Discrete Zak transforms, polyphase transforms, and applications


Helmut Bölcskei and Franz Hlawatsch


IEEE Trans. Signal Processing, Vol. 45, No. 4, pp. 851-866, Apr. 1997

DOI: 10.1109/78.564174

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We consider three different versions of the Zak transform (ZT) for discrete-time signals, namely the discrete-time ZT, the polyphase transform, and a cyclic discrete ZT. In particular, we show that the extension of the discrete-time ZT to the complex z-plane results in the polyphase transform, an important and well-known concept in multirate signal processing and filter bank theory. We discuss fundamental properties, relations, and transform pairs of the three discrete ZT versions, and we summarize applications of these transforms. In particular, the discrete-time ZT and the cyclic discrete ZT are important for discrete-time Gabor expansion (Weyl-Heisenberg frame) theory since they diagonalize the Weyl-Heisenberg frame operator for critical sampling and integer oversampling. The polyphase representation plays a fundamental role in the theory of filter banks, especially DFT filter banks. Simulation results are presented to demonstrate the application of the discrete ZT to the efficient calculation of dual Gabor windows, tight Gabor windows, and frame bounds.


Discrete Zak transforms, polyphase transforms, Gabor expansions, Weyl-Heisenberg frames, DFT filter banks

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