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Sequence control of small-scaled ITER Power Supply for reactive power compensation

机译:小型ITER电源的顺序控制,用于无功补偿

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A technology based on thyristors will be used to manufacture the super-conducting coil AC/DC converters because of the low ratio of cost over installed power compared to a design based on GTO or similar technology. But phase-controlled converter suffers from fundamental disadvantage. They inject current harmonics into the input ac mains due to their nonlinear characteristics, thereby distort the supply voltage waveform, and demand reactive power from the associated ac power system at retarded angles. To overcome this disadvantage, in the case of two series converters at the DC side, connected to the same step-down transformer, apply for the sequence control. It is the most simple and efficient way to reduce the reactive power consumption at low cost. Analytical sequence control algorithm is suggested, the validity of the proposed scheme has been verified by experimental results with the small-scaled International Thermonuclear Experimental Reactor (ITER) Power Supply to minimize reactive power consumption.
机译:基于晶闸管的技术将用于制造超导线圈AC / DC转换器,因为与基于GTO或类似技术的设计相比,成本与安装功率之比较低。但是,相控转换器具有根本的缺点。由于其非线性特性,它们将电流谐波注入到输入交流电源中,从而使电源电压波形失真,并以延迟角度从关联的交流电源系统中获取无功功率。为了克服此缺点,在直流侧有两个串联的转换器连接到同一降压变压器的情况下,可应用顺序控制。这是以低成本降低无功功率消耗的最简单,最有效的方法。提出了一种解析序列控制算法,并用小型国际热核实验堆(ITER)电源通过实验结果验证了所提方案的有效性,以将无功功耗降至最低。

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