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Sökning: WFRF:(Acatauassu Diogo)

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1.
  • Acatauassu, Diogo, et al. (författare)
  • Experimental evaluation of fourth generation DSL in different DSM scenarios
  • 2011
  • Ingår i: [Host publication title missing]. - 9781467302777
  • Konferensbidrag (refereegranskat)abstract
    • Recently, the industry and the academy started to discuss the development of the fourth generation DSL systems. For example, within this context, ITU started working in G. fast DSL standard. A trend in this new generation is to increase the end-user bit rates by extending the frequency rage of transmission signals and reducing the copper loop length. For the frequency range being considered for use in G. fast for example, crosstalk is an even worse impairment than it is for current DSL deployments. Hence, it is sensible to study dynamic spectrum management (DSM) techniques to overcome the crosstalk effects. This work presents an experimental evaluation in order to verify the behavior of fourth generation DSL systems when different levels of DSM techniques are used, highlighting the coexistence of vectored, DSM level 3, and non-vectored sub-systems. The results were obtained based on short copper cable measurements and power spectrum density simulations.
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2.
  • Acatauassu, Diogo, et al. (författare)
  • KHM cable model parameters for ITU-T G.Fast reference loops
  • 2016
  • Ingår i: 2015 IEEE Conference on Standards for Communications and Networking, CSCN 2015. - 9781479989287 ; , s. 168-173
  • Konferensbidrag (refereegranskat)abstract
    • G.Fast is a new standard for fixed broadband access that aims at achieving bit rates of 1 Gb/s over short copper loops. In order to give support to simulation, design and performance evaluation tests, the G.Fast recommendation presents examples of some wiring topologies and reference loops describing configurations expected to be found in real G.Fast deployments. Our work describes results of modeling some types of lines adopted in these reference loops by means of a low complexity and causal parametric cable model. The results indicate that the modeling approach proposed in this work is accurate for all the analyzed cases, which include high quality, medium quality and low quality cables.
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3.
  • Acatauassu, Diogo, et al. (författare)
  • Simple and Causal Copper Cable Model Suitable for G.fast Frequencies
  • 2014
  • Ingår i: IEEE Transactions on Communications. - 0090-6778. ; 62:11, s. 4040-4051
  • Tidskriftsartikel (refereegranskat)abstract
    • G.fast is a new standard from the International Telecommunication Union, which targets 1 Gb/s over short copper loops using frequencies up to 212 MHz. This new technology requires accurate parametric cable models for simulation, design, and performance evaluation tests. Some existing copper cable models were designed for the very high speed digital subscriber line spectra, i.e., frequencies up to 30 MHz, and adopt assumptions that are violated when the frequency range is extended to G.fast frequencies. This paper introduces a simple and causal cable model that is able to accurately characterize copper loops composed by single or multiple segments, in both frequency and time domains. Results using G.fast topologies show that, apart from being accurate, the new model is attractive due to its low computational cost and closed-form expressions for fitting its parameters to measurement data.
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4.
  • Acatauassu, Diogo, et al. (författare)
  • Simple and Causal Twisted-Pair Channel Models for G.fast Systems
  • 2013
  • Ingår i: [Host publication title missing].
  • Konferensbidrag (refereegranskat)abstract
    • The use of a hybrid copper and fiber architecture is attractive in both fixed access and mobile backhauling scenarios. This trend led the industry and academia to start developing the fourth generation broadband system, which aims at achieving bitrates of 1 Gbps over short copper loops. In this context, accurate models of short twisted-pair cables operating at relatively high frequencies are key elements. This work describes new parametric cable models that incorporate four important characteristics: support of frequencies up to 200 MHz, few parameters, causal impulse responses and require relatively easy fitting procedures. The results show that the models achieve good accuracy for single segments, which are the expected topology for G.fast deployments.
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  • Resultat 1-4 av 4

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