To implement a simulation of fir-floating-platform with higher frequency vibration, A satdlite-gesture emulation system with the functions of selectable high-frequency vibration-simulation and high-accuracy stability ...To implement a simulation of fir-floating-platform with higher frequency vibration, A satdlite-gesture emulation system with the functions of selectable high-frequency vibration-simulation and high-accuracy stability (with the control resolution within ± 5 × 10^-4 angle-degrees), controlled by using filtered-feedback and fuzzy-preeminence technology is designed and structured. The system is based on the analysis of dynamic and static composed-force-moment and disturhance factors. Through computational simulation, laboratory experiments and field-demo, it is proved that the system operation is available, practical, and propitious for minifying drive-power. These system structures and control strategies can be widely used in the fields such as astronomy, space navigation, deep-sea operation, high altitude motion, and weightless experiment, where a floating body must be controlled or simulated.展开更多
以液压型风力发电机组为研究对象,为使功率追踪的过程平稳,研究机组的最佳功率追踪控制方法.本文利用反馈线性化方法解决系统非线性问题,以液压系统压力为控制输出,设计最佳功率追踪控制器,并提出一种反馈线性化方法的工程应用解决方案...以液压型风力发电机组为研究对象,为使功率追踪的过程平稳,研究机组的最佳功率追踪控制方法.本文利用反馈线性化方法解决系统非线性问题,以液压系统压力为控制输出,设计最佳功率追踪控制器,并提出一种反馈线性化方法的工程应用解决方案,即结合传统PID控制解决反馈线性化工程应用中依赖模型参数精度的问题.依托30 k VA液压型风力发电机组半物理仿真实验台进行仿真和实验研究,验证了该方法的可行性,为机组进一步研究奠定理论与实验基础.展开更多
针对大压力筒压力控制的大惯性特征,采用控制进出压力筒液体容积的方式,实现压力筒内部压力的精确跟踪。建立系统非线性数学模型,在平衡点处线性化系统状态方程,采用极点配置方法设计系统在平衡点处的状态反馈解耦控制器。结合增益调度...针对大压力筒压力控制的大惯性特征,采用控制进出压力筒液体容积的方式,实现压力筒内部压力的精确跟踪。建立系统非线性数学模型,在平衡点处线性化系统状态方程,采用极点配置方法设计系统在平衡点处的状态反馈解耦控制器。结合增益调度控制器设计策略,采用Back to turn(BTT)方法,得到系统全局保稳定控制器。仿真结果表明了本文所提出的控制器设计方法的有效性。展开更多
文摘To implement a simulation of fir-floating-platform with higher frequency vibration, A satdlite-gesture emulation system with the functions of selectable high-frequency vibration-simulation and high-accuracy stability (with the control resolution within ± 5 × 10^-4 angle-degrees), controlled by using filtered-feedback and fuzzy-preeminence technology is designed and structured. The system is based on the analysis of dynamic and static composed-force-moment and disturhance factors. Through computational simulation, laboratory experiments and field-demo, it is proved that the system operation is available, practical, and propitious for minifying drive-power. These system structures and control strategies can be widely used in the fields such as astronomy, space navigation, deep-sea operation, high altitude motion, and weightless experiment, where a floating body must be controlled or simulated.
文摘以液压型风力发电机组为研究对象,为使功率追踪的过程平稳,研究机组的最佳功率追踪控制方法.本文利用反馈线性化方法解决系统非线性问题,以液压系统压力为控制输出,设计最佳功率追踪控制器,并提出一种反馈线性化方法的工程应用解决方案,即结合传统PID控制解决反馈线性化工程应用中依赖模型参数精度的问题.依托30 k VA液压型风力发电机组半物理仿真实验台进行仿真和实验研究,验证了该方法的可行性,为机组进一步研究奠定理论与实验基础.
文摘针对大压力筒压力控制的大惯性特征,采用控制进出压力筒液体容积的方式,实现压力筒内部压力的精确跟踪。建立系统非线性数学模型,在平衡点处线性化系统状态方程,采用极点配置方法设计系统在平衡点处的状态反馈解耦控制器。结合增益调度控制器设计策略,采用Back to turn(BTT)方法,得到系统全局保稳定控制器。仿真结果表明了本文所提出的控制器设计方法的有效性。