We first design a discrete hyperchaotic system via piece-wise linear state feedback. The states of the closed loop system are locally expanding in two directions but absolutely bounded on the whole, which implies hype...We first design a discrete hyperchaotic system via piece-wise linear state feedback. The states of the closed loop system are locally expanding in two directions but absolutely bounded on the whole, which implies hyperchaos. Then, we use three suchlike hyperchaotic systems with different feedback gain matrices to design a pseudo-random sequence generator (PRSG). Through a threshold function, three sub-sequences generated from the output of piecewise linear functions are changed into 0-1 sequences. Then, followed by XOR operation, an unpredictable pseudo-random sequence (PRS) is ultimately obtained. The analysis and simulation results indicate that the PRS, generated with hyperchaotic systems, has desirable statistical features.展开更多
建立了滑块机构下高旋弹的姿态方程,采用逆系统方法对非线性模型进行了解耦控制研究,得到了完整的状态方程,分析了基于逆系统理论解耦的可行性,推导出状态反馈后的a阶伪线性系统和内环控制算法,而后用极点配置原理设计了外环PID(Proport...建立了滑块机构下高旋弹的姿态方程,采用逆系统方法对非线性模型进行了解耦控制研究,得到了完整的状态方程,分析了基于逆系统理论解耦的可行性,推导出状态反馈后的a阶伪线性系统和内环控制算法,而后用极点配置原理设计了外环PID(Proportional Integral Derivative)控制律,形成了完整的闭环控制结构,最后的仿真表明:滑块机构和逆系统方法对高旋弹的姿态控制是有效的,且PID控制律的引入使得此方法更易于工程实现。展开更多
基金This project was supported by the National Natural Science Foundation of China (69874025).
文摘We first design a discrete hyperchaotic system via piece-wise linear state feedback. The states of the closed loop system are locally expanding in two directions but absolutely bounded on the whole, which implies hyperchaos. Then, we use three suchlike hyperchaotic systems with different feedback gain matrices to design a pseudo-random sequence generator (PRSG). Through a threshold function, three sub-sequences generated from the output of piecewise linear functions are changed into 0-1 sequences. Then, followed by XOR operation, an unpredictable pseudo-random sequence (PRS) is ultimately obtained. The analysis and simulation results indicate that the PRS, generated with hyperchaotic systems, has desirable statistical features.
文摘建立了滑块机构下高旋弹的姿态方程,采用逆系统方法对非线性模型进行了解耦控制研究,得到了完整的状态方程,分析了基于逆系统理论解耦的可行性,推导出状态反馈后的a阶伪线性系统和内环控制算法,而后用极点配置原理设计了外环PID(Proportional Integral Derivative)控制律,形成了完整的闭环控制结构,最后的仿真表明:滑块机构和逆系统方法对高旋弹的姿态控制是有效的,且PID控制律的引入使得此方法更易于工程实现。