Title :
Unified radar-communication (RadCom) multi-port interferometer transceiver
Author :
Moghaddasi, Jaber ; Ke Wu
Author_Institution :
Poly-Grames Res. Centre, Ecole Polytech. (Univ. of Montreal), Montreal, QC, Canada
Abstract :
A multifunctional transceiver architecture in support of joint radar-communication functions is proposed and developed based on a multiport interferometer technique. Following a recently developed time-agile waveform modulation scheme, this transceiver is made simpler, more compact and robust. This attractive property is much attributed to a specially proposed six-port topology used in the receiver design. With a theoretical analysis of its operation principles, the functionality of transceiver is studied through preliminary system- level measurements. The system is able to estimate target´s range, angular position, velocity and direction of motion when operating in radar mode. Moreover, it is also capable of operating as a wireless data communicator. When the system operates in joint radar-communication manner, sensory-data fusion can enhance the reception quality of data transmission. These features make the proposed scheme suitable for intelligent transportation platforms.
Keywords :
angular velocity measurement; data communication; electromagnetic wave interferometers; intelligent transportation systems; mobile communication; modulation; motion estimation; position measurement; radar interferometry; radio transceivers; sensor fusion; telecommunication network topology; RadCom; angular position estimation; attractive property; data transmission; intelligent transportation platforms; joint radar-communication functions; motion direction estimation; multifunctional transceiver architecture; operation principles; receiver design; reception quality enhancement; sensory-data fusion; six-port topology; system-level measurements; target range estimation; time-agile waveform modulation scheme; unified radar-communication multiport interferometer transceiver; velocity estimation; wireless data communicator; Field programmable gate arrays; Radar; Radio frequency; Receivers; Topology; Transceivers; Velocity measurement; circuit topology; intelligent transportation systems (ITSs); microwave receiver; multifunctional transceiver; radar; radio communication;
Conference_Titel :
Microwave Conference (EuMC), 2013 European
Conference_Location :
Nuremberg