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Performance of Philips Audio Fingerprinting Under Additive Noise

机译:飞利浦音频指纹在附加噪声下的性能

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We present a theoretical analysis of the Philips audio fingeprinting- method under Gaussian white noise distortion for correlated stationary Gaussian sources. Prior analyses were for white Gaussian sources, which do not model realistically real audio signals. Our approach relies on formulating the unquantized fingerprint as a quadratic form, which affords a systematic way to compute the model parameters. We provide closed-form analytical upper bounds for the probability of bit error of the hash, and we apply these expressions to real audio signals.
机译:我们对相关的固定高斯源在高斯白噪声失真下的飞利浦音频指纹印刷方法进行了理论分析。先前的分析是针对白色高斯信号源的,这些信号源无法模拟真实的真实音频信号。我们的方法依赖于将未量化的指纹表述为二次形式,这提供了一种计算模型参数的系统方法。我们为哈希的误码率提供了封闭形式的分析上限,并将这些表达式应用于真实的音频信号。

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