Cost-Effective Design of Amplifiers for Hearing Aides Using Nullors for Response Matching

R. Hashemian
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Abstract

This chapter starts reviewing Fixator-Norator Pairs (FNP) as an effective tool used to design analog amplifiers for a prescribed bandwidth and frequency profile. Among number of cases and applications, designing for hearing aides are particularly important, where the hearing frequency profiles, known as audiograms, are changing from person to person, and also for a person by the age. The design is mainly focused on front-end or stand-alone amplifiers. In case of a front-end the response from the amplifier can be digitized, properly controlled and adjusted to fit the digital application. Here is how the design proceed. For a given audiogram, an Audiogram Generator Circuit (AGC) is initially constructed. This AGC, usually a complete passive circuit, produces a frequency response that closely matches with the audiogram, obtained from a hearing impaired patient. The AGC is then embedded in an amplifier circuit where a fixator is placed at its output port, “forcing” the amplifier to generate the desired output frequency response profile. A flat band frequency response, for example, compensates the hearing losses and provides a uniform hearing to the patient in the entire audio bandwidth. The amplifier can be further enhanced to perform other requirements, for example, to cancel undesirable noises in certain frequencies or to magnify the voice in critical frequencies for clarity. Another alternative design methodology is also introduced in this chapter, which uses the negative feedback technique.
使用零值进行响应匹配的助听器放大器的经济高效设计
本章开始回顾固定-调节对(FNP)作为一种有效的工具,用于设计给定带宽和频率的模拟放大器。在众多案例和应用中,助听器的设计尤其重要,因为助听器的听力频率分布(即听力图)是因人而异的,而且随着年龄的增长也会发生变化。设计主要针对前端或单机放大器。在前端的情况下,放大器的响应可以数字化,适当地控制和调整以适应数字化应用。下面是设计过程。对于给定的听力图,首先构造一个听力图产生电路(AGC)。这种AGC通常是一个完整的无源电路,产生的频率响应与从听力受损患者获得的听图密切匹配。然后将AGC嵌入到放大器电路中,其中固定器放置在其输出端口,“迫使”放大器产生所需的输出频率响应曲线。例如,平坦频带频率响应补偿听力损失,并在整个音频带宽内为患者提供均匀的听力。放大器可以进一步增强以满足其他要求,例如,在某些频率中消除不受欢迎的噪声或在关键频率中放大声音以获得清晰度。本章还介绍了另一种可选择的设计方法,它使用负反馈技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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