Yonga üzeri sistem kartı tabanlı donanımla benzetim test düzeneği geliştirilmesi

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2017

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Research Projects

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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 yonga üzeri sistem (SoC) kartı kullanılarak, Simulink HDL coder ve XSG kütüphanesi ile geliştirilmiş bir tesis modelini sınamak için kullanılabilecek bir donanımla benzetim (HIL) test düzeneği geliştirilmiştir. Tesis modeli, Simulink HDL kodlayıcı ve Xilinx System Geneator (XSG) kütüphanesi kullanılarak Verilog koduna dönüştürmüş ve Vivado Design Suite kullanılarak ZedBoard'a yüklenmiştir. Programlanan SoC kartı, gerçek giriş sinyallerine analogdan dijitale dönüştürücüler (ADC) ile arabağlanmış, tesisin çıkış sinyali ölçüm cihazına dijitalden analoga dönüştürücü (DAC) aracılığıyla taşınmıştır.
This thesis proposed a hardware in the loop (HIL) test setup based on system on chip board (SoC) board, that can be used for testing a plant model developed using Simulink HDL coder and Xilinx System Generator (XSG) library. The plant model was converted to Verilog code using XSG system generator and uploaded to SoC board using Vivado Design Suite. The programmed SoC board was interfaced to real input signals through analog to digital converters (ADC) and the output signal of plant was carried to the measurement device through a digital to analog converter (DAC). Drivers, in the form XSG models, were developed for ADC and DAC modules which implement the communication protocols of the modules to achieve data transmission between these modules and the SoC board. The operation of the HIL setup has been verified for a simple plant model.

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Elektrik ve Elektronik Mühendisliği, Electrical and Electronics Engineering

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66