Development and Characterization of a Low-Cost Sensors System for an Acoustic Test Bench

Author:

Moreno-Ramírez Ciro,Iniesta CarmenORCID,González Alejandro,Olazagoitia José LuisORCID

Abstract

Existing acoustic test benches are usually costly devices based on proprietary designs, sensors, and acquisition devices. In this paper, a low-cost test bench for acoustic purposes is introduced. The design of the test bench takes into account not only the low-cost mechanical design, but also uses low-cost sensors and control boards. This test bench has been designed for a range of signals compatible with those used by thermoacoustic engines, but it can be useful for applications with similar requirements. Taking advantage of an auxiliary pressure reference, low-cost unidirectional differential pressure sensors can be used to significantly increase the accuracy of the sampling system. The acoustic and mechanical design and development are presented along with the sampling system and the sensors arrangement implemented. Both the sensor and sampling system are evaluated by comparison with a high-fidelity sound acquisition system. An unexpected effect on the time error values distribution of the low-cost acquisition system is found and described. Finally, the errors introduced by the system and the sensors in terms of time and pressure sampling are characterized. As a result, the low-cost system’s accuracy has been satisfactory assessed and validated for the conditions expected in thermoacoustic experiments in terms of frequency and dynamic pressure.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference27 articles.

1. Design and Development of a 5-Channel Arduino-Based Data Acquisition System (ABDAS) for Experimental Aerodynamics Research

2. IoT Based Environmental Monitoring System using Arduino UNO and Thingspeak;Deekshath;Int. J. Sci. Technol. Eng.,2018

3. Development of a Low-Cost Arduino-Based Sonde for Coastal Applications

4. A simple data acquisition system based on Arduino platform for non-self-sustained gas discharge plasma diagnostics;Misiruk;Probl. At. Sci. Technol. Ser. Plasma Phys.,2016

5. Implementation of quadratic dynamic matrix control on arduino due ARM cortex-M3 microcontroller board;Bitjoka;J. Eng. Technol.,2017

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