首页> 外文会议>TRON Project International Symposium. 1993., The 10th >Complexity optimization technique for sound synthesis on digital sound processing architectures
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Complexity optimization technique for sound synthesis on digital sound processing architectures

机译:用于数字声音处理架构的声音合成的复杂度优化技术

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Synthesized sounds are practically used for many applications, such a HMI using a voice dialog, broadcasting of synthesized music and voices. Natural and realistic sounds are required for the applications and it is necessary for some applications, such as two or more voices dialog and music, to produce many sounds at one time. One generating method of realistic sounds is to generate them by simulation of an instrument or a human voice using its sound production model. Appearance of sound processing processors such a DSP (digital signal processor) enabled a practical method to use for only a single sound generation. There is a problem, however, in that the computational complexity of the simulation is large. The authors research a new technique for the solution of the problem. It is a synthesizer optimization technique which gets a sample sound, determines a suitable synthesis for producing the sound, sets up and optimizes parameters and tables, and generates an optimum synthesizer automatically. If a simulated sound is given for input, it can be produced by the synthesizer with smaller complexity than the simulation. The authors categorize the synthesis methods, and each complexity is discussed. The synthesizer optimization technique is constructed from this discussion. This technique is evaluated by comparing the complexity of the generated synthesizers and that of existing synthesizers. The result of the evaluation is that the optimized synthesizer has from 50% to 70% of the complexity of the existing synthesizer on average.
机译:合成声音实际上用于许多应用,例如使用语音对话框的HMI,合成音乐和语音的广播。应用程序需要自然和逼真的声音,并且某些应用程序(例如两个或多个语音对话和音乐)必须一次产生许多声音。一种逼真的声音的产生方法是通过使用其声音产生模型对乐器或人的声音进行仿真来产生声音。诸如DSP(数字信号处理器)之类的声音处理处理器的出现使一种实用的方法仅可用于单个声音生成。然而,存在一个问题,即模拟的计算复杂度很大。作者研究了一种解决该问题的新技术。它是一种合成器优化技术,它可以获取样例声音,确定合适的合成器以产生声音,设置和优化参数和表格,并自动生成最佳的合成器。如果给出了模拟声音作为输入,则合成器可以产生比模拟声音更复杂的声音。作者对合成方法进行了分类,并讨论了每种复杂性。从此讨论中可以构造出合成器优化技术。通过比较生成的合成器和现有合成器的复杂性来评估该技术。评估的结果是,优化的合成器平均具有现有合成器复杂度的50%至70%。

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