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An autonomous distributed control method based on tie-set graph theory in future grid

机译:基于关系集图论的未来电网自主分布控制方法

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摘要

In future power grids where electricity flows bidirectionally, the essential problem is to maximize the total efficiency of distributed energy resources. In complicated and large-scale systems such as modern power distribution networks, maximizing the efficiency of the entire system as a whole is extremely difficult. To solve the global optimization problem of such a complex network, this paper proposes an efficient distributed control method for future grid on the basis of tie-set graph theory, where a tie-set is a set of all the edges in a loop of a graph. On the basis of tie-set graph theory, global optimization of an entire network can be realized as a result of local optimization in μ-dimensional liner vector space, where μ is the nullity of the underlying graph of apower network. Although each tie-set has its limited local information, an entire network is gradually optimized in an orderly manner because of the theoretical basis of a tie-set graph. Simulation results of several thousand-node networks demonstrate balanced allocation of dispersed energy resources and thus effectiveness of the proposed method.
机译:在电流双向流动的未来电网中,基本问题是使分布式能源的总效率最大化。在诸如现代配电网络之类的复杂且大规模的系统中,最大化整个系统的整体效率极为困难。为了解决这样一个复杂网络的全局优化问题,本文基于联系集图论提出了一种有效的未来网格分布式控制方法,其中联系集是一个循环中所有边的集合。图形。根据联系集图论,通过在μ维线性向量空间中进行局部优化,可以实现整个网络的全局优化,其中μ是电力网络基础图的无效值。尽管每个联系集都有其有限的本地信息,但是由于联系集图的理论基础,整个网络逐步以有序方式进行了优化。几千个节点的网络仿真结果证明了分散能源的均衡分配,从而证明了该方法的有效性。

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