Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger

碩士 === 國立勤益科技大學 === 電子工程系 === 103 === With increasing environment protection demand around the world, energy storage devices such as batteries to replace traditional oil power sources are widely applied quickly in recent years. However, it still lacks an appropriate power supply for a large lead-aci...

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Main Authors: Chia-Yu Pan, 潘珈佑
Other Authors: Hsiung C. LIN
Format: Others
Language:zh-TW
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/83546493928494327264
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spelling ndltd-TW-103NCIT57750012016-09-25T04:05:11Z http://ndltd.ncl.edu.tw/handle/83546493928494327264 Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger 用於大型鉛酸電池快速充電之高功率切換式電源設計與實現 Chia-Yu Pan 潘珈佑 碩士 國立勤益科技大學 電子工程系 103 With increasing environment protection demand around the world, energy storage devices such as batteries to replace traditional oil power sources are widely applied quickly in recent years. However, it still lacks an appropriate power supply for a large lead-acid battery charger in commercial products. For this reason, this research aims to design a high switching power supply for multiple lead acid batteries charger. The proposed scheme can provide DC 60V and up to 15 ampere output capacity for the charger. Based on the full-bridge converting technique, the pulse-width modulation frequency is working at 55 kHz so that the size of the hardware and its weight can be reduced considerably. Also, the EMI filter is added to protect high frequency signal interfere, and over-voltage and over-current protection circuits are integrated with the proposed power supply. Accordingly, it can satisfy the strict standard in industry. The proposed power supply was tested in situations of unload, linear load, and non-linear load. The experimental results confirm that the proposed scheme is feasible in term of reliability, high power, and small size. Hsiung C. LIN 林熊徵 2015 學位論文 ; thesis 43 zh-TW
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language zh-TW
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sources NDLTD
description 碩士 === 國立勤益科技大學 === 電子工程系 === 103 === With increasing environment protection demand around the world, energy storage devices such as batteries to replace traditional oil power sources are widely applied quickly in recent years. However, it still lacks an appropriate power supply for a large lead-acid battery charger in commercial products. For this reason, this research aims to design a high switching power supply for multiple lead acid batteries charger. The proposed scheme can provide DC 60V and up to 15 ampere output capacity for the charger. Based on the full-bridge converting technique, the pulse-width modulation frequency is working at 55 kHz so that the size of the hardware and its weight can be reduced considerably. Also, the EMI filter is added to protect high frequency signal interfere, and over-voltage and over-current protection circuits are integrated with the proposed power supply. Accordingly, it can satisfy the strict standard in industry. The proposed power supply was tested in situations of unload, linear load, and non-linear load. The experimental results confirm that the proposed scheme is feasible in term of reliability, high power, and small size.
author2 Hsiung C. LIN
author_facet Hsiung C. LIN
Chia-Yu Pan
潘珈佑
author Chia-Yu Pan
潘珈佑
spellingShingle Chia-Yu Pan
潘珈佑
Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger
author_sort Chia-Yu Pan
title Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger
title_short Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger
title_full Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger
title_fullStr Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger
title_full_unstemmed Design of High Switching Power Supply for Fast Multiple Lead Acid Batteries Charger
title_sort design of high switching power supply for fast multiple lead acid batteries charger
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/83546493928494327264
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