2008IEEE International Conference on Acoustics Speech and Signal ProcessingRequires access

On the optimality of ideal binary time-frequency masks

Yipeng Li, Deliang Wang

Open publisher page 14 citations

Abstract

Recently the concept of ideal binary time-frequency masks has received attention and their optimality in terms of signal- to-noise ratio has been presumed. However the optimality is not rigorously analyzed. In this paper we treat this issue formally and clarify the conditions for ideal binary masks to be optimal. We also experimentally compare the performance of ideal binary masks in terms of signal-to-noise ratio to that of ideal ratio masks on a speech mixture database and a music database. The results show that ideal binary masks are close in performance to ideal ratio masks which are closely related to the Wiener filter, the theoretically optimal linear filter.

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What this paper is about

Recently the concept of ideal binary time-frequency masks has received attention and their optimality in terms of signal- to-noise ratio has been presumed. However the optimality is not rigorously analyzed. In this paper we treat this issue formally and clarify the conditions for ideal binary masks to be optimal. We also experimentally compare the performance of ideal binary masks in terms of signal-to-noise ratio to that of ideal ratio masks on a speech mixture database and a music database. The results show that ideal binary masks are close in performance to ideal ratio masks which are closely related to the Wiener filter, the theoretically optimal linear filter.

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Available abstract

Recently the concept of ideal binary time-frequency masks has received attention and their optimality in terms of signal- to-noise ratio has been presumed. However the optimality is not rigorously analyzed. In this paper we treat this issue formally and clarify the conditions for ideal binary masks to be optimal. We also experimentally compare the performance of ideal binary masks in terms of signal-to-noise ratio to that of ideal ratio masks on a speech mixture database and a music database. The results show that ideal binary masks are close in performance to ideal ratio masks which are closely related to the Wiener filter, the theoretically optimal linear filter.

Key concepts: Ideal (ethics), Binary number, Signal-to-noise ratio (imaging), Filter (signal processing), Noise (video), Computer science, Algorithm, Wiener filter

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