Amplified space-time coding for ultra-long-distance Raman distributed temperature sensing

S. Faralli, T. Nannipieri, A. Signorini, F. Di Pasquale
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Abstract

We present a novel amplified space-time coding technique which combines cyclic-Simplex and Simplex binary codes to overcome the main limitations of conventional coding for OTDR based ultra-long distance distributed temperature sensing applications. The decoding process is performed in two successive steps, addressing the main issue related to the computational complexity of conventional codes, which increases quadratically with the code lenght, seriously affecting their performance when dealing with extremely long code-words. A link control technique is also proposed to suppress gain transients induced by the EDFA dynamics, avoiding performance degradation due to nonlinear effects and codewords distortion. The proposed scheme provides significant coding gain enhancement and stable operations below the stimulated Raman scattering threshold, pushing the performance of Raman based distributed temperature sensors close to their physical limit using commercial off-the-shelf components.
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超长距离拉曼分布温度传感的放大空时编码
本文提出了一种新的放大空时编码技术,该技术结合了循环单纯形和单纯形二进制编码,克服了基于OTDR的超长距离分布式温度传感应用中传统编码的主要局限性。解码过程分两个连续的步骤进行,解决了传统代码的计算复杂性的主要问题,传统代码的计算复杂性随着代码长度的增加而呈二次增长,在处理超长码字时严重影响其性能。此外,还提出了一种链路控制技术来抑制由EDFA动态引起的增益瞬变,避免由于非线性效应和码字失真导致的性能下降。该方案提供了显著的编码增益增强和低于受激拉曼散射阈值的稳定运行,使基于拉曼的分布式温度传感器的性能接近商用现成组件的物理极限。
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