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Performance comparison of detection methods in magnetic recording

机译:磁记录中检测方法的性能比较

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摘要

Various detection schemes suitable for magnetic recording are compared in terms of their effective signal-to-noise ratios. It is shown that at high densities the performance of conventional detectors such as a peak detector, a threshold detector with partial response equalization, a decision feedback equalizer, and a Viterbi algorithm detector tuned to a linearly truncated channel fall far below the optimum performance that can be achieved by the maximum-likelihood sequence detector (MLSD). It is shown that while implementing the full MLSD is clearly out of the question for high densities with severe intersymbol interference (ISI), there exists an efficient detection scheme which achieves an excellent compromise between hardware complexity and detection performance. This scheme, which is called the fixed-delay tree search with decision feedback, combines a fast and efficient tree-search algorithm with a decision feedback equalizer to cancel out a portion of ISI without noise enhancement. It is well suited for run-length-limited systems and attains performance close to that of MLSD while maintaining reasonable implementation cost and processing requirements.
机译:比较了适用于磁记录的各种检测方案的有效信噪比。结果表明,在高密度情况下,常规检测器(例如峰值检测器,具有部分响应均衡的阈值检测器,判决反馈均衡器和调谐到线性截断通道的Viterbi算法检测器)的性能远远低于可以实现的最佳性能。通过最大似然序列检测器(MLSD)实现。结果表明,对于具有严重的符号间干扰(ISI)的高密度,完全实现MLSD显然是不可能的,但存在一种有效的检测方案,可以在硬件复杂度和检测性能之间取得很好的折衷。该方案称为带有决策反馈的固定延迟树搜索,该方案将快速高效的树搜索算法与决策反馈均衡器相结合,以消除一部分ISI,而不会增强噪声。它非常适合行程受限的系统,并在保持合理的实施成本和处理要求的同时,获得了与MLSD接近的性能。

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