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Joint Planning of Transmission and Distribution Network Considering Wind-solar Complementarity

机译:考虑风光互补的传输与分配网络的联合规划

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The temporal and spatial distribution characteristics of wind power and photovoltaic output are complementary to a certain extent, which can stabilize the volatility of single new energy power generation to a certain extent and improve the ability of the grid to absorb new energy. This paper aims to study the joint planning method of power transmission and distribution network considering the complementary characteristics of wind-solar time and space. First, a wind-solar joint distribution model based on the time-varying Copula theory is established, and a wind-solar output simulation method considering the complementary characteristics of time and space is proposed. Then, taking the system investment and new energy consumption capacity as the optimization goals, and taking the system power balance, line transmission capacity, conventional generator set output and climbing capacity as constraints, the joint planning model of transmission and distribution network is established. At last, the analysis of calculation examples proves that the joint planning model of transmission and distribution network considering the complementary characteristics of wind-solar time and space can significantly improve the capacity of the grid to absorb new energy.
机译:风力发电和光伏输出的时间和空间分布特性在一定程度上,其可以稳定单个新能源发电的波动在一定程度上,提高了电网的吸收新能量的能力的补充。本文旨在研究输电和配电网络的联合规划方法考虑的风 - 太阳时间和空间的互补特性。首先,基于所述时变Copula理论风力太阳能联合分布模型被建立,并且提出了一种风 - 太阳输出模拟方法考虑的时间和空间的互补特性。然后,采取系统的投资和新能源的消费能力作为优化目标,并采取了系统功率平衡,线路传输能力,常规发电机组输出和爬坡能力为约束,输电和配电网络的联合规划模型。最后,算例的分析表明,考虑的风光时间和空间的互补特性的输配电网络的联合规划模型可以显著提高电网吸纳新能源的能力。

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