由于短波的频段比较窄,利用高性能的上变频器AD9857来实现零中频的、直接射频的短波发射机。基于零中频的短波发射机DSP单元是发射机的核心单元,主要包括基带滤波、调制及射频产生、AGC(Auto Gain Control,自动增益控制)、ALC(Auto Leve...由于短波的频段比较窄,利用高性能的上变频器AD9857来实现零中频的、直接射频的短波发射机。基于零中频的短波发射机DSP单元是发射机的核心单元,主要包括基带滤波、调制及射频产生、AGC(Auto Gain Control,自动增益控制)、ALC(Auto Level Control,自动功率控制)等功能模块。重点分析DSP单元的电路实现及以上功能模块的设计方法与实现。展开更多
The piezoelectric actuator has been widely used in precision instruments and precision control. However, hysteresis, nonlinearity and creep exist in the actuator, which limit actuator applications and affect accuracy....The piezoelectric actuator has been widely used in precision instruments and precision control. However, hysteresis, nonlinearity and creep exist in the actuator, which limit actuator applications and affect accuracy. This thesis introduces fuzzy control as the algorithm of a closed-loop control system to control the piezoelectric actuator. Fuzzy control can make this closed-looped system not only have high linearity, repeatability, accuracy and few overshoot, but isalso easily used.展开更多
文摘由于短波的频段比较窄,利用高性能的上变频器AD9857来实现零中频的、直接射频的短波发射机。基于零中频的短波发射机DSP单元是发射机的核心单元,主要包括基带滤波、调制及射频产生、AGC(Auto Gain Control,自动增益控制)、ALC(Auto Level Control,自动功率控制)等功能模块。重点分析DSP单元的电路实现及以上功能模块的设计方法与实现。
文摘The piezoelectric actuator has been widely used in precision instruments and precision control. However, hysteresis, nonlinearity and creep exist in the actuator, which limit actuator applications and affect accuracy. This thesis introduces fuzzy control as the algorithm of a closed-loop control system to control the piezoelectric actuator. Fuzzy control can make this closed-looped system not only have high linearity, repeatability, accuracy and few overshoot, but isalso easily used.