Energy Efficiency Optimization for Backscatter Enhanced NOMA Cooperative V2X Communications under Imperfect CSI
Wali Ullah Khan, Muhammad Ali Jamshed, Eva Lagunas, Symeon, Chatzinotas, Xingwang Li, Bjorn Ottersten

TL;DR
This paper proposes an energy-efficient transmission optimization framework for AmBC-enhanced NOMA cooperative V2X networks under imperfect CSI, improving power efficiency while maintaining QoS.
Contribution
It introduces a novel optimization approach for power and reflection coefficient allocation in AmBC-NOMA V2X systems with imperfect CSI, addressing a complex non-convex problem.
Findings
Significant reduction in total transmit power.
Enhanced energy efficiency compared to conventional NOMA V2X.
Effective handling of imperfect CSI conditions.
Abstract
Automotive-Industry 5.0 will use beyond fifth-generation (B5G) technologies to provide robust, computationally intelligent, and energy-efficient data sharing among various onboard sensors, vehicles, and other devices. Recently, ambient backscatter communications (AmBC) have gained significant interest in the research community for providing battery-free communications. AmBC can modulate useful data and reflect it towards near devices using the energy and frequency of existing RF signals. However, obtaining channel state information (CSI) for AmBC systems would be very challenging due to no pilot sequences and limited power. As one of the latest members of multiple access technology, non-orthogonal multiple access (NOMA) has emerged as a promising solution for connecting large-scale devices over the same spectral resources in B5G wireless networks. Under imperfect CSI, this paper…
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Taxonomy
TopicsEnergy Harvesting in Wireless Networks · Advanced Wireless Communication Technologies · UAV Applications and Optimization
