• Using the maximum value of the system general energy as the control conditions and using proportional system parameter impulse perturbation to control chaos are studied.

    研究了采用系统广义能量最大值作为条件,实施正比例系统参数微扰脉冲控制混沌的方法。

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  • The system under consideration involves state time delay, nonlinear perturbation and parameter uncertainties.

    系统包含状态时滞非线性扰动参数不确定性

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  • We advanced the ability of restraining the parameter perturbation and stochastic distribution and improved the robust performance of the controlled system.

    提高受控系统抑制参数随机扰动能力改善了控制系统棒性

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  • The system under consideration involves state time delay, nonlinear perturbation and parameter uncertainties.

    涉及国家正在考虑系统时间延迟非线性扰动参数不确定性

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  • The system model contains multiple factors such as time-varying delay, parameter perturbation and nonlinear.

    系统模型考虑了时变时滞参数摄动以及非线性多重因素

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  • The numerical simulation verified its feasibility in restraining the flexible appendage vibration, optimizing the maneuver time and promoting the system robustness in parameter Perturbation.

    仿真结果表明策略能成功抑制柔性附件振动及减小系统的机动时间使系统参数的摄动具有鲁棒性

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  • Parameter perturbation bounds for robust stability of the closed loop control system are given.

    给出闭环控制系统保持大范围一致稳定参数摄动应满足限度。

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  • Parameter perturbation bounds for robust stability of the closed loop control system are given.

    给出闭环控制系统保持大范围一致稳定参数摄动应满足限度。

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