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A single microphone capillary-based system for measuring the complex input impedance of musical wind instruments

机译:基于单个麦克风毛细管的系统,用于测量乐器的复数输入阻抗

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摘要

Capillary-based systems for measuring the input impedance of musical wind instruments were first developed in the mid-20th century and remain in widespread use today. In this paper, the basic principles and assumptions underpinning the design of such systems are examined. Inexpensive modifications to a capillary-based impedance measurement set-up made possible due to advances in computing and data acquisition technology are discussed. The modified set-up is able to measure both impedance magnitude and impedance phase even though it only contains one microphone. In addition, a method of calibration is described that results in a significant improvement in accuracy when measuring high impedance objects on the modified capillary-based system. The method involves carrying out calibration measurements on two different objects whose impedances are well-known theoretically. The benefits of performing two calibration measurements (as opposed to the one calibration measurement that has been traditionally used) are demonstrated experimentally through input impedance measurements on two test objects and a Boosey and Hawkes oboe.
机译:用于测量乐器的输入阻抗的基于毛细管的系统最早是在20世纪中叶开发的,并在当今得到了广泛的应用。在本文中,考察了支持此类系统设计的基本原理和假设。讨论了由于计算和数据采集技术的进步而对基于毛细管的阻抗测量设置进行了廉价的修改。修改后的设置即使只包含一个麦克风,也能够测量阻抗大小和阻抗相位。另外,描述了一种校准方法,该校准方法在改进的基于毛细管的系统上测量高阻抗物体时,可导致准确性的显着提高。该方法涉及对两个不同的对象进行校准测量,这些对象的阻抗在理论上是众所周知的。通过对两个测试对象以及一个Boosey和Hawkes双簧管进行输入阻抗测量,实验证明了执行两次校准测量(与传统上使用的一种校准测量相反)的好处。

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