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A DC Bus Voltage Balancing Technique for the Cascaded H-Bridge STATCOM with Improved Reliability under Grid Faults
Conference paper   Peer reviewed

A DC Bus Voltage Balancing Technique for the Cascaded H-Bridge STATCOM with Improved Reliability under Grid Faults

Hsin-Chih Chen and Po-Tai Cheng
IEEE Transactions on Industry Applications, Vol.53(2), pp.1263-1270
03/2017

Abstract

DC voltage utilization low-voltage ride-through (LVRT) modular multilevel cascaded converter (MMCC) peak current limit control static synchronous compensator (STATCOM) voltage balancing control Control and Systems Engineering Industrial and Manufacturing Engineering Electrical and Electronic Engineering
As more distributed renewable energy sources are installed in the utility grid, the static synchronous compensators are applied to manage the power factor and the grid voltage in the medium-voltage level of the power system. The cascaded multilevel converter with single-star topology is well applied to this application. The dc-capacitor voltage balancing control is a fundamental issue, and it can be accomplished by negative-sequence current and/or zero sequence voltage injection. Unfortunately, the zero sequence voltage injection increases the risk of over-modulation and the negative-sequence current injection results in high peak current. This paper provides the voltage balancing strategy to manage the peak current or the modulation index. Besides, all the asymmetrical grid voltages are considered in the proposed method to satisfy the grid fault operation. Laboratory test results verify that the proposed method limits the peak current or manages the modulation index during the grid fault operations.

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