Investigation of the influence of attack and decay parameters on the performance of loudness control algorithm

Saulius Sakavičius, A. Serackis, D. Plonis
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Abstract

In acoustics, loudness is the subjective perception of sound pressure. Loudness control systems involving loudness control algorithms are used in radio and television broadcasting. In this paper we present a research on the influence of attack and decay parameters on the performance of loudness control algorithms. Attack and decay are temporal parameters of the algorithm, that define the rate at which the algorithm applies the correction to the audio material. For this investigation, a relatively simple real time loudness control algorithm was devised, having only the two parameters: the attack and the decay rate of the algorithm's reaction. The input signal for the algorithm is the weighted sum of the loudness measurements of the source material the in three temporal scales, as per EBU R-128 recommendation. Experiments were conducted with various summing weights of the input signal. The test sound material was acquired from actual commercial TV broadcast. The performance of the algorithm were evaluated by measuring differences of three parameters of the corrected material before and after the correction as a function of the attack and decay values: the loudness range, overflow percentage, and average integrated loudness level.
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研究攻击参数和衰减参数对响度控制算法性能的影响
在声学中,响度是对声压的主观感受。包括响度控制算法的响度控制系统用于广播和电视广播。本文研究了攻击参数和衰减参数对响度控制算法性能的影响。攻击和衰减是算法的时间参数,它们定义了算法对音频材料进行校正的速率。为此,设计了一种相对简单的实时响度控制算法,只有两个参数:攻击和算法反应的衰减率。该算法的输入信号是源材料在三个时间尺度上的响度测量的加权和,根据EBU R-128推荐。对输入信号的不同求和权值进行了实验。测试的声音材料是从实际的商业电视广播中获取的。通过测量校正前后校正材料的三个参数的差值作为攻击值和衰减值的函数:响度范围、溢出百分比和平均综合响度水平来评估算法的性能。
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