Title :
Enhancing Wireless Sensor Networks with Acoustic Sensing Technology: Use Cases, Applications & Experiments
Author :
Hollosi, Danilo ; Nagy, G. ; Rodigast, Rene ; Goetze, Stefan ; Cousin, P.
Author_Institution :
Dept. Acoust., Fraunhofer Inst. for Digital Media Technol. - IDMT, Oldenburg & Ilmenau, Germany
Abstract :
This paper presents research carried out within the EU FP7 EAR-IT project, which is working on the challenges of bringing acoustic sensing intelligence to large-scale indoor and outdoor wireless sensor networks, i.e. into two existing test beds out of the EU FP7 FIRE projects SmartSantander and Hobnet. Besides the benefits by integrating machine-learning based acoustic sensing technology, the general deployment approach of the so-called Acoustic Processing Unit, an embedded device whose capabilities go beyond state-of-the-art IoT sensors, as well as the EAR-IT indoor and outdoor use cases are described. This includes hardware qualification for the applications such as energy efficiency of buildings, traffic monitoring and emergency vehicle detection and tracking outdoor as well as acoustic emergency detection for indoor environments and further, a detailed description of the individual Acoustic Processing Unit software components. Latest efforts and simulation results for acoustic source localization using audio sensing technology for wireless sensor networks are presented, indicating that a more intelligent usage of the audio modality enables a wide range of applications and services with high social and technological value.
Keywords :
learning (artificial intelligence); wireless sensor networks; EU FP7 EAR-IT project; Hobnet; SmartSantander; acoustic emergency detection; acoustic processing unit software components; acoustic sensing intelligence; acoustic source localization; audio sensing technology; building energy efficiency; emergency vehicle detection; indoor environments; large-scale indoor wireless sensor networks; large-scale outdoor wireless sensor networks; machine-learning based acoustic sensing technology; tracking outdoor; traffic monitoring; Acoustics; Event detection; Feature extraction; Microphones; Noise; Sensors; Acoustic Event Detection; Acoustic Source Localization; Wireless Sensor Networks;
Conference_Titel :
Green Computing and Communications (GreenCom), 2013 IEEE and Internet of Things (iThings/CPSCom), IEEE International Conference on and IEEE Cyber, Physical and Social Computing
Conference_Location :
Beijing
DOI :
10.1109/GreenCom-iThings-CPSCom.2013.75