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Micro grid-islanding detection, autonomous operation, synchronization and re-synchronization and battery based energy storage

机译:微电网孤岛检测,自主运行,同步和重新同步以及基于电池的能量存储

摘要

The penetration of micro-grid system containing renewable energy generation is increasing exponentially for alleviating the energy source crisis and environmental pollution. Micro-grids are expected to achieve two priority aims, which are increase in stability and improvement of renewable energy generation efficiency. In terms of the first aim, micro-grid needs to keep operating with or without main-grid connecting. In grid disconnected condition, which is also called islanded condition, micro-grid system has to ensure its reliability and energy quality, to balance power between generators and loads. For the second aim, micro-grid with renewable energy sources is expected to extract maximum available energy at any moment. For realizing this aim, the energy storage system should be embedded in a micro-grid to help sharing the surplus energy from generators or missing energy required by loads.Based on above two aims, this thesis presents a comprehensive modeling of a micro-grid with the functions of islanding detection, autonomous operation, synchronization and re-synchronization and energy storage. Topology of local distribution generation is modeled by a grid-tied inverter with LCL filter. Proportional resonant controller is applied to control the inverter. A new islanding detection method which is a combination of two passive detection methods has been adopted in this research. A new method for autonomous operation of islanded micro-grid which combines weak droop control and PQ control has been used in this research. An effective and fast 50Hz-signal extracting filter, Windowed-sinc band-pass filter has been used for synchronizing and re-synchronizing between micro-grid and main grid. A combination of bi-directional buck/boost converter and DC/AC converter is applied to connect the energy storage block with micro-grid to fulfill the discharging/charging function. A full code-based implementation of this micro-grid modeling has been conducted in Matlab Simulink environment. The simulation results have verified that this new micro-grid model could operate well. Specifically, firstly, by combining two passive islanding detection methods, one can reach error-free islanding detection and protection. Secondly, autonomous operation of micro-grid containing three DGs could be realized by employing weak droop control and PQ control. The weak droop control could share the unbalanced energy between generators and loads automatically. Thirdly, smooth synchronization and re-synchronization could be obtained by extracting fundamental signal of each inverter output by the Windowed-sinc band-pass filter. Lastly, a battery energy system has been adopted to inject or absorb energy into or from micro-grid.
机译:包含可再生能源发电的微电网系统的渗透率正以指数级增长,以缓解能源危机和环境污染。微电网有望实现两个优先目标,即提高稳定性和提高可再生能源的发电效率。在第一个目标方面,微电网需要在有或没有主电网连接的情况下保持运行。在电网断开状态(也称为孤岛状态)下,微电网系统必须确保其可靠性和能源质量,以平衡发电机和负载之间的功率。对于第二个目标,预计带有可再生能源的微电网可随时提取最大可用能量。为了实现这一目标,应将储能系统嵌入微电网中,以帮助共享发电机的剩余能量或负载所需的缺失能量。基于以上两个目标,本文提出了一种微电网的综合建模方法。孤岛检测,自主运行,同步和重新同步以及能量存储的功能。带有LCL滤波器的并网逆变器可对本地配电的拓扑进行建模。比例谐振控制器用于控制逆变器。本研究采用了一种结合了两种被动检测方法的孤岛检测方法。结合微弱下垂控制和PQ控制的孤岛微电网自主运行新方法已被采用。一个有效且快速的50Hz信号提取滤波器Windowed-sinc带通滤波器已用于微电网和主电网之间的同步和再同步。应用双向降压/升压转换器和DC / AC转换器的组合将储能模块与微电网连接,以实现放电/充电功能。在Matlab Simulink环境中已经进行了此微网格建模的基于代码的完整实现。仿真结果验证了该新的微电网模型可以很好地运行。具体而言,首先,通过结合两种被动孤岛检测方法,可以实现无差错孤岛检测和保护。其次,通过采用弱下垂控制和PQ控制,可以实现包含三个DG的微电网的自主运行。弱下垂控制可以自动在发电机和负载之间分配不平衡的能量。第三,通过窗加窗带通滤波器提取每个逆变器输出的基波信号,可以获得平稳的同步和重新同步。最后,采用了电池能量系统将能量注入微电网或从微电网吸收能量。

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