标题: 利用风能于电瓶充放电之电路设计
The Design of Charging and Discharging Circuit for Battery by Wind Energy
作者: 郑台杰
Cheng, Tai-Chieh
吕宗熙
Liu, Tzong-Shi
机械工程学系
关键字: 风能;电瓶
公开日期: 1997
摘要: 由于现今石油的短缺和日益严重的空气污染,已使得电动汽机车将取代传统燃油的交通工具。电动汽机车的优点在于低嗓音、低振动和无空气污染。可是过长的充电时间、太短的巡航距离和低车速仍为其主要之缺点。本论文旨在探讨利用电动机车行驶时产生之风的能量转换成电瓶电力的可行性。其中比较了几种市售常见的电动机用于风力发电的可用性,而以可变磁阻电机最为适合。此外,可变磁阻电机用于发电机时的激励电路和激励角度亦在文中有所探讨。在完成激励电路的基本结构后,再以PSpice软体模拟此一电路。在模拟过程中,电路中所有电路元件之数值皆经过适当选择以期能够达成能量转换及升压的目的。继之再以实际的可变磁组电机连接激励电路,以电脑加以控制激励角度之电路切换。最后并评估实际能量转换之效率。
Nowadays exhausting supply of gasoline and serious air pollution problems have become incentive to replace conventional transportation by electric automobiles and motorcycles. Less noise, vibration, and air pollution constitute merits of electric vehicles. However, long charging time, short cruising distance, and low speed are their disadvantages. This study aims to exploit feasibility of transforming wind energy generated during riding into battery energy for electric motorcycles. Several common commercial electric machines are compared in their feasibility for generating electric energy from wind energy, among which the switched reluctance machine is suitable one. Therefore, excitation circuits and angles, when using the switched, reluctance machine as generators, are investigated in this study. Based on the excitation circuit, the PSpice software is executed. In the simulation, every circuit element value is adjusted to achieve desired voltage of 24V. To realize the circuit, the experimental setup comprises a real electric circuit, switched reluctance machine, and a PC that plays the role of controlling excitation angles. Finally, the energy transformation efficiency is calculated by experimental results.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT863489033
http://hdl.handle.net/11536/63505
显示于类别:Thesis