Title :
An efficient communication system for noisy environments
Author :
Pawelczyk, M. ; Latos, M. ; Michalczyk, M.I. ; Czyz, K. ; Mazur, K.
Author_Institution :
Inst. of Autom. Control, Silesian Univ. of Technol., Gliwice, Poland
Abstract :
For environments subject to high level acoustic noise communication between people is difficult. This bemuses workers, limits working efficiency, and may even lead to accidents. Additionally, prolonged exposure to such noise results in damage to the human hearing system. A better isolation of people from the noisy machines is frequently technologically unfeasible or very expensive. Communication headsets available on the market are not ergonomic. On the other hand, they are not accepted in warm and humid environments because wearing them may cause skin galls. Therefore, at some places in mines, power plants, car factories, assembly lines, etc., the workers use earplugs made from an elastic noise absorbing material, and communication between them is limited to a set of gestures only. The aim of the paper is to present NoiseCom - a complex ergonomic earplug-based communication-improvement solution, integrating high passive and active noise reduction, enhancement of speech intelligibility and wireless speech transmission for a group of workers. Developed algorithms are presented and obtained results are reported based on recordings in real industrial conditions.
Keywords :
active noise control; ear protection; hearing; noise (working environment); occupational safety; speech enhancement; speech intelligibility; NoiseCom; active noise reduction; assembly lines; bemuses workers; car factory; communication headsets; communication system; complex ergonomic earplug-based communication-improvement solution; earplugs; elastic noise absorbing material; high level acoustic noise communication; human hearing system; humid environments; mines; noisy environments; noisy machines; passive noise reduction; power plants; prolonged noise exposure; real industrial conditions; skin galls; speech intelligibility enhancement; warm environments; wireless speech transmission; working efficiency; Ear; Microphones; Noise; Speech; Wiener filter;
Conference_Titel :
Modelling, Identification and Control (ICMIC), Proceedings of 2011 International Conference on
Conference_Location :
Shanghai
DOI :
10.1109/ICMIC.2011.5973714