This paper is published in Volume-4, Issue-3, 2018
Area
Engineering
Author
Sandeep Tiwari, Dr. Bhupal Singh
Org/Univ
Ajay Kumar Garg Engineering College, Ghaziabad, Uttar Pradesh, India
Pub. Date
12 June, 2018
Paper ID
V4I3-1649
Publisher
Keywords
Hybrid power system, Photovoltaic, PV/Wind/Hybrid power system, Renewable energy resources, Energy system, Buck-boost converter, Renewable energy, PMG of WECS, Photovoltaic system

Citationsacebook

IEEE
Sandeep Tiwari, Dr. Bhupal Singh. Modelling, and performance analysis of hybrid wind solar power system using MPPT control technique and VSC at grid, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Sandeep Tiwari, Dr. Bhupal Singh (2018). Modelling, and performance analysis of hybrid wind solar power system using MPPT control technique and VSC at grid. International Journal of Advance Research, Ideas and Innovations in Technology, 4(3) www.IJARIIT.com.

MLA
Sandeep Tiwari, Dr. Bhupal Singh. "Modelling, and performance analysis of hybrid wind solar power system using MPPT control technique and VSC at grid." International Journal of Advance Research, Ideas and Innovations in Technology 4.3 (2018). www.IJARIIT.com.

Abstract

Renewable energy sources have become a popular alternative electrical energy source where power generation in conventional ways is not practical. In the last few years, the photovoltaic and wind power generation have been increased significantly. In this study, we proposed a hybrid energy system which combines both solar panel and wind turbine parameter to generate electrical power source of electrical and supplied to power grid station. Two control techniques are used to maximum power point tracking (MPPT). It is used in circuit wind turbine as well in solar to get maximum power. And second control technique is used at grid side converting DC-AC by voltage source converter. A simple control technique which is also cost effective has been proposed to track the operating point at which maximum power can be coerced from the PV system and wind turbine generator system under continuously changing environmental conditions. The entire hybrid system is described given along with comprehensive simulation results that discover the feasibility of the system. A software simulation model is developed in Matlab/Simulink.