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Titlebook: Adaptive Signal Processing; Applications to Real Jacob Benesty,Yiteng Huang Book 2003 Springer-Verlag Berlin Heidelberg 2003 802.11.Code Di

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楼主: Malevolent
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Alibaud, Meunier, and the Cult of Regicide for echo cancelling devices. Beginning with a brief discussion of a system formed by a loudspeaker and a microphone located within the same enclosure, the properties of speech signals and noise are described. The major part of the echo can be cancelled by an adaptive filter connected in parallel to
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https://doi.org/10.1057/9781403970053tive antenna arrays and show how these methods may be applied to meet the requirements of audio signal processing. In particular, we derive optimum beamformers using time-domain least-squares instead of frequency-domain minimum mean-squares criteria, and, thereby, are not constrained by the commonly
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April 1834: La Guerre des Rues, Inal technique, called independent component analysis (ICA), is examined. By achieving nonlinear decorrelation, nonstationary decorrelation, or time-delayed decorrelation, we can find source signals only from observed mixed signals. Particular attention is paid to the physical interpretation of BSS f
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https://doi.org/10.1007/978-3-030-75028-2rm well. Recently, a blind channel identification-based adaptive approach called the eigenvalue decomposition (ED) algorithm has been proposed to deal with room reverberation more effectively. The ED algorithm focuses on a system with two channels whose impulse responses can be blindly identified on
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https://doi.org/10.1007/978-3-319-68086-6ocessor which combines multipath signals sequentially, first in space, then in time. We introduce incremental processing improvements to arrive ultimately at a more efficient one-dimensional joint space-time (1D-ST) adaptive processor named STAR, the spatio-temporal array-receiver. STAR improves the
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Dylan E. McNamara Ph.D.,Eli D. Lazarus Ph.D.um, are relatively low-cost and provide very high data rates. The IEEE 802.11 system makes use of a carrier-sensing technique and packet collisions occur because the stations in a system are essentially uncoordinated. Packet collisions increase with the number of stations in the system and the traff
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