Interconnected Smart Transactive Microgrids—A Survey on Trading, Energy Management Systems, and Optimisation Approaches

IF 3.3 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
I. L. Machele, A. Onumanyi, A. Abu-Mahfouz, A. Kurien
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Abstract

The deployment of isolated microgrids has witnessed exponential growth globally, especially in the light of prevailing challenges faced by many larger power grids. However, these isolated microgrids remain separate entities, thus limiting their potential to significantly impact and improve the stability, efficiency, and reliability of the broader electrical power system. Thus, to address this gap, the concept of interconnected smart transactive microgrids (ISTMGs) has arisen, facilitating the interconnection of these isolated microgrids, each with its unique attributes aimed at enhancing the performance of the broader power grid system. Furthermore, ISTMGs are expected to create more robust and resilient energy networks that enable innovative and efficient mechanisms for energy trading and sharing between individual microgrids and the centralized power grid. This paradigm shift has sparked a surge in research aimed at developing effective ISTMG networks and mechanisms. Thus, in this paper, we present a review of the current state-of-the-art in ISTMGs with a focus on energy trading, energy management systems (EMS), and optimization techniques for effective energy management in ISTMGs. We discuss various types of trading, architectures, platforms, and stakeholders involved in ISTMGs. We proceed to elucidate the suitable applications of EMS within such ISTMG frameworks, emphasizing its utility in various domains. This includes an examination of optimization tools and methodologies for deploying EMS in ISTMGs. Subsequently, we conduct an analysis of current techniques and their constraints, and delineate prospects for future research to advance the establishment and utilization of ISTMGs.
互联智能交易微电网--关于交易、能源管理系统和优化方法的调查
隔离微电网的部署在全球呈指数级增长,尤其是在许多大型电网面临普遍挑战的情况下。然而,这些孤立的微电网仍然是独立的实体,因此限制了它们对更广泛的电力系统的稳定性、效率和可靠性产生重大影响和改善的潜力。因此,为了弥补这一差距,互联智能微电网(ISTMGs)的概念应运而生,促进了这些孤立微电网的互联,每个微电网都有其独特的属性,旨在提高更广泛电网系统的性能。此外,ISTMGs 预计将创建更稳健、更有弹性的能源网络,在单个微电网和集中电网之间实现创新、高效的能源交易和共享机制。这种模式的转变引发了旨在开发有效的 ISTMG 网络和机制的研究热潮。因此,在本文中,我们回顾了当前 ISTMG 的最新进展,重点介绍了 ISTMG 中的能源交易、能源管理系统 (EMS) 以及有效能源管理的优化技术。我们讨论了 ISTMG 中涉及的各种交易类型、架构、平台和利益相关者。接下来,我们将阐明 EMS 在此类 ISTMG 框架中的适当应用,强调其在各个领域的实用性。这包括研究在 ISTMG 中部署 EMS 的优化工具和方法。随后,我们对当前的技术及其制约因素进行了分析,并描绘了未来研究的前景,以推动建立和利用综合安全管理小组。
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来源期刊
Journal of Sensor and Actuator Networks
Journal of Sensor and Actuator Networks Physics and Astronomy-Instrumentation
CiteScore
7.90
自引率
2.90%
发文量
70
审稿时长
11 weeks
期刊介绍: Journal of Sensor and Actuator Networks (ISSN 2224-2708) is an international open access journal on the science and technology of sensor and actuator networks. It publishes regular research papers, reviews (including comprehensive reviews on complete sensor and actuator networks), and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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