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    • 53. 发明授权
    • Apparatus, system, and method for managing energy consumption
    • 用于管理能源消耗的装置,系统和方法
    • US09236741B2
    • 2016-01-12
    • US13352079
    • 2012-01-17
    • Jae Hwi JangJong Hyun ShinYoung Jin ParkHyun Soo Park
    • Jae Hwi JangJong Hyun ShinYoung Jin ParkHyun Soo Park
    • G06F1/32H02J3/14G06Q10/06G06Q50/06
    • H02J3/14G06Q10/063G06Q50/06H02J2003/143H02J2003/146Y02B70/3225Y02B70/3266Y04S20/222Y04S20/224Y04S20/242
    • A power management system includes a plurality of electrical instruments and a power management apparatus. Each of the plurality of electrical instruments has at least one characteristic function and an arbitration function which is discriminated from the characteristic function and requires power arbitration. Each electrical instrument includes a plurality of operation algorithms having at least one characteristic function, operation levels respectively corresponding to the plurality of operation algorithms, power information for the respective operation levels, and power information of the arbitration function. The power management apparatus receives power rate information from a power provider, determines the operation levels of the plurality of electrical instruments and controls the electrical instruments to be driven at the determined operation levels. When an arbitration function selection signal is received from at least one of the electrical instruments while the electrical instruments are driven, the power management apparatus adjusts operation levels of other electrical instruments.
    • 电力管理系统包括多个电气仪器和电力管理装置。 多个电气设备中的每一个具有至少一个特征功能和仲裁功能,该特征功能和特征功能被区分,并且需要功率仲裁。 每个电气仪器包括多个操作算法,其具有至少一个特征功能,分别对应于多个操作算法的操作级别,各个操作级别的功率信息和仲裁功能的功率信息。 电力管理装置从电力供应商接收电力信息,确定多个电气工具的操作电平,并以所确定的操作电平控制要驱动的电气设备。 当电动仪器被驱动时从至少一个电气仪器接收到仲裁功能选择信号时,电力管理装置调节其他电气设备的操作电平。
    • 54. 发明授权
    • Methods and systems for efficient battery charging and usage
    • 高效电池充电和使用的方法和系统
    • US09201478B2
    • 2015-12-01
    • US13570310
    • 2012-08-09
    • Eyal Yechieli
    • Eyal Yechieli
    • H02J7/00G06F1/26H02J3/14H02J7/02
    • G06F1/26H02J3/14H02J5/00H02J7/02H02J2003/146Y02B40/90Y02B70/3225Y04S20/222Y04S20/224
    • Battery charging methods and systems for devices that have rechargeable batteries provide an efficient way to know when to charge a device's battery, and when to switch between the device's battery and an external power source as the device's power source. The methods and systems access thresholds for a plurality of power rates, obtain information about when different power rates are in effect and, after determining a current power rate based on the information, compare the threshold of the current power rate to the device's battery's charge level. Based on such a comparison, the methods and systems can determine whether the battery should be charged, and the methods and system can determine whether the device's battery or an external power source should be used as the device's power source.
    • 具有可充电电池的设备的电池充电方法和系统提供了一种有效的方式来知道设备的电池何时充电,以及何时在设备的电池和外部电源之间切换设备的电源。 所述方法和系统接入多个功率率的阈值,获得关于不同功率率何时有效的信息,并且在基于该信息确定当前功率之后,将当前功率速率的阈值与设备的电池充电水平进行比较 。 基于这样的比较,方法和系统可以确定电池是否应该被充电,并且方法和系统可以确定设备的电池或外部电源是否应当用作设备的电源。
    • 56. 发明申请
    • DYNAMIC DEMAND RESPONSE EVENT ASSESSMENT
    • 动态需求响应事件评估
    • US20150324817A1
    • 2015-11-12
    • US14275674
    • 2014-05-12
    • FUJITSU LIMITED
    • Wei-Peng CHENSanam MIRZAZAD BARIJOUGH
    • G06Q30/02
    • G06Q30/0202G06Q10/0631G06Q30/0206G06Q50/06Y04S20/224
    • A method of demand response (DR) event issue assessment is described. The method may include receiving parameters that may include one or more of contractual parameters, ambient condition data, historical data, and energy price data. The method may include predicting a customer demand and a customer energy curtailment based on one or more of the parameters. The method may further include calculating a customer participation likelihood based on one or more of the parameters. The method may include determining a price threshold based on one or more of the parameters, the customer energy curtailment, the customer demand, and the customer participation likelihood. The price threshold may represent an energy price at which issuing a DR event is more profitable than not issuing the DR event.
    • 描述了需求响应(DR)事件问题评估的方法。 该方法可以包括接收可包括合同参数,环境条件数据,历史数据和能量价格数据中的一个或多个的参数。 该方法可以包括基于一个或多个参数预测客户需求和客户能量削减。 该方法还可以包括基于一个或多个参数来计算客户参与可能性。 该方法可以包括基于一个或多个参数,客户能量削减,客户需求和客户参与可能性来确定价格阈值。 价格阈值可以表示发布DR事件比不发布DR事件更有利的能源价格。