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INVESTIGATION INTO THE POSSIBILITY OF PARTIAL DISCHARGE DAMAGE IN A SYNCHRONOUS GENERATOR SUPPLYING A THYRISTOR BRIDGE LOAD

机译:在提供晶闸管桥负荷的同步发电机中偏出局部放电损坏的可能性

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The loading of a small synchronous generator with a thyristor bridge causes harmonic currents to flow in its windings. This can lead to an increase in the generator's working temperature. This temperature increase promotes additional thermal stressing of the machine, and acts to lower the partial discharge (PD) inception and extinction voltages of its insulation system. The use of a thyristor bridge also produces notches in the generator phase to neutral and line to line voltage waveforms, the leading edge of which are sufficiently fast fronted to cause a non-linear distribution over the phase winding. Furthermore, the use of thyristor snubbers can produce an oscillating overvoltage at the trailing edge of the notch. It has been suggested that these overvoltages and fast fronted transients may produce PDs in the generator insulation, possibly leading to damage and premature failure. This paper details a laboratory investigation into the PD performance of the insulation in a 16kVA, three phase synchronous generator when loaded with a thyristor bridge.
机译:具有晶闸管桥的小同步发电机的装载导致谐波电流在其绕组中流动。这可能导致发电机的工作温度的增加。该温度升高促进了机器的额外热应力,并用来降低其绝缘系统的局部放电(PD)初始化和消光电压。晶闸管桥的使用也在发电机相中产生凹口到中性和线路到线电压波形,其前缘足够快,以在相位绕组上引起非线性分布。此外,晶闸管缓冲器的使用可以在凹口的后缘处产生摆动过电压。已经提出,这些过电压和快速侧向瞬态可能在发电机绝缘中产生PD,可能导致损坏和过早失效。本文详述了在装载晶闸管桥时,在16kVA,三相同步发电机中的绝缘PD性能的实验室调查。

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