English

Wasserstein Distributionally Robust Look-Ahead Economic Dispatch

Optimization and Control 2021-04-22 v3 Systems and Control Systems and Control

Abstract

We consider the problem of look-ahead economic dispatch (LAED) with uncertain renewable energy generation. The goal of this problem is to minimize the cost of conventional energy generation subject to uncertain operational constraints. The risk of violating these constraints must be below a given threshold for a family of probability distributions with characteristics similar to observed past data or predictions. We present two data-driven approaches based on two novel mathematical reformulations of this distributionally robust decision problem. The first one is a tractable convex program in which the uncertain constraints are defined via the distributionally robust conditional-value-at-risk. The second one is a scalable robust optimization program that yields an approximate distributionally robust chance-constrained LAED. Numerical experiments on the IEEE 39-bus system with real solar production data and forecasts illustrate the effectiveness of these approaches. We discuss how system operators should tune these techniques in order to seek the desired robustness-performance trade-off and we compare their computational scalability.

Keywords

Cite

@article{arxiv.2003.04874,
  title  = {Wasserstein Distributionally Robust Look-Ahead Economic Dispatch},
  author = {Bala Kameshwar Poolla and Ashish R. Hota and Saverio Bolognani and Duncan S. Callaway and Ashish Cherukuri},
  journal= {arXiv preprint arXiv:2003.04874},
  year   = {2021}
}
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