Title :
PV powered performance enhanced three-stage cascaded quasi Z-source inverter fed induction motor drive
Author :
Nisha, K.C.R. ; Jain, Sanjay
Author_Institution :
Dept. of Electron. & Commun. Eng., New Horizon Coll. of Eng., Bangalore, India
Abstract :
This paper proposes the use of performance enhanced multi-stage Cascaded quasi Z-source Inverter (CqZSI) topology for adjustable speed drives in Photo Voltaic (PV) applications. For the same boost factor, a new PV powered three-stage CqZSI system has an advantage of lesser shoot-through duty ratio compared to the disadvantage of traditional ZSI with very less boost ratio, increased shoot-through ratio and high component stress at the power switches. A 25% reduction in shoot-through duty cycle is achieved by using the three-stage cascaded solution. The boost factor of the proposed system is 1.5 times higher than single-stage system for the same input voltage. Simulation of the three-stage CqZSI fed induction motor drive is done and verified by experimental results. The performance of the cascaded three-stage qZSI system is compared based on efficiency boost factor and shoot-through performance. This paper illustrates that the performance enhanced CqZSI topology is a good alternative topology for efficient and highly reliable PV power generation system.
Keywords :
induction motor drives; invertors; photovoltaic power systems; power generation reliability; variable speed drives; PV power generation system reliability; PV powered performance enhanced three-stage cascaded quasi Z-source inverter; adjustable speed drives; efficiency boost factor; enhanced multistage cascaded quasi Z-source inverter topology; lesser shoot-through duty ratio; photovoltaic applications; shoot-through duty cycle reduction; shoot-through performance; three-stage CqZSI fed induction motor drive; Arrays; Equivalent circuits; Induction motors; Integrated circuit modeling; Inverters; Mathematical model; Topology; Cascaded quasi Z-source Inverter (CqZSI); Multistage Cascaded quasi Z-source Inverter (MCqZSI); Z-source Inverter (ZSI); shoot-through;
Conference_Titel :
Circuit, Power and Computing Technologies (ICCPCT), 2015 International Conference on
Conference_Location :
Nagercoil
DOI :
10.1109/ICCPCT.2015.7159322