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Proceedings ArticleDOI

Evaluation on a costless 60-GHz OFDM-based indoor wireless over multimode fiber green system employing a photonic integrated smart antenna

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TLDR
A 60GHz wireless over fiber indoor system is proposed and evaluated, using a microwave/optical/wireless converged analysis, and a photonic integrated patch antenna combined with a LiNbO3 modulator scheme for all-optical frequency up-conversion are studied.
Abstract
A 60GHz wireless over fiber indoor system is proposed and evaluated, using a microwave/optical/wireless converged analysis. In order to promote a cost-efficient deployment multimode fiber indoor infrastructure is employed, and a photonic integrated patch antenna combined with a LiNbO 3 modulator scheme for all-optical frequency up-conversion are studied. Using, a 3Gb/s Orthogonal Frequency Division Multiplexing (OFDM) based IEEE 802.15.3c prestandard, and OM-4 graded index multimode fiber (GI-MMF) transmission of 100m, an acceptable performance, in terms of Error Vector Magnitude (EVM) is calculated for a wireless coverage in the order of 10m. A possible system topology is proposed which apart from fulfilling the wired-wireless and low cost requirements, utilizing a FTTB single mode fiber (SMF) feeding and MMF indoor deployment, is appropriate for future green system scenarios through λ-reuse and photonic integrated antenna scheme without post amplification.

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Citations
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High-speed multi-mode fiber transmission by using mode-field matched center-launching technique

TL;DR: In this article, the authors proposed a mode-field matched center-launching technique by fusion-splicing a single-mode fiber (SMF) pigtailed transmitter to the MMF, where the splicing condition is optimized to expand the core of SMF slightly so that it can match the mode field distribution of the fundamental mode of MMF.
References
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Journal ArticleDOI

Analysis and design of broad-band single-layer rectangular U-slot microstrip patch antennas

TL;DR: In this paper, the authors developed principle design procedures for a single-layer coaxially fed rectangular microstrip patch antenna through examination of the structure's multiple resonant frequencies as well as the radiation and impedance properties of different antenna geometries.
Journal ArticleDOI

Millimeter-Wave Photonic Components for Broadband Wireless Systems

TL;DR: In this paper, a self-pulsating 60 GHz range quantum-dash Fabry-Perot mode-locked laser diodes (MLLD) for passive, i.e., photonic mm-wave generation with comparably low-phase noise level of -76 dBc/Hz @ 100-kHz offset from a 58.8-GHz carrier is presented.
Journal ArticleDOI

High-Speed Multimode Fiber Transmission by Using Mode-Field Matched Center-Launching Technique

TL;DR: In this paper, the authors proposed a mode-field matched center-launching technique by fusion-splicing a single-mode fiber (SMF) pigtailed transmitter to the MMF, where the splicing condition is optimized to expand the core of SMF slightly so that it can match the mode field distribution of the fundamental mode of MMF.
Journal ArticleDOI

A method for designing broad-band microstrip antennas in multilayered planar structures

TL;DR: A simple and practical method for the design of broad-band microstrip antennas is presented and it is confirmed that the method proposed is applicable to the designs of other types of multilayered planar antennas.
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