Performance Impact Analysis of Beam Switching in Millimeter Wave Vehicular Communications

03/05/2021
by   O. Kanhere, et al.
0

Millimeter wave wireless spectrum deployments will allow vehicular communications to share high data rate vehicular sensor data in real-time. The highly directional nature of wireless links in millimeter spectral bands will require continuous channel measurements to ensure the transmitter (TX) and receiver (RX) beams are aligned to provide the best channel. Using real-world vehicular mmWave measurement data at 28 GHz, we determine the optimal beam sweeping period, i.e. the frequency of the channel measurements, to align the RX beams to the best channel directions for maximizing the vehicle-to-infrastructure (V2I) throughput. We show that in a realistic vehicular traffic environment in Austin, TX, for a vehicle traveling at an average speed of 10.5 mph, a beam sweeping period of 300 ms in future V2I communication standards would maximize the V2I throughput, using a system of four RX phased arrays that scanned the channel 360 degrees in the azimuth and 30 degrees above and below the boresight. We also investigate the impact of the number of active RX chains controlling the steerable phased arrays on V2I throughput. Reducing the number of RX chains controlling the phased arrays helps reduce the cost of the vehicular mmWave hardware while multiple RX chains, although more expensive, provide more robustness to beam direction changes at the vehicle, allowing near maximum throughput over a wide range of beam sweep periods. We show that the overhead of utilizing one RX chain instead of four leads to a 10 runs in real traffic conditions, with each run being 10 to 20 seconds long over a distance of 40 to 90 meters.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
09/23/2020

Real-time Millimeter Wave Omnidirectional Channel Sounder Using Phased Array Antennas

Characterization of the millimeter wave wireless channel is needed to fa...
research
03/17/2022

A Real-Time Millimeter Wave V2V Channel Sounder

Wireless communication in millimeter wave spectrum is poised to provide ...
research
11/15/2021

Vision-Position Multi-Modal Beam Prediction Using Real Millimeter Wave Datasets

Enabling highly-mobile millimeter wave (mmWave) and terahertz (THz) wire...
research
07/23/2019

Path Loss Models for V2V mmWave Communication: Performance Evaluation and Open Challenges

Recently, millimeter wave (mmWave) bands have been investigated as a mea...
research
05/11/2023

Active Sensing for Two-Sided Beam Alignment and Reflection Design Using Ping-Pong Pilots

Beam alignment is an important task for millimeter-wave (mmWave) communi...
research
01/12/2022

Deep Learning on Multimodal Sensor Data at the Wireless Edge for Vehicular Network

Beam selection for millimeter-wave links in a vehicular scenario is a ch...
research
12/17/2021

A Belief Propagation Solution for Beam Coordination in MmWave Vehicular Networks

Millimeter-wave communication is widely seen as a promising option to in...

Please sign up or login with your details

Forgot password? Click here to reset