一种改进的无功补偿反馈开环控制方法及其在感应发电机上的应用

P. Mukherjee, Kamanashish Mondal, Gautam Tarafder
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引用次数: 0

摘要

目前的电力系统情况表明,它存在一定的局限性,在这方面还有待改进。因此,保持电力系统的稳定、经济、安全运行是一个非常重要和具有挑战性的问题。通过减少无功成分,可以经济地利用电力。目前,可控硅开关电容器和可控硅电抗器被用作“有源补偿器”。除了成本方面的考虑,这些受到结构限制,不适合大功率处理。此外,用于此类电容器和电抗器的触发电路相当复杂。然而,目前的工作试图克服上述缺点,并提供了一个改进的系统,用于影响电力系统中补偿的反馈和开环控制,该系统包括(i)降压变压器(T), (ii)双极结晶体管(BJT)或MOSFET,真空三极管或任何电子放大器(Q1), (iii)连接到变压器(T)的耦合电容器(Ce), (iv)工频扼流圈(Le), (v)交流偏置电感(Lc)交流偏置电阻(R1)和。(R3), (vi)阻塞电容器(Cb), (vii)直流发射极反馈电阻(R2), (viii)交流旁路电容器(Cc)和交流偏置电容器(Cz), (ix)直流偏置电阻(Rb1)和(Rb2)和(x)直流稳压电源(Vcc)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An improved method for effecting feedback and open loop control for reactive power compensation and its application on induction generator
Present power system scenario reveals that it has some limitations, leaving behind a scope of improvement in this area. Maintaining a stable, cost-effective and secure operation of power system is therefore a very important and challenging issue. Power can be utilized economically by minimizing its reactive component. At present thysistor-switched capacitors and thyristor-controlled reactors are used as 'active compensators'. Apart from cost considerations, these suffer from constructional limitations and are not suitable for large power handling. Moreover, the triggering circuits used for such capacitors and reactors are quite complicated. However the present work attempts to overcome the above drawbacks and provides an improved system for effecting feedback and open loop control for compensation in power system, which comprises of (i) step down transformer (T), (ii) bipolar junction transistor (BJT) or MOSFET, vacuum triode or any electronic amplifier (Q1), (iii) coupling capacitor (Ce) connected to transformer (T), (iv)power frequency choke (Le), (v) AC 'biasing inductor (Lc) AC biasing resistors (R1) and. (R3), (vi) blocking capacitor (Cb), (vii) DC emitter feedback resistor (R2), (viii) AC bypass capacitor (Cc), and AC biasing capacitor (Cz), (ix) DC biasing resistors (Rb1) and (Rb2) and (x) regulated DC supply voltage source (Vcc).
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