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    • 41. 发明申请
    • Power Conditioning and Saving Device
    • 功率调节和保存设备
    • US20130119949A1
    • 2013-05-16
    • US13664737
    • 2012-10-31
    • PowerMag, LLC
    • Robert V. Albertson
    • G05F1/70H01G9/00H01P1/212
    • H02J3/1828G05F1/70H01G9/00H01P1/212H02J3/01H02J3/1835
    • Systems and methods are disclosed herein to a power factor adjustor comprising: a power factor measurement unit configured to measure the power factor on an input line to a load and generate a power factor correction signal based on the measured power factor; and a power factor adjustment unit connected to the power factor measurement unit comprising: a fixed capacitor connected in series to a first switching device; and an adjustable element having a variable capacitance connected in parallel to the fixed capacitor and in series to a second switching device, wherein the overall capacitance of the power factor adjustment unit is adjusted by adjusting the capacitance of the adjustable element or by toggling the first and second switching devices in response to the power factor correction signal.
    • 本文公开了一种功率因数调节器的系统和方法,包括:功率因数测量单元,被配置为测量到负载的输入线上的功率因数,并且基于所测量的功率因数产生功率因数校正信号; 以及连接到所述功率因数测量单元的功率因数调节单元,包括:与第一开关器件串联连接的固定电容器; 以及可调元件,其具有与固定电容器并联连接并与第二开关器件串联的可变电容,其中功率因数调节单元的总体电容通过调节可调节元件的电容或通过切换第一和第 第二开关器件响应于功率因数校正信号。
    • 44. 发明申请
    • REACTIVE POWER COMPENSATOR
    • 无功补偿器
    • US20120139506A1
    • 2012-06-07
    • US13167926
    • 2011-06-24
    • Akihiro MATSUDAYoshiyuki KONOMasatoshi TAKEDA
    • Akihiro MATSUDAYoshiyuki KONOMasatoshi TAKEDA
    • G05F5/00
    • H02J3/1828H02J3/1878Y02E40/12Y10T307/669
    • A first SVC is connected to a first bus. A first SVC control unit controls the first SVC. A first fluctuation-component-voltage generating unit includes a voltage reference circuit that outputs a voltage reference value. A second SVC is connected to a second bus. A second SVC control unit controls the second SVC. A second fluctuation-component-voltage generating unit includes a first-order-lag control block with limiter that generates a comparative voltage that follows a bus voltage of the second bus with a predetermined time lag characteristic and is limited within a predetermined range. An impedance value XS1 of slope reactance of the first SVC is set smaller than impedance value XS2 of slope reactance of the second SVC.
    • 第一个SVC连接到第一个总线。 第一SVC控制单元控制第一SVC。 第一波动分量电压产生单元包括输出电压基准值的电压基准电路。 第二SVC连接到第二总线。 第二SVC控制单元控制第二SVC。 第二波动分量电压产生单元包括具有限制器的一阶滞后控制块,其产生具有预定时间滞后特性并遵循第二总线的总线电压的比较电压并被限制在预定范围内。 将第一SVC的斜率电抗的阻抗值XS1设定为小于第二SVC的斜率电抗的阻抗值XS2。
    • 45. 发明申请
    • REACTIVE POWER COMPENSATOR
    • 无功补偿器
    • US20100237835A1
    • 2010-09-23
    • US12724610
    • 2010-03-16
    • Masatoshi TAKEDAShinichi Ogusa
    • Masatoshi TAKEDAShinichi Ogusa
    • G05F1/70
    • G05F1/70H02J3/1828Y02E40/30
    • A capacitor bank unit includes three capacitor banks that have respective capacitances that are multiples of a basic capacitance in accordance with a number sequence of the n-th power of 2. One of the capacitor banks has the basic capacitance, remaining two of the capacitor banks includes two subbanks each. The capacitance of a subbank is set to a capacitance that is a multiple of the basic capacitance in accordance with a number sequence of the m-th power of 2. When any one of the capacitor banks fails, each of capacitor banks following the failed capacitor bank substitutes for a capacitor bank located immediately before itself.
    • 电容器组单元包括三个电容器组,其具有根据2的n次方的数量级的基本电容的倍数的相应电容。电容器组之一具有基本电容,剩余两个电容器组 包括两个子银行。 子库的电容被设定为基于第二次幂的次数的基本电容的倍数的电容。当任何一个电容器组发生故障时,每个电容器组跟随故障电容器 银行替代位于自身之前的电容器组。
    • 46. 发明授权
    • Distributed static var compensation (DSVC) system for wind and water turbine applications
    • 用于风力和水轮机应用的分布式静态无功补偿(DSVC)系统
    • US07095597B1
    • 2006-08-22
    • US10426287
    • 2003-04-30
    • Kevin L. Cousineau
    • Kevin L. Cousineau
    • H02H7/06
    • H02J3/1828H02J3/382H02J3/386Y02E10/763Y02E40/12
    • A power generating system wherein a variable speed turbine is mounted on top of a tower or tethered underwater. The reactive component of turbine generated electrical power is corrected automatically through electronic switched power-factor capacitor banks that are divided into sub-system modules coupled to a central turbine park sub-station. The sub-system modules are of a fixed size and are easily adaptable to different turbine generator types, sizes and groupings. By employing SCR switched power factor capacitors grouped in sub-system modules of fixed size, coupled to a central turbine park sub-station, the converter allows fast, real time control of the utility interconnected power line voltage or power factor.
    • 一种发电系统,其中变速涡轮机安装在塔顶或水下系绳上。 通过电子开关功率因数电容器组自动校正涡轮发电功率的无功分量,这些电容器组分为耦合到中央涡轮机停放子站的子系统模块。 子系统模块具有固定尺寸,并且易于适应不同的涡轮发电机类型,尺寸和分组。 通过使用固定尺寸的子系统模块组合的SCR开关功率因数电容器,耦合到中央涡轮机停放站,转换器允许对公用事业互连的电力线电压或功率因数进行快速,实时的控制。
    • 47. 发明授权
    • Reactive power compensation to minimize step voltage changes and transients
    • 无功功率补偿,以最小化步进电压变化和瞬变
    • US06900619B2
    • 2005-05-31
    • US09449378
    • 1999-11-24
    • Arnold P. KehrliJohn A. Diaz De Leon, IIDouglas C. Folts
    • Arnold P. KehrliJohn A. Diaz De Leon, IIDouglas C. Folts
    • H02J3/18G05F1/70
    • H02J3/1828Y02E40/30
    • The invention features a system and approach for minimizing the step voltage change as seen by the utility customer as well minimizing transients imposed on the fundamental waveform of a normal voltage carried on a utility power network when a reactive power source (e.g., capacitor bank) is instantaneously connected to the utility power. The reactive power source is adapted to transfer reactive power of a first polarity (e.g., capacitive reactive power) to the utility power network. The system includes a reactive power compensation device configured to transfer a variable quantity of reactive power of a second, opposite polarity to the utility power network, and a controller which, in response to the need to connect the shunt reactive power source to the utility power network, activates the reactive power compensation device and, substantially simultaneously, causes the shunt reactive power source to be connected to the utility power.
    • 本发明的特征在于一种系统和方法,用于使公用事业客户所看到的阶跃电压变化最小化,并且当无功电源(例如,电容器组)为...时,最小化施加在公用电力网络上承载的正常电压的基波形的瞬变 瞬间连接到公用电源。 无功功率源适于将第一极性(例如,电容性无功功率)的无功功率传送到公用电力网络。 该系统包括无功功率补偿装置,其被配置为向公用电力网络传送可变量的具有第二相反极性的无功功率;以及控制器,其响应于将分流无功功率源连接到公用电力的需要 网络,激活无功功率补偿装置,并且基本上同时地使分流无功电源连接到公用电力。
    • 49. 发明申请
    • Automatic power factor correction using power measurement chip
    • 使用功率测量芯片自动功率因数校正
    • US20040164718A1
    • 2004-08-26
    • US10789253
    • 2004-02-27
    • William D. McDanielGail A. McDanielTimothy J. McDaniel
    • G05F001/70
    • G05F1/70H02J3/1828H02J3/1871Y02E40/30
    • An automatic power factor correction system, for an electrical power installation drawing varying levels of reactive power, measures an electrical parameter of the power drawn by a load of a power installation using a power measurement integrated circuit, the parameter being capable of indicating a level of reactive power drawn by the load, and couples a combination of capacitors to the power line to compensate for the level of reactive power indicated by the electrical parameter measured. In a first embodiment of the invention, the combination of power factor compensating capacitors is calculated from a signed value of reactive power drawn by the load. In a second embodiment, the compensating capacitor combination is calculated from a value of power factor for the load which is calculated from a ratio of an active power value to an apparent power value.
    • 一种自动功率因数校正系统,用于绘制不同级别的无功功率的电力设备,测量由功率测量集成电路的电力设备的负载所牵引的功率的电参数,该参数能够指示 由负载引起的无功功率,并将电容器的组合耦合到电力线,以补偿由所测量的电参数指示的无功功率电平。 在本发明的第一实施例中,功率因数补偿电容器的组合由负载所绘制的无功功率的有符号值计算。 在第二实施例中,补偿电容器组合是根据从有效功率值与视在功率值的比值计算的负载的功率因数的值来计算的。