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Experimental demonstration of grid-supportive scheduling of a polygeneration system using economic-MPC

  • Drawing off the technical flexibility of building polygeneration systems to support a rapidly expanding renewable electricity grid requires the application of advanced controllers like model predictive control (MPC) that can handle multiple inputs and outputs, uncertainties in forecast data, and plant constraints amongst other features. In this original work, an economic-MPC-based optimalDrawing off the technical flexibility of building polygeneration systems to support a rapidly expanding renewable electricity grid requires the application of advanced controllers like model predictive control (MPC) that can handle multiple inputs and outputs, uncertainties in forecast data, and plant constraints amongst other features. In this original work, an economic-MPC-based optimal scheduling of a real-world building energy system is demonstrated and its performance is evaluated against a conventional controller. The demonstration includes the steps to integrate an optimisation-based supervisory controller into a standard building automation and control system with off-the-shelf HVAC components and usage of state-of-art algorithms for solving complex nonlinear mixed integer optimal control problems. With the MPC, quantitative benefits in terms of 6–12% demand-cost savings and qualitative benefits in terms of better controller adaptability and hardware-friendly operation are identified. Further research potential for improving the MPC framework in terms of field-level stability, minimising constraint violations, and inter-system communication for its deployment in a prosumer-network is also identified.show moreshow less

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Metadaten
Document Type:Article (reviewed)
Zitierlink: https://opus.hs-offenburg.de/5253
Bibliografische Angaben
Title (English):Experimental demonstration of grid-supportive scheduling of a polygeneration system using economic-MPC
Author:Parantapa Amarsinh SawantStaff MemberORCiDGND, Adrian Bürger, Clemens Felsmann, Jens PfafferottStaff MemberORCiDGND
Date of Publication (online):2021/12/03
Publisher:Elsevier
Page Number:18
Article Number:111619
Parent Title (English):Energy & Buildings
Volume:254
ISSN:0378-7788 (Print)
ISSN:1872-6178 (Online)
DOI:https://doi.org/10.1016/j.enbuild.2021.111619
Language:English
Inhaltliche Informationen
Institutes:Forschung / INES - Institut für nachhaltige Energiesysteme
Fakultät Maschinenbau und Verfahrenstechnik (M+V)
Institutes:Bibliografie
DDC classes:600 Technik, Medizin, angewandte Wissenschaften
Formale Angaben
Relevance:Wiss. Zeitschriftenartikel reviewed: Listung in Master Journal List
Open Access: Closed Access 
Licence (German):License LogoUrheberrechtlich geschützt
Comment:
Online am 3. Dezember 2021 veröffentlicht.