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Steady-state analysis of continuous adaptation in acoustic feedbackreduction systems for hearing-aids

机译:助听器声反馈减少系统中连续适应的稳态分析

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Acoustic feedback is a problem in hearing aids that contain a substantial amount of gain, hearing aids that are used in conjunction with vented or open molds, and in-the-ear hearing aids. Acoustic feedback is both annoying and reduces the maximum usable gain of hearing-aid devices. This paper studies analytically the steady-state convergence behavior of LMS-based adaptive algorithms when used in continuous adaptation to reduce acoustic feedback. A bias is found in the adaptive filter's estimate of the hearing-aid acoustic feedback path. Methods for reducing this bias and producing an improved estimate of the acoustic feedback path are analyzed and compared. It is shown that by the use of a delay in the forward or cancellation paths of the hearing aid plant, and for representative feedback paths, it is possible to reduce this bias by more than 15 dB
机译:声学反馈在包含大量增益的助听器,与排气或开模一起使用的助听器以及入耳式助听器中是一个问题。声音反馈既烦人又降低了助听器的最大可用增益。本文分析了基于LMS的自适应算法在连续自适应以减少声反馈时的稳态收敛行为。在助听器声反馈路径的自适应滤波器的估计中发现偏差。分析和比较了减少此偏差并产生改进的声反馈路径估计的方法。结果表明,通过在助听器的前向或抵消路径中使用延迟以及对于代表性的反馈路径,可以将这种偏差降低15 dB以上

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