Dipartimento di Elettronica, Informazione e Bioingegneria (DEIB), Politecnico di Milano, Piazza L. Da Vinci 32, 20133 Milano, Italy.
Sensors (Basel). 2023 Jun 1;23(11):5258. doi: 10.3390/s23115258.
In audio transduction applications, virtualization can be defined as the task of digitally altering the acoustic behavior of an audio sensor or actuator with the aim of mimicking that of a target transducer. Recently, a digital signal preprocessing method for the virtualization of loudspeakers based on inverse equivalent circuit modeling has been proposed. The method applies Leuciuc's inversion theorem to obtain the inverse circuital model of the physical actuator, which is then exploited to impose a target behavior through the so called Direct-Inverse-Direct Chain. The inverse model is designed by properly augmenting the direct model with a theoretical two-port circuit element called nullor. Drawing on this promising results, in this manuscript, we aim at describing the virtualization task in a broader sense, including both actuator and sensor virtualizations. We provide ready-to-use schemes and block diagrams which apply to all the possible combinations of input and output variables. We then analyze and formalize different versions of the Direct-Inverse-Direct Chain describing how the method changes when applied to sensors and actuators. Finally, we provide examples of applications considering the virtualization of a capacitive microphone and a nonlinear compression driver.
在音频换能应用中,虚拟化可以被定义为通过数字方式改变音频传感器或换能器的声学行为,以模拟目标换能器的行为的任务。最近,已经提出了一种基于逆等效电路建模的扬声器虚拟化的数字信号预处理方法。该方法应用 Leuciuc 的逆定理来获得物理换能器的逆电路模型,然后通过所谓的直接逆直接链来施加目标行为。逆模型是通过适当增加直接模型与称为零欧姆的理论二端口电路元件来设计的。基于这一有前途的结果,在本文中,我们旨在更广泛地描述虚拟化任务,包括换能器和传感器的虚拟化。我们提供了可用于所有输入和输出变量可能组合的即用型方案和方框图。然后,我们分析并形式化了 Direct-Inverse-Direct 链的不同版本,描述了当该方法应用于传感器和换能器时如何变化。最后,我们提供了考虑电容传声器和非线性压缩驱动器虚拟化的应用示例。