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基于单片机的智能步进电机细分驱动器设计 被引量:2
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作者 孙斌 王渝中 李书训 《微型电脑应用》 2003年第7期29-31,共3页
目前混合式步进电机已经广泛作用于各种自控场合 ,为了适应不同的电机和驱动电路 ,本文提出一种较为通用的智能驱动模块解决方案 ,使用单片机实现脉冲分配、软件PWM和智能监测功能 ,充分利用了单片控制器的处理能力 ,既降低了驱动器成... 目前混合式步进电机已经广泛作用于各种自控场合 ,为了适应不同的电机和驱动电路 ,本文提出一种较为通用的智能驱动模块解决方案 ,使用单片机实现脉冲分配、软件PWM和智能监测功能 ,充分利用了单片控制器的处理能力 ,既降低了驱动器成本 ,简化了电路设计和器件选择 ,同时方便参数的修改。 展开更多
关键词 智能步进电机 细分驱动器 设计 单片机 驱动电路 混合式步进电机
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Research on Intelligent Positioning Bed of Body Gamma Knife Based on Sensor
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作者 YU Hui ZHANG Jian-hua 《Chinese Journal of Biomedical Engineering(English Edition)》 2012年第1期35-43,共9页
This paper introduces a design to improve the radiotherapy accuracy of gamma knife. In this design, sensor is used to collect respiratory parameters and tumor displacement (caused by human respiration) model is establ... This paper introduces a design to improve the radiotherapy accuracy of gamma knife. In this design, sensor is used to collect respiratory parameters and tumor displacement (caused by human respiration) model is established through optimization modeling. At the same time, data are transferred to single chip microcomputer (SCM) system by pressure sensor and then stepping motor is controlled by SCM. Finally, the intelligent positioning bed is under the control of stepping motor. As a result, the intelligent positioning bed can move reverse to respiratory law. The experimental results showed that this method can reduce the influence of respiration on tumor displacement, improving the accuracy of intelligent positioning bed with simple circuit and low cost at the same time. 展开更多
关键词 intelligent positioning bed BFGS optimization modeling SENSOR stepping motor single chip microcomputer (SCM)
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Intelligent Tracking Telescope Using Embedded Microcontrollers
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作者 Bassam Shaer David Cudney 《Computer Technology and Application》 2011年第11期849-857,共9页
This paper presents the design and implementation of the embedded microcontrollers within a telescope control system. The design objectives of the overall system are to automatically find light emitting objects at nig... This paper presents the design and implementation of the embedded microcontrollers within a telescope control system. The design objectives of the overall system are to automatically find light emitting objects at night within a user specified area, to track a light emitting object for a user specified time given the initial position of the object, and to allow the user access to these functions through a graphical user interface. The embedded system is used to provide a communication link between the graphical user interface and system hardware, to provide angle data processing for a dual axis accelerometer, to provide data processing for an electronic compass, and to provide pulse outputs for the step and direction inputs of three stepper motor drives. This paper will describe the design, implementation, and results of each of these objectives. 展开更多
关键词 INTELLIGENT TRACKING TELESCOPE electronic compass.
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