Rau Mark, Abel Jonathan S, James Doug, Smith Julius O
Center for Computer Research in Music and Acoustics (CCRMA), Stanford University, Stanford, California 94305, USA.
Computer Science, Stanford University, Stanford, California 94305, USA.
J Acoust Soc Am. 2021 Jul;150(1):385. doi: 10.1121/10.0005540.
A signal processing method to impart the response of an acoustic string instrument to an electric instrument that includes frequency-dependent string decay alterations is proposed. This type of processing is relevant when trying to make a less resonant instrument, such as an electric guitar, sound similar to a more resonant instrument, such as acoustic guitar. Unlike previous methods which typically only perform equalization, our method includes detailed physics-based string damping changes by using a time-varying filter which adds frequency-dependent exponential damping. Efficient digital filters are fit to bridge admittance measurements of an acoustic instrument and used to create equalization filters as well as damping correction filters. The damping correction filters are designed to work in real-time as they are triggered by onset and pitch detection of the signal measured through an under-saddle pickup to determine the intensity of the damping. A test case is presented in which an electric guitar is processed to model a measured acoustic guitar.
提出了一种信号处理方法,用于将声学弦乐器的响应赋予电乐器,该方法包括与频率相关的弦衰减变化。当试图使共鸣较小的乐器(如电吉他)发出与共鸣较大的乐器(如原声吉他)相似的声音时,这种类型的处理是相关的。与以往通常只进行均衡处理的方法不同,我们的方法通过使用一个添加与频率相关的指数衰减的时变滤波器,包括基于详细物理原理的弦阻尼变化。高效数字滤波器适用于衔接声学乐器的桥接导纳测量,并用于创建均衡滤波器以及阻尼校正滤波器。阻尼校正滤波器设计为实时工作,因为它们由通过琴桥拾音器测量的信号的起始和音高检测触发,以确定阻尼强度。给出了一个测试案例,其中对一把电吉他进行处理以模拟一把测量的原声吉他。