English

Photovoltaic Inverter Controllers Seeking AC Optimal Power Flow Solutions

Optimization and Control 2016-11-17 v4 Dynamical Systems

Abstract

This paper considers future distribution networks featuring inverter-interfaced photovoltaic (PV) systems, and addresses the synthesis of feedback controllers that seek real- and reactive-power inverter setpoints corresponding to AC optimal power flow (OPF) solutions. The objective is to bridge the temporal gap between long-term system optimization and real-time inverter control, and enable seamless PV-owner participation without compromising system efficiency and stability. The design of the controllers is grounded on a dual epsilon-subgradient method, and semidefinite programming relaxations are advocated to bypass the non-convexity of AC OPF formulations. Global convergence of inverter output powers is analytically established for diminishing stepsize rules and strictly convex OPF costs for cases where: i) computational limits dictate asynchronous updates of the controller signals, and ii) inverter reference inputs may be updated at a faster rate than the power-output settling time. Although the focus is on PV systems, the framework naturally accommodates different types of inverter-interfaced energy resources.

Keywords

Cite

@article{arxiv.1501.00188,
  title  = {Photovoltaic Inverter Controllers Seeking AC Optimal Power Flow Solutions},
  author = {Emiliano Dall'Anese and Sairaj V. Dhople and Georgios B. Giannakis},
  journal= {arXiv preprint arXiv:1501.00188},
  year   = {2016}
}

Comments

Accepted for publication on IEEE Transactions on Power Systems