A strategy is proposed based on the stochastic averaging method for quasi non- integrable Hamiltonian systems and the stochastic dynamical programming principle.The pro- posed strategy can be used to design nonlinear ...A strategy is proposed based on the stochastic averaging method for quasi non- integrable Hamiltonian systems and the stochastic dynamical programming principle.The pro- posed strategy can be used to design nonlinear stochastic optimal control to minimize the response of quasi non-integrable Hamiltonian systems subject to Gaussian white noise excitation.By using the stochastic averaging method for quasi non-integrable Hamiltonian systems the equations of motion of a controlled quasi non-integrable Hamiltonian system is reduced to a one-dimensional av- eraged It stochastic differential equation.By using the stochastic dynamical programming princi- ple the dynamical programming equation for minimizing the response of the system is formulated. The optimal control law is derived from the dynamical programming equation and the bounded control constraints.The response of optimally controlled systems is predicted through solving the FPK equation associated with It stochastic differential equation.An example is worked out in detail to illustrate the application of the control strategy proposed.展开更多
根据性能寻优控制(Perform ance Seek ing Con trol)优化模式的特点,针对某型涡扇发动机,研究了把发动机性能优化问题描述为线性规划问题。同时针对线性规划方法可能会收敛于局部极小值和非线性方法计算量大的问题,提出了基于LP(L inear...根据性能寻优控制(Perform ance Seek ing Con trol)优化模式的特点,针对某型涡扇发动机,研究了把发动机性能优化问题描述为线性规划问题。同时针对线性规划方法可能会收敛于局部极小值和非线性方法计算量大的问题,提出了基于LP(L inear P rogramm ing)和MAPS(M odel-A ssisted Pattern Search)混合优化方法,并研究了LP和MAPS混合优化方法在航空发动机性能寻优控制中的应用,同时在最大推力控制模式和最小油耗控制模式下进行了仿真。大量仿真结果表明,采用混合优化方法可进一步提高发动机的性能,并且大大减少了计算量。展开更多
对带有线控制动系统(brake by wire,BBW)的车辆进行研究,提出了一种横摆稳定性优化控制策略.以二自由度单轨车辆模型为参考模型,利用比例-积分(proportionalintegral,PI)控制算法求出附加横摆力矩.由所计算出的车辆附加横摆力矩、方向...对带有线控制动系统(brake by wire,BBW)的车辆进行研究,提出了一种横摆稳定性优化控制策略.以二自由度单轨车辆模型为参考模型,利用比例-积分(proportionalintegral,PI)控制算法求出附加横摆力矩.由所计算出的车辆附加横摆力矩、方向盘转角来识别驾驶员转向意图和车辆实际行驶特性,通过广义逆法和数学归划法相结合的方法将附加横摆力矩分配到作用车轮上,由线控制动系统采用主缸定频调压法对各轮缸的目标液压力进行跟踪控制.硬件在环试验结果表明,该控制策略能够有效地保证车辆在高附和低附路面工况下的横摆稳定性.展开更多
基金Project supported by the National Natural Science Foundation of China(No.19972059).
文摘A strategy is proposed based on the stochastic averaging method for quasi non- integrable Hamiltonian systems and the stochastic dynamical programming principle.The pro- posed strategy can be used to design nonlinear stochastic optimal control to minimize the response of quasi non-integrable Hamiltonian systems subject to Gaussian white noise excitation.By using the stochastic averaging method for quasi non-integrable Hamiltonian systems the equations of motion of a controlled quasi non-integrable Hamiltonian system is reduced to a one-dimensional av- eraged It stochastic differential equation.By using the stochastic dynamical programming princi- ple the dynamical programming equation for minimizing the response of the system is formulated. The optimal control law is derived from the dynamical programming equation and the bounded control constraints.The response of optimally controlled systems is predicted through solving the FPK equation associated with It stochastic differential equation.An example is worked out in detail to illustrate the application of the control strategy proposed.
基金supported by National Natural Science Foundation of China(61502405,61300039)Provincial Science Foundation of Hunan Province(14JJ3130)+1 种基金Fujian Educational Bureau(JA15368)Xiamen University of Technology(YKJ13024R,XYK201437)
文摘根据性能寻优控制(Perform ance Seek ing Con trol)优化模式的特点,针对某型涡扇发动机,研究了把发动机性能优化问题描述为线性规划问题。同时针对线性规划方法可能会收敛于局部极小值和非线性方法计算量大的问题,提出了基于LP(L inear P rogramm ing)和MAPS(M odel-A ssisted Pattern Search)混合优化方法,并研究了LP和MAPS混合优化方法在航空发动机性能寻优控制中的应用,同时在最大推力控制模式和最小油耗控制模式下进行了仿真。大量仿真结果表明,采用混合优化方法可进一步提高发动机的性能,并且大大减少了计算量。
文摘对带有线控制动系统(brake by wire,BBW)的车辆进行研究,提出了一种横摆稳定性优化控制策略.以二自由度单轨车辆模型为参考模型,利用比例-积分(proportionalintegral,PI)控制算法求出附加横摆力矩.由所计算出的车辆附加横摆力矩、方向盘转角来识别驾驶员转向意图和车辆实际行驶特性,通过广义逆法和数学归划法相结合的方法将附加横摆力矩分配到作用车轮上,由线控制动系统采用主缸定频调压法对各轮缸的目标液压力进行跟踪控制.硬件在环试验结果表明,该控制策略能够有效地保证车辆在高附和低附路面工况下的横摆稳定性.