Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor

碩士 === 國立臺灣大學 === 機械工程學研究所 === 92 === The objective of this paper is to research the direct driven vehicle’s performance which is affected by using super-capacitor. Due to the technical restriction of the conventional Lead-Acid battery, such as vast power output will cause damage to the battery, as...

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Main Authors: Kun-Chang Kuo, 郭昆璋
Other Authors: 陽毅平
Format: Others
Language:zh-TW
Published: 2004
Online Access:http://ndltd.ncl.edu.tw/handle/29027818978215901872
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spelling ndltd-TW-092NTU054891282016-06-10T04:16:16Z http://ndltd.ncl.edu.tw/handle/29027818978215901872 Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor 超高電容器對混合動力直驅式電動機車性能提升的研究 Kun-Chang Kuo 郭昆璋 碩士 國立臺灣大學 機械工程學研究所 92 The objective of this paper is to research the direct driven vehicle’s performance which is affected by using super-capacitor. Due to the technical restriction of the conventional Lead-Acid battery, such as vast power output will cause damage to the battery, as well the volume and the weight of the battery are still considerable. Moreover, the super-capacitor could supply much more instantaneous current than the battery when the motor need large current input to produce enough torque. In this paper, we utilize the characteristic curve by charging and discharging the super-capacitor to build up the equivalent circuit model from the parameter identification, and we use MATLAB/Simulink to establish the complete vehicle model, including the motor model, the battery model, and the super-capacitor model to simulate the starting, the acceleration, and the deceleration by means of switch between the series and parallel mode of the super-capacitor and switch between the super-capacitor and the battery. In conclusion, we verify the accuracy of the super-capacitor model, and we make use of the power management of the direct driven motor by employing the dynamometer. 陽毅平 2004 學位論文 ; thesis 230 zh-TW
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language zh-TW
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description 碩士 === 國立臺灣大學 === 機械工程學研究所 === 92 === The objective of this paper is to research the direct driven vehicle’s performance which is affected by using super-capacitor. Due to the technical restriction of the conventional Lead-Acid battery, such as vast power output will cause damage to the battery, as well the volume and the weight of the battery are still considerable. Moreover, the super-capacitor could supply much more instantaneous current than the battery when the motor need large current input to produce enough torque. In this paper, we utilize the characteristic curve by charging and discharging the super-capacitor to build up the equivalent circuit model from the parameter identification, and we use MATLAB/Simulink to establish the complete vehicle model, including the motor model, the battery model, and the super-capacitor model to simulate the starting, the acceleration, and the deceleration by means of switch between the series and parallel mode of the super-capacitor and switch between the super-capacitor and the battery. In conclusion, we verify the accuracy of the super-capacitor model, and we make use of the power management of the direct driven motor by employing the dynamometer.
author2 陽毅平
author_facet 陽毅平
Kun-Chang Kuo
郭昆璋
author Kun-Chang Kuo
郭昆璋
spellingShingle Kun-Chang Kuo
郭昆璋
Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor
author_sort Kun-Chang Kuo
title Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor
title_short Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor
title_full Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor
title_fullStr Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor
title_full_unstemmed Research of Hybrid Power Direct Driven Vehicle''s Performance Advanced by Using Super-Capacitor
title_sort research of hybrid power direct driven vehicle''s performance advanced by using super-capacitor
publishDate 2004
url http://ndltd.ncl.edu.tw/handle/29027818978215901872
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