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Topic Area: Telecommunications
Displaying records 1 to 9.
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1.
NIST Handbook 150-11, NVLAP Electromagnetic Compatibility and Telecommunications
Series: Handbook (NIST HB)
Report Number: 150-11
Topic: Telecommunications
Published: 4/25/2013
Authors: Bethany E Hackett, Bradley W Moore, Dennis G Camell
Abstract: NIST Handbook 150-11, NVLAP Electromagnetic Compatibility and Telecommunications, presents the technical requirements and guidance for the accreditation of laboratories under the NVLAP Electromagnetic Compatibility and Telecommunications (ECT) LAP. I
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http://nist.gov/manuscript-publication-search.cfm?pub_id=913586
2.
Biometrics in a Networked World
Topic: Telecommunications
Published: 12/2/2012
Author: Kevin C Mangold
http://nist.gov/manuscript-publication-search.cfm?pub_id=911889
3.
Guideline for the Implementation of Coexistence for Broadband Power Line Communication Standards
Series: NIST Interagency/Internal Report (NISTIR)
Report Number: 7862
Topic: Telecommunications
Published: 6/6/2012
Authors: David H Su, Stefano Galli
Abstract: Power Line Communication (PLC) systems provide a bi-directional communication platform capable of delivering data for a variety of Smart Grid applications such as home energy management and intelligent meter reading and control. One benefit of applyi
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http://nist.gov/manuscript-publication-search.cfm?pub_id=911198
4.
High-Accuracy Photoreceiver Frequency Response Measurements at 1.55 um by Use of a Heterodyne Phase-Locked Loop
Topic: Telecommunications
Published: 9/29/2011
Authors: Tasshi Dennis, Paul D Hale
Abstract: We demonstrate a high-accuracy heterodyne measurement system for characterizing the magnitude of the frequency response of high-speed 1.55 µm photoreceivers from 2 MHz to greater than 50 GHz. At measurement frequencies below 2 GHz, we employ a phase-
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http://nist.gov/manuscript-publication-search.cfm?pub_id=908885
5.
Pixel Interlacing Based Video Transmission for Low-complexity Intra-frame Error Concealment
Topic: Telecommunications
Published: 6/1/2011
Author: Hamid Gharavi
Abstract: When multi-path fading and interference frequently disrupts a mobile radio communication system, it can seriously undermine its reliability for transmission of compressed video signals. In this paper, we present a pixel interlacing based video transm
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http://nist.gov/manuscript-publication-search.cfm?pub_id=908154
6.
Selective Pixel Interpolation for Spatial Error Concealment
Topic: Telecommunications
Published: 6/1/2011
Authors: Hamid Gharavi, Yi Ge, Bo Yan, Kairan Sun
Abstract: This paper proposes an effective algorithm for spatial error concealment with accurate edge
detection and partitioning interpolation. Firstly, a new method is used for detecting possible edge
pixels and their matching pixels around the lost block
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http://nist.gov/manuscript-publication-search.cfm?pub_id=909111
7.
Modeling Smart Grid Applications with Co-Simulation
Topic: Telecommunications
Published: 10/5/2010
Authors: Timothy Godfrey, Mullen Sara, Roger C. Dugan, Craig Rodine, David Wesley Griffith, Nada T Golmie
Abstract: Analysis of complex Smart Grid applications require simulation of communications networks and the power system. Analytical models of the communication systems provide a tool for examining the aggregate behavior of the system. An event level analysis
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http://nist.gov/manuscript-publication-search.cfm?pub_id=905684
8.
A Novel Ring-Based Performance Analysis for Call Admission Control in Wireless Networks
Topic: Telecommunications
Published: 4/30/2010
Authors: Duk Kyung Kim, David Wesley Griffith, Nada T Golmie
Abstract: In Orthogonal Frequency Division Multiplex (OFDM) wireless networks such as 3GPP LTE and IEEE 802.16 WiMAX, the scheduler should allocate more resources to users with lower channel quality, such as users near the edge of the Base Station (BS) coverag
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http://nist.gov/manuscript-publication-search.cfm?pub_id=903094
9.
Full PMD vector measured directly from modulated data using linear optical sampling
Topic: Telecommunications
Published: 7/15/2009
Authors: Paul A Williams, Tasshi Dennis
Abstract: We demonstrate a new technique to monitor the polarization-mode dispersion in a fiber communication channel by analyzing the modulated data at the fiber output measured with Polarization-Sensitive Linear Optical Sampling (PS-LOS).
http://nist.gov/manuscript-publication-search.cfm?pub_id=902416