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Moving magnet loudspeaker system with electronic compensation

机译:带电子补偿的动磁扬声器系统

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In most cases, an increase in voice-coil temperature is the major cause of speaker failure. Several techniques have been developed to keep the voice coil at room temperature under high-power inputs. It is a known fact that a rise in temperature causes a rise in the total resistance of the voice coil, thus reducing the sensitivity. Many performance improvements have been implemented on sound quality and high power output. However, less importance has been placed on the end stage of the hi-fi, i.e. the loudspeaker. The main problem faced by high-power loudspeakers is that of power compression. A cost-effective moving magnet structure, where the coil is directly heat sinked, is the best economical solution to reduce power compression. An attempt is made to build such a moving magnet loudspeaker system with a stationary coil. The compensation for the increase in voice-coil resistance is provided by predicting the temperature of the voice coil in real time at different temperatures. A computer controlled measuring method is developed to enable long-term measurements with constant input power. A very simple digital technique to provide the required negative output impedance to compensate for the increase in voice-coil resistance is also discussed.
机译:在大多数情况下,音圈温度升高是扬声器故障的主要原因。已经开发了几种技术以在大功率输入下将音圈保持在室温下。众所周知的事实是,温度升高导致音圈的总电阻升高,从而降低了灵敏度。在音质和高功率输出方面已经实现了许多性能改进。但是,在高保真音响的末级,即扬声器上,重要性下降了。大功率扬声器面临的主要问题是功率压缩的问题。具有成本效益的活动磁体结构(线圈直接散热)是减少功率压缩的最佳经济解决方案。试图构建这种具有固定线圈的动磁扬声器系统。通过实时预测不同温度下音圈的温度来补偿音圈电阻的增加。开发了一种计算机控制的测量方法,可以在恒定输入功率下进行长期测量。还讨论了一种非常简单的数字技术,该技术可提供所需的负输出阻抗以补偿音圈电阻的增加。

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