Title :
A ZVS Grid-Connected Three-Phase Inverter
Author :
Li, Rui ; Ma, Zhiyuan ; Xu, Dehong
Author_Institution :
Inst. of Power Electron., Zhejiang Univ., Hangzhou, China
Abstract :
A six-switch three-phase inverter is widely used in a high-power grid-connected system. However, the antiparallel diodes in the topology operate in the hard-switching state under the traditional control method causing severe switch loss and high electromagnetic interference problems. In order to solve the problem, this paper proposes a topology of the traditional six-switch three-phase inverter but with an additional switch and gave a new space vector modulation (SVM) scheme. In this way, the inverter can realize zero-voltage switching (ZVS) operation in all switching devices and suppress the reverse recovery current in all antiparallel diodes very well. And all the switches can operate at a fixed frequency with the new SVM scheme and have the same voltage stress as the dc-link voltage. In grid-connected application, the inverter can achieve ZVS in all the switches under the load with unity power factor or less. The aforementioned theory is verified in a 30-kW inverter prototype.
Keywords :
diodes; electromagnetic interference; invertors; power factor; power grids; switchgear; zero voltage switching; DC-link voltage stression; SVM scheme; ZVS grid-connected six-switch three-phase inverter; antiparallel diode; electromagnetic interference problem; high-power grid-connected system; power 30 kW; reverse recovery current suppression; space vector modulation scheme; switch loss; unity power factor; zero-voltage switching operation; Inverters; Pulse width modulation; Stress; Switches; Switching frequency; Topology; Zero voltage switching; Grid connected; soft switching; space vector modulation (SVM); three-phase inverter; zero-voltage switching (ZVS);
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2012.2184559