JP7184709B2 - クラウドモニタリングシステムと協働する水素発生器及びそのクラウドモニタリングシステム - Google Patents
クラウドモニタリングシステムと協働する水素発生器及びそのクラウドモニタリングシステム Download PDFInfo
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Description
Claims (14)
- クラウドモニタリングシステムと連携する水素発生器であって、
水素発生デバイスであって、
電気分解される水を収容するように構成される水タンク、及び、
電気分解される水を電気分解して、水素ガスを発生するように構成される電解セル、を備える、水素発生デバイスと、
水素発生デバイスに結合され、水素発生デバイスの状態信号を検出または表示するように構成されるモニタリングデバイスであって、状態信号は、水素生産情報、使用時間情報、水素濃度情報、または水素発生器温度情報を含む、モニタリングデバイスと、
前記ユーザの生理的情報を発生するように構成される生理的情報入力デバイスであって、前記生理的情報は、血中酸素濃度値、心拍動指標、呼吸機能値、または血圧値を含み、前記ネットワークデバイスに無線で結合されるスマートリストバンドである、生理的情報入力デバイスと、
モニタリングデバイスに電気結合されたネットワークデバイスであって、前記生理的情報及び状態信号を含む機械情報をクラウドモニタリングシステムに選択的に送信する、ネットワークデバイスであって、前記状態信号は、水素生産情報、使用時間情報、水素濃度情報、または水素発生器温度情報で構成される、ネットワークデバイスと、
前記ネットワークデバイスに電気結合された制御デバイスであって、前記ネットワークデバイスを介して前記クラウドモニタリングシステムから運転パラメータを受信し、前記運転パラメータに従って前記水素発生デバイスを制御するように構成される、制御デバイスとを備え、
前記運転パラメータは、前記生理的情報及び前記機械情報に対応する、水素発生器。 - 前記ユーザの前記生理的情報に関して匿名化プロシージャを実施して、匿名化生理的情報を発生するように構成される匿名化デバイスを更に備え、
前記ネットワークデバイスは、前記匿名化生理的情報を前記クラウドモニタリングシステムに送信する、請求項1に記載の水素発生器。 - 前記機械情報が異常情報を含むとき、前記制御デバイスは、前記クラウドモニタリングシステムによって送信される前記運転パラメータに従って前記水素発生デバイスのターンオフプロシージャまたは設定プロシージャを実行する、請求項1に記載の水素発生器。
- 前記運転パラメータは、前記クラウドモニタリングシステムを介してモバイルデバイスによって水素発生器の前記制御デバイスに送信され、それにより、前記制御デバイスは、前記運転パラメータに従って前記水素発生デバイスのターンオフプロシージャ、ターンオフプロシージャ、または設定プロシージャを制御する、請求項1に記載の水素発生器。
- 前記ユーザの認証情報を発生するように構成される認証入力デバイスを更に備え、
前記ネットワークデバイスは、前記ユーザの前記認証情報を前記クラウドモニタリングシステムに選択的に送出する、請求項1に記載の水素発生器。 - 前記生理的情報は、前記クラウドモニタリングシステムのユーザアカウントに前記生理的情報を記憶するために、前記水素発生器の機械識別コード及び前記生理的情報入力デバイスのデバイス識別コードに従ってユーザにリンクされる、請求項1に記載の水素発生器。
- 水素発生器の位置決め信号を発生するように構成される位置決めデバイスを更に備え、前記機械情報は前記位置決め信号を含み、前記位置決め信号はGPS情報または機械ネットワークアドレス情報を含む、請求項1に記載の水素発生器。
- 請求項1に記載の複数の水素発生器をモニターするためのクラウドモニタリングシステムであって、
前記複数の水素発生器から複数の機械情報を受信するように構成されるクラウド制御コンソールであって、前記機械情報は、水素生産情報、使用時間情報、水素濃度情報、または水素発生器温度情報を含む、クラウド制御コンソールと、
前記複数の水素発生器の前記複数の機械情報を記憶するように構成される一体化データベースと、
前記クラウド制御コンソールに結合され、前記複数の水素発生器の第1の水素発生器に運転パラメータを送信するように構成される遠隔送信デバイスであって、それにより、前記第1の水素発生器は、前記運転パラメータに従ってターンオフプロシージャ、ターンオフプロシージャ、または設定プロシージャを実施する、遠隔送信デバイスと、
前記複数の水素発生器の位置を表示または記録するための、前記一体化データベースに結合された位置モニタリングデバイスと、
前記一体化データベースに結合され、前記複数の機械情報を分析し確認するように構成されるデータ分析デバイスとを備える、クラウドモニタリングシステム。 - 前記遠隔送信デバイスは、前記第1の水素発生器に対応する機械情報のセットが異常情報を含むことを前記データ分析デバイスが確認すると、前記第1の水素発生器に前記運転パラメータを送信し、それにより、前記第1の水素発生器は、前記運転パラメータに従ってターンオフプロシージャまたは設定プロシージャを実施する、請求項8に記載のクラウドモニタリングシステム。
- 前記運転パラメータは、前記遠隔送信デバイスを介してモバイルデバイスによって前記第1の水素発生器に送信され、それにより、前記第1の水素発生器は、前記運転パラメータに従ってターンオフプロシージャ、ターンオフプロシージャ、または設定プロシージャを実施する、請求項8に記載のクラウドモニタリングシステム。
- 前記一体化データベースは、前記複数の水素発生器の複数のユーザの複数の認証情報または複数の生理的特徴情報を更に記憶し、前記複数のユーザの複数の生理的情報を記憶し、前記データ分析デバイスは、前記複数のユーザの前記複数の生理的情報を分析し、前記運転パラメータを発生する、請求項8に記載のクラウドモニタリングシステム。
- 前記一体化データベースは、前記複数の水素発生器の複数のユーザの複数の匿名化生理的情報を更に記憶し、前記データ分析デバイスは、前記複数のユーザの前記複数の匿名化生理的情報を分析し、前記運転パラメータを発生する、請求項8に記載のクラウドモニタリングシステム。
- 前記一体化データベースに記憶された前記複数の機械情報は、匿名化された機械情報である、請求項8に記載のクラウドモニタリングシステム。
- 前記位置モニタリングデバイスは、前記複数の水素発生器の複数の位置をマップ上に表
示する、請求項8に記載のクラウドモニタリングシステム。
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CN201810830469.6A CN110755727B (zh) | 2018-07-26 | 2018-07-26 | 可电耦接云端监控系统的氢气产生器及其云端监控系统 |
CN201810830469.6 | 2018-07-26 |
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CN114259637B (zh) * | 2022-02-28 | 2023-01-10 | 深圳三爱健康科技有限公司 | 利用氧氢气体的呼吸系统辅助康复管理方法、设备、系统 |
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US20200030235A1 (en) | 2020-01-30 |
RU2021118128A3 (ja) | 2021-12-16 |
SG10201906675YA (en) | 2020-02-27 |
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RU2019123465A3 (ja) | 2021-01-25 |
MY202131A (en) | 2024-04-05 |
CN110755727B (zh) | 2023-11-28 |
RU2021118128A (ru) | 2021-07-27 |
TWI685812B (zh) | 2020-02-21 |
TW202008279A (zh) | 2020-02-16 |
RU2750649C2 (ru) | 2021-06-30 |
AU2019206025A1 (en) | 2020-02-13 |
KR102374390B1 (ko) | 2022-03-16 |
CA3050568C (en) | 2023-03-28 |
CA3050568A1 (en) | 2020-01-26 |
US11596604B2 (en) | 2023-03-07 |
EP3605546A1 (en) | 2020-02-05 |
RU2019123465A (ru) | 2021-01-25 |
KR20200013224A (ko) | 2020-02-06 |
AU2019206025B2 (en) | 2021-04-29 |
CN110755727A (zh) | 2020-02-07 |
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