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Quasi-Synchronous Sampling and Adaptive Partial-Response Maximum-Likelihood Read-Channel System

机译:准同步采样和自适应部分响应最大似然读取通道系统

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摘要

We propose a read-channel system with quasi-synchronous sampling and an adaptive partial-response maximum-likelihood (PRML) method to achieve accurate timing recovery and correct data extraction under high-density recording with a high transfer rate. The proposed system can extract data correctly in the state of either oversampling or undersampling using first-in-first-out flip-flops (FIFOs) and an asynchronously sampled data processable maximum-likelihood detector (ASML). In other words, it allows a sampling clock to be incompletely synchronized with a channel bit. Furthermore, the ASML adaptively learns the references required for calculating branch metrics even though the input data are not synchronized with the channel bit. This system achieves stable data extraction under quasi-synchronous sampling, improves the bit-error-rate performance, and can be applied to next-generation, high-density, and high-transfer-rate storage systems.
机译:我们提出一种具有准同步采样和自适应部分响应最大似然(PRML)方法的读取通道系统,以在高传输速率的高密度记录下实现准确的定时恢复和正确的数据提取。所提出的系统可以使用先进先出触发器(FIFO)和异步采样数据可处理的最大似然检测器(ASML)在过采样或欠采样状态下正确提取数据。换句话说,它允许采样时钟与通道位不完全同步。此外,即使输入数据与通道位不同步,ASML也会自适应地学习计算分支指标所需的参考。该系统可在准同步采样下实现稳定的数据提取,提高了误码率性能,可应用于下一代,高密度和高传输率的存储系统。

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