Title :
Design and implementation of optical wireless communications with optically powered smart dust motes
Author :
O´Brien, Dominic C. ; Liu, Jing Jing ; Faulkner, Grahame E. ; Sivathasan, Sashigaran ; Yuan, Wei ; Collins, Steve ; Elston, Steve J. ; Pithamiron, V.
Author_Institution :
Dept. of Eng. Sci., Oxford Univ., Oxford, UK
fDate :
12/1/2009 12:00:00 AM
Abstract :
Complete electronic and micro-mechanical systems can now be fabricated on the scale of hundreds of microns. Implementing radio frequency wireless communications with such ´smart dust´ is challenging, due to the power required and the small size of any antennas that can be implemented. Optical wireless communications, using a modulated retro-reflector at the smart dust has the advantages of low-power consumption and highly directive channels that allow long communications ranges. In this paper we report the design and implementation of a communications system that uses a base station to communicate with, and power, smart dust motes, over ranges of 10s of metres. A base station that uses holographic beamsteering is described, and dust motes that use silicon ICs to provide communications, power and modulation control. Results indicate the dust mote will operate at a range of over 30m from the base station.
Keywords :
holography; micromechanical devices; optical communication; silicon; wireless channels; Si; electronic systems; holographic beamsteering; low power consumption; micromechanical systems; optical wireless communications; radiofrequency wireless communications; retroreflector; silicon integrated circuit; smart dust motes; Base stations; Communication system control; Directive antennas; Holographic optical components; Holography; Optical design; Optical modulation; Radio frequency; Silicon; Wireless communication; Optical Wireless Communications, Smart Dust, Optically powered;
Journal_Title :
Selected Areas in Communications, IEEE Journal on
DOI :
10.1109/JSAC.2009.091214