Impact of load variations on the operating PF of an FCSC converter applied to wave energy systems

Tahani Al-Mhana, V. Pickert, B. Zahawi
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引用次数: 1

Abstract

Forced Commutated Controlled Series Capacitor (FCSC) converters have been proposed for stand-alone wave energy conversion buoys to increase the system's power transfer capacity by preventing power factor degradation. In this paper, the effects of load changes on the operating characteristics of an FCSC circuit employed in a stand-alone wave energy conversion system are investigated, including a discussion on the effects of the distortion and displacement factors. The circuit is modeled and the impact of load variation on converter behavior is reported. The investigation is based on the development of the state space analysis of the generator-set. Based on the state transition matrix of the system, a model was developed allowing an investigation of the performance of the FCSC converter over a wide range of load variations. Results show that the power factor is mainly dependent on the load resistance and less so on the value of load capacitance.
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负载变化对用于波浪能系统的FCSC变换器工作PF的影响
强制换向控制串联电容器(FCSC)转换器已被提出用于独立波浪能转换浮标,以提高系统的功率传输能力,防止功率因数退化。本文研究了负载变化对独立波能转换系统中FCSC电路工作特性的影响,包括畸变和位移因素的影响。对该电路进行了建模,并报道了负载变化对变换器性能的影响。该研究是在发展发电机组状态空间分析的基础上进行的。基于系统的状态转移矩阵,建立了一个模型,允许对FCSC变换器在大范围负载变化下的性能进行研究。结果表明,功率因数主要受负载电阻的影响,而受负载电容的影响较小。
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