2013 IEEE International Conference on Communications (ICC) 2013
DOI: 10.1109/icc.2013.6655186
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Capacity analysis of G.fast systems via time-domain simulations

Abstract: The evolving broadband access systems using copper networks are currently deployed in a frequency band that goes up to 30 MHz, as specified in VDSL2. As hybrid fibercopper architectures become more important in the industry and academia, using shorter loop lengths (i.e. up to 250 meters) from the last distribution point to users enables adopting even higher frequencies to achieve very high data rates of 500 Mbps and beyond, as is the case with the G.fast standard under development by ITU-T. In this work, a tim… Show more

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Cited by 7 publications
(5 citation statements)
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“…Evidently, only minor differences in both Eqs (17), (18), and (19) can be observed. Therefore, in order to approximate Eqs (17) and (18), the expression of a propagation constant γ(f) in Eq.…”
Section: Novel Inverse Hyperbolic Sine Modelmentioning
confidence: 93%
See 2 more Smart Citations
“…Evidently, only minor differences in both Eqs (17), (18), and (19) can be observed. Therefore, in order to approximate Eqs (17) and (18), the expression of a propagation constant γ(f) in Eq.…”
Section: Novel Inverse Hyperbolic Sine Modelmentioning
confidence: 93%
“…(19), the inverse hyperbolic sine arguments in Eq. (17), (18) should contain terms slowly approaching a number one using appropriate frequency f fractions. With the respect to this conclusion and Eq.…”
Section: Novel Inverse Hyperbolic Sine Modelmentioning
confidence: 99%
See 1 more Smart Citation
“…In fact, in STDD MGfast systems, the cyclic prefix only has to counter the impulse response delay spread, whereas in full-duplex MGfast the cyclic prefix is used to counter the delay spread and a cyclic suffix is employed to counter the propagation delay in the cable [5], [6]. This paper adopts cyclic prefix configurations compatible with G.fast [4], which include an associated overhead to the system varying between 0 and 13% [3], [5], [31].…”
Section: A Transmission Capacitymentioning
confidence: 99%
“…The main innovations include vectoring of transmitted DMT symbols through Vectored DMT modulation (VDMT) [3], the time-division duplex (TDD) technique, the reverse power-feeding mechanism [5], etc. However, the successful implementation of all these features require accurate and quick estimation of elementary transmission characteristics and parameters of the transmission channel [7], [8].…”
Section: Itu-t Has Recently Developed and Published An Innovativementioning
confidence: 99%