Short range wireless technologies such as Bluetooth, WiFi and DECT are known to transmit voice, audio and/or video messages in real time. Energy consumption and transmission reach are critical in such networks, especially for portable and/or power autonomous devices. The purpose of the Voice over Zigbee technology is to provide a competitive offering that excels in these performance aspects. Due to the CSMA-CA mechanism implemented in the 802.15.4 layer a well-designed strategy must be taken into account in Zigbee to create a robust, reliable and full-duplex conversation. This article proves that the radio channel of Zigbee has enough bandwidth to support a full-duplex conversation with narrow band voice codecs. Furthermore, it presents the implementation and evaluation of a voice codec performed in the framework of the Z-Phone project, which targeted the development of a low cost, ultra low power, long range wireless headset using Zigbee technology to transmit voice in full-duplex mode for use with leading PC VoIP programs. Last but not least, it presents the results of the transmission range and power consumption tests involving the developed headset prototype. Talk time is comparable to Bluetooth, but its deep-sleep lifetime doubles the Bluetooth performance. Another significant contribution of this work is towards understanding and resolving the challenges faced when trying to achieve good quality transmission of media over constrained devices and networks. The way to new voice-related Zigbee applications is open.
[1]
Mario Gerla,et al.
Bluetooth: carrying voice over ACL links
,
2002,
4th International Workshop on Mobile and Wireless Communications Network.
[2]
Apostolos Meliones,et al.
Implementation and evaluation of a voice codec for ZigBee
,
2011,
2011 IEEE Symposium on Computers and Communications (ISCC).
[3]
DaeHun Yoo,et al.
Simulation and Implementation of Voice-Over-IEEE 802.15.4 LR-WPAN
,
2008,
2008 Digest of Technical Papers - International Conference on Consumer Electronics.
[4]
Apostolos Meliones,et al.
Speech codecs for high-quality voice over ZigBee applications: Evaluation and implementation challenges
,
2012,
IEEE Communications Magazine.
[5]
Lee Yong Hua,et al.
Delivering high quality, secure speech communication through low data rate 802.15.4 WPAN
,
2007,
2007 IEEE International Conference on Telecommunications and Malaysia International Conference on Communications.
[6]
Chonggang Wang,et al.
Voice communications over zigbee networks
,
2008,
IEEE Communications Magazine.
[7]
Anthony Rowe,et al.
Voice over Sensor Networks
,
2006,
2006 27th IEEE International Real-Time Systems Symposium (RTSS'06).
[8]
Anssi Rämö,et al.
On comparing speech quality of various narrow- and wideband speech codecs
,
2005,
Proceedings of the Eighth International Symposium on Signal Processing and Its Applications, 2005..