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Patent

Device for the reception of digital data time frequency interlacing, notably for radio broadcasting at high bit rate towards mobile receivers with nyquist temporal window

TLDR
In this article, the reception of digital data broadcast at a high bit rate for reception by mobile receivers is described under adverse conditions of multiple propagation corresponding to the Rayleigh process and imperfect frequency tuning to minimize the inter-symbol interference in the frequency domain.
Abstract
A device for the reception of digital data broadcast at a high bit rate for reception by mobile receivers is disclosed. The device operates under adverse conditions of multiple propagation corresponding to the Rayleigh process and imperfect frequency tuning to minimize the inter-symbol interference in the frequency domain. The device receives a digital signal having digital elements distributed in the frequency-time space f-t and transmitted in the form of symbols each constituted by a multiplex of N orthogonal carrier frequencies modulated by a set of digital elements and broadcast simultaneously. The device includes a module for transposition by a local oscillator, baseband filtering and analog-digital conversion, a temporal windowing module for the selection of the useful samples and a mathematical transformation module, the temporal windowing module applying a Nyquist window type of temporal window with non-zero roll-off.

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Citations
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References
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Patent

Method and installation for digital communication, particularly between and toward moving vehicles

TL;DR: In this article, a digital broadcasting process suitable for digital audiobroadcast is described, where the data in the form of binary words using a redundant code to obtain a sequence of modulation symbols and transmitting the symbols in a plurality of subchannels at different frequencies.
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Method for broadcasting of digital data, notably for radio broadcasting at high throughput rate towards mobile receivers, with time frequency interlacing and analog synchronization

TL;DR: In this article, the authors proposed a frame structure for the Rayleigh process to derive the maximum benefit from the resistance of the system to pulsed stray signals and to jamming, which is a method for the diffusion of digital data designed to be received notably by mobile receivers moving in an urban environment.
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High speed data communications system

TL;DR: In this article, an improved data transmission system has a transmitter which includes a modulator responsive to a synthesized modulating signal, which provides for transmission of data substreams on parallel subchannels, for example, by using subcarrier frequencies.
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Method for improving the reliability of data transmission over Rayleigh fading channels

TL;DR: In this paper, a relatively high bit rate serial stream of data is divided into N parallel relatively low bit rate streams of data and a controlled amount of intersymbol interference is introduced in the parallel streams.
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