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CS6422-CS 数据表(PDF) 32 Page - Cirrus Logic |
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CS6422-CS 数据表(HTML) 32 Page - Cirrus Logic |
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32 / 48 page ![]() CS6422 32 4. DESIGN CONSIDERATIONS When designing the CS6422 into a system, it is im- portant to keep several considerations in mind. These concerns can be loosely grouped into three categories: algorithmic considerations, circuit de- sign considerations, and system design consider- ations. 4.1 Algorithmic Considerations The CS6422 facilitates full-duplex hands-free communication via many algorithms running on the Digital Signal Processor that is the core of the CS6422. Among these are the algorithms that per- form the adaptive filtering, the half-duplex switch- ing, digital volume control, and supplementary echo suppression. 4.1.1 Full-Duplex Mode Full-duplex hands-free communication is achieved through a technique called adaptive filtering. The basic principle behind adaptive filtering is that the acoustic path between speaker and microphone can be modeled by a transfer function which can be dy- namically determined by an adaptive digital filter. This principle assumes good update control and speech/tone detection algorithms to prevent the fil- ter from mistraining. 4.1.1.1 Theory of Operation Figure 10 illustrates how the adaptive filter can cancel echo and reduce loop gain. The echo path of the system is between points B and C: the speaker to microphone coupling. A signal injected at A (sometimes called a “training signal”) is sent both to B, the input of the echo path, and to F, the input of the adaptive filter. The signal at B is modified by the acoustic transducers (speaker and microphone) and the environment, and received at point C (as an “Echo”). Meanwhile, assume that the adaptive fil- ter has exactly the right transfer function to match the echo path BC, and so the signal at point D is ap- proximately equal to the signal at point C. After these are subtracted by the summing element, all that is left is the error signal at point E, which should be very small. If a person were to speak into the microphone at point C, that signal would pass through the sum- ming element unchanged because the adaptive fil- ter had no comparable input to subtract out. In this manner, the person at A and the person at C may si- multaneously speak and A will not hear his own echo. In the real world, the echo path is not static. It will change, for example, when people move in the Σ Adaptive Filter A E D B C + - F Figure 10. Simplified Acoustic Echo Canceller Block Diagram CS6422 32 DS295F1 |
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