AbstractCapacity is deremined for a class of communication channels containing additive noise. Gaussian noise processes and a large class of non-Gaussian processes are included. The constraint on the transmitted signals is given in terms of an increasing family of finite-dimensional subspaces. For this class of channels, it is shown that coding capacity is equal to the average information capacity. A general expression for the capacity is given, along with results that facilitate its calculation in applications. The results apply to the classical discrete-time channel and to continuous-time channels with fixed signal duration
In many wireless communication systems, radios are subject to a duty cycle constraint, that is, a ra...
International audienceWe analyze a class of vector multiple access channels with additive noise, whe...
We consider the capacity of an arbitrarily varying channel (AVC) for deterministic codes with the av...
We evaluate the information capacity of channels for which the noise process is a Gaussian measure o...
International audienceIn this paper, a new framework based on the notion of \textit{capacity sensiti...
FIELD GROUP SUB. GR. Gaussian channels, Shannon theory, stationary channels, channel capacity 19. AB...
We give upper and lower bounds of the capacity C(X) of a channel with additive noise X under a const...
A model proposed by Fortet for a time-continuous Gaussian channel is analyzed. The model differs fro...
In the Shannon theory of communication, nearly all of the results pertaining to the rate of transmis...
Consider a communication channel with stochastic input message X and independent additive zero-mean ...
Ahstrucf-We consider the capacity of an arbitrarily varying channel (AVC) for deterministic codes wi...
Abstract — Communication channels that are characterized by additive Gaussian noise have been well s...
An additive noise channel wherein the noise is described by a piecewise constant probability density...
For the additive white Gaussian noise channel, there is a gap between the channel capacity and the h...
The capacity of a random-phase additive white Gaussian noise (AWGN) channel, referred to as noncoher...
In many wireless communication systems, radios are subject to a duty cycle constraint, that is, a ra...
International audienceWe analyze a class of vector multiple access channels with additive noise, whe...
We consider the capacity of an arbitrarily varying channel (AVC) for deterministic codes with the av...
We evaluate the information capacity of channels for which the noise process is a Gaussian measure o...
International audienceIn this paper, a new framework based on the notion of \textit{capacity sensiti...
FIELD GROUP SUB. GR. Gaussian channels, Shannon theory, stationary channels, channel capacity 19. AB...
We give upper and lower bounds of the capacity C(X) of a channel with additive noise X under a const...
A model proposed by Fortet for a time-continuous Gaussian channel is analyzed. The model differs fro...
In the Shannon theory of communication, nearly all of the results pertaining to the rate of transmis...
Consider a communication channel with stochastic input message X and independent additive zero-mean ...
Ahstrucf-We consider the capacity of an arbitrarily varying channel (AVC) for deterministic codes wi...
Abstract — Communication channels that are characterized by additive Gaussian noise have been well s...
An additive noise channel wherein the noise is described by a piecewise constant probability density...
For the additive white Gaussian noise channel, there is a gap between the channel capacity and the h...
The capacity of a random-phase additive white Gaussian noise (AWGN) channel, referred to as noncoher...
In many wireless communication systems, radios are subject to a duty cycle constraint, that is, a ra...
International audienceWe analyze a class of vector multiple access channels with additive noise, whe...
We consider the capacity of an arbitrarily varying channel (AVC) for deterministic codes with the av...