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首页> 外文期刊>International journal of sustainable energy >Asynchronous interconnection of large-scale photovoltaic plants:site selection considerations
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Asynchronous interconnection of large-scale photovoltaic plants:site selection considerations

机译:大型光伏电站的异步互连:选址注意事项

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摘要

Large-scale penetration of photovoltaic (PV) energy in a distribution network requires careful planning of its location on the distribution network since it evidently demands large space, flexible maintenance access and exposure to driving energy sources such as sunlight for PV plants. Besides that, the technical aspects of the design should consider possible constraints that may introduce inefficiency in the generation or simply unexpected loss in the distribution. This paper addresses the decentralisation requirement for large-scale deployment of PV power sources as it resists the intermittency of the PV output naturally. In this study, a Monte Carlo method was used to justify the validity of this implication.A modified Gaussian distribution function was used to model the random fluctuations of the PV source and was used in the Monte Carlo simulation. The result shows considerable boost in the average power level and suppression of the fluctuation rate while the interconnected sources are uncorrelated.
机译:光伏(PV)能源在配电网络中的大规模渗透需要仔细规划其在配电网络中的位置,因为它显然需要较大的空间,灵活的维护通道以及暴露于光伏电站等日光下的驱动能源。除此之外,设计的技术方面还应考虑可能的约束条件,这些约束条件可能会导致发电效率低下或分配中的意外损失。本文解决了大规模部署光伏电源的分散要求,因为它自然地抵制了光伏输出的间歇性。在这项研究中,蒙特卡罗方法被用来证明这种暗示的正确性。修改后的高斯分布函数被用来模拟光伏源的随机波动,并被用于蒙特卡洛模拟中。结果表明,在互连电源互不相关的情况下,平均功率水平得到了显着提高,波动率得到了抑制。

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