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Analysis and Application of Advanced Control Strategies To a Heating Element Nonlinear Model

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Date

2017-01

Authors

Turhan, Cihan
Gökçen Akkurt, Gülden

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IOP Publishing Ltd.

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Abstract

This paper presents the design of different control strategies applied to a heating element nonlinear model. The description of this heating element was obtained exploiting a data-driven and physically meaningful nonlinear continuous-time model, which represents a test-bed used in passive air conditioning for sustainable housing applications. This model has low complexity while achieving high simulation performance. The physical meaningfulness of the model provides an enhanced insight into the performance and functionality of the system. In return, this information can be used during the system simulation and improved model- based and data-driven control designs for tight temperature regulation. The main purpose of this study is thus to give several examples of viable and practical designs of control schemes with application to this heating element model. Moreover, extensive simulations and Monte- Carlo analysis are the tools for assessing experimentally the main features of the proposed control schemes, in the presence of modelling and measurement errors. These developed control methods are also compared in order to evaluate advantages and drawbacks of the considered solutions. Finally, the exploited simulation tools can serve to highlight the potential application of the proposed control strategies to real air conditioning systems.

Description

13th European Workshop on Advanced Control and Diagnosis, ACD 2016; Hautes Etrudes d'Ingenieur (HEI)Lille; France; 17 November 2016 through 18 November 2016

Keywords

Heating, Air conditioning, Monte Carlo method, Temperature regulations, Electric heating elements

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Citation

Turhan, C., Simani, S., Zajic, I., and Gökçen Akkurt, G. (2017, November 17-18). Analysis and application of advanced control strategies to a heating element nonlinear model. Paper presented at the 13th European Workshop on Advanced Control and Diagnosis. doi:10.1088/1742-6596/783/1/012027

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N/A

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Q3
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3

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13th European Workshop on Advanced Control and Diagnosis

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783

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1

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2

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1

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959

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318

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