Author:
Gomathy S.,Sabarimuthu M.,Krithika Sree S.,Radha J.,Vennila R.,Krishna M.P.
Abstract
Abstract
Hybrid energy storage systems have many advantages, including the use of multi-input converters, such as reduced part count, flexibility power, and absolute control of energy sources. In these systems, an Energy Management Strategy must wisely determine the power levels of the sources. Energy management strategy for photovoltaic/ battery including a bidirectional multiple - input converter electric vehicle is presented in this article. The proposed Energy management strategy not only regulates the state-of-charge of photovoltaic. The battery power profile is also smoothed by using a fuzzy controller and a rate limiter. Since the energy transfer between battery and Photovoltaic is free in this multi-input converter. This results in a hybrid energy storage system that is sustainable and has improved battery life. The feasibility of the proposed system is systematically tested by a simulation study and an observational framework involving an actual electric vehicle. In this paper the results proves that Energy Management Strategy for photovoltaic including electric vehicle is presented. The enhancement of the battery cycle-life is discussed because of the battery / PV hybridization based on experimental performance.
Reference31 articles.
1. A Novel Integrated Magnetic Structure Based DC/DC Converter for Hybrid Battery/Ultracapacitor Energy Storage Systems;Onar;IEEE Transactions on Smart Grid,2012
2. Battery, Ultracapacitor, Fuel Cell, and Hybrid Energy Storage Systems for Electric, Hybrid Electric, Fuel Cell, and Plug-In Hybrid Electric Vehicles: State of the Art;Khaligh;IEEE Transactions on Vehicular Technology,2010
3. A New Multiinput Three-Level DC/DC Converter;Dusmez;IEEE Transactions on Power Electronics,2016
4. A multiple-input DC-DC converter topology;Dobbs;IEEE Power Electronics Letters,2003
5. Optimization of Sizing and Battery Cycle Life in Battery/Ultracapacitor Hybrid Energy Storage Systems for Electric Vehicle Applications;Shen;IEEE Transactions on Industrial Informatics,2014
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