414 research outputs found

    Ultra-wideband radio signals distribution in FTTH networks

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    The use of an ultra-wideband (UWB) radio technique is proposed as a viable solution for the distribution of high-definition audio/video content in fiber-to-the-home (FTTH) networks. The approach suitability is demonstrated by the transmission of standards-based UWB signals at 1.25 Gb/s along different FTTH fiber links with 25 km up to 60 km of standard single-mode fiber length in a laboratory experiment. Experimental results suggest that orthogonal frequency-division-multiplexed UWB signals exhibit better transmission performance in FFTH networks than impulse radio UWB signals

    Performance of MB-OFDM UWB and WiMAX IEEE 802.16e converged radio-over-fiber in PON

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    Experimental results about the performance of converged radio-over- fiber transmission including multiband- OFDM UWB and WiMAX 802.16e wireless over a passive optical network are reported in this paper. The experimental study indicates that UWB and WiMAX converged transmission is feasible over the proposed distribution set-up employing a single wavelength. However, the results indicate that there is an EVM penalty of 3.2 dB for a UWB 10 km SSMF transmission in presence of WiMAX wireless

    Joint distribution of polarization-multiplexed UWB and WiMAX radio in PON

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    In this paper, the feasibility of the joint distribution of ultra-wideband (UWB) and WIMAX wireless using polarization multiplexing as a coexistence technique is proposed and experimentally demonstrated within the framework of passive optical networks (PON). Four single- and orthogonal-polarization multiplexing schemes are studied targeting to reduce the mutual interference when UWB and WiMAX are distributed jointly through standard single-mode fiber (SSMF) without transmission impairments compensation techniques and amplification. Experimental results indicate successful transmission up to 25 km, in SSMF exceeding the range in typical PON deployments. The radio link penalty introduced by optical transmission is also investigated in this paper

    Compressed television transmission: A market survey

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    NASA's compressed television transmission technology is described, and its potential market is considered; a market that encompasses teleconferencing, remote medical diagnosis, patient monitoring, transit station surveillance, as well as traffic management and control. In addition, current and potential television transmission systems and their costs and potential manufacturers are considered

    Resource-Constrained Low-Complexity Video Coding for Wireless Transmission

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    Full-duplex analog radio-over-fiber system based on an integrated transceiver with a silicon microring modulator and a transfer-printed III-V photodetector

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    A full-duplex analog radio-over-fiber (RoF) system based on an integrated transceiver is proposed. The transceiver incorporates a C-band silicon microring modulator for the electrical-to-optical (E-O) conversion of the downstream signal and an O-band III-V photodetector (PD) is transfer printed onto the same chip for the optical-to-electrical (O-E) conversion of the upstream signal. With the integrated transceiver, a proof-of-concept experiment is carried out. An error vector magnitude (EVM) less than 6 % is achieved in the X-band for a 1-Gbps 16QAM-modulated signal transmitted through 5-km single mode fiber. Keywords: radio transceivers, microwave photonics, silicon photonics, photodetector
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