The need to reduce the dependency on finite natural resources is driving up the requirement for renewable energy. With a specific focus on the incorporation of industrial photovoltaic (PV) and battery systems with Bangladesh's power infrastructure, this study specifically covers the performance and economic analysis of hybrid systems. The goal of the study is to address the current deficiency in grid system and hybrid PV performance analysis. Its main objective is to provide a thorough technique that takes into account data on energy usage trends and a thorough analysis of literature in order to size PV and battery systems in an industrial environment. Notably, the study uses Homer Pro software to create a workable framework that offers affordable options to address industrial energy needs while also lowering carbon emissions. With an investment cost of $3.91 million, the research achieves the lowest power cost at $0.0368 per kWh by focusing on cost efficiency and utilizing the cooperation between solar and grid resources. Moreover, adding a 2.8 MW battery raises the price to $5.90 million and $0.0524 per kWh. This work significantly contributes to the growing interest in renewable energy solutions, especially in regions like Bangladesh facing sustainability and energy accessibility challenges.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Integrating Industrial PV-Battery Systems with Utility Grid: Techno Economic Analysis for an Industry

  • Al Amin Hossain,
  • M. Abdus Samad

摘要

The need to reduce the dependency on finite natural resources is driving up the requirement for renewable energy. With a specific focus on the incorporation of industrial photovoltaic (PV) and battery systems with Bangladesh's power infrastructure, this study specifically covers the performance and economic analysis of hybrid systems. The goal of the study is to address the current deficiency in grid system and hybrid PV performance analysis. Its main objective is to provide a thorough technique that takes into account data on energy usage trends and a thorough analysis of literature in order to size PV and battery systems in an industrial environment. Notably, the study uses Homer Pro software to create a workable framework that offers affordable options to address industrial energy needs while also lowering carbon emissions. With an investment cost of $3.91 million, the research achieves the lowest power cost at $0.0368 per kWh by focusing on cost efficiency and utilizing the cooperation between solar and grid resources. Moreover, adding a 2.8 MW battery raises the price to $5.90 million and $0.0524 per kWh. This work significantly contributes to the growing interest in renewable energy solutions, especially in regions like Bangladesh facing sustainability and energy accessibility challenges.