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Analysis of factors which influence the application, operation, and design of shunt-capacitor equipments switched in large banks

机译:影响大型银行并联电容器设备应用,运行和设计的因素分析

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J. E. Hobson and W. H. Cuttino (non-member; both of Westinghouse Electric and Manufacturing Company, East Pittsburgh, Pa.): Mr. Butler's paper is of considerable interest at the present time since there is a definite trend toward the installation of large capacitor banks often arranged for separate switching of sections automatically controlled by voltage, current, or power-factor variations. Although the number of large banks installed with automatic switching equipment within the last ten years has been very small compared to the total installations of capacitors, yet the activity in this field is expected to increase considerably due to the increasing number of capacitors being applied on distribution circuits. As a typical example, quite recently a 1,350-kva bank was installed on a distribution bus, 4 kv, to be automatically switched in and out of the circuit in sections of 450 kva, the switching being initiated by voltage changes on the bus. After a careful study of the switching currents which might be expected in this installation, a small amount of impedance was added to each bank to limit the transient equalizing currents.
机译:JE Hobson和WH Cuttino(非成员;宾夕法尼亚州匹兹堡的Westinghouse Electric and Manufacturing Company成员):由于存在着安装大型电容器组的明确趋势,Butler先生的论文目前引起了广泛关注。通常被安排用于由电压,电流或功率因数变化自动控制的部分的单独切换。尽管与电容器的总安装量相比,在过去十年中安装有自动开关设备的大型银行的数量非常少,但是由于分配中使用的电容器数量的增加,预计该领域的活动将大大增加电路。作为一个典型的例子,最近在一个配电母线4 kv上安装了一个1,350 kva的组,可在450 kva的区间内自动切入和切出电路,该切换由母线上的电压变化启动。在仔细研究了此安装中可能期望的开关电流之后,在每个组中添加了少量阻抗以限制瞬态均衡电流。

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