The paper not only studies the noise reduction methods of chaotic time series with noise and its reconstruction techniques, but also discusses prediction techniques of chaotic time series and its applications based on...The paper not only studies the noise reduction methods of chaotic time series with noise and its reconstruction techniques, but also discusses prediction techniques of chaotic time series and its applications based on chaotic data noise reduction. In the paper, we first decompose the phase space of chaotic time series to range space and null noise space. Secondly we restructure original chaotic time series in range space. Lastly on the basis of the above, we establish order of the nonlinear model and make use of the nonlinear model to predict some research. The result indicates that the nonlinear model has very strong ability of approximation function, and Chaos predict method has certain tutorial significance to the practical problems.展开更多
基金Project supported by the National Natural Science Foundation of China(Nos.70271071,19990510,D0200201)
文摘The paper not only studies the noise reduction methods of chaotic time series with noise and its reconstruction techniques, but also discusses prediction techniques of chaotic time series and its applications based on chaotic data noise reduction. In the paper, we first decompose the phase space of chaotic time series to range space and null noise space. Secondly we restructure original chaotic time series in range space. Lastly on the basis of the above, we establish order of the nonlinear model and make use of the nonlinear model to predict some research. The result indicates that the nonlinear model has very strong ability of approximation function, and Chaos predict method has certain tutorial significance to the practical problems.
文摘针对小几何尺度的无人航行器(Unmanned Underwater Vehicle,UUV)中减振技术的应用问题,建立尺度较小的SUBOFF无人航行器有限元模型。分析其在典型激励下的声振特性,探讨阻振、吸振技术在UUV上的应用,并且基于声学黑洞结构设计UUV舱段,分析其减振效果。研究结果表明:无人航行器结构振动和辐射噪声的峰值频率与整体和局部结构的模态频率关系较大。在推进电机基座、推力轴承基座等结构上应用阻振质量和动力吸振器可有效减小艇体振动,吸振器质量增加可改善吸振效果。设计声学黑洞(Acoustic Black Hole,ABH)舱段并应用于艇体的中部均匀部分,可有效减小结构振动由激励源向船艏的传递,体现该方案的减振效果。