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Modeling and Analysis of Acoustic Musical Strings Using Kelly-Lochbaum Lattice Networks

机译:使用凯利-洛奇鲍姆格网对声学弦乐进行建模和分析

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Musical strings play important roles in the timbre of a stringed instrument. An instrument installed with different strings can produce very different sounds. To model a plucked-string instrument physically, analyzing its strings may be a good starting point. In this paper, a novel strategy for the modeling and analysis of acoustic musical strings is proposed, In order to obtain the vibration of an acoustic string, a measurement device with multiple sets of electromagnetic pickups is built. A recurrent network based on the Kelly-Lochbaum structure with multiple sets of system parameters is proposed to simulate the time-varying vibrating behavior of a target string. A fast training algorithm combining BPTT and SARPROP is also proposed to train the network automatically. The well-trained recurrent network based model can be regarded as a close simulation model of a real string, and using the model, it becomes easier to understand the characteristics of a string under different conditions when it vibrates.
机译:音乐弦在弦乐器的音色中起重要作用。装有不同弦的乐器会产生非常不同的声音。为了对弹拨乐器进行物理建模,分析其弹奏可能是一个很好的起点。本文提出了一种新的声弦建模与分析策略,为获得声弦的振动,建立了具有多套电磁拾音器的测量装置。提出了一种基于Kelly-Lochbaum结构的递归网络,该网络具有多组系统参数,可以模拟目标弦的时变振动行为。还提出了一种结合BPTT和SARPROP的快速训练算法来自动训练网络。训练有素的基于递归网络的模型可以看作是真实弦的紧密模拟模型,并且使用该模型,可以更容易地理解弦在不同条件下振动时的特性。

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