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Titlebook: Novel Optical Fiber Sensing Technology and Systems; Mingjiang Zhang,Jianzhong Zhang,Tao Wang Book 2024 Tsinghua University Press 2024 Chao

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楼主: Maculate
发表于 2025-3-27 00:24:17 | 显示全部楼层
Mingjiang Zhang,Jianzhong Zhang,Lijun Qiao,Tao Wangians, language communities and others. The availability and use of language technology in Europe varies between languages. Consequently, the actions that are required to further support research and development of language technologies also differ for each language. The required actions depend on ma
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Mingjiang Zhang,Jianzhong Zhang,Lijun Qiao,Tao Wangite the attempts of man to pollute it or reclaim it, has remained a fascinating insight into a natural world where energy is transformed from sunlight into plant material, and then through the steps of a food chain is converted into a rich food supply for birds and fish. The biologist has become int
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Chaos Brillouin Distributed Optical Fiber Sensing,o the limitation of the pulse width which must be larger than the Brillouin phonon lifetime (10 ns). In the optical correlation-domain system, the sensing distance is only tens of meters owing to the periodic correlation peaks. In other words, the conventional Brillouin distributed optical sensing t
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Brillouin Distributed Optical Fiber Sensing Based on Disordered Signals,nal researchers because they provide high spatial resolution and relatively long measurement range. The spatial resolution and measurement range of conventional periodic sinusoidally modulated Brillouin optical coherence domain systems can be adjusted by varying the modulation amplitude and modulati
发表于 2025-3-27 22:29:25 | 显示全部楼层
Chaotic Microwave Photon Sensing,s. It is easy to generate chaotic lasers with bandwidth of 10 GHz by using semiconductor lasers. Due to its many outstanding characteristics, such as high speed, resist multipath fading, low power consumption, high penetration, high positioning accuracy and high security, Ultrawideband (UWB) technol
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Hans-Joachim Heintze(n) are complete for the simultaneous time-space complexity class .TISP(poly,f(n)), and (4) the .-Space complete PEBBLE problem, when restricted to graphs of bandwidth f(n), can be solved in space f(n)×log.n. These results are used to show, for example, that:
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