Scinovex
articleTop 1% cited

Distributed Event-Triggered Scheme for Economic Dispatch in Smart Grids

IEEE Transactions on Industrial Informatics · 2015 · Vol. 12(5) · pp. 1775–1785
Chaojie LiXinghuo YuWenwu YuTingwen HuangZhi‐Wei Liu

Abstract

To reduce information exchange requirements in smart grids, an event-triggered communication-based distributed optimization is proposed for economic dispatch. In this work, the θ-logarithmic barrier-based method is employed to reformulate the economic dispatch problem, and the consensus-based approach is considered for developing fully distributed technology-enabled algorithms. Specifically, a novel distributed algorithm utilizes the minimum connected dominating set (CDS), which efficiently allocates the task of balancing supply and demand for the entire power network at the beginning of economic dispatch. Further, an event-triggered communication-based method for the incremental cost of each generator is able to reach a consensus, coinciding with the global optimality of the objective function. In addition, a fast gradient-based distributed optimization method is also designed to accelerate the convergence rate of the event-triggered distributed optimization. Simulations based on the IEEE 57-bus test system demonstrate the effectiveness and good performance of proposed algorithms.

Microgrid Control and OptimizationSmart Grid Energy ManagementOptimal Power Flow DistributionEconomic dispatchComputer scienceConvergence (economics)Distributed algorithmDistributed computingSmart gridInformation exchangeOptimization problemEvent (particle physics)Distributed generation

Funding

  • National Natural Science Foundation of China
  • Australian Research Council
Citations
371
FWCI
46.63
field-weighted impact
References
27
Percentile
100%
vs. same field & year
Citations per year
References
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Distributed Event-Triggered Scheme for Economic Dispatch in Smart Grids · Scinovex