Embedded self-powered sensing systems for smart vehicles and intelligent transportation

H Askari, A Khajepour, MB Khamesee, ZL Wang - Nano Energy, 2019 - Elsevier
With the current changes in the automotive industry, vehicles need more and more
advanced sensors for control, safety, monitoring, perception, and operation. With the current …

Connected vehicles: Solutions and challenges

N Lu, N Cheng, N Zhang, X Shen… - IEEE internet of things …, 2014 - ieeexplore.ieee.org
Providing various wireless connectivities for vehicles enables the communication between
vehicles and their internal and external environments. Such a connected vehicle solution is …

On the potential of bluetooth low energy technology for vehicular applications

JR Lin, T Talty, OK Tonguz - IEEE Communications Magazine, 2015 - ieeexplore.ieee.org
With the increasing number of sensors in modern vehicles, using an intra-vehicular wireless
sensor network (IVWSN) is a possible solution for the automotive industry for addressing the …

Analysis and experimental evaluation of IEEE 802.15. 4e TSCH CSMA-CA algorithm

D De Guglielmo, B Al Nahas… - IEEE Transactions …, 2016 - ieeexplore.ieee.org
Time-slotted channel hop** (TSCH) is one of the medium access control (MAC) behavior
modes defined in the IEEE 802.15. 4e standard. It combines time-slotted access and …

NFMI: Near field magnetic induction based communication

A Pal, K Kant - Computer Networks, 2020 - Elsevier
Abstract Near Field Magnetic Induction (NFMI) based communication is an emerging
technology that promises several advantages over the traditional radio frequency (RF) …

Ultra-wideband channel model for intra-vehicular wireless sensor networks beneath the chassis: From statistical model to simulations

CU Bas, SC Ergen - IEEE Transactions on Vehicular …, 2012 - ieeexplore.ieee.org
Intra-vehicular wireless sensor networks (IVWSNs) are a promising new research area that
can provide part cost, assembly, maintenance savings, and fuel efficiency through the …

[PDF][PDF] In-Vehicle Channel Measurement, Characterization, and Spatial Consistency Comparison of 30-11 GHz and 55-65 GHz Frequency Bands.

J Blumenstein, A Prokes, A Chandra… - IEEE Trans. Veh …, 2017 - thomaszemen.org
The paper provides real-word wireless measurement data of the intra-vehicular channel for
both the 3-11 GHz and the 55-65 GHz frequency band under similar conditions. By spatially …

X-MIMO: Cross-technology multi-user MIMO

S Wang, W Jeong, J Jung, SM Kim - Proceedings of the 18th …, 2020 - dl.acm.org
Multi-user MIMO (MU-MIMO) is a widely-known, fundamental technique to significantly
improve the spectrum efficiency. While there is a great demand for spectrum efficiency and …

Optimal power control, rate adaptation, and scheduling for UWB-based intravehicular wireless sensor networks

Y Sadi, SC Ergen - IEEE Transactions on Vehicular Technology, 2012 - ieeexplore.ieee.org
The intravehicular wireless sensor network (IVWSN) is a promising new research area that
can provide part cost, assembly, maintenance savings, and fuel efficiency through the …

A blind zone alert system based on intra-vehicular wireless sensor networks

JR Lin, T Talty, OK Tonguz - IEEE Transactions on Industrial …, 2015 - ieeexplore.ieee.org
Due to the increasing number of sensors deployed in modern vehicles, intra-vehicular
wireless sensor networks (IVWSNs) have recently received a lot of attention in the …