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Photoelectrochemical Stability Enhancement of (311)-Oriented Indium Sulfide Thin Films via In-Cystine Complex Formation under Hydrothermal Synthesis. [PDF]
Yang X +6 more
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Toward Simplified Electrode Design: Development of Nickel-Efficient Catalytic NanoPTL for Sustainable AEM Water Electrolysis. [PDF]
Park S +4 more
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Mechanistic Insights into the Suppression of Proton Intercalation and the Hydrogen Evolution Reaction through Phosphorus Doping in Tungsten Oxide. [PDF]
Kucukosman OK +10 more
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Synergistic Cosensitization and Redox-Triggered Interfacial Engineering for Efficient and Durable Solar Cells. [PDF]
Wu H +4 more
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Proceedings of the IEEE, 2013
In this paper, we survey faster-than-Nyquist (FTN) signaling, an extension of ordinary linear modulation in which the usual data bearing pulses are simply sent faster, and consequently are no longer orthogonal. Far from a disadvantage, this innovation can transmit up to twice the bits as ordinary modulation at the same bit energy, spectrum, and error ...
Fredrik Rusek, Viktor Öwall
exaly +2 more sources
In this paper, we survey faster-than-Nyquist (FTN) signaling, an extension of ordinary linear modulation in which the usual data bearing pulses are simply sent faster, and consequently are no longer orthogonal. Far from a disadvantage, this innovation can transmit up to twice the bits as ordinary modulation at the same bit energy, spectrum, and error ...
Fredrik Rusek, Viktor Öwall
exaly +2 more sources
Exploiting faster-than-nyquist signaling
IEEE Transactions on Communications, 2003Faster-than-Nyquist signaling introduces intersymbol interference, but increases the bit rate while preserving the signaling bandwidth. For sinc pulses, it has been established that with a small increase in the signaling rate beyond the Nyquist rate, there is no reduction in the minimum Euclidean distance for binary signaling.
A D Liveris, C N Georghiades
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{ Asymptotic Optimality of Binary Faster-than-Nyquist Signaling}
IEEE Communications Letters, 2010In this letter, the asymptotic information rate of faster-than-Nyquist (FTN) signaling is examined when the data sequence consists of independent and identically distributed (i.i.d.) binary symbols. It is shown that, as the FTN rate tends to infinity, the information rate converges to that of the FTN signaling with i.i.d. Gaussian symbols.
Joon Ho Cho
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On the minimum distance problem for faster-than-Nyquist signaling
IEEE Transactions on Information Theory, 1988The authors reconsider the problem of determining the minimum distance between output sequences of an ideal band-limiting channel that are generated by uncoded binary sequences transmitted at a rate exceeding the Nyquist rate. For signaling rates up to about 25% faster than the Nyquist rate, it is shown that the minimum distance does not drop below the
James E. Mazo, Henry J. Landau
exaly +2 more sources

