CONTROLLER DESIGN FOR HYBRID POWER SYSTEMS

Abstract

 In this paper an efficient design along with modeling and simulation of a transformer-less small-scale centralized AC—bus Connected Hybrid (Wind–PV) power system for supplying electric power to a single phase load. The main components of the hybrid system are: a PV generator (PVG); and an array of horizontal-axis, fixed pitch, small-size, variable-speed wind turbines (WTs) with direct-driven permanent magnet synchronous generator (PMSG) having an embedded uncontrolled bridge rectifier. An overview of the basic theory of such systems along with their modeling and simulation via Simulink/MATLAB software package are presented. An intelligent control method is applied to the proposed configuration to simultaneously achieve three desired goals: to extract maximum power from each hybrid power system component (PVG and WTs); to guarantee DC voltage regulation/stabilization at the input of the inverter; to transfer the total produced electric power to the electric load.

Authors and Affiliations

N. Prabhu , R. Balraj , S. Ayyubh

Keywords

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  • EP ID EP147934
  • DOI -
  • Views 71
  • Downloads 0

How To Cite

N. Prabhu, R. Balraj, S. Ayyubh (2015).  CONTROLLER DESIGN FOR HYBRID POWER SYSTEMS. International Journal of Engineering Sciences & Research Technology, 4(1), 318-324. https://europub.co.uk/articles/-A-147934