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Rotatable Antenna Enabled Wireless Communication System with Visual Recognition: A Prototype Implementation
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Rotatable antenna (RA) is an emerging technology that has great potential to exploit additional spatial degrees of freedom (DoFs) by flexibly altering the three-dimensional (3D) orientation/boresight of each antenna. In this demonstration, we present a prototype of the RA-enabled wireless communication system with a visual recognition module to evaluate the performance gains provided by the RA in practical environments. In particular, a mechanically-driven RA is developed by integrating a digital servo motor, a directional antenna, and a microcontroller, which enables the dynamic adjustment of the RA orientation. Moreover, the orientation adjustment of the RA is guided by the user's direction information provided by the visual recognition module, thereby significantly enhancing system response speed and self-orientation accuracy. The experimental results demonstrate that the RA-enabled communication system achieves significant improvement in communication coverage performance compared to the conventional fixed antenna system.
Forward citations
Cited by 3 Pith papers
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Wireless Communication with Cross-Linked Rotatable Antenna Array: Architecture Design and Rotation Optimization
A cross-linked rotatable antenna array, whose row and column tracks set each antenna's orientation, nearly matches fully flexible per-antenna rotation in simulated multiuser uplinks with only M+N motors instead of 2MN.
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Intelligent Rotatable Antenna for Integrated Sensing, Communication, and Computation: Challenges and Opportunities
A review-and-demo paper argues that rotatable directional antennas can add spatial flexibility to integrated sensing, communication, and computing systems, but the prototype only tests beam tracking.
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Rotatable Antenna Enabled Wireless Communication and Sensing: Opportunities and Challenges
Rotatable antennas with independently steered boresights are presented as a low-cost flexible-antenna technology that improves communication coverage, channel rank, and sensing resolution, with illustrative experiment...
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