An improved parallel five-level reinjection CSC for self-commutation of thyristor converter

Author:

Song Yumei,Hao Jianzhang,Dong Changhao,Guo Xizheng,Wang Li

Abstract

Purpose This paper aims to study a multi-level reinjection current source converter (MLR-CSC) that adds attracting properties such as the self-commutation and pulse multiplication to the thyristor converter, which is of great significance for increasing the device capacity and reducing current harmonics on the grid side. Particularly, designing advantageous driving methods of the reinjection circuit is a critical issue that impacts the harmonic reduction and operation reliability of the MLR-CSC. Design/methodology/approach To deal with the mentioned issue, this paper takes the five-level reinjection current source converter (FLR-CSC), which is a type of the MLR-CSC, as the research object. Then, a method that can fully use combinations of five-level reinjection switching functions based on the concept of decomposition and recombination is proposed. It is worthy to mention that the proposed method can be easily extended to other multi-level reinjection circuits. Moreover, the working principle of the three-phase bridge circuit based on semi-controlled thyristors in the FLR-CSC that can achieve the four-quadrant power conversion is analyzed in detail. Findings Finally, the simulation and experimental results of FLR-CSC verify the effectiveness of the proposed reinjection circuit driving method and the operating principle of four-quadrant power conversion in this paper. Originality/value The outstanding features of the proposed driving method for FLR-CSC in this paper include combinations of reinjection switching functions that are fully exploited through three simple steps and can be conveniently extended to other multi-level reinjection circuits.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Surfaces, Coatings and Films,Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference17 articles.

1. HVDC systems in smart grids;Proceedings of the IEEE,2017

2. Influence of zero width period on the AC-side line current harmonics of 5-level MLCR CSC;IEEE Transactions on Power Delivery,2013

3. Experimental evaluation on the influence of RCD snubbers in a 3-Level thyristor based MLCR CSC;Journal of Engineering,2016

4. An investigation into thyristor-based seven-level multi-level current reinjection current source converter;Electric Power Components and Systems,2014

5. Firing thyristors with negative firing angle using multilevel current reinjection concept: an experimental evaluation;International Journal of Power Electronics,2015

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Reinjection Five Level Current Source Converters for Individual Parallel-bridge Power Decoupling;2023 3rd New Energy and Energy Storage System Control Summit Forum (NEESSC);2023-09-26

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