September 2016

Journal

Characteristic Investigation and Control of a Modular Multilevel Converter-Based HVDC System Under Single-Line-to-Ground Fault Conditions

By:
Shi, Xiaojie; Wang, Zhiqiang ; Liu, Bo ; Liu, Yiqi ; Tolbert, Leon M; Wang, Fei
Journal Name:
IEEE Transactions on Power Electronics
Page Number:
408-421
Volume:
30
Issue Number:
1
Publication Date:
September 26, 2016
View DOI Listing:
https://doi.org/10.1109/TPEL.2014.2323360

Abstract

This paper presents the analysis and control of a multilevel modular converter (MMC)-based HVDC transmission system under three possible single-line-to-ground fault conditions, with special focus on the investigation of their different fault characteristics. Considering positive-, negative-, and zero-sequence components in both arm voltages and currents, the generalized instantaneous power of a phase unit is derived theoretically according to the equivalent circuit model of the MMC under unbalanced conditions. Based on this model, a novel double-line frequency dc-voltage ripple suppression control is proposed. This controller, together with the negative-and zero-sequence current control, could enhance the overall fault-tolerant capability of the HVDC system without additional cost. To further improve the fault-tolerant capability, the operation performance of the HVDC system with and without single-phase switching is discussed and compared in detail. Simulation results from a three-phase MMC-HVDC system generated with MATLAB/Simulink are provided to support the theoretical analysis and proposed control schemes.