Title :
A stochastic optimization approach to optimal bidding on dutch ancillary services markets
Author :
Puglia, Laura ; Bemporad, Alberto ; Jokic, A. ; Virag, A.
Author_Institution :
IMT Alti Studi di Lucca, Lucca, Italy
Abstract :
The aim of this paper is to present a market design for trading capacity reserves (also called Ancillary Services, AS) and to introduce a strategy for the optimal bidding problem in such a scenario. In the deregulated market, the presence of several market participants or Balance Responsible Parties (BRPs) entitled for trading energy, together with the increasing integration of renewable sources and price-elastic loads, shift the focus on decentralized control and reliable forecast techniques. The main feature of the considered market design is its double-sided nature. In addition to portfolio-based supply bids and based on prediction of their stochastic production and load, BRPs are allowed to submit risk-limiting requests. Requesting capacity from the AS market corresponds to giving to the market an estimate of the possible deviation from the daily production schedule resulting from the day-ahead auction and from bilateral contracts, named E-Program. In this way each BRP is responsible for the balanced and safe operation of the electric grid. On the other hand, at each Program Time Unit (PTU) BRPs must also offer their available capacity under the form of bids. In this paper, a bidding strategy to the double-sided market is described, where the risk is minimized and all the constraints are fulfilled. The algorithms devised are tested in a simulation environment and compared to the current practice, where the double-sided auction is not contemplated. Results in terms of expected imbalances and reliability are presented.
Keywords :
contracts; investment; power grids; power markets; pricing; risk management; stochastic programming; BRP; Dutch ancillary services markets; PTU; balance responsible parties; bilateral contracts; capacity reserve trading; day-ahead auction; deregulated market; e-program; electric grid; energy trading; market design; optimal bidding problem; portfolio-based supply bids; price-elastic load integration; production schedule; program time unit; renewable source integration; risk minimization; risk-limiting requests; stochastic optimization approach; stochastic production prediction; Contracts; Production; Real-time systems; Schedules; Standards; Stochastic processes; Wind forecasting;
Conference_Titel :
European Energy Market (EEM), 2013 10th International Conference on the
Conference_Location :
Stockholm
DOI :
10.1109/EEM.2013.6607399