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Optimal Integration of Solar PV-Biomass Industrial Power Grids Using HOMER Pro: A Case Study of a Flattened Rice Mill

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Abstract

Abstract-The proposed study aims to optimize the integration of renewable energy sources, especially solar photovoltaic (PV) and biomass, in the electrical network of an industrial rice mill. The study focuses on achieving a balanced energy mix between grid electricity, biomass and solar photovoltaics. The project uses HOMER PRO, a comprehensive software platform to optimize microgrids and distributed energy resources. The study provides rigorous methodology, data modelling and economic analysis to estimate the sustainability of the proposed energy mix. The results show that the ideal location can minimize reliance on grid electricity, reduce operating costs and improve sustainability. Through extensive system, recreation data, and financial analysis, this research illustrates how energy displays may reduce dependency on the network, save operating costs, and improve item supportability. It focuses on the Straighten Rice Factory's use of solar photovoltaic (PV) and biomass in its electricity system. Using HOMER PRO, a complicated programming framework designed to simplify microgrids and recirculate energy, the review aims to achieve a reasonable energy mix of 70% matrix power, 20% biomass, and 30% solar PV. The evaluation demonstrates the framework model's potential to reduce network dependence, and functional costs, and enhance item maintainability via its whole process, reenactment information, and financial analysis

Copyright

Copyright © 2025 AISHA. This is an open access article distributed under the Creative Commons Attribution License.

Paper Details
Paper ID: IJPREMS50100029454
ISSN: 2321-9653
Publisher: ijprems
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