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A Consensus-Based Distributed Computational Intelligence Technique for Real-Time Optimal Control in Smart Distribution Grids

机译:智能配电网中基于共识的分布式计算智能实时控制技术

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摘要

In real-time large-scale optimization problems, such as in smart grids, centralized algorithms may face difficulties in handling fast-varying system conditions, such as high variability of renewable-based distributed generators (DGs) and controllable loads (CLs). Further, centralized algorithms may encounter computation and communication bottlenecks while handling a large number of variables. To tackle these issues, consensus-based distributed strategies have been proposed recently. However, distributed computational intelligence (CI)-based techniques can provide a much better near-optimal solution within fewer iterations of the algorithm, which is a critical requirement in smart grids. Therefore, in this paper, a consensus-based dimension-distributed CI technique is proposed for real-time optimal control in smart distribution grids in which a large number of DGs and CLs are present. The proposed approach considers each DG or CL as a separate private entity, which is more relevant from the perspective of smart grid optimization. In the proposed consensus-based framework, each DG or CL is associated with an agent, and each agent is allowed to communicate only with its neighboring agents. The effectiveness of the proposed approach in terms of convergence, adaptability, and optimality with respect to a centralized algorithm and a benchmark algorithm is shown through simulations on 30-node and 119-node distribution test systems.
机译:在实时大规模优化问题中(例如在智能电网中),集中式算法在处理快速变化的系统条件(例如,基于可再生能源的分布式发电机(DG)和可控负载(CL)的高可变性)时可能会遇到困难。此外,集中式算法在处理大量变量时可能会遇到计算和通信瓶颈。为了解决这些问题,最近已经提出了基于共识的分布式策略。但是,基于分布式计算智能(CI)的技术可以在较少的算法迭代中提供更好的近乎最佳的解决方案,这是智能电网中的一项关键要求。因此,在本文中,提出了一种基于共识的维数分布CI技术,用于存在大量DG和CL的智能配电网中的实时最优控制。所提出的方法将每个DG或CL视为一个单独的私有实体,这从智能电网优化的角度更相关。在提出的基于共识的框架中,每个DG或CL与一个代理相关联,并且每个代理仅允许与其相邻的代理进行通信。通过在30节点和119节点分布测试系统上的仿真,显示了该方法相对于集中式算法和基准算法在收敛性,适应性和最佳性方面的有效性。

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