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A dynamic resource allocation algorithm to satisfy the packet delay requirements for real-time services, while maximizing the system capacity in multiuser orthogonal frequency division multiplexing

Due to its high spectral efficiency and inherent robustness against multipath fading channels, OFDM has become a popular solution for various high-speed wireless data transmission systems.

There are many benefits in using time division duplex (TDD) instead of frequency division duplex (FDD) schemes in fixed wireless cellular systems.

In this paper, we investigate the performance of dynamic time division duplexing (TDD) transmissions with various kinds of interference management strategies, i.e., cell clustering (CC), power cont

Small cell networks (SCNs) are envisioned to embrace dynamic time division duplexing (TDD) in order to tailor downlink (DL)/uplink (UL) subframe resources to quick variations and burstiness of DL/U

Networks emerging as increasingly significant to US DoD visions comprise dynamic, heterogeneous terrestrial, air-borne, and/or space-based nodes, some of whose links are directional, variable perfo

We have developed an approach for using electrowetting actuation in recirculating fluidic channels to achieve dynamic tuning of optical fiber structures.

Flexible duplex, that enables dynamic uplink and downlink resource allocation in the joint time-frequency domain, is proposed to adapt to the channel and traffic asymmetry for future wireless netwo

An optical scanning interferometer for accurate imaging of high-frequency surface vibrations is described.

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