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Low-cost modular PV-battery microgrid emulator for testing of energy management algorithms

机译:用于测试能源管理算法的低成本模块化PV电池微电器仿真器

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摘要

Within the context of microgrids, the need for a smart energy management system (EMS) has become increasingly important for users to maximise use of local energy generation and/or trade power effectively with the energy market if there is a grid connection. Many researchers have been developing algorithms to forecast the availability of renewable energy and load demands whilst optimising the energy flows within required constraints. Recently, control systems for peer-to-peer (P2P) microgrid architectures, which involve complex information and communication technologies, have also been given much attention. However, not all of these algorithms have been implemented and tested with real hardware, which may be attributed to the high cost involved and the safety concerns of a larger system. This paper describes the design, build and demonstration of a scaled down (100 W) P2P microgrid system to provide a low cost, modular, safe, portable testing environment for new EMS algorithms. The system nonetheless has realistic behaviour in terms of control interfaces, measurements and dynamics, and therefore provides a valuable insight into EMS implementation that cannot be obtained through simulations alone. In this work, three microgrid emulators were built and they can communicate with each other via TCP/IP, enabling development and demonstrations of distributed forecasting, control and optimisation algorithms.
机译:在微电网的背景下,对于用户在有电网连接时,对用户来说,对智能能量管理系统(EMS)的需求已经变得越来越重要,以便在能量市场上有效地利用局部能量产生和/或贸易功率。许多研究人员一直在开发算法,以预测可再生能源和负载需求的可用性,同时优化所需约束中的能量流动。最近,用于对等(P2P)微电网架构的控制系统,涉及复杂的信息和通信技术,也得到了很多关注。然而,并非所有这些算法都以真实的硬件实现和测试,这可能归因于所涉及的高成本和更大系统的安全问题。本文介绍了缩小缩小(100 W)P2P微电网系统的设计,构建和演示,为新的EMS算法提供低成本,模块化,安全,便携式的测试环境。尽管如此,该系统在控制接口,测量和动态方面具有现实的行为,因此提供了对EMS实现的有价值的洞察,这些实施无法单独通过模拟获得。在这项工作中,建立了三个微电网仿真器,它们可以通过TCP / IP互相通信,从而实现分布式预测,控制和优化算法的开发和演示。

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