Revolutionizing Demand Response Management: Empowering Consumers through Power Aggregator and Right of Flexibility

Author:

Alhussein Sadeq Neamah Bazoon1,Barzamini Roohollah2,Ebrahimi Mohammad Reza2ORCID,Farahani Shoorangiz Shams Shamsabad3,Arabian Mohammad2,Aliyu Aliyu M.4ORCID,Sohani Behnaz4ORCID

Affiliation:

1. Department of Electrical Engineering, Science and Research Branch, Islamic Azad University, Tehran 1477893855, Iran

2. Department of Electrical Engineering, Central Tehran Branch, Islamic Azad University, Tehran 1148963537, Iran

3. Department of Electrical Engineering, Islamshahr Branch, Islamic Azad University, Islamshahr 3314767653, Iran

4. College of Health and Science, School of Engineering, University of Lincoln, Lincoln LN6 7TS, UK

Abstract

This paper introduces a groundbreaking approach to demand response management, aiming to empower consumers through innovative strategies. The key contribution is the concept of “acquiring flexibility rights”, wherein consumers engage with power aggregators to curtail energy usage during peak-load periods, receiving incentives in return. A flexibility right coefficient is introduced, allowing consumers to tailor their participation in demand response programs, ensuring their well-being. Additionally, a lighting intensity control system is developed to enhance residential lighting network efficiency. The study demonstrates that high-energy consumers, adopting a satisfaction factor of 10, can achieve over 61% in electricity cost savings by combining the lighting control system and active participation in demand response programs. This not only reduces expenses but also generates income through the sale of flexibility rights. Conversely, low-energy consumers can fully offset their expenses and accumulate over USD 33 in earnings through the installation of solar panels. This paper formulates an optimization problem considering flexibility rights, lighting control, and time-of-use tariff rates. An algorithm is proposed for a distributed solution, and a sensitivity analysis is conducted for evaluation. The proposed method showcases significant benefits, including cost savings and income generation for consumers, while contributing to grid stability and reduced blackout occurrences. Real data from a residential district in Tehran validates the method’s effectiveness. This study concludes that this approach holds promise for demand response management in smart grids, emphasizing the importance of consumer empowerment and sustainable energy practices.

Publisher

MDPI AG

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