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Smart residential distribution energy management system with integration of demand response and Aggregator

Pradnya Jadhav, D. S. More, Surender Reddy Salkuti

2023Cleaner and Responsible Consumption20 citationsDOIOpen Access PDF

Abstract

In this paper, we present an energy management system with the help of aggregator and demand response program (DR). We have considered a smart residential distribution system consisting of residential aggregator, heterogenous consumers and one common charging station (CCS) for EVs. The role of aggregator is to communicate and to control the power flow between electric grid and consumers. The power flow for EVs is G2V and V2G. For energy management, smart home appliances, battery storage systems, and EVs are considered as flexible loads. The objective of a residential aggregator is to minimize the amount of power imported from the grid, thereby, maximizing the net profit. Reliability and affordability are key concerns for consumers hence, consumers objective is to reduce their electricity bills without reducing their comfort level and the objective of a common charging station (CCS) is to reduce the total cost of charging and discharging all-electric vehicles. To satisfy these objectives, a multi-objective problem is formulated and solved as Mixed Integer Linear Programming (MILP). The real-time pricing (RTP) scheme is implemented as a price-based demand response (DR) program. The main purpose of this study to show a combination of aggregator and demand response program can reduce the total cost of electricity and improve the overall efficiency and viable economic frameworks for the smart residential distribution system. Furthermore, study results suggest that smart EV charging/discharging is a viable option for balancing demand and supply over a shorter time. Also, will improve the flexibility of the electric grid. • A practical scenario is presented for efficient energy management of a smart residential distribution network. • The residential aggregator (RA) is introduced to optimize the power flow between the grid, smart residential distribution network, and consumers. • The most popular price-based DR program with real-time pricing (RTP) scheme is implemented for efficient management of residential consumers demand and common charging station (CCS). • It is suggested that smart EV charging/discharging is suitable for balancing demand and supply on short-term time horizons.

Topics & Concepts

News aggregatorDemand responseDistribution (mathematics)Energy managementSmart gridComputer scienceBusinessEnergy (signal processing)EngineeringWorld Wide WebElectrical engineeringMathematicsElectricityStatisticsMathematical analysisSmart Grid Energy ManagementMicrogrid Control and OptimizationSmart Grid Security and Resilience
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