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Stochastic Signal Processing for Sound Environment System with Decibel Evaluation and Energy Observation

机译:具有分贝评估和能量观测的声环境系统随机信号处理

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摘要

In real sound environment system, a specific signal shows various types of probability distribution, and the observation data are usually contaminated by external noise (e.g., background noise) of non-Gaussian distribution type. Furthermore, there potentially exist various nonlinear correlations in addition to the linear correlation between input and output time series. Consequently, often the system input and output relationship in the real phenomenon cannot be represented by a simple model using only the linear correlation and lower order statistics. In this study, complex sound environment systems difficult to analyze by using usual structural method are considered. By introducing an estimation method of the system parameters reflecting correlation information for conditional probability distribution under existence of the external noise, a prediction method of output response probability for sound environment systems is theoretically proposed in a suitable form for the additive property of energy variable and the evaluation in decibel scale. The effectiveness of the proposed stochastic signal processing method is experimentally confirmed by applying it to the observed data in sound environment systems.
机译:在真实的声音环境系统中,特定信号示出各种类型的概率分布,并且观察数据通常被非高斯分布类型的外部噪声(例如,背景噪声)污染。此外,除了输入和输出时间序列之间的线性相关性之外,还可能存在各种非线性相关性。因此,通常仅使用线性相关和低阶统计量的简单模型无法代表真实现象中的系统输入和输出关系。在这项研究中,考虑了难以使用常规结构方法分析的复杂声环境系统。通过引入反映外部信息存在下条件概率分布的相关信息的系统参数的估计方法,从理论上以适合于能量变量和能量变量的加性的形式提出了声环境系统输出响应概率的预测方法。分贝量表的评估。通过将其应用于声音环境系统中的观测数据,实验证实了所提出的随机信号处理方法的有效性。

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