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Efficiency Investigation of Subwoofer Driven Around Resonance Frequency

机译:谐振频率围绕谐波驱动的低音炮效率研究

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The need for efficient portable speaker systems has increased tremendously over the past 10 years. The batteries, amplifiers and filtering has all seen great improvements in efficiency leaving the speakers units as the most inefficient part of the system, mainly due to the large amounts of current drawn that ends up being dissipated as heat in the voice coil. This paper will look at how you can design a speaker system to take advantage of the resonance of a speaker unit, since that is where the unit is most efficient and draws the least current. A subwoofer speaker system will be designed with focus on only driving the speaker units near their resonance frequency. The tests found that with modern DSP it was rather simple to design a speaker system that operate in a very narrow frequency band around the speaker units' resonance frequencies, which in turn ensured a very small current draw. This greatest drawback of this method is the increase in components needed, which drives up cost and complexity.
机译:在过去的10年里,对高效便携式扬声器系统的需求已经增加。电池,放大器和过滤的效率都有很大的改进,使扬声器单元作为系统中最低效率的部分,主要是由于最终绘制的大量电流在音圈中被散发出来。本文将研究如何设计扬声器系统以利用扬声器单元的共振,因为该单元最有效并且绘制最小电流的位置。低音炮扬声器系统将设计专注于仅在其共振频率附近驱动扬声器单元。测试发现,使用现代化DSP,设计一种在扬声器单元的共振频率周围的非常窄的频段中操作的扬声器系统相当简单,这反过来确保了非常小的电流绘制。这种方法的这一最大缺点是所需的组件的增加,它推动了成本和复杂性。

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