交流微电网无缝运行模式转换控制方案

Arvind H Kadam, K. Unni, S. Thale
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引用次数: 3

摘要

微电网作为传统集中式发电厂的一种替代方案,通过一组微源及其本地负荷进行现场小规模发电,引起了人们的广泛关注。微电网的优势在于它具有单机(孤岛)和并网两种工作模式。在并网模式向孤岛模式过渡的过程中,有可能出现较大的电压和频率偏差,这对于接入系统的局部负载来说是不希望出现的。这些变化还在与每个微源电路相关的功率转换器组件上建立应力。在单机模式向并网模式转变的过程中,电压和电流瞬变的概率很大。为了避免这种情况,两种工作模式之间的无缝模式转换,应设计适当的控制方案。本文提出了一种微源逆变器在单机运行时工作在电压控制模式和并网运行时工作在电流控制模式下的控制方案,并且在过渡阶段易于在这两种模式之间切换。利用MATLAB/Simulink对所展示的控制方案进行了仿真,并利用德州仪器数字信号处理器TMS320F28069进行了硬件实现,验证了仿真结果。仿真和硬件结果验证了所提出的微电网无缝模式转移控制策略的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control scheme for seamless operating mode transfer of AC microgrid
On-site small-scale electricity generation through a cluster of micro-sources with their local loads known as, microgrid has attracted significant attention as an alternative to traditional centralized power generation plants. The advantage of microgrid lies in its capability to work in stand-alone (island) and grid-connected mode. During the transition from grid-connected mode to island mode, there is a possibility of large voltage and frequency deviations, which is undesirable for the local loads connected to the system. These variations also build up stress on the power converter components associated with the circuitry of each of the micro-source. During the transition from stand-alone mode to grid, connected mode there is large probability of voltage and current transients. To avoid such situations, seamless mode transfer between the two working modes, an appropriate control scheme should be devised. This paper presents a control scheme wherein the micro-source inverter works in voltage control mode amid stand-alone operation and in current control mode amid grid-connected operation and switches over easily between these modes during the transition phase. The exhibited control scheme is simulated with MATLAB/Simulink and the obtained results are confirmed with hardware implementation utilizing Texas Instruments digital signal processor TMS320F28069. Simulation and hardware results establish the accomplishment of the proposed control strategy for seamless mode transfer in the microgrid.
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