Design and testing of a solid-state power controller control and protection card for aerospace application
Advancements in the field of electrical and electronic aircraft technologies have introduced a concept of a ‘More Electric Aircraft’. This concept essentially replaces non-electrical systems on an aircraft such as Hydraulic and Pneumatic systems with electrical systems. This will create an environme...
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sg-ntu-dr.10356-783552023-07-07T16:24:17Z Design and testing of a solid-state power controller control and protection card for aerospace application Singh, Davinder Muhammad Faeyz Karim School of Electrical and Electronic Engineering Rolls-Royce@NTU Corporate Lab DRNTU::Engineering::Electrical and electronic engineering Advancements in the field of electrical and electronic aircraft technologies have introduced a concept of a ‘More Electric Aircraft’. This concept essentially replaces non-electrical systems on an aircraft such as Hydraulic and Pneumatic systems with electrical systems. This will create an environment with a high density of electrical loads which will require constant monitoring for electrical fault signals and rapid isolation. Advancements in power electronics and digital control systems have led to the exploration of Solid-State Power Controller(SSPC) as a replacement for the electromechanical protection devices. This thesis documents the design, development, and testing of the SSPC control card which integrates power electronics with digital control systems. The control card measurement and isolation control peripherals, design and tests’ results are thoroughly discussed. The design and test results of a protection card are explored to serve the purpose of overvoltage protection for the power semiconductor. Bachelor of Engineering (Electrical and Electronic Engineering) 2019-06-19T01:36:53Z 2019-06-19T01:36:53Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/78355 en Nanyang Technological University 73 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering Singh, Davinder Design and testing of a solid-state power controller control and protection card for aerospace application |
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Advancements in the field of electrical and electronic aircraft technologies have introduced a concept of a ‘More Electric Aircraft’. This concept essentially replaces non-electrical systems on an aircraft such as Hydraulic and Pneumatic systems with electrical systems. This will create an environment with a high density of electrical loads which will require constant monitoring for electrical fault signals and rapid isolation. Advancements in power electronics and digital control systems have led to the exploration of Solid-State Power Controller(SSPC) as a replacement for the electromechanical protection devices. This thesis documents the design, development, and testing of the SSPC control card which integrates power electronics with digital control systems. The control card measurement and isolation control peripherals, design and tests’ results are thoroughly discussed. The design and test results of a protection card are explored to serve the purpose of overvoltage protection for the power semiconductor. |
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Muhammad Faeyz Karim |
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Muhammad Faeyz Karim Singh, Davinder |
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Final Year Project |
author |
Singh, Davinder |
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Singh, Davinder |
title |
Design and testing of a solid-state power controller control and protection card for aerospace application |
title_short |
Design and testing of a solid-state power controller control and protection card for aerospace application |
title_full |
Design and testing of a solid-state power controller control and protection card for aerospace application |
title_fullStr |
Design and testing of a solid-state power controller control and protection card for aerospace application |
title_full_unstemmed |
Design and testing of a solid-state power controller control and protection card for aerospace application |
title_sort |
design and testing of a solid-state power controller control and protection card for aerospace application |
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2019 |
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http://hdl.handle.net/10356/78355 |
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1772828778746085376 |