To improve energy efficiency and sustainability, this article investigates the integration of Energy Storage Systems (ESS) and renewable energy sources inside the manufacturing process. Utilizing renewable energy sources like solar, wind, and hydropower in conjunction with energy storage systems (ESS) has become essential for attaining energy security and cutting carbon emissions as the industry shifts to more environmentally friendly operations. The study looks at how energy from ESS is handled, stored, and redirected to satisfy production needs while maintaining operational continuity. By optimizing the balance between energy generation, storage, and consumption, digital energy management systems lower total energy costs and improve system resilience. Furthermore, the schematic flow of energy between renewable sources, ESS, and production is illustrated to visualize the linkages and feedback loops in modern manufacturing contexts. The study continues by underlining the necessity of modern monitoring systems in enhancing energy optimization and pushing sustainable production practices.

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

Energy Efficiency in Sustainable Manufacturing: Best Practices and Technological Innovations

  • Babajide Richard Salami,
  • Otanocha B. Omonigho

摘要

To improve energy efficiency and sustainability, this article investigates the integration of Energy Storage Systems (ESS) and renewable energy sources inside the manufacturing process. Utilizing renewable energy sources like solar, wind, and hydropower in conjunction with energy storage systems (ESS) has become essential for attaining energy security and cutting carbon emissions as the industry shifts to more environmentally friendly operations. The study looks at how energy from ESS is handled, stored, and redirected to satisfy production needs while maintaining operational continuity. By optimizing the balance between energy generation, storage, and consumption, digital energy management systems lower total energy costs and improve system resilience. Furthermore, the schematic flow of energy between renewable sources, ESS, and production is illustrated to visualize the linkages and feedback loops in modern manufacturing contexts. The study continues by underlining the necessity of modern monitoring systems in enhancing energy optimization and pushing sustainable production practices.