The paper develops a typical management problem of a large power producer (i.e., he can partly influence the market price). In particular, he routinely needs to decide how much of his generation it is preferable to commit to fixed-price bilateral contracts (e.g., futures) or to the spot market. However, he also needs to plan how to distribute the production between the different plants under his control. The two decisions, namely the sales-mix and the generation plan, naturally interact since the opportunity to influence the spot price depends, among other things, on the amount of the energy that the producer directs on the spot market. We develop a risk management problem, since we consider an optimization problem combining a trade-off between expectation and conditional value at risk of the profit function of the producer. The sources of uncertainty are relatively large and include demand, renewables generation, and the fuel costs of conventional plants. We also endogenously model the price of futures in a way that reflects an information advantage of a large power producer. In particular, it is assumed that the market forecasts the price of futures in a naive way, namely not anticipating the impact of the large producer on the spot market. The paper provides a MILP formulation of the problem and analyzes the solution through a simulation based on data from the Spanish power market.

Joint optimization of sales-mix and generation plan for a large electricity producer

Paolo Falbo;Carlos Ruiz
2023-01-01

Abstract

The paper develops a typical management problem of a large power producer (i.e., he can partly influence the market price). In particular, he routinely needs to decide how much of his generation it is preferable to commit to fixed-price bilateral contracts (e.g., futures) or to the spot market. However, he also needs to plan how to distribute the production between the different plants under his control. The two decisions, namely the sales-mix and the generation plan, naturally interact since the opportunity to influence the spot price depends, among other things, on the amount of the energy that the producer directs on the spot market. We develop a risk management problem, since we consider an optimization problem combining a trade-off between expectation and conditional value at risk of the profit function of the producer. The sources of uncertainty are relatively large and include demand, renewables generation, and the fuel costs of conventional plants. We also endogenously model the price of futures in a way that reflects an information advantage of a large power producer. In particular, it is assumed that the market forecasts the price of futures in a naive way, namely not anticipating the impact of the large producer on the spot market. The paper provides a MILP formulation of the problem and analyzes the solution through a simulation based on data from the Spanish power market.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/589965
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