Advancements in hybrid energy storage systems for enhancing renewable energy-to-grid integration

Adekanmi Miracle Adeyinka, Oladapo Christopher Esan, Ahmed Olanrewaju Ijaola, Peter Kayode Farayibi
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Abstract

The global energy sector is currently undergoing a transformative shift mainly driven by the ongoing and increasing demand for clean, sustainable, and reliable energy solutions. However, integrating renewable energy sources (RES), such as wind, solar, and hydropower, introduces major challenges due to the intermittent and variable nature of RES, affecting grid stability and reliability. Hybrid energy storage systems (HESS), which combine multiple energy storage devices (ESDs), present a promising solution by leveraging the complementary strengths of each technology involved. This comprehensive review examines recent advancements in grid-connected HESS, focusing on their components, design considerations, control strategies, and applications. It provides a detailed analysis of technological progress in various ESDs and the critical role of power conversion, control, energy management, and cooling systems in optimizing HESS performance. Highlighting case studies of some notable and successful HESS implementations across the globe, we illustrate practical applications and identify the benefits and challenges encountered. By addressing these challenges, HESS can significantly enhance the efficiency and reliability of RES, supporting the shift towards a sustainable and resilient energy infrastructure. The paper concludes by identifying future research directions, highlighting the development of intelligent control systems, sustainable materials, and efficient recycling processes to ensure the widespread adoption and long-term viability of HESS.
混合储能系统在加强可再生能源并网方面的进展
目前,全球能源行业正在经历一场变革,其主要驱动力是对清洁、可持续和可靠的能源解决方案不断增长的需求。然而,由于风能、太阳能和水电等可再生能源(RES)的间歇性和可变性,它们的整合带来了重大挑战,影响了电网的稳定性和可靠性。混合储能系统(HESS)结合了多种储能设备(ESD),通过利用每种相关技术的互补优势,提供了一种前景广阔的解决方案。这篇综合评论探讨了并网混合储能系统的最新进展,重点关注其组件、设计考虑因素、控制策略和应用。它详细分析了各种 ESD 的技术进展,以及电力转换、控制、能源管理和冷却系统在优化 HESS 性能方面的关键作用。我们重点介绍了全球一些著名的、成功的 HESS 实施案例研究,说明了实际应用情况,并确定了所带来的好处和遇到的挑战。通过应对这些挑战,HESS 可以显著提高可再生能源的效率和可靠性,支持向可持续和弹性能源基础设施转变。论文最后指出了未来的研究方向,强调了智能控制系统、可持续材料和高效回收流程的开发,以确保 HESS 的广泛应用和长期可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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