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Measurements and Modeling of the Nonlinear Behavior of a Guitar Pickup at Low Frequencies ? ?

机译:低频下吉他拾音器非线性行为的测量和建模? ?

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Description of the physical behavior of electric guitars is still not very widespread in the scientific literature. In particular, the physical models describing a nonlinear behavior of pickups still requires some refinements. The study presented in this paper is focused on nonlinear modeling of the pickups. Two main issues are raised. First, is the currently most used nonlinear model (a Hammerstein model) sufficient for the complex nonlinear behavior of the pickup? In other words, would a more complex model, such as a Generalized Hammerstein that can deal better with the nonlinear memory, yield better results? The second troublesome issue is how to measure the nonlinear behavior of a pickup correctly. A specific experimental set-up allowing for driving the pickup in a controlled way (string displacement perpendicular to the pickup) and to separate the nonlinear model of the pickup from other nonlinearities in the measurement chain is proposed. Thanks to this experimental set-up, a Generalized Hammerstein model of the pickup is estimated for frequency range 15–500 Hz and the results are compared with a simple Hammerstein model. A comparison with experimental results shows that both models succeed in describing the pickup when used in realistic conditions.
机译:在科学文献中,电吉他的物理行为的描述仍然不是很广泛。特别是,描述拾音器非线性行为的物理模型仍需要一些改进。本文提出的研究集中于拾音器的非线性建模。提出了两个主要问题。首先,当前最常用的非线性模型(Hammerstein模型)是否足以满足拾音器的复杂非线性行为?换句话说,更复杂的模型(例如可以更好地处理非线性记忆的广义哈默斯坦)会产生更好的结果吗?第二个麻烦的问题是如何正确测量拾音器的非线性行为。提出了一种特定的实验设置,该设置允许以受控方式(垂直于拾音器的弦位移)驱动拾音器,并将拾音器的非线性模型与测量链中的其他非线性分离。由于有了这个实验装置,可以在15–500 Hz的频率范围内估算拾音器的通用Hammerstein模型,并将结果与​​简单的Hammerstein模型进行比较。与实验结果的比较表明,在实际条件下使用时,两个模型均能成功描述拾音器。

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