In order to compensate for the disturbance of wide variation in rotor demanded torque on power turbine speed and realize the fast response control of turboshaft engine during variable rotor speed,a cascade PID control...In order to compensate for the disturbance of wide variation in rotor demanded torque on power turbine speed and realize the fast response control of turboshaft engine during variable rotor speed,a cascade PID control method based on the acceleration estimator of gas turbine speed(Ngdot)and rotor predicted torque feedforward is proposed.Firstly,a two-speed Dual Clutch Transmission(DCT)model is applied in the integrated rotor/turboshaft engine system to achieve variable rotor speed.Then,an online estimation method of Ngdot based on the Linear Quadratic Gaussian with Loop Transfer Recovery(LQG/LTR)is proposed for power turbine speed cascade control.Finally,according to the cascade PID controller based on Ngdot estimator,a rotor demanded torque predicted method based on the Min-batch Gradient Descent-Neural Network(MGD-NN)is put forward to compromise the influence of rotor torque interference.The simulation results show that compared with cascade PID controller based on Ngdot estimator and the one combined with collective pitch feedforward control,the novel control method proposed can reduce the overshoot of power turbine speed by more than 20%,which possesses faster response,superior dynamic effect and satisfactory robustness performance.The control method proposed can realize the fast response control of turboshaft engine with variable rotor speed better.展开更多
传统的LQG(linear quadratic Gauss)控制器无法满足系统的鲁棒性要求,因此文章采用LQG/LTR(Loop transfer recovery)理论设计了机翼主动颤振抑制鲁棒控制器。文中1、2部分建立了气动伺服弹性系统模型并推导了LQG控制器,第3部分基于LQG/...传统的LQG(linear quadratic Gauss)控制器无法满足系统的鲁棒性要求,因此文章采用LQG/LTR(Loop transfer recovery)理论设计了机翼主动颤振抑制鲁棒控制器。文中1、2部分建立了气动伺服弹性系统模型并推导了LQG控制器,第3部分基于LQG/LTR理论分2步完成了鲁棒控制器的设计。利用典型的气动伺服弹性系统模型,分别采用LQG/LTR控制器和LQG控制器对机翼颤振进行抑制,仿真结果表明,LQG/LTR控制器的性能远远优于LQG控制器。展开更多
将LQG/LTR(Linear Quadratic Gaussian/Loop Transfer Recovery)方法引入到结构控制领域中,针对AMD(Active Mass Damper)Benchmark模型进行主动控制策略的研究。首先建立AMD试验结构的LQG/LTR控制系统模型,并采用近似法确定模型不确定性...将LQG/LTR(Linear Quadratic Gaussian/Loop Transfer Recovery)方法引入到结构控制领域中,针对AMD(Active Mass Damper)Benchmark模型进行主动控制策略的研究。首先建立AMD试验结构的LQG/LTR控制系统模型,并采用近似法确定模型不确定性,引入速度反馈来降低模态峰值以设计理想的目标回路;然后根据LQG/LTR理论设计了控制器,使得全状态LQR(linear quadratic regulator)调节器自然拥有的鲁棒特性在系统的输入端得到基本恢复。最后仿真结果证明了LQG/LTR控制器的有效性和鲁棒性。展开更多
基金co-supported by the National Natural Science Foundation of China,China(Nos.51576096 and 51906102)Qing Lan and 333 Project,the Fundamental Research Funds for the Central Universities,China(No.NT2019004)+3 种基金National Science and Technology Major Project China(No.2017-V-0004-0054)Research on the Basic Problem of Intelligent Aero-engine,China(No.2017-JCJQ-ZD-04721)China Postdoctoral Science Foundation Funded Project,China(No.2019M661835)Aeronautics Power Foundation,China(No.6141B09050385)。
文摘In order to compensate for the disturbance of wide variation in rotor demanded torque on power turbine speed and realize the fast response control of turboshaft engine during variable rotor speed,a cascade PID control method based on the acceleration estimator of gas turbine speed(Ngdot)and rotor predicted torque feedforward is proposed.Firstly,a two-speed Dual Clutch Transmission(DCT)model is applied in the integrated rotor/turboshaft engine system to achieve variable rotor speed.Then,an online estimation method of Ngdot based on the Linear Quadratic Gaussian with Loop Transfer Recovery(LQG/LTR)is proposed for power turbine speed cascade control.Finally,according to the cascade PID controller based on Ngdot estimator,a rotor demanded torque predicted method based on the Min-batch Gradient Descent-Neural Network(MGD-NN)is put forward to compromise the influence of rotor torque interference.The simulation results show that compared with cascade PID controller based on Ngdot estimator and the one combined with collective pitch feedforward control,the novel control method proposed can reduce the overshoot of power turbine speed by more than 20%,which possesses faster response,superior dynamic effect and satisfactory robustness performance.The control method proposed can realize the fast response control of turboshaft engine with variable rotor speed better.
文摘传统的LQG(linear quadratic Gauss)控制器无法满足系统的鲁棒性要求,因此文章采用LQG/LTR(Loop transfer recovery)理论设计了机翼主动颤振抑制鲁棒控制器。文中1、2部分建立了气动伺服弹性系统模型并推导了LQG控制器,第3部分基于LQG/LTR理论分2步完成了鲁棒控制器的设计。利用典型的气动伺服弹性系统模型,分别采用LQG/LTR控制器和LQG控制器对机翼颤振进行抑制,仿真结果表明,LQG/LTR控制器的性能远远优于LQG控制器。
文摘将LQG/LTR(Linear Quadratic Gaussian/Loop Transfer Recovery)方法引入到结构控制领域中,针对AMD(Active Mass Damper)Benchmark模型进行主动控制策略的研究。首先建立AMD试验结构的LQG/LTR控制系统模型,并采用近似法确定模型不确定性,引入速度反馈来降低模态峰值以设计理想的目标回路;然后根据LQG/LTR理论设计了控制器,使得全状态LQR(linear quadratic regulator)调节器自然拥有的鲁棒特性在系统的输入端得到基本恢复。最后仿真结果证明了LQG/LTR控制器的有效性和鲁棒性。