优化直流微电网中的分布式发电:综合研究

Shadaksharaiah Chandraiah, Basavarajappa Sokke Rameshappa, Manjunatha Malleshappa Hirekere, Karibasavaraju Shivalingappa Telagi, Arunkumar Parashuramappa
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引用次数: 0

摘要

该书对分布式发电(DG)和直流微电网之间错综复杂的关系进行了深入分析。它对基本概念、复杂的控制技术、技术发展以及在实际情况中的有用应用进行了透彻分析。在向分散式能源解决方案转变的模式框架下,本研究调查了直流微电网在整合和优化各种分布式发电资源方面的功效。研究对与各种分布式发电技术和可再生能源系统相关的挑战和可能性进行了批判性分析。对于从事将分散能源纳入当前系统这一具有挑战性任务的科学家、工程师和政策制定者来说,它提供了至关重要的视角。这篇综述是一个重要工具,它增进了我们对直流微电网中分布式发电的了解。它极大地推动了有关弹性和可持续能源解决方案的讨论。除了讨论与分布式发电集成相关的挑战之外,本研究还重点介绍了现实世界中的实例,这些实例突出了直流微电网设计的适应性和效率。由于本研究对电力电子、储能和先进控制系统进行了深入探讨,因此对于希望利用直流微电网的利益相关者来说,本研究是一项宝贵的资源。通过将分析和实际应用相结合,本综述提供了具有洞察力的分析和实地帮助。整项研究极大地推动了分布式发电 (DG) 集成的发展,而这正是建立可持续发展和弹性能源环境所必需的。它提供了成功整合所需的基础知识。本综述论文深入分析了直流微电网中的分布式发电集成。本综述旨在全面概述分布式发电与直流微电网相互作用的动态环境,从基础思想开始,进而仔细研究各种困难、技术创新和有用的应用。
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Optimizing Distributed Generation in DC Microgrids: A Comprehensive Study
This thorough examination offers a critical analysis of the intricate relationship between Distributed Generation (DG) and DC microgrids. It provides a thorough analysis of basic ideas, sophisticated control techniques, technological developments, and useful applications in actual situations. In the framework of a paradigm shift towards decentralized energy solutions, this study investigates the efficacy of Direct Current (DC) microgrids in integrating and optimizing diverse distributed generation sources. The study conducts a critical analysis of the challenges and possibilities related to various distributed generation technologies and renewable energy systems. For scientists, engineers, and policymakers engaged in the challenging task of incorporating dispersed energy into current systems, it offers crucial perspectives. This review is an important tool that advances our knowledge of distributed generation in DC microgrids. It contributes significantly to the development of discussions on resilient and sustainable energy solutions. In addition to discussing the challenges associated with DG integration, this study highlights real-world examples that highlight the adaptability and efficiency of DC microgrid designs. Because it includes a thorough examination of power electronics, energy storage, and advanced control systems, this study is an invaluable resource for stakeholders hoping to take advantage of DC microgrids. Through the integration of analytical analysis and pragmatic application, this review provides insightful analysis and field assistance. The entire study contributes significantly to the advancement of distributed generation (DG) integration, which is necessary to establish a sustainable and resilient energy environment. It offers the fundamental knowledge required to accomplish successful integration. This review paper offers an in-depth analysis of DG integration in DC microgrids. This review is to provide a comprehensive overview of the dynamic landscape where distributed energy generation and DC microgrids interact, starting with the foundational ideas and moving on to a close examination of the difficulties, innovations in technology, and useful applications.
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