2020•Unpublished venueRequires access

Hybrid Energy Storage for a Microgrid

Prashant Kumar Tiwari, Anav Katwal, Sahil Bhatta, Eliza Giri, Shailendra K. Jha

Open publisher page 3 citations

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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What this paper is about

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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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available 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.

Key concepts: Microgrid, Supercapacitor, Energy storage, Battery (electricity), Automotive engineering, Power (physics), Energy (signal processing), Computer science

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