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An integrated sensory-intelligent system for underwater acoustic signal-processing applications

机译:用于水下声信号处理应用的集成感官智能系统

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摘要

A generic integrated sensory-intelligent system (ISIS) is developed for underwater acoustic signal-processing applications. ISIS constantly monitors the current acoustic channel conditions and smoothly integrates the outputs of the most appropriate signal-processing procedures or algorithms available to it for those conditions. The system is based on a generalization of a tuneable approximate piecewise linear (TAPL) model derived from the modified probabilistic neural network (MPNN). This model was designed to seamlessly integrate a set of local linear signal-processing algorithms within a given multidimensional data space. Depending on the input signal distortions, which are determined by environmental effects, ISIS automatically weighs and adds the outputs from a set of processing algorithms working in parallel. The weighting is related to the "closeness" of each algorithm to the sensed input signal characteristics or some other measured environmental state. A single tuning parameter is used to smoothly and seamlessly select appropriately among the parallel processing algorithm outputs. A very small tuning-parameter value selects the closest most appropriate algorithm output. At the other extreme, a fixed weighted average of all the algorithm outputs is produced with a very large value. Otherwise, a dynamic weighed average of all algorithm outputs is achieved with values in between. Some features and benefits of ISIS are demonstrated with an illustrative linear sweep chirp signal-detector estimation problem characterized by extremely variable Doppler conditions.
机译:针对水下声信号处理应用开发了通用的集成感官智能系统(ISIS)。 ISIS不断监视当前的声波通道状况,并平稳集成最适合这些条件的信号处理程序或算法的输出。该系统基于从改进的概率神经网络(MPNN)派生的可调谐近似分段线性(TAPL)模型的一般化。该模型旨在在给定的多维数据空间内无缝集成一组局部线性信号处理算法。根据由环境影响确定的输入信号失真,ISIS自动权衡并添加一组并行工作的处理算法的输出。加权与每种算法与感测到的输入信号特征或某些其他测量环境状态的“接近度”相关。单个调整参数用于在并行处理算法输出中平滑,无缝地进行适当选择。很小的调整参数值会选择最接近的最合适的算法输出。在另一个极端,所有算法输出的固定加权平均值具有非常大的值。否则,将获得所有算法输出的动态加权平均值,并且介于两者之间。 ISIS的一些功能和优势已通过以线性变化的多普勒条件为特征的线性扫描线性调频信号探测器估计问题得到了证明。

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