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WiFi-enabled buses and stops may form the backbone of a metropolitan delay tolerant network, that exploits nearby communications, temporary storage at stops, and predictable bus mobility to deliver

WiFi-enabled buses and stops may form the backbone of a metropolitan delay tolerant network, that exploits nearby communications, temporary storage at stops, and predictable bus mobility to deliver

Most current and upcoming communication systems like 802.11x, WiMAX etc. deploy some variant of Orthogonal Frequency Division Multiplexing as their physical layer technology.

The pulse displacements produced by timing errors in a chain of regenerative repeaters (using tuned-circuit timing fdters) are represented by a linear transformation of the pulse displacements at t

We showed in a previous discussion that the pulse displacements at the output of a chain of repeaters may he represented by a linear transformation of the pulse displacements at the output of the f

l.i Purpose Pulse regeneration is an attractive feature of digital communication systems.

Decoders for Low Density Parity Check (LDPC) codes, used commonly in communication networks, possess inherent tolerance to random internal computation errors.

Regenerative binary repeaters have recently been proposed for both baseband and carrier pulse code modulation s y s t e m s , 1 ' 3 ' 4 in which the signal is represented by a binary pulse train.

This paper presents an overview of timing in the Optical Transport Network (OTN).

An analysis of the passively mode locked regime in semiconductor lasers is presented, leading to an explicit expression relating the timing jitter diffusion constant to the optical linewidths in th

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