Hybrid Energy Storage for a Microgrid
Prashant Kumar Tiwari, Anav Katwal, Sahil Bhatta, Eliza Giri, Shailendra K. Jha
Abstract
Prashant Kumar Tiwari, Anav Katwal, Sahil Bhatta, Eliza Giri, Shailendra K. Jha
Abstract
The paper presents the study and analysis of rural microgrid in Hariharpurgadhi, Nepal and the proposed laboratory-based model on a `Hybrid Energy storage for a Microgrid. A hybrid energy system comprises more than one type of energy storage system. The paper presents the model of a hybrid energy storage system using a lead-acid battery and supercapacitors for a rural microgrid that can resolve the issues of energy as well as the instantaneous power of the microgrid. Supercapacitors have a significantly lower energy density and a higher power density compared to batteries which are sufficient to provide high current for a short duration of time-solving the issues to run water pumping motors and agricultural mills in microgrid areas.
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The paper presents the study and analysis of rural microgrid in Hariharpurgadhi, Nepal and the proposed laboratory-based model on a `Hybrid Energy storage for a Microgrid. A hybrid energy system comprises more than one type of energy storage system. The paper presents the model of a hybrid energy storage system using a lead-acid battery and supercapacitors for a rural microgrid that can resolve the issues of energy as well as the instantaneous power of the microgrid. Supercapacitors have a significantly lower energy density and a higher power density compared to batteries which are sufficient to provide high current for a short duration of time-solving the issues to run water pumping motors and agricultural mills in microgrid areas.
Key concepts: Microgrid, Supercapacitor, Energy storage, Battery (electricity), Automotive engineering, Power (physics), Energy (signal processing), Computer science