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Fuzzy Logic Controller To Maintain Parabolic Dish (PD) Receiver Temperature Within Safe Operating Range

Ali, Muhammad Faez (2016) Fuzzy Logic Controller To Maintain Parabolic Dish (PD) Receiver Temperature Within Safe Operating Range. Project Report. UTeM, Melaka, Malaysia . (Submitted)

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Abstract

Advancing the utilization of Renewable Energy (RE) assets has gotten to be one of the top government motivations all through the world. However, in order to develop RE, for example,Concentrating Solar Power (CSP) in Malaysia, a few key factors that influence the execution of this framework should be totally investigated. The RE resource such as solar energy from the sun is random and intermittent during daily operation depend on weather. With focusing on the one of the CSP technologies which is Parabolic Dish (PD)System, this project aims to investigate on the fuzzy logic controller in order to maintain PD receiver temperature withinthe safe operating range. Based on research of the previous work, this project proposed fuzzy logic as a control method that maintains the temperature of the PD receiver to the desired point or the maximum temperature for the receiver. By using MATLAB simulation software, the fuzzy logic control (FLC) designed, tested, and tuned to control the system. The simulations of block diagram of the system designed in Simulink and evaluate in terms of speed of response to the desired setting value, overshoot in fixed set point. By the end of this research, the FLC that implement to the system should be neglected overshoot value and steady state error in other to maintain the temperature within safe operating range.

Item Type: Final Year Project (Project Report)
Uncontrolled Keywords: Solar concentrators, Solar energy -- Malaysia, Fuzzy logic
Subjects: T Technology > TJ Mechanical engineering and machinery
Divisions: Faculty of Electrical Engineering
Depositing User: Muhammad Afiz Ahmad
Date Deposited: 16 Nov 2017 08:54
Last Modified: 16 Nov 2017 08:54
URI: http://digitalcollection.utem.edu.my/id/eprint/19981

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