ESPAR Antenna for V2X Applications in 802.11p Frequency Band
D. Duraj, Mateusz Rzymowski, Krzysztof Nyka, Łukasz Kulas
Abstract
D. Duraj, Mateusz Rzymowski, Krzysztof Nyka, Łukasz Kulas
Abstract
In this paper an Electronically Steerable Parasitic Array Radiator (ESPAR) antenna prototype for vehicle-to-everything (V2X) applications is proposed. The motivation of this work was to adapt ESPAR antenna concept widely used in Wireless Sensor Networks to improve connectivity and security in V2X communication system. Designed model was optimized for 802.11p frequency band and includes steering circuits based on fast and low-power UltraCMOS SPDT switches. Proposed antenna has compact size and provides unique directional radiation patterns for 360° area scanning. Theoretical and simulated results have been discussed in order to evaluate the antenna parameters with respect to V2X communication system requirements.
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In this paper an Electronically Steerable Parasitic Array Radiator (ESPAR) antenna prototype for vehicle-to-everything (V2X) applications is proposed. The motivation of this work was to adapt ESPAR antenna concept widely used in Wireless Sensor Networks to improve connectivity and security in V2X communication system. Designed model was optimized for 802.11p frequency band and includes steering circuits based on fast and low-power UltraCMOS SPDT switches. Proposed antenna has compact size and provides unique directional radiation patterns for 360° area scanning. Theoretical and simulated results have been discussed in order to evaluate the antenna parameters with respect to V2X communication system requirements.
Key concepts: Antenna (radio), Computer science, Electronic engineering, Radiator (engine cooling), Wireless, Omnidirectional antenna, Electrical engineering, Telecommunications