Title :
Modulation and Control for a New Hybrid Cascaded Multilevel Converter With DC Blocking Capability
Author :
Xue, Yinglin ; Xu, Zheng ; Tu, Qingrui
Author_Institution :
Dept. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Abstract :
The hybrid cascaded multilevel converter is a newly introduced voltage-source converter with dc blocking capability. It has two key parts, that is, the director switch (DS) made of insulated-gate bipolar transistors in series and the wave-shaping circuit (WSC) containing stacks of full-bridge submodules (FSMs). This paper focuses on the modulation schemes of the DSs and the WSCs. First, to reduce switching losses of the DSs, a novel asymmetrical square-wave modulation at a very low frequency is proposed, and the energy flow of the WSC under this modulation is analyzed. Second, modified phase-shifted carrier-based pulsewidth modulation (PSC-PWM) is presented to determine the number of FSMs to be inserted or bypassed; and the specified FSMs to be fired are selected according to the capacitor voltage-balancing strategy. Third, the capability to limit the short-circuit current during the dc fault is investigated, and fast ac overcurrent protection is designed. The effectiveness of the modulation and control strategies is verified by PSCAD/EMTDC simulations.
Keywords :
PWM power convertors; bridge circuits; fault currents; insulated gate bipolar transistors; overcurrent protection; AC overcurrent protection; DC blocking capability; DC fault; EMTDC simulation; PSCAD simulation; asymmetrical square wave modulation; control strategy; director switch; full bridge submodule; hybrid cascaded multilevel converter; insulated gate bipolar transistors; modulation scheme; phase shifted carrier; pulsewidth modulation; short circuit current; switching loss; voltage source converter; wave shaping circuit; Capacitors; Circuit faults; Converters; Decision support systems; Modulation; Switches; Voltage control; Asymmetrical square-wave modulation (ASWM); capacitor voltage-balancing control; dc fault; hybrid cascaded multilevel converter (HCMC); phase-shifted carrier (PSC);
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2012.2207743