Semi‐hot redundant control method for modular multilevel converter‐based high‐voltage direct current systems under submodules fault

Author:

Yang Lixia1,Jia Lixin1,Zou Yabin1,Zhang Mingcan1,Yang Haoxiang1

Affiliation:

1. School of Electrical Engineering Xi'an Jiaotong University Xi'an China

Abstract

AbstractA modular multilevel converter‐based high voltage direct current (MMC‐HVDC) system involves a large number of cascading submodules (SMs). The failure of SMs may critically degrade the system performance. Therefore, several redundant SMs can be incorporated and reasonably controlled to ensure the system reliable and continuous operation even if certain SMs fail. This paper proposes a semi‐hot redundant method for MMC‐HVDC systems. In the proposed strategy, when the system operates normally, the redundant SMs are controlled in a lower voltage range. These SMs do not require frequent charging and discharging, which decreases the switching loss. When ordinary SMs fail, the faulty SMs are bypassed and the corresponding number of redundant SMs can be promptly recharged to the rated voltage to replace the faulty SMs. The semi‐hot reserved SMs can shorten the transient process of faulty SMs replacement, and in this process, the absence of faulty SMs does not considerably influence the system. Thus, the original control and modulation strategies of the system do not need to be modified when several SMs fail. The performance of the proposed method is compared with those of the existing methods, and its validity is demonstrated through a small‐scale experimental prototype.

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering

Cited by 5 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. A Fault-Tolerant Method Based on a Modified Selective Harmonic Mitigation Technique for Modular Multilevel Converter;IEEE Transactions on Industrial Electronics;2024-10

2. Semi-hot Redundant Control for MMC with Different Modulation Strategies;2023 5th International Conference on Power and Energy Technology (ICPET);2023-07-27

3. Indirect Model Predictive Control Scheme with Highly-reduced Computational Burden for Three-phase MMC;2023 IEEE International Conference on Predictive Control of Electrical Drives and Power Electronics (PRECEDE);2023-06-16

4. Modular Multilevel Converter-Based Microgrid: A Critical Review;IEEE Access;2023

5. MVDC MMC Redundancy Design Based on Availability and Cost Considering Submodule Degradation;IEEE Access;2023

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