Software refactoring and improvements for a fast-charge lithium-ion battery charger
Batteries have become increasingly prevalent in our everyday life, from phones to power grids. In the years to come, its performance and capacity will affect the decisions for technologies to be adopted and the operating costs of businesses. Non-Linear Voltammetry (NLV) aims to improve the performan...
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2021
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sg-ntu-dr.10356-1532422021-11-16T08:35:58Z Software refactoring and improvements for a fast-charge lithium-ion battery charger Goh, Puay Hiang Douglas Maskell School of Computer Science and Engineering KVI Pte Ltd ASDouglas@ntu.edu.sg Engineering::Computer science and engineering Batteries have become increasingly prevalent in our everyday life, from phones to power grids. In the years to come, its performance and capacity will affect the decisions for technologies to be adopted and the operating costs of businesses. Non-Linear Voltammetry (NLV) aims to improve the performance of charging a Lithium-Ion battery, especially in its late stages safely. Conventional charging methods are controlled based on current controls, followed by voltage controls. In comparison, NLV is controlled based on voltage pulses, which adapts the charging rate based on the states of the battery. With the improvement of NLV, consumers will be able to reduce turnover time on hardware such as electric vehicles or power tools. This project focuses on improving the NLV Test Application, by refactoring and adding new features to the application, like remote connectivity and interoperability between peripherals. Bachelor of Engineering (Computer Engineering) 2021-11-16T08:35:58Z 2021-11-16T08:35:58Z 2021 Final Year Project (FYP) Goh, P. H. (2021). Software refactoring and improvements for a fast-charge lithium-ion battery charger. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/153242 https://hdl.handle.net/10356/153242 en application/pdf Nanyang Technological University |
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Engineering::Computer science and engineering Goh, Puay Hiang Software refactoring and improvements for a fast-charge lithium-ion battery charger |
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Batteries have become increasingly prevalent in our everyday life, from phones to power grids. In the years to come, its performance and capacity will affect the decisions for technologies to be adopted and the operating costs of businesses. Non-Linear Voltammetry (NLV) aims to improve the performance of charging a Lithium-Ion battery, especially in its late stages safely. Conventional charging methods are controlled based on current controls, followed by voltage controls. In comparison, NLV is controlled based on voltage pulses, which adapts the charging rate based on the states of the battery. With the improvement of NLV, consumers will be able to reduce turnover time on hardware such as electric vehicles or power tools. This project focuses on improving the NLV Test Application, by refactoring and adding new features to the application, like remote connectivity and interoperability between peripherals. |
author2 |
Douglas Maskell |
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Douglas Maskell Goh, Puay Hiang |
format |
Final Year Project |
author |
Goh, Puay Hiang |
author_sort |
Goh, Puay Hiang |
title |
Software refactoring and improvements for a fast-charge lithium-ion battery charger |
title_short |
Software refactoring and improvements for a fast-charge lithium-ion battery charger |
title_full |
Software refactoring and improvements for a fast-charge lithium-ion battery charger |
title_fullStr |
Software refactoring and improvements for a fast-charge lithium-ion battery charger |
title_full_unstemmed |
Software refactoring and improvements for a fast-charge lithium-ion battery charger |
title_sort |
software refactoring and improvements for a fast-charge lithium-ion battery charger |
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Nanyang Technological University |
publishDate |
2021 |
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https://hdl.handle.net/10356/153242 |
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1718368087771709440 |