Comparison of capacitor voltages balancing methods for cascaded H-Bridge STATCOM

I. R. Abdulveleev, T. Khramshin, G. Kornilov
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引用次数: 3

Abstract

The object of the research work is the multilevel high-voltage converters with Cascaded H-Bridges (CHB) controlled by two different methods. They are the sorting algorithm and the fundamental harmonic displacement method. The comparison was carried out on the basis of mathematical modeling for the case of cascade connection of 10 cells with the rated voltage on the capacitors equal to 1000 V. Such circuits can be implemented, in particular, in high power STATCOMs with the voltage of 10 kV. Such converters are widely applied to compensate reactive power of electrical facilities at ironworks, for example at arc furnaces or continuous hot or cold rolling mills. In the process of control system design, it is necessary to solve a dual problem, particularly, to provide balancing of capacitor voltages for the minimum time and within a definite range. It is also necessary to avoid the overloading of the slave switching devices caused by the increase in the number of commutations. The modeling results showed that the suggested methods of balancing can provide the acceptable voltage quality at the point of connection, THD of output voltage is 5.23% and 7% for the first and the second method respectively. When the sorting algorithm is used, balancing takes less time as compared with the displacement method. However, this is achieved at the cost of higher load imbalance of semiconductor switches, which is undesirable in terms of thermal conditions. When balancing was carried out using the displacement method, the load of semiconductor switches was more uniform. This method can be recommended for practical application as the main one.
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级联h桥式STATCOM电容器电压平衡方法的比较
本文的研究对象是采用两种不同控制方法的级联h桥(CHB)多电平高压变换器。它们分别是排序算法和基次谐波位移法。在对电容器额定电压为1000v的10个电池级联情况进行数学建模的基础上进行了比较。这种电路尤其可以在电压为10kv的高功率statcom中实现。这种变流器广泛应用于炼铁厂电气设备的无功补偿,例如电弧炉或连续冷热轧钢厂。在控制系统的设计过程中,需要解决一个双重问题,特别是在最短的时间和一定的范围内提供电容器电压的平衡。还需要避免因换流次数增加而造成从开关器件过载。建模结果表明,所提出的平衡方法均能提供可接受的接点电压质量,第一种和第二种方法的输出电压THD分别为5.23%和7%。当使用排序算法时,与位移法相比,平衡所需的时间更少。然而,这是以半导体开关更高的负载不平衡为代价实现的,这在热条件方面是不希望的。采用位移法进行平衡时,半导体开关的负载更加均匀。该方法可作为实际应用的主要方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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