A new control strategy for active and reactive power control of three-level VSC based HVDC system

D. Mohan, Bhim Singh, B. K. Panigrahi
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引用次数: 10

Abstract

This paper presents a new control strategy for real and reactive power control of three-level multipulse voltage source converter based High Voltage DC (HVDC) transmission system operating at Fundamental Frequency Switching (FFS). A three-level voltage source converter replaces the conventional two-level VSC and it is designed for the real and reactive power control is all four quadrants operation. A new control method is developed for achieving the reactive power control by varying the pulse width and by keeping the dc link voltage constant. The steady state and dynamic performances of HVDC system interconnecting two different frequencies network are demonstrated for active and reactive powers control. Total numbers of transformers used in the system are reduced in comparison to two level VSCs. The performance of the HVDC system is also improved in terms of reduced harmonics level even at fundamental frequency switching.
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基于三电平VSC的高压直流系统有功无功控制新策略
提出了一种基于三电平多脉冲电压源变换器的基频切换高压直流输电系统的实功率和无功功率控制新策略。一种三电平电压源变换器取代了传统的两电平电压源变换器,设计用于实功率和无功功率的全四象限控制。提出了一种通过改变脉冲宽度和保持直流链路电压恒定来实现无功控制的新方法。研究了两种不同频率网络连接的高压直流系统的稳态和动态特性,并对有功和无功功率进行了控制。与两级vsc相比,系统中使用的变压器总数减少了。即使在基频切换时,高压直流系统的性能也在降低谐波水平方面得到了改善。
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