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Dipulse-response measurement of a magnetic recording channel using Golay complementary sequences

机译:使用Golay互补序列的磁记录通道的双脉冲响应测量

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摘要

We apply Golay complementary sequences for measuring the dipulse response and transfer functions of a digital magnetic-saturation-recording channel. Our experimental channel suffers from nonlinear distortion caused by a magnetoresistive (MR) sensor. The measured-channel characteristics are compared with the same characteristics obtained by the dipulse-response measurement technique by using feedback-shift register sequences. Based on a practical nonlinear Volterra model of a digital magnetic-saturation-recording channel, we analyze the artifacts caused by second- and third-order nonlinear distortion, which do-occur in the Golay dipulse responses and transfer functions. We show that with either of the considered dipulse-response measurement techniques, the artifacts caused by even-order nonlinear distortion, which occur in the measured-channel characteristics, can easily be removed. The measured-channel characteristics obtained show excellent performance for either of the considered excitation sequences.
机译:我们应用Golay互补序列来测量数字磁饱和记录通道的双脉冲响应和传递函数。我们的实验通道遭受由磁阻(MR)传感器引起的非线性失真。通过使用反馈移位寄存器序列,将测量的通道特性与通过双脉冲响应测量技术获得的相同特性进行比较。基于数字磁饱和记录通道的实用非线性Volterra模型,我们分析了由二阶和三阶非线性畸变引起的伪影,这些伪影确实发生在Golay脉冲响应和传递函数中。我们表明,无论使用哪种考虑的脉冲响应测量技术,都可以很容易地消除由偶数阶非线性失真引起的伪像,这些伪像出现在被测信道特性中。对于所考虑的激励序列中的任何一个,获得的测量通道特性均显示出出色的性能。

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