A Single Microphone Capillary-Based System for Measuring the Complex Input Impedance of Musical Wind Instruments

Author:

Sharp D. B.,Mamou-Mani A.,van Walstijn M.

Abstract

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.

Publisher

Wissenschaftliche Verlagsgesellschaft mbH

Subject

Music,Acoustics and Ultrasonics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. After the Lips: Acoustic Resonances and Radiation;Modern Acoustics and Signal Processing;2021

2. A Comparison of a One-Dimensional Finite Element Method and the Transfer Matrix Method for the Computation of Wind Music Instrument Impedance;Acta Acustica united with Acustica;2019-07-01

3. Assessing the sound of a woodwind instrument that cannot be played;Applied Acoustics;2019-01

4. Manufacturing of Tubes and Pipes in Wood;Handbook of Materials for Wind Musical Instruments;2019

5. Developing and Evaluating a Hybrid Wind Instrument;Acta Acustica united with Acustica;2017-09-01

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