Impact of a Redox Flow Battery on the Frequency Stability of a Five-Area System Integrated with Renewable Sources

Author:

Jena Narendra Kumar1,Sahoo Subhadra1,Sahu Binod Kumar1ORCID,Naik Amiya Kumar1,Bajaj Mohit234ORCID,Misak Stanislav5,Blazek Vojtech5ORCID,Prokop Lukas5ORCID

Affiliation:

1. Department of Electrical Engineering, Siksha ‘O’ Anusandhan (Deemed to be University), Bhubaneswar 751024, India

2. Department of Electrical Engineering, Graphic Era (Deemed to be University), Dehradun 248002, India

3. Department of Electrical Engineering, Graphic Era Hill University, Dehradun 248002, India

4. Applied Science Research Center, Applied Science Private University, Amman 11937, Jordan

5. ENET Centre, VSB—Technical University of Ostrava, 70800 Ostrava, Czech Republic

Abstract

Energy storage devices are imperative to damp out the oscillations caused by sudden magnified disturbances occurring in a power system. The presence of a small rating of storage device in each area can alleviate the system oscillations effectively. Therefore, in this work, redox flow batteries (RFBs) have been integrated in each area of a five-area interconnected system for effective load frequency control (LFC). The RFB pumps up the active power into the system quickly to meet the short-time overload; in turn, the efficacy of the LFC in the system is boosted. Despite the presence of the RFB in the power system, a secondary controller is necessary to quench the deviation of frequency and tie-line power caused by the power mismatch between demand and generation. In this perspective, a cascade controller incorporated with a fractional operator (FO) has been endorsed and designed through a nascent selfish herd optimizer technique to evaluate the transient response of the system. Besides this, the unprecedented performance of fractional-order cascade controllers has been compared with one-stage classical controllers with and without a fractional operator. Further, the robustness of the proposed controller has been inspected through subjecting it to a random load in the presence/absence of an RFB and parametric variation. Finally, the proposed model has been simulated in the OPAL-RT-4510 platform to validate the performance of the proposed controller that has produced in the MATLAB environment.

Funder

Ministry of Education, Youth, and Sports of the Czech Republic

National Centre for Energy II

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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