Interrelated Solar and Thermal Plant Autonomous Generation Control Utilizing Metaheuristic Optimization

Author:

Jain Sanjiv Kumar1,Bhongade Sandeep2,Agrawal Shweta3,Mehbodniya Abolfazl4ORCID,Sharma Bhisham5ORCID,Chowdhury Subrata6ORCID,Webber Julian L.4ORCID

Affiliation:

1. Electrical Engineering Department, Medi-Caps University, Indore 453331, Madhya Pradesh, India

2. Electrical Engineering Department, Shri G. S. Institute of Technology and Science, Indore 452001, Madhya Pradesh, India

3. Institute of Advance Computing, Sage University, Indore 452020, Madhya Pradesh, India

4. Department of Electronics and Communication Engineering, Kuwait College of Science and Technology (KCST), Doha 20185145, Kuwait

5. Chitkara University Institute of Engineering and Technology, Chitkara University, Rajpura 140401, Punjab, India

6. Department of Computer Science and Engineering, Sreenivasa Institute of Technology and Management Studies, Chittoor 517127, Andhra Pradesh, India

Abstract

In this study, the load frequency control of a two-area thermal generation system based on renewable energy sources is considered. When solar generation is used in one of the control areas, the system becomes nonlinear and complicated. Zero deviations in the frequencies and the flow of power through the tie lines are achieved by considering load disturbances. A novel grey wolf optimizer, which is a metaheuristic algorithm motivated by grey wolves is utilized for tuning the controller gains. The proportional, integral, and derivative gains values are optimized for the two-area Solar integrated Thermal Plant (STP). As the load connected to the system varies continuously with time, random load variation is also applied to observe the effectiveness of the proposed optimization method. Sensitivity analyses have also been adopted with the deviation in the time constants of different systems. Inertia constant variations of both areas are considered from −25% to +25%, with or without STP. The proposed algorithm shows good dynamic performance as shown from the simulation results in terms of settling time, overshoot values, and undershoot values. The power in the tie line achieves zero deviation quite rapidly in solar-based cases compared to those without STP.

Funder

Abolfazl mehbodniya

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

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