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Timing Recovery Strategies in Magnetic Recording Systems

机译:磁记录系统中的定时恢复策略

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摘要

At some point in a digital communications receiver, the received analog signal must be sampled. Good performance requires that these samples be taken at the right times. The process of synchronizing the sampler with the received analog waveform is known as timing recovery. Conventional timing recovery techniques perform well only when operating at high signal-to-noise ratio (SNR). Nonetheless, iterative error-control codes allow reliable communication at very low SNR, where conventional techniques fail. This paper provides a detailed review on the timing recovery strategies based on per-survivor processing (PSP) that are capable of working at low SNR. We also investigate their performance in magnetic recording systems because magnetic recording is a primary method of storage for a variety of applications, including desktop, mobile, and server systems. Results indicate that the timing recovery strategies based on PSP perform better than the conventional ones and are thus worth being employed in magnetic recording systems.
机译:在数字通信接收器的某个点上,必须对接收到的模拟信号进行采样。好的性能要求在正确的时间采集这些样本。将采样器与接收的模拟波形同步的过程称为定时恢复。常规时序恢复技术仅在以高信噪比(SNR)工作时才能表现良好。尽管如此,迭代的错误控制代码仍可在常规技术失败的情况下以非常低的SNR进行可靠的通信。本文详细介绍了基于每个幸存者处理(PSP)的时序恢复策略,这些策略能够在低SNR下工作。我们还研究了它们在磁记录系统中的性能,因为磁记录是用于各种应用程序(包括台式机,移动系统和服务器系统)的主要存储方法。结果表明,基于PSP的定时恢复策略的性能优于常规策略,因此值得在磁记录系统中采用。

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