Isı geri kazanımlı havalandırma sisteminin modele dayalı tasarımı

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2018

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Department of Electrical & Electronics Engineering
Department of Electrical and Electronics Engineering (EE) offers solid graduate education and research program. Our Department is known for its student-centered and practice-oriented education. We are devoted to provide an exceptional educational experience to our students and prepare them for the highest personal and professional accomplishments. The advanced teaching and research laboratories are designed to educate the future workforce and meet the challenges of current technologies. The faculty's research activities are high voltage, electrical machinery, power systems, signal and image processing and photonics. Our students have exciting opportunities to participate in our department's research projects as well as in various activities sponsored by TUBİTAK, and other professional societies. European Remote Radio Laboratory project, which provides internet-access to our laboratories, has been accomplished under the leadership of our department with contributions from several European institutions.

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Bu tezde, bir endüstriyel otomasyon uygulamasının, ısı geri kazanımlı havalandırma sisteminin, geliştirilmesi için model tabanlı tasarım iş akışının uygunluğu araştırılmıştır. Uygulama yazılımını modellemek ve doğrulamak için MATLAB Simulink ve Stateflow araçları kullanılmıştır. PLC Coder aracı tarafından üretilen Structured Text kodu, TwinCAT3 ortamına uyarlamış ve çalışma kapsamında geliştirilen deneysel düzenek kullanılarak test edilmiştir. Çalışma, gerçek zamanlı bir ortam kullanarak IEC61131-3 uyumlu bir dilde endüstriyel denetleyicilerin tasarlanması ve uygulanması için bir yöntem ortaya koymaktadır. Çalışmanın başlangıcında, kullanılacak yöntem hakkında literatürde fazla bilgi bulunmadığı tespit edilmiştir. Uygulamalı bir araştırma çalışmasıyla, seçilen metodolojinin ve araçların, endüstriyel otomasyon sistemlerinin model tabanlı geliştirilmesi için uygunlukları gösterilmiştir.
This thesis explores the suitability of using a Model-Based Design workflow for the development of an industrial automation application, namely a heat recovery ventilation system. MATLAB Simulink and Stateflow tool has been used to model and verify the application software. The Structured Text code generated by the PLC Coder Tool has been adapted to the TwinCAT3 environment and tested using the experimental setup developed in the study. The study demonstrates a methodology for the design and implementation of industrial controllers in a IEC61131-3 compatible language using a real-time environment. It was observed that there is not much knowledge in the literature about the procedure adopted, when the study was started. Through a practical research work, it was shown that the selected methodology and tools are appropriate for the Model-Based Design development of industrial automation systems.

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Elektrik ve Elektronik Mühendisliği, Electrical and Electronics Engineering

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57