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Agent-Based Distributed Computing for Power System State Estimation
DOI:10.1109/TSG.2020.3006932.png)
摘要
En 中文
Centralized grid operations are now facing data storage and computation complexities more than ever. These are further compounded by communication saturation and related issues. These have instigated the transition towards distributed computing paradigm. This paper proposes a novel agent-based distributed (node-node) state estimation that overcomes the complexities of centralized operations. The proposed methodology sketches distributed constraint satisfaction algorithm that enables an agent to estimate its local representative bus's state only by local computation and asynchronous message exchange with connected neighboring agents. The case studies demonstrate the performance, efficacy and solution accuracy of the proposed methodology by comparing it with centralized and distributed algorithms.
Keyword:
State estimation
Barium
Peer-to-peer computing
Computer architecture
Smart grids
Distributed architecture
distributed constraint satisfaction problem
edge computing
multi-agent system
state estimation
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引用论文
Distributed Robust Bilinear State Estimation for Power Systems with Nonlinear Measurements具有非线性测量的电力系统分布式鲁棒双线性状态估计

