高比例可再生能源输电网络外部通道和储能的分布式鲁棒协同规划方法

Zhiyong Liu
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引用次数: 0

摘要

随着 "碳中和与碳调峰 "目标的提出,预计将有很高比例的可再生能源接入输电网络。针对风电和光伏发电的强随机性和集中大容量并网带来的重大挑战,影响输电网络的安全运行和新能源的消纳,该方法考虑了风电和光伏发电输出的不确定性和时间相关性。本文提出了一种通过输电通道分布式高比例新能源接入通道和储能的方法。在该方法中,外部输电通道和储能的规划共同作为决策变量。富余的可再生能源通过外部传输通道进行调度,而储能功能则用于削峰填谷和抑制新能源的随机波动,从而促进可再生能源的充分消纳。然后,利用二阶锥凸松弛和泰勒级数展开等技术,将原来的混合整数非凸非线性编程模型转化为混合整数凸编程模型,实现高效求解。最后,以改进的 IEEE 39 总线输电系统为例,验证了所提模型和方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributionally Robust Collaborative Planning Method for Transmission Network External Channel and Energy Storage with High Proportion of Renewable Energy
Following the proposal of ‘carbon neutrality and carbon peaking’ goals, a high proportion of renewable energy is expected to be connected to the transmission network. In response to the significant challenges posed by the strong randomness and centralized, high-capacity integration of wind and photovoltaic power, which affects the safe operation of the transmission network and the consumption of new energy, this approach considers the uncertainty and time correlation of wind and photovoltaic output. This paper proposes a method of distributed by the transmission channel of high -proportion new energy access channels and energy storage. In this method, the planning of external transmission channels and energy storage is jointly used as decision variables. Surplus renewable energy resources are dispatched through the external transmission channels, while energy storage functions are utilized for peak shaving, valley filling, and suppressing the random fluctuations of new energy, thereby promoting the full consumption of renewable energy. Then, using techniques such as second-order cone convex relaxation and Taylor series expansion, the original mixed integer non-convex nonlinear programming model is transformed into a mixed integer convex programming model to achieve efficient solution. Finally, an improved IEEE 39-bus transmission system is taken as a case study to verify the validity of the proposed model and method.
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