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    • 43. 发明授权
    • Dynamic power supply management
    • 动态电源管理
    • US09588571B2
    • 2017-03-07
    • US14793958
    • 2015-07-08
    • Quanta Computer Inc.
    • Jen-Hsuen HuangFa-Da LinChih-Wei Yu
    • G06F11/00G06F1/32G06F11/07
    • G06F1/3234G06F1/30G06F11/0706G06F11/0751G06F11/0793H02J3/00H02J13/00H02J2003/007Y02E60/76Y04S40/22
    • In some implementations, a rack management controller can dynamically manage power supply units in a server rack system. For example, the rack management controller can determine how many power supply units should be powered on based on the power requirements of the server rack system. The management controller can configure a power management controller to turn on the determined number of power supply units. The rack management controller can receive status signals from the power supply units in the server rack. The rack management controller can detect when a power supply unit fails based on the status signals. The rack management controller can dynamically reconfigure the power management controller to replace the failed power supply unit by turning on a reserved power supply unit.
    • 在一些实现中,机架管理控制器可以动态管理服务器机架系统中的电源单元。 例如,机架管理控制器可以根据服务器机架系统的电源要求来确定应该接通多少个电源单元。 管理控制器可以配置电源管理控制器来打开确定数量的电源单元。 机架管理控制器可以从服务器机架中的电源单元接收状态信号。 机架管理控制器可以根据状态信号检测电源单元何时出现故障。 机架管理控制器可以动态重新配置电源管理控制器,通过打开预留电源单元来更换故障电源单元。
    • 46. 发明申请
    • CONTROL METHOD AND CONTROL DEVICE
    • 控制方法和控制装置
    • US20170047736A1
    • 2017-02-16
    • US15306476
    • 2015-04-24
    • KYOCERA CORPORATION
    • Issei SUZUKI
    • H02J3/00H02J13/00H02M7/68H02J7/00
    • H02J3/00H02J3/32H02J3/38H02J7/0068H02J9/00H02J13/00H02M7/68
    • The control method, for a storage battery 100 provided in a consumer site receiving electric power supply from a system 104, includes: a first monitoring step of monitoring a first electric energy supplied from the system 104 per unit time period, where the unit time period is shorter than a predetermined time limit; a second monitoring step of monitoring a second electric energy supplied from the system 104 per predetermined time limit; a calculation step of obtaining a change over time in the first electric energy; and an instruction step of instructing the storage battery to discharge electric power to supply a load 108 located in the consumer site in accordance with the change over time in the first electric energy and with a peak value in the past pertaining to the second electric energy.
    • 对于设置在从系统104接收电力供应的消费者站点中的蓄电池100的控制方法包括:第一监视步骤,监视从每单位时间段从系统104提供的第一电能,其中单位时间段 短于预定的时间限制; 第二监测步骤,用于监测从每个预定时间限制的系统104提供的第二电能; 获得第一电能中随时间变化的计算步骤; 以及指示步骤,根据随着时间的变化,指示蓄电池对电力进行放电以提供位于消费者现场的负载108,并且具有过去关于第二电能的峰值。
    • 50. 发明申请
    • UTILITY GRID, INTERMITTENT ENERGY MANAGEMENT SYSTEM
    • 实用网格,间歇能源管理系统
    • US20170003700A1
    • 2017-01-05
    • US15102963
    • 2014-12-22
    • GREEN POWER LABS INC.
    • Alexandre PAVLOVSKIDmitriy ANICHKOV
    • G05F1/66G06Q50/06H02J13/00
    • G05F1/66G05B2219/40458G06Q50/06H02J3/24H02J3/386H02J13/00H02J2003/003Y02E10/763
    • A method for controlling an operating condition of an electric power grid, the electric power grid having an intermittent power supply coupled thereto, the method comprising: using an energy variability controller, controlling variability of a delivered power output of the intermittent power supply to the electric power grid by: monitoring an actual environmental value for a location proximate the intermittent power supply, an available power output of the intermittent power supply being dependent on the actual environmental value; when the actual environmental value is increasing and hence the available power output is increasing, increasing the delivered power output according to a predetermined rate of increase; monitoring a forecast environmental value for the location; when the forecast environmental value is decreasing, decreasing the delivered power output according to a predetermined rate of decrease; and, limiting the delivered power output to below a predetermined threshold.
    • 一种用于控制电力网的运行状态的方法,所述电力网具有与其连接的间歇电源,所述方法包括:使用能量变异控制器,将所述间歇电力的输出功率输出的变化性控制为电 通过以下方式监视电力:监测靠近间歇电源的位置的实际环境值,间歇电源的可用功率输出取决于实际环境值; 当实际环境值增加并且因此可用功率输出增加时,根据预定的增加速率增加输出功率输出; 监测该地点的预测环境价值; 当预测环境值下降时,按照预定的减小速率降低输出功率输出; 并且将传递的功率输出限制在低于预定阈值。