外文翻译---基于C51兼容微处理器单片机的PWM控制器设计
《外文翻译---基于C51兼容微处理器单片机的PWM控制器设计》由会员分享,可在线阅读,更多相关《外文翻译---基于C51兼容微处理器单片机的PWM控制器设计(14页珍藏版)》请在毕设资料网上搜索。
1、大连交通大学 2012 届本科生毕业设计外文翻译 1 外文原文 Design of PWM Controller in a MCS-51 Compatible MCU Introduction PWM technology is a kind of voltage regulation method by controlling the switch frequency of DC power with fixed voltage to modify the two-end voltage of load.This technology can be used for a variety of
2、 applications including motor control, temperature control and pressure control and so on. In the motor control system shown as Fig. 1, through adjusting the duty cycle of power switch, the speed of motor can be controlled. As shown in Fig. 2, under the control of PWM signal, the average of voltage
3、that controls the speed of motor changes with Duty-cycle ( D = t1/T in this Figure ), thus the motor speed can be increased when motor power turn on, decreased when power turn off. Fig.1: The Relationship Fig.2 Architecture of between Voltage of Armature PWM Module Therefore, the motor speed can be
4、controlled with regularly adjusting the time of turn-on and turn-off. There are three methods could achieve the adjustment of duty cycle: (1) Adjust frequency with fixed pulse-width. (2) Adjust both frequency and pulse-width. (3) Adjust pulse-width with fixed frequency. Active steering control in th
5、e form of secondary yaw control (SYC) and actuated wheelset yaw (AWY)have been in prototype development. This paper presents a new active 大连交通大学 2012 届本科生毕业设计外文翻译 2 steering bogie design, actuated yaw force steering (AY-FS), that is able to steer under high traction loads in tight curves. The AY-FS
6、bogie design is compared with the AWY design. The steering performance AWY under high traction loads has not been previously reported. This paper examines five control methods, three for AWY and two for AY-FS bogies and assesses the traction curving and stability control performance of the alternati
7、ve designs and control methods compared with each other and to passive steering bogie designs.The curving performance results showed considerable advantage in the proposed AY-FS bogies over the AWY. It was shown that control must be applied to both the yaw angle and the steering angle of the bogie t
8、o achieve the best traction steering performance which was not possible with the AWY bogies. The proposed new bogie designs of AY-FS overall give better traction curving and stability performance than the AWY designs. Active suspensions and more recently active steering has received increasing inter
9、est for high-speed train sets 1,2. Active steering control in the form secondary yaw control (SYC) 3 and actuated wheelset yaw (AWY) 4 exist in developments up to prototype stage. SYC bogies control the bogie yaw angle Figure 1 and can improve the wear or creep force saturation at the wheelrail cont
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中设计图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- 外文 翻译 基于 c51 兼容 微处理器 单片机 pwm 控制器 设计
