Medical Freezers as Flexible Load for Demand Response in a Business Park Microgrid with Local Solar Power Generation
Morales González, Rosa; Gibescu, Madeleine; Cobben, Sjef; Bongaerts, Martijn; de Nes-Koedam, Marcel; Vermeiden, Wouter
(2019) Donnellan, Brian, Klein, Cornel, Helfert, Markus, Gusikhin, Oleg, Donnellan, B., Klein, C., Helfert, M., Gusikhin, O. (eds.), Smart cities, green technologies and intelligent transport systems, pp. 23 - 43
Communications in Computer and Information Science, pp. 23 - 43
International Conference on Smart Cities and Green ICT Systems/International Conference on Vehicle Technology and Intelligent Transport Systems 2018, pp. 23 - 43
(Part of book)
Abstract
This work presents a day-ahead demand response (DR) scheduling framework that quantifies the flexibility in non-residential buildings by using thermodynamic modeling, and assesses the benefits of DR in terms of three separate optimization variants: net payment minimization, energy self-sufficiency, and peak power reduction. We test the framework in a case
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study of a medical research facility located in a business park with local solar power generation. The flexible loads are four groups of independently-controlled medical freezers. Our DR framework generates optimal freezer operation and solar power production/curtailment schedules that are compared against a business-as-usual scenario with no DR. We perform simulations for cases with and without end-of-horizon temperature constraints. Results show that the flexibility harnessed from the freezers’ thermal mass for DR actions improves the price-responsiveness, energy independence, and peak power consumption of the system with respect to the business-as-usual scenario. Furthermore, adding end-of-horizon constraints ensures that the thermal buffer of the flexible load will be full for the next simulation time window.
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Keywords: Demand response, Genetic algorithm, Smart grid, Local RES integration, Physical systems modeling, Taverne
ISBN: 9783030266325
9783030266349
978-3-030-26633-2
Publisher: Springer
(Peer reviewed)
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