired - Fee Related
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2013134037A (en) * | 2011-12-27 | 2013-07-08 | Shimizu Corp | Air-conditioning operation navigation device |
| JP2014009932A (en) * | 2012-07-03 | 2014-01-20 | Sharp Corp | Air conditioner and control method of air conditioner |
| JP2016044911A (en) * | 2014-08-25 | 2016-04-04 | 荏原冷熱システム株式会社 | Composite heat source unit system |
| CN116007045A (en) * | 2022-12-27 | 2023-04-25 | 吉林化工学院 | A Smart City Heat Supply Management System Based on Internet of Things |
| CN116007045B (en) * | 2022-12-27 | 2023-10-20 | 吉林化工学院 | Intelligent city heat supply management system based on Internet of things |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| US20110257795A1 (en) | Thermostat method and system for controlling solar energy utilization for efficient energy usage and conservation of energy resources | |
| AU2016257459B2 (en) | Multi-function home control system with control system hub and remote sensors | |
| US10334700B2 (en) | System for integrated lighting control, configuration, and metric tracking from multiple locations | |
| US20140096946A1 (en) | Comfort-Optimized Demand Response | |
| CN103644628B (en) | Energy-saving method and device for air conditioner | |
| CN105190193B (en) | Air conditioning control device, air-conditioner control system and air conditioning control method | |
| JP2011179722A (en) | Air conditioning control system | |
| CN105890115A (en) | Control unit with automatic setback capability | |
| JP3169265U (en) | Centralized air conditioning management system | |
| US20110295430A1 (en) | Apparatus And Method For Managing Heating Or Cooling Of An Area In A Building | |
| EP1947532A2 (en) | A control system | |
| AU2015201010A1 (en) | Load control system | |
| US20230105512A1 (en) | Air conditioning system | |
| JP2005341646A (en) | Energy saving system | |
| JP2010281549A (en) | Air conditioning system | |
| US20140142763A1 (en) | Hold management in an environmental controller | |
| JP2018042348A (en) | Residential equipment control system | |
| JP4661062B2 (en) | Schedule transmission device, device operation setting device, schedule distribution method, device operation setting method | |
| KR102199139B1 (en) | Apparatus and method for controlling an air conditioner, air conditioning system | |
| KR20130118125A (en) | Air conditioner control system and method | |
| Shukora et al. | Switching On/Off Air Conditioner and Fan Alternately based on IoT Motion Detection and Room Temperature | |
| JP2004118366A (en) | Energy saving control system, energy saving control method, and presentation reception device | |
| Meier | Thermostat interface and usability: a survey | |
| JP7316050B2 (en) | air conditioning control system | |
| KR101609563B1 (en) | Building automation device using environmental data |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| R150 | Certificate of patent or registration of utility model |
Free format text: JAPANESE INTERMEDIATE CODE: R150 |
|
| FPAY | Renewal fee payment (event date is renewal date of database) |
Free format text: PAYMENT UNTIL: 20140629 Year of fee payment: 3 |
|
| LAPS | Cancellation because of no payment of annual fees |