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A Distributed Robust Dispatch Approach for Interconnected Systems with a High Proportion of Wind Power Penetration

机译:一种具有高比例渗透比例的互联系统的分布式强大调度方法

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摘要

This paper proposes a distributed robust dispatch approach to solve the economic dispatch problem of the interconnected systems with a high proportion of wind power penetration. First of all, the basic principle of synchronous alternating direction method of multipliers (SADMM) is introduced to solve the economic dispatch problem of the two interconnected regions. Next, the polyhedron set of the robust optimization method is utilized to describe the wind power output. To adjust the conservativeness of the polyhedron set, an adjustment factor of robust conservativeness is introduced. Subsequently, considering the operation characteristics of the DC tie line between the interconnected regions, an economic dispatch model with a high proportion of wind power penetration is established and parallel iteration based on SADMM is used to solve the model. In each iteration, the optimized power of DC tie lines is exchanged between the regions without requiring the participation of the superior dispatch center. Finally, the validity of the proposed model is verified by the examples of the 2-area 6-node interconnected system and the interconnection of several modified New England 39-node systems. The results show that the proposed model can meet the needs of the independent dispatch of regional power grids, effectively deal with the uncertainty of wind power output, and maximize the wind power consumption under the condition of ensuring the safe operation of the interconnected systems.
机译:本文提出了一种分布式的健壮调度方法与风力发电的渗透比例高,解决了互联系统的经济调度问题。首先,乘数(SADMM)同步交替方向法的基本原则的引入解决了两个相互连接的区域的经济调度问题。接下来,在多面体集的鲁棒性优化方法被用于描述风功率输出。要调整多面体组的保守性,鲁棒保守的调节因子被引入。接着,考虑到相互连接的区域之间的DC结线的工作特性,具有风力发电渗透的比例高的经济调度模型,并使用基于SADMM并行迭代求解。在每次迭代中的DC联络线优化的功率的区域之间,而不需要优越调度中心的参与交换。最后,该模型的有效性由2区6节点互连系统的实例和几个修改新英格兰39节点系统的互联验证。结果表明,该模型能够满足区域电网独立调度的需要,有效应对风电出力的不确定性,以及确保互联系统的安全运行的条件下,最大限度地提高风电的消耗。

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