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Relations between magnetostatics and analog audio storage performance: a theoretical analysis

机译:静磁与模拟音频存储性能之间的关系:理论分析

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Analog recording on a magnetic medium requires system linearity, which is achieved in an anhysteretic magnetization process. A large high-frequency AC field (bias field) is superimposed on the actual signal field. The linearity and slope of the anhysteretic remanence curve depends on the amplitude of the bias field. With increasing signal strength, deviations in the linearity occur that produce harmonics in the reproduction signal, so analog recording is only carried out up to the remanence at which the harmonics reach a certain proportion of the total reproduction level, called the maximum output level (MOL). Recently it was demonstrated that consideration of the coercivity distribution in the magnetic medium alone is sufficient to obtain an accurate description of the recording process, so that for the first time the harmonics and recording level curves can be calculated from the system data. The author deals with quantifying the importance of magnetostatics for the MOL at long wavelengths on the basis of this new model.
机译:在磁性介质上进行模拟记录需要系统线性,这是在磁滞磁化过程中实现的。在实际的信号场上会叠加一个较大的高频交流场(偏置场)。滞后剩磁曲线的线性和斜率取决于偏置场的幅度。随着信号强度的增加,会出现线性偏差,从而在再现信号中产生谐波,因此仅执行记录,直到剩磁时谐波达到总再现电平的一定比例,称为最大输出电平(MOL)。 )。最近证明,仅考虑磁性介质中的矫顽力分布就足以获得对记录过程的准确描述,因此首次可以从系统数据中计算出谐波和记录电平曲线。作者基于这种新模型,对长波长的MOL静磁的重要性进行了量化。

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