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    • 1. 发明申请
    • SMART RESPONSIVE ELECTRICAL LOAD
    • 智能电气负载
    • WO2010033038A1
    • 2010-03-25
    • PCT/NO2009000326
    • 2009-09-18
    • RLTEC LTDHOWE ANDREWDAMES ANDREWROUSSOPOULOS KIMONNORRIS TIM
    • DAMES ANDREWROUSSOPOULOS KIMONNORRIS TIM
    • H02J3/14H02J3/00H02J3/38
    • H02J3/14H02J5/00H02J7/02Y02B70/3225Y02T90/168Y04S20/222Y04S30/12Y10T307/25Y10T307/305Y10T307/406Y10T307/438Y10T307/461Y10T307/865
    • A smart responsive electrical load (10) is operatively connectable to an electricity supply network (20). The smart responsive electrical load (10) comprises an electrical power- consuming device (30) and a control arrangement (40) for controlling a supply of electrical power from the network (20) to the device (30). The control arrangement (60, 110, 150, 160, 170) is operable to impose a variable time delay (tp) before supplying electrical power to the device (30) after a request for power to be provided to the device (30). The variable time delay (tp) is a function of a state of the network (20), for example its frequency (f) and/or its voltage amplitude (V). Optionally, the device (30) is a battery charger, for example for use with a rechargeable electric vehicle. Beneficially, the smart responsive load (10) is supplied with electrical power from a population of micro-generation devices (500) operable to provide supply network res onse.
    • 智能响应电负载(10)可操作地连接到电力供应网络(20)。 智能响应电负载(10)包括用于控制从网络(20)到设备(30)的电力供应的电力消耗装置(30)和控制装置(40)。 控制装置(60,110,150,160,170)可操作以在向所述设备(30)提供功率请求之后,向所述设备(30)提供电力之前施加可变时间延迟(tp)。 可变时间延迟(tp)是网络(20)的状态的函数,例如其频率(f)和/或其电压幅度(V)。 可选地,设备(30)是电池充电器,例如用于可充电电动车辆。 有利的是,智能响应负载(10)被提供来自可操作以提供供应网络的微型发电设备(500)的电力。
    • 6. 发明申请
    • RESPONSIVE LOAD MONITORING SYSTEM AND METHOD
    • 响应负载监测系统和方法
    • WO2011014073A2
    • 2011-02-03
    • PCT/NO2010/000291
    • 2010-07-27
    • RLTEC LTD.HOWE, AndrewBLOOR, KatieWARREN, JoeNORRIS, Tim
    • HOWE, AndrewBLOOR, KatieWARREN, JoeNORRIS, Tim
    • G05B13/04
    • H02J3/14H02J2003/143Y02B70/3225Y02B70/3266Y02P80/11Y02P90/845Y04S20/222Y04S20/242
    • A system employs a method of determining a level of potential responsive-load electrical power network service susceptible to being provided by one or more power consuming devices (100). The method includes: (a) determining operating characteristics of power consuming devices; (b) developing a parameterized numerical model of operation of the power consuming devices based upon the determined operating characteristics; (c) developing an operating regime using the numerical model and a set of operating rules for the devices for providing responsive-load electrical power network service; (d) applying the operating regime to each of the devices; and (e) monitoring operating characteristics of the power consuming devices (100) after installation for verifying their responsive-load electrical power network service. Optionally, the devices are operable to function autonomously to provide their responsive- load electrical power network service. Optionally, the parameterized numerical model of operation describes a fullest extent to which the power consuming devices are capable of providing responsive-load electrical power network service.
    • 系统采用一种确定易受一个或多个功率消耗装置(100)提供的潜在响应负荷电力网络服务水平的方法。 该方法包括:(a)确定耗电装置的运行特性; (b)基于确定的操作特性开发功耗装置的操作的参数化数值模型; (c)使用数字模型和用于提供响应负荷电力网络服务的装置的一组操作规则来开发操作机构; (d)将操作制度应用于每个装置; 以及(e)在安装之后监视电力消耗装置(100)的操作特性,以验证其响应负载电力网络服务。 可选地,这些设备可操作以自主地运行以提供其响应负载电力网络服务。 可选地,参数化的数字操作模型描述了功耗设备能够提供响应负载电力网络服务的最大程度。