An Acoustic Simulation Framework to Support Indoor Positioning and Data Driven Signal Processing Assessments (2305.02715v2)
Abstract: We present an indoor acoustic simulation framework that supports both ultrasonic and audible signaling. The framework opens the opportunity for fast indoor acoustic data generation and positioning development. The improved Pyroomacoustics-based physical model includes both an image-source model (ISM) and ray tracing method to simulate acoustic signaling in geometric spaces that extend typical shoe-box rooms. Moreover, it offers the convenience to facilitate multiple speakers and microphones with different directivity patterns. In addition to temperature and air absorption, the room reverberation is taken into account characterized by the RT60 value or the combination of building materials. Additional noise sources can be added by means of post processing and/or extra speakers. Indoor positioning methods assessed in simulation are compared with real measurements in a testbed, called 'Techtile'. This analysis confirms that the simulation results are close to the measurements and form a realistic representation of the reality. The simulation framework is constructed in a modular way, and parts can be replaced or modified to support different application domains. The code is made available open source.
- “Positioning energy-neutral devices: technological status and hybrid RF-acoustic experiments” In Future Internet 14.5, 2022
- Tian Yang, Adnane Cabani and Houcine Chafouk “A Survey of Recent Indoor Localization Scenarios and Methodologies” In Sensors 21.23, 2021
- “Machine learning in acoustics: Theory and applications” In The Journal of the Acoustical Society of America 146.5 Acoustical Society of America, 2019, pp. 3590–3628
- Marc Aretz “Combined wave and ray based room acoustic simulations of small rooms” Logos Verlag Berlin GmbH, 2012
- “Development of acoustic computer simulation for performance spaces: A systematic review and meta-analysis” In Building Simulation 15, 2022
- Douglas Campbell, Kalle Palomäki and Guy Brown “A MATLAB simulation of “shoebox” room acoustics for use in research and teaching” In Computing and Information Systems Journal 9, 2005
- Robin Scheibler, Eric Bezzam and Ivan Dokmanić “Pyroomacoustics: A Python Package for Audio Room Simulation and Array Processing Algorithms” In 2018 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2018, pp. 351–355
- Steven M. Schimmel, Martin F. Muller and Norbert Dillier “A fast and accurate “shoebox” room acoustics simulator” In IEEE International Conference on Acoustics, Speech and Signal Processing, 2009, pp. 241–244
- “Sound Source Localization Using a Convolutional Neural Network and Regression Model” In Sensors 21.23, 2021
- “Simulating Signal Aberration and Ranging Error for Ultrasonic Indoor Positioning” In Sensors 20.12, 2020
- “Acoustic Simulation for Performance Evaluation of Ultrasonic Ranging Systems” In Electronics 10.11, 2021
- Carl F Eyring “Reverberation time in “dead” rooms” In The Journal of the Acoustical Society of America 1.2A Acoustical Society of America, 1930, pp. 217–241
- Allan D Pierce “Acoustics: an introduction to its physical principles and applications” Springer, 2019
- Angad S Rekhi, Butrus T Khuri-Yakub and Amin Arbabian “Wireless power transfer to millimeter-sized nodes using airborne ultrasound” In IEEE transactions on ultrasonics, ferroelectrics, and frequency control 64.10 IEEE, 2017, pp. 1526–1541
- “Atmospheric absorption of sound: Further developments” In The Journal of the Acoustical Society of America 97.1 Acoustical Society of America, 1995, pp. 680–683
- “Towards centimetre accurate and low-power, hybrid radio-acoustic 3D indoor positioning: an experimental journey.” In 2021 IEEE Indoor Positioning and Indoor Navigation (IPIN), 2021 CEUR Workshop
- “Techtile: a Flexible Testbed for Distributed Acoustic Indoor Positioning and Sensing” In IEEE Sensors Applications Symposium (SAS), 2022