The increasing challenges to the grid stability posed by the penetration of renewable energy resources urge a more active role for demand response programs as viable alternatives to a further expansion of peak power generators. This work presents a methodology to exploit the demand flexibility of energy-intensive industries under Demand-Side Management programs in the energy and reserve markets. To this end, we propose a novel scheduling model for a multi-stage multi-line process, which incorporates both the critical manufacturing constraints and the technical requirements imposed by the market. Using mixed integer programming approach, two optimization problems are formulated to sequentially minimize the cost in a day-ahead energy market and maximize the reserve provision when participating in the ancillary market. The effectiveness of day-ahead scheduling model has been verified for the case of a real metal casting plant in the Nordic market, where a significant reduction of energy cost is obtained. Furthermore, the reserve provision is shown to be a potential tool for capitalizing on the reserve market as a secondary revenue stream.

Demand-side management via optimal production scheduling in power-intensive industries: The case of metal casting process

Ramin D;Spinelli S;Brusaferri A
2018

Abstract

The increasing challenges to the grid stability posed by the penetration of renewable energy resources urge a more active role for demand response programs as viable alternatives to a further expansion of peak power generators. This work presents a methodology to exploit the demand flexibility of energy-intensive industries under Demand-Side Management programs in the energy and reserve markets. To this end, we propose a novel scheduling model for a multi-stage multi-line process, which incorporates both the critical manufacturing constraints and the technical requirements imposed by the market. Using mixed integer programming approach, two optimization problems are formulated to sequentially minimize the cost in a day-ahead energy market and maximize the reserve provision when participating in the ancillary market. The effectiveness of day-ahead scheduling model has been verified for the case of a real metal casting plant in the Nordic market, where a significant reduction of energy cost is obtained. Furthermore, the reserve provision is shown to be a potential tool for capitalizing on the reserve market as a secondary revenue stream.
2018
Istituto di Sistemi e Tecnologie Industriali Intelligenti per il Manifatturiero Avanzato - STIIMA (ex ITIA)
Inglese
225
622
636
https://www.sciencedirect.com/science/article/pii/S0306261918304227?via%3Dihub
Sì, ma tipo non specificato
Ancillary market
Demand response
Industrial demand-side management
Metal casting foundry
Scheduling
Spot market
Received 22 December 2017; Received in revised form 24 February 2018; Accepted 25 March 2018. Nota Affiliazione: CNR-ITIA attualmente ha cambiato denominazione in CNR-STIIMA
3
info:eu-repo/semantics/article
262
Ramin, D; Spinelli, S; Brusaferri, A
01 Contributo su Rivista::01.01 Articolo in rivista
partially_open
   Human-mimetic approach to the integrated monitoring, management and optimization of a symbiotic cluster of smart production units
   SYMBIOPTIMA
   H2020
   680426
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/345120
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