Using the distributed proximal alternating direction method of multipliers for smart grid monitoring

Raffaele Carli, M. Dotoli
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引用次数: 2

Abstract

Efficient and effective monitoring represents the starting point for a reliable and secure smart grid. Given the increasing size and complexity of power networks and the pressing concerns on privacy and robustness, the development of intelligent and flexible distributed monitoring systems represents a crucial issue in both structuring and operating future grids. In this context, this paper presents a distributed optimization framework for use in smart grid monitoring. We propose a distributed algorithm based on ADMM (Alternating Direction Method of Multipliers) for use in large scale optimization problems in smart grid monitoring. The proposed solution is based upon a local-based optimization process, where a limited amount of information is exchanged only between neighboring nodes in a locally broadcast fashion. Applying the approach to two illustrating examples demonstrates it allows exploiting the scalability and efficiency of distributed ADMM for distributed smart grid monitoring.
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利用乘法器的分布式近交变方向法进行智能电网监测
高效、有效的监测是建立可靠、安全的智能电网的起点。考虑到电网的规模和复杂性日益增加,以及对隐私和鲁棒性的迫切关注,智能和灵活的分布式监控系统的发展是未来电网结构和运行的关键问题。在此背景下,本文提出了一种用于智能电网监控的分布式优化框架。提出了一种基于乘法器交替方向法的分布式算法,用于智能电网监测中的大规模优化问题。提出的解决方案基于基于本地的优化过程,其中有限的信息仅在相邻节点之间以本地广播的方式交换。将该方法应用到两个示例中表明,它允许利用分布式ADMM的可伸缩性和效率进行分布式智能电网监控。
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