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The performance of generalized maximum transition run trellis codes

机译:广义最大过渡运行格码的性能

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There has been considerable recent activity in the design and implementation of codes for magnetic saturation recording which achieve a 2.2 dB gain on the ideal EEPR4 partial response channel. This paper compares the performance of one such 8/9 rate Generalized Maximum Transition Run (GMTR) code with a normal 16/17 rate RLL(0,k) code. The sensitivity of the comparison is considered for two idealized magnetic dipulse shapes, for two idealized signal sampling techniques, and for two idealized noise environments. Comparison of a blended Lorentzian and Gaussian dipulse to a pure Lorentzian show generally similar gross effects, but the blended dipulse shows the onset of high density effects at lower channel densities. Comparison of the ideal minimum bandwidth discrete time equivalent sampler to the ideal whitened matched filter sampler shows negligible differences. The GMTR code in Additive White Gaussian Noise (AWGN) achieves net coding gains from 0.2 to 1.7 dB on user densities from 2 to 3 depending on the sequence detector target. In a media noise model the GMTR code is shown to achieve significant coding gains with the EEPR4 or MLSD detector targets.
机译:在磁饱和记录代码的设计和实现方面,最近进行了相当多的活动,该代码在理想EEPR4部分响应通道上实现了2.2 dB的增益。本文将这样一种8/9速率的通用最大过渡运行(GMTR)代码与正常的16/17速率的RLL(0,k)代码进行比较。对于两种理想化的电磁脉冲形状,两种理想化的信号采样技术以及两种理想化的噪声环境,都考虑了比较的灵敏度。混合的洛伦兹和高斯扰动与纯洛伦兹扰动的比较通常显示出相似的总体效果,但混合的扰动在较低的通道密度下显示出高密度效应的开始。理想的最小带宽离散时间等效采样器与理想的白化匹配滤波器采样器的比较显示出可以忽略的差异。根据序列检测器的目标,在用户密度从2到3的情况下,加性高斯白噪声(AWGN)中的GMTR代码可实现0.2到1.7 dB的净编码增益。在媒体噪声模型中,GMTR码显示为通过EEPR4或MLSD检测器目标实现显着的编码增益。

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