JP2015502512A - インテリジェントサーモスタット用エネルギー効率助長スケジュール学習アルゴリズム - Google Patents
インテリジェントサーモスタット用エネルギー効率助長スケジュール学習アルゴリズム Download PDFInfo
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Abstract
Description
110 サーモスタット
112 遠隔デバイス
120 HVACシステム
212 制御電子機器
230 コンプレッサ
234 冷房コイル
236 回線
238 送風機
240 空気処理機
242 加熱コイルまたは要素
246 還気ダクト
250 格子
252 給気ダクトシステム
254 加湿器
260 処理システム
270 フィルタ
300 サーモスタット
308 上側キャップ
312 外側回転可能リング
314 カバー
316 ディスプレイ
330 パッシブ赤外線近接センサ
Claims (30)
- 筐体と、
ユーザからの回転入力の動きを追跡するように構成される、リング形状のユーザインターフェース構成要素と、
前記筐体内に配置され、前記リング形状のユーザインターフェース構成要素に連結される、処理システムであって、周囲気温を受信するための1つ以上の温度センサと動作通信するように構成され、さらに、HVACシステムと動作通信し、少なくとも部分的に、前記測定された周囲温度および設定点温度の比較に基づいて、前記HVACシステムを制御するように構成され、さらに、前記追跡された回転入力に基づいて、前記設定点温度値を即時制御しようとするユーザの所望を識別するように構成され、なおもさらに、所定の時間間隔の終了に応じて、前記設定点温度を低エネルギー消費温度に自動的にリセットし、少なくとも部分的に、前記設定点温度を即時制御しようとする前記ユーザの所望の反復識別に基づいて、前記サーモスタット用のスケジュールを生成するように構成される、処理システムと、
前記処理システムに連結され、前記識別された設定点温度値を表す情報を表示するように構成される、電子ディスプレイと、
を備える、サーモスタット。 - 前記電子ディスプレイは、前記サーモスタット筐体の正面に沿って配置され、
前記リング形状のユーザインターフェース構成要素は、前記電子ディスプレイを実質的に囲繞し、さらに、前記回転入力の動きの回転軸の方向に沿って、前記ユーザによって内向きに押下可能であるように構成される、機械的に回転可能なリングを備え、
前記機械的に回転可能なリングおよび前記筐体は、前記機械的に回転可能なリングが、内向きに押下されると、前記回転軸の方向に沿って内向きに移動するように相互に構成される、請求項1に記載のサーモスタット。 - 前記サーモスタット筐体は、概して、円盤状形状であって、その正面は、円形であって、前記機械的に回転可能なリングは、概して、前記円盤状形状の外側側方周縁と一致する、請求項2に記載のサーモスタット。
- 前記サーモスタットは、前記リング形状のユーザインターフェース構成要素の前記回転入力の動きおよび前記内向き押下が、前記サーモスタットへの唯一の物理的ユーザ入力を表すように構成される、請求項1に記載のサーモスタット。
- 前記所定の時間間隔は、少なくとも約1時間から約4時間未満である、請求項1に記載のサーモスタット。
- 前記所定の時間間隔は、少なくとも1.5時間から約3時間未満である、請求項5に記載のサーモスタット。
- 前記電子ディスプレイはさらに、ユーザに、前記スケジュールの生成に関する通知を表示するように構成される、請求項1に記載のサーモスタット。
- 前記処理システムはなおもさらに、2つ以上の即時制御設定点温度変更が、90分未満の短時間間隔内に識別される場合、前記スケジュールの生成が、前記2つ以上の識別のうちの最新のものに基づくように構成される、請求項1に記載のサーモスタット。
- 前記処理システムはなおもさらに、前記設定点温度の自動リセットが、前記HVACシステムが暖房を使用するときは、68°Fを下回る基準設定点温度に、前記HVACシステムが冷房を使用するときは、78°Fを上回る基準設定点温度に行なわれるように構成される、請求項1に記載のサーモスタット。
- 前記処理システムはなおもさらに、前記生成されたスケジュールが、前記プログラム可能サーモスタット用アクティブスケジュールとして自動的に採用されるように構成される、請求項1に記載のサーモスタット。
- HVACシステムの制御のために使用されるプログラム可能サーモスタット用スケジュールを生成するための方法であって、前記サーモスタットは、筐体と、リング形状のユーザインターフェース構成要素と、処理システムと、電子ディスプレイとを備え、
1つ以上の温度センサによって測定された周囲気温にアクセスすることと、
前記リング形状のユーザインターフェース構成要素の回転移動を検出および追跡し、ユーザの少なくとも1つの回転入力の動きを追跡することと、
第1の時点において追跡された回転入力の動きに基づいて、第1の設定点温度値を識別することと、
所定の時間間隔の間、少なくとも部分的に、前記測定された周囲気温および前記第1の設定点温度値の比較に基づいて、前記HVACシステムを制御することと、
前記所定の時間間隔の終了に応じて、前記第1の設定点温度を自動的にリセットすることと、
第2の時点において追跡された回転入力の動きに基づいて、第2の設定点温度値を識別することと、
前記所定の時間間隔の間、少なくとも部分的に、前記測定された周囲気温および前記第2の設定点温度値の比較に基づいて、前記HVACシステムを制御することと、
前記所定の時間間隔の終了に応じて、前記第2の設定点温度を自動的にリセットすることと、
前記処理システムを用いて、少なくとも部分的に、前記第1および第2の設定点ならびに前記第1および第2の時点に基づいて、前記プログラム可能サーモスタット用スケジュールを生成することと、
前記第1および第2の識別された設定点温度値を表す情報を前記電子ディスプレイ上に表示することと、
を含む、方法。 - 前記所定の時間間隔は、少なくとも約30分から約6時間未満である、請求項11に記載の方法。
- 前記所定の時間間隔は、約2時間である、請求項12に記載の方法。
- 前記第1および第2の設定点のリセットは、前記設定点温度を基準設定点温度にリセットする、請求項11に記載の方法。
- 包囲空間が、少なくとも部分的に、時季および前記包囲空間の地理的場所に基づいて、暖房を使用する可能性があるかどうかを判定することをさらに含む、請求項14に記載の方法。
- 前記基準設定点温度は、前記包囲空間が暖房を使用する可能性があるときは、65°Fを下回る、請求項15に記載の方法。
- 前記基準設定点温度は、前記包囲空間が冷房を使用する可能性があるときは、78°Fを上回る、請求項15に記載の方法。
- 前記電子ディスプレイ上に、前記スケジュールが生成されたことを示す通知を表示することをさらに含む、請求項11に記載の方法。
- 前記第1および第2の設定点のリセットは、前記設定点温度を既存のスケジュールにリセットする、請求項11に記載の方法。
- 前記生成されたスケジュールを前記プログラム可能サーモスタット用アクティブスケジュールとして自動的に採用することをさらに含む、請求項11に記載の方法。
- 前記電子ディスプレイ上に、前記スケジュールが生成されたことを示す通知を表示することと、
アクティブスケジュールとして、前記生成されたスケジュールを採用するかどうかに関するユーザ入力を識別することと、
をさらに含む、請求項11に記載の方法。 - 遠隔ユーザインターフェース上に、前記スケジュールが生成されたことを示す通知を表示することと、
前記遠隔ユーザインターフェースを使用して、アクティブスケジュールとして、前記生成されたスケジュールを採用するかどうかのユーザの所望を識別することと、
をさらに含む、請求項11に記載の方法。 - 円形正面を含む、円盤状筐体と、
前記正面上の中央に配置される、電子ディスプレイと、
前記中央に配置された電子ディスプレイの周囲に配置される、環状リング部材であって、前記環状リング部材および前記筐体は、(i)前記環状リング部材が、前記サーモスタットの前後軸の周囲を回転可能であって、(ii)前記環状リング部材が、前記前後軸の方向に沿って、内向きに押下可能であるように相互に構成される、環状リング部材と、
前記筐体内に配置され、前記環状リング部材に連結される、処理システムと、
を備え、前記処理システムは、前記環状リング部材のユーザ回転に基づいて、設定点温度値を動的に改変するように構成およびプログラムされ、
前記処理システムはさらに、周囲気温を受信するための1つ以上の温度センサと動作通信するように構成され、前記処理システムはなおもさらに、HVACシステムと動作通信し、少なくとも部分的に、前記測定された周囲温度および前記設定点温度値の比較に基づいて、前記HVACシステムを制御するように構成され、
前記処理システムはなおもさらに、前記環状リング部材から、スケジュールを自動的に生成することに関する前記ユーザの選好に関連するユーザ入力を識別し、そこから、自動的に生成されたスケジュールを自動的に採用するかどうかを判定するように構成される、
サーモスタット。 - 前記識別されたユーザ入力は、自動的に生成されたスケジュールが、自動的に採用されるべきかどうかを識別する、請求項23に記載のサーモスタット。
- 前記識別されたユーザ入力は、前記ユーザが、自動的に生成されたスケジュールの採用に関する将来的通知を受信することを選好するかどうかを識別する、請求項23に記載のサーモスタット。
- 前記処理システムはなおもさらに、少なくとも部分的に、前記識別されたユーザ入力に基づいて、前記ユーザに、前記ユーザが採用することを所望し得る、自動的に生成されたスケジュールを通知するかどうかを判定するように構成される、請求項25に記載のサーモスタット。
- 前記ユーザに通知するかどうかの判定は、部分的に、前記自動的に生成されたスケジュールと関連付けられたコストおよび/またはエネルギーの推定節約に基づく、請求項26に記載のサーモスタット。
- 前記識別されたユーザ入力は、前記ユーザが、前記プログラム可能サーモスタット用スケジュールを手動で入力することを選好するかどうかを識別する、請求項23に記載のサーモスタット。
- 前記処理システムに連結されたオーディオ出力デバイスをさらに備え、前記サーモスタットは、前記機械的に回転可能なリングのユーザ回転と一致して、前記オーディオ出力デバイスを通して、合成された可聴ティック音を出力するように構成される、請求項23に記載のサーモスタット。
- 前記1つ以上の温度センサをさらに備え、前記処理システムは、少なくとも部分的に、前記測定された周囲気温および前記設定点温度値の比較に基づいて、少なくとも1つの制御信号を前記HVACシステムに送信するように構成およびプログラムされる、請求項23に記載のサーモスタット。
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EP2769279B1 (en) | 2018-12-26 |
EP2769279A4 (en) | 2016-04-06 |
US9298196B2 (en) | 2016-03-29 |
CA2852944A1 (en) | 2013-04-25 |
CN103890676B (zh) | 2016-09-21 |
EP3486743A3 (en) | 2019-08-21 |
CN106440187A (zh) | 2017-02-22 |
EP3486743B1 (en) | 2022-05-25 |
CN103890676A (zh) | 2014-06-25 |
CA2852944C (en) | 2023-03-14 |
US20130099011A1 (en) | 2013-04-25 |
JP6457268B2 (ja) | 2019-01-23 |
EP2769279A1 (en) | 2014-08-27 |
EP3486743A2 (en) | 2019-05-22 |
WO2013059671A1 (en) | 2013-04-25 |
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