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A frequency-stabilizing scheme for integrating photovoltaics into a small island grid

机译:一种将光伏系统集成到小岛电网中的稳频方案

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The use of photovoltaics (PV) has increased in some small islands of Okinawa Prefecture, Japan in response to various renewable energy demonstration projects. Since this increased usage could deteriorate the power quality, including frequency, of an isolated grid in a small island, a frequencystabilizing system using lithium-ion capacitors (LiC) has been integrated into the grid. Because a frequency-stabilizing scheme is the heart of the frequency-stabilizing system, a scheme which employs deviation of PV output (ΔP) and system frequency (ΔF) as inputs was developed. The parameters of the ΔP input part were derived for mitigating stepwise changes of system frequency caused by a sudden fluctuation in PV output. The parameters of the ΔF part were set so as to alleviate the high-frequency components of the system frequency deviation caused by load fluctuation. The developed scheme was applied to the stabilizing system using LiC in the island grid and was found to greatly alleviate frequency fluctuation.
机译:为了响应各种可再生能源示范项目,在日本冲绳县的一些小岛上,光伏(PV)的使用有所增加。由于增加的使用量可能会降低小岛中隔离电网的电能质量(包括频率),因此已在电网中集成了使用锂离子电容器(LiC)的稳频系统。由于稳频方案是稳频系统的核心,因此开发了一种方案,该方案采用PV输出(ΔP)和系统频率(ΔF)的偏差作为输入。得出ΔP输入部分的参数,以缓解由于PV输出突然波动而导致的系统频率逐步变化。设置ΔF部分的参数是为了减轻由负载波动引起的系统频率偏差的高频分量。将该方案应用于孤岛电网中使用LiC的稳定系统,发现可以大大减轻频率波动。

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