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Research of Haar wavelet threshold sensitivity for detection non-reflective events on fragments of OTDR traces

机译:哈尔小波阈值敏感性对OTDR痕迹片段检测非反射事件的敏感性

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This work is concerned with research of Haar wavelet threshold sensitivity for detection of non-reflective events corresponding to optical fiber fusion splices on fragments of fiber optic link traces measured by optical time domain reflectometer (OTDR). We performed test series contained 40 step-by-step repeatable splicing of the same couple of standard singlemode fibers of ITU-T Rec. G.652 spools with length 2.2 km and 4.2 km and outer termination by conventional singlemode FC/UPC pigtails for OTDR connection and following bidirectional trace measurement. Results of insertion loss estimation and accomplished by OTDR software automated detection of non-reflective event corresponding to fusion splice of described optical fibers as well as ability of its visual manual localization on trace were recorded. The first 30 splices were realized by fusion splicer conventional program for jointing standard singlemode optical fibers of ITU-T Rec. ITU-T G.652, while the next 10 splices were done under "attenuator" mode with preset increased insertion loss. Described link traces were measured by OTDR operating in a standard mode with high spatial resolution under pulse width 20 ns and appropriate dynamic range with far-end OSNR 6.5 dB at wavelength 1550 nm. As a result 80 traces were analyzed in both automated and manual modes with fusion splice insertion loss varied from 0.002 dB to 0.554 dB. At the next stage we applied continues Haar wavelet transform for detection non-reflective event on measured traces of lab fiber optic link containing described one fusion splice with total length about 6.4 km. According to results, wavelet transform of described link trace provides detection of extremely low loss non-reflective events with OTDR reading down to own error corresponding to 0.020...0.030 dB range under improved scaling over normalized spatial diagram of wavelet coefficients.
机译:这项工作涉及HAAR小波阈值敏感性,用于检测对应于通过光学时域反射计(OTDR)测量的光纤链路迹线片段上的光纤融合剪辑对应的非反射事件。我们执行了测试系列的ITU-T Rec的相同标准单模纤维的40逐步的可重复剪接。 G.652长度为2.2 km和4.2公里和4.2公里,常规单片机FC / UPC猪尾尾随连接,用于OTDR连接和双向跟踪测量。记录了插入损耗估计的结果,并通过OTDR软件自动检测对应于所述光纤的融合拼接的非反射事件以及其视觉手动定位的能力进行记录。通过融合剪接器常规程序实现了前30个接头,用于连接ITU-T Rec的标准单模光纤。 ITU-T G.652,而接下来的10个接头在“衰减器”模式下进行,预设增加插入损耗。所描述的链接迹线由OTDR在标准模式下操作,在脉冲宽度20ns下具有高空间分辨率和具有远端OSNR 6.5 dB的适当动态范围,波长为1550nm。结果,在具有融合剪接插入损耗的自动化和手动模式下分析80迹线,从0.002 dB变化至0.554 dB。在下一阶段,我们应用继续哈尔小波变换用于检测非反射事件的实验室光纤链路上的测量迹线,其中包含所描述的一个融合剪接,总长度约为6.4 km。根据结果​​,所描述的链路轨迹的小波变换提供了对应于对应于0.020 ... 0.030 dB范围的OTDR读取的极低损耗非反射事件的检测,其在改进的小波系数的标准化空间图下的0.020 ... 0.030 dB范围。

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