IEEE Wireless Communications · 2018 · 224 citations · 15 references
Wireless CommunicationsEngineeringPhysicsSpectrum ManagementEm WaveSatellite CommunicationAntennaMultiuser MimoAngular MomentumWireless NetworksComputational ElectromagneticsOrbital Angular MomentumChannel Access MethodWireless PropagationSpace CommunicationMulti-access Network
Traditional wireless resources are increasingly saturated, prompting interest in electromagnetic wave angular momentum, whose helical wavefronts and orthogonal topological charges offer a new dimension for multiple access. The article introduces OAM theory and proposes a multi‑user access scheme that uses distinct OAM modes as an orthogonal dimension to avoid interference. The study discusses challenges in OAM signal generation, beam convergence, and reception, and proposes a multi‑user access scheme that employs distinct OAM modes as an orthogonal dimension. Simulation results show that OAM‑based radio transmission can significantly increase spectrum efficiency in wireless networks.
As the traditional resources (frequency, time, space, and so on) are efficiently utilized, it becomes more and more challenging to satisfy the ever-lasting capacity-growing and users-boosting demand in wireless networks. Recently, the EM wave was found to possess not only linear momentum, but also angular momentum. The OAM is a kind of wavefront with helical phase. The OAM-based vortex wave has different topological charges, which are orthogonal to each other, bridging a new way for multiple access in wireless communications. In this article, we introduce the fundamental theory of OAM and the OAM based wireless communications. The research challenges regarding OAM signal generation, OAM beam converging, and OAM signal reception are discussed. Further, we propose a new multiuser access with different OAM-modes in wireless networks, where multiple OAM-modes are used as a new orthogonal dimension for interference avoidance. Simulation results reveal the inherent property of OAM waves and show that OAM based radio transmission can significantly increase spectrum efficiency in wireless networks.
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Jeffrey G. Andrews, Stefano Buzzi, Wan Choi et al. · IEEE Journal on Selected Areas in Communications · 2014 · 8.1K citations
Five disruptive technology directions for 5G
Federico Boccardi, Robert W. Heath, Angel Lozano et al. · IEEE Communications Magazine · 2014 · 3.8K citations · Full text
Disruptive Technology Directions, 5G Networks, Wireless Communications +15
Utilization of Photon Orbital Angular Momentum in the Low-Frequency Radio Domain
B. Thidé, Holger Then, J. Sjöholm et al. · Physical Review Letters · 2007 · 1.1K citations · Full text