An improved single-neuron proportional integral derivative ( PID ) controller and a new method to build the DC motor system were presented in the article. In the simulation, the robot arm is considered as an externa...An improved single-neuron proportional integral derivative ( PID ) controller and a new method to build the DC motor system were presented in the article. In the simulation, the robot arm is considered as an external load to DC motor. Both the motor module and the load module are crea- ted in Simulink to achieve simulation results closer to real robot system. In this way, it can well veri- fy the performance of the improved single-neuron PID controller, which is a combined controller of normal PID controller and single-neuron PID controller. Besides, an intelligent switcher can help to realize the function of choosing a better control algorithm according to motor' s velocity output. Sim- ulated results confirm the rapid and stable response of the improved PID controller. Moreover, the improved single-neuron PID controller has an excellent ability to overcome the load impact and su- press the jamming signals. At last, a GUI interface platform is built to make the controller easier to be applied in other robot systems.展开更多
针对比例-积分-微分(Proportional Integral Derivative,PID)控制系统,以恩平20-4组块动力定位(Dynamic Positioning,DP)浮托为依托,采用经验参数法与控制变量法相结合的方法,研究PID控制系统中比例参数K_(p)和微分参数K_(d)对浮托船定...针对比例-积分-微分(Proportional Integral Derivative,PID)控制系统,以恩平20-4组块动力定位(Dynamic Positioning,DP)浮托为依托,采用经验参数法与控制变量法相结合的方法,研究PID控制系统中比例参数K_(p)和微分参数K_(d)对浮托船定位精度(偏移半径)和推进器利用效率的影响。结果表明,随着K p的增大,推进器利用效率增加,甚至出现过盈的现象,偏移半径则是先减小后增大。采用控制变量法对K_(d)取值进行验证,表明随着K_(d)的增大,推进器利用效率增加,偏移半径反而有增大的趋势。研究为DP数值模拟中PID参数的选择提供依据。展开更多
在当前的电气应用中,变频器控制系统应用广泛,但面临的挑战也愈发明显。特别是在能耗管理方面,由于其缺乏智能调控频段能耗的能力,系统整体能耗偏高。为此,文章提出基于自适应比例-积分-微分(Proportional Integral Derivative,PID)算...在当前的电气应用中,变频器控制系统应用广泛,但面临的挑战也愈发明显。特别是在能耗管理方面,由于其缺乏智能调控频段能耗的能力,系统整体能耗偏高。为此,文章提出基于自适应比例-积分-微分(Proportional Integral Derivative,PID)算法的变频器节能控制系统设计。构建以微处理器为核心的变频器节能控制结构,将神经网络与PID控制器相结合,构造自适应PID控制器。结合变频器节能控制结构的能耗计算与反馈,通过自适应调节权值系数完成变频系数调整,降低各频段能耗,实现变频器节能控制研究。实验结果显示,该系统节能效果显著,能耗最高仅为20 J,且相较于对比文献,该系统运行稳定,运行时间短,为变频器节能控制运行提供了保障。展开更多
为解决高速公路爆胎车辆出现偏航的问题,借助ve DYNA软件进行了的仿真研究。在确定了爆胎车辆轨迹控制的评价指标后,采用模糊PID(Proportion Integral Differential)控制器,规划了爆胎后车辆的方向盘转角,代替驾驶员对爆胎车辆进行方向...为解决高速公路爆胎车辆出现偏航的问题,借助ve DYNA软件进行了的仿真研究。在确定了爆胎车辆轨迹控制的评价指标后,采用模糊PID(Proportion Integral Differential)控制器,规划了爆胎后车辆的方向盘转角,代替驾驶员对爆胎车辆进行方向控制。该方法结合模糊控制和传统PID控制的优点,针对车辆爆胎的复杂环境,自动整定PID控制参数,适应爆胎车辆的参数变化。仿真结果表明:基于模糊自整定PID的爆胎车辆轨迹控制可在保证车辆稳定行驶的同时控制车辆的行驶轨迹,使其在出现较小偏移后回到原路径,具有较好的适应性。展开更多
文摘An improved single-neuron proportional integral derivative ( PID ) controller and a new method to build the DC motor system were presented in the article. In the simulation, the robot arm is considered as an external load to DC motor. Both the motor module and the load module are crea- ted in Simulink to achieve simulation results closer to real robot system. In this way, it can well veri- fy the performance of the improved single-neuron PID controller, which is a combined controller of normal PID controller and single-neuron PID controller. Besides, an intelligent switcher can help to realize the function of choosing a better control algorithm according to motor' s velocity output. Sim- ulated results confirm the rapid and stable response of the improved PID controller. Moreover, the improved single-neuron PID controller has an excellent ability to overcome the load impact and su- press the jamming signals. At last, a GUI interface platform is built to make the controller easier to be applied in other robot systems.
文摘针对比例-积分-微分(Proportional Integral Derivative,PID)控制系统,以恩平20-4组块动力定位(Dynamic Positioning,DP)浮托为依托,采用经验参数法与控制变量法相结合的方法,研究PID控制系统中比例参数K_(p)和微分参数K_(d)对浮托船定位精度(偏移半径)和推进器利用效率的影响。结果表明,随着K p的增大,推进器利用效率增加,甚至出现过盈的现象,偏移半径则是先减小后增大。采用控制变量法对K_(d)取值进行验证,表明随着K_(d)的增大,推进器利用效率增加,偏移半径反而有增大的趋势。研究为DP数值模拟中PID参数的选择提供依据。
文摘在当前的电气应用中,变频器控制系统应用广泛,但面临的挑战也愈发明显。特别是在能耗管理方面,由于其缺乏智能调控频段能耗的能力,系统整体能耗偏高。为此,文章提出基于自适应比例-积分-微分(Proportional Integral Derivative,PID)算法的变频器节能控制系统设计。构建以微处理器为核心的变频器节能控制结构,将神经网络与PID控制器相结合,构造自适应PID控制器。结合变频器节能控制结构的能耗计算与反馈,通过自适应调节权值系数完成变频系数调整,降低各频段能耗,实现变频器节能控制研究。实验结果显示,该系统节能效果显著,能耗最高仅为20 J,且相较于对比文献,该系统运行稳定,运行时间短,为变频器节能控制运行提供了保障。
文摘为解决高速公路爆胎车辆出现偏航的问题,借助ve DYNA软件进行了的仿真研究。在确定了爆胎车辆轨迹控制的评价指标后,采用模糊PID(Proportion Integral Differential)控制器,规划了爆胎后车辆的方向盘转角,代替驾驶员对爆胎车辆进行方向控制。该方法结合模糊控制和传统PID控制的优点,针对车辆爆胎的复杂环境,自动整定PID控制参数,适应爆胎车辆的参数变化。仿真结果表明:基于模糊自整定PID的爆胎车辆轨迹控制可在保证车辆稳定行驶的同时控制车辆的行驶轨迹,使其在出现较小偏移后回到原路径,具有较好的适应性。