<em>A amostragem compressiva permite obter representações mais compactadas de sinais do que as obtidas nas arquiteturas baseadas no teorema de Nyquist. Por esse motivo este trabalho, em um primeiro momento, faz uma descrição sucinta desta nova técnica e apresenta a avaliação de sua aplicação para os sinais de Eletrocardiograma (ECG) eem imagens. Para sinais de ECG conseguiu-se até 59% de compressão sem perda das características do sinal, e para sinais de imagens obteve-se mais de 50% de compressão para níveis aceitáveis de perdas de qualidade.</em>
This work presents an enumerative technique to evaluate the distance spectrum of punctured turbo trellis coded modulation (TuCM) composed of two trellis coded modulation (TCM) component encoders connected in parallel via an interleaver. A matrix-based transfer function approach is employed to find the multiplicities of Hamming and Euclidean distances of input and output strings (distance spectrum) of each component TCM encoders after puncturing. An expurgated union bound on the bit error rate of TuCM schemes over the AWGN channel is computed using the distance spectrum. Comparisons with sim ulation results shows that the bound is tight in the range of the signal to noise of interest.
O presente trabalho tem como objetivo mostrar os resultados obtidos pela implementação de uma ferramenta para simulação de um sistema de transmissão digital em um canal com ruído aditivo gaussiano branco - AWGN (do inglês <em>Aditive White Gaussian Noise</em>). [...].
This paper presents a new technique to obtain an expurgated union bound on the frame error rate of punctured space-time turbo codes (STTuC) in quasi-static Rayleigh fading channels. The STTuC scheme is composed of two component space-time trellis encoders connected in parallel via an interleaver. An adjacent matrix of an augmented state diagram is defined which allows the enumeration of each punctured component encoder. The distance spectrum of the STTuC is then obtained using the concept of uniform interleaver. A method to identify the dominant error events is proposed and an expurgated union bound on the frame error rate of STTuC schemes is computed using these dominant error events. Comparisons with simulated results reveal that the expurgated union bound is tight for codes with different construction criteria for a wide range of signal to noise ratio.
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