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A Study of the Power Factor Improvement by Using Harmonic Filter in Busan Urban Railway Substation with Thyristor Rectification Method

机译:釜山市铁路变电站可控硅整流法谐波滤波器改善功率因数的研究

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The electric power required to operate the urban railway supplies DC 1, 500 V to the electric train through trolly wire. The rectifier which converts AC to DC has a rectification method using a diode and a rectification method using a thyristor. The thyristor rectification method is easier to adjust the trolly wire voltage than the diode rectification method. In addition, it is possible to reuse the regenerative electric power generated when the electric train stops, thereby helping to reduce the operating cost of the Urban railway operator and to reduce the greenhouse gas. However, the thyristor rectification method has a disadvantage in that the power factor of an urban railway substation is lowered because a harmonic current is generated during rectification and the reactive power becomes large. In this paper, we analyze the harmonic currents generated of Busan Urban railway substation system using thyristor rectifier, we propose an optimal harmonic filter to achieve a power factor of over 90% by simulation.
机译:经营城市铁路所需的电力提供DC 1,500 V的电动火车穿过立即电线。将AC转换为DC的整流器具有使用二极管的整流方法和使用晶闸管的整流方法。晶闸管整流方法更容易调整比二极管整流方法更容易调节三大线电压。另外,可以重复使用当电动火车停止时产生的再生电力,从而有助于降低城市铁路操作员的运营成本并减少温室气体。然而,晶闸管整流方法具有缺点,因为城市铁路变电站的功率因数降低,因为在整流过程中产生谐波电流并且无功功率变大。在本文中,我们使用晶闸管整流器分析了釜山城市铁路变电站系统产生的谐波电流,我们提出了一种最佳的谐波滤波器,通过模拟实现了超过90%的功率因数。

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