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Titlebook: Acoustic Signal Processing for Telecommunication; Steven L. Gay,Jacob Benesty Book 2000 Springer Science+Business Media New York 2000 Adap

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System and Application Access Controlshnique for flexibility in oversampling. We characterize the main sources of errors in both the FAP-RLS and the DFT filter banks, and propose simple and effective solutions for stable operation of the subband AEC system. Our findings are supported experimentally.
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https://doi.org/10.1007/978-3-030-92466-9 adaptation step size for the UFLMS. Most importantly, we generalize all this to the multi-channel case, thereby exploiting the cross-power spectra among all the channels which is very important (for a fast convergence rate) in multi-channel acoustic echo cancellation (AEC), where the input signals are highly correlated.
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System and Application Access Controlsthis chapter, all fundamental blocks of the echo canceler are described, and simulation results using the implementation, on real life recordings, are studied. The results clearly verify that the theoretic fundamental problem of SAEC also applies to real-life situations.
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Identification of Exposures and IssuesIn this chapter we describe how virtual sound may be delivered to a single listener using a small number of loudspeakers. We also outline the fundamental robustness problem inherent in all such systems, and explain how judicious choice of the loudspeaker locations can be used to help overcome this problem.
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https://doi.org/10.1007/978-3-030-92466-9ple counterparts. Furthermore, the block processing introduces a signal delay which increases with rising block length. If the error signal of a block adaptive filter is corrected in such a way that the corrected error signal equals the error signal of the sample-by-sample version of the adaptive fi
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