风力电池微电网并网与孤岛运行模式无缝切换策略

Farheen Chishti, Bhim Singh
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引用次数: 0

摘要

减少碳足迹的需求为利用风能等可再生能源发电铺平了道路。然而,它的间歇性导致了用户的供需之间的巨大差距。电池储能与风力发电系统一起控制能量流,并抑制阻碍电网电力质量的可变性问题。在这里,在这项工作中,基于风力发电的微电网被连接到一个三相交流配电网,在电网到独立/独立到电网的运行模式之间无缝转换。在电网故障的情况下,控制从电流控制无缝过渡到电压控制。根据提供给静态转换开关(STS)的信号,使能并网模式和独立运行模式。电能质量(PQ)的改善以及能源的保证和充分性是通过管理本地负载支持来感知的。在并网运行模式下,采用自校正符号自适应滤波器对微电网进行控制,电压控制模式采用基于二进制广义积分器的增强型比例谐振(EPR)控制器。采用改进的无编码器方案对风力发电机的转速和转子位置进行估计,降低了机械传感器的成本。得到了微电网的协同行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seamless Transfer Strategy of a Wind-Battery Microgrid Between Grid Connected and Islanded Mode of Operation
The need to reduce the carbon footprint has paved the way for harnessing electricity generation from the renewable energy resource i.e. wind. However, its intermittency leads to a wide gap between supply and demand of the user. The battery energy storage in conjunction with the wind generation system controls the energy flow and curb the variability issues hampering the power quality of the grid. Here, in this work, wind power based microgrid is interfaced to a 3-phase AC distribution network with seamless transfer between the grid to standalone/standalone to the grid operating mode. In the case of the grid failure, the control seamlessly transits from the current control to the voltage control. The grid connected mode and standalone mode of operation are enabled according to the signal provided to the static transfer switches (STS). The power quality (PQ) improvement along with energy surety and sufficiency are perceived by managing the local load support. The self-correcting sign-sign (SCSS) adaptive filter is used to control the microgrid in the grid connected mode of operation, while the enhanced proportional resonant (EPR) controller with binary generalized integrator based phase locked loop (BGI-PLL) is utilized in the voltage control mode. The improved encoderless scheme adopted to estimate the speed and rotor position of the wind generator, reduces the cost of the mechanical sensors. The co-operational behavior of the microgrid is obtained.
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