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Fiber Methane Gas Sensor and Its Application in Methane Outburst Prediction in Coal Mine 被引量:1
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作者 Jia-Sheng Ni Jun Chang +3 位作者 Tong-Yu Liu Yan-Fang Li Yan-Jie Zhao Qian Wang 《Journal of Electronic Science and Technology of China》 2008年第4期373-376,共4页
Fiber optic methane gas detecting system based on distributed feedback (DFB) laser wavelength scanning technique is demonstrated. Wavelength scan of methane absorption peak at 1665.9 nm is realized by saw tooth modu... Fiber optic methane gas detecting system based on distributed feedback (DFB) laser wavelength scanning technique is demonstrated. Wavelength scan of methane absorption peak at 1665.9 nm is realized by saw tooth modulation of current which is injected to DFB laser. A reference methane gas cell is used to find the methane absorption peak around 1666 nm, and normalization is used to reduce the outside affection such as power drift, fiber loss. Concentration is got by arithmetic processing absorption coefficient of the methane gas. In-situ test is carried out in coal mine and long time precision of 0.05% is achieved. Some spot data of coal mine is introduced. By the system, methane outburst can be measured. 展开更多
关键词 Methane outburst PREDICTION optical absorption wavelength scan.
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Fiber Optic Fourier Transform White-Light Interferometry
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作者 Yi Jiang Cai-Jie Tang 《Journal of Electronic Science and Technology of China》 2008年第4期489-491,共3页
Fiber optic Fourier transform white-light inter-fereometry is presented to interrogate the absolute optical path difference of an Maeh-Zehnder interferometer. The phase change of the interferometer caused by scanning ... Fiber optic Fourier transform white-light inter-fereometry is presented to interrogate the absolute optical path difference of an Maeh-Zehnder interferometer. The phase change of the interferometer caused by scanning wavelength can be calculated by a Fourier transform-based phase demodulation technique. A linear output is achieved. 展开更多
关键词 Fiber optic sensor white-light interferometry Fourier transform
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Efficient Helicopter-Satellite Communication Scheme Based on Check-Hybrid LDPC Coding 被引量:9
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作者 Ping Wang Liuguo Yin Jianhua Lu 《Tsinghua Science and Technology》 SCIE EI CAS CSCD 2018年第3期323-332,共10页
When implementing helicopter-satellite communications, periodical interruption of the received signal is a challenging problem because the communication antenna is intermittently blocked by the rotating blades of the ... When implementing helicopter-satellite communications, periodical interruption of the received signal is a challenging problem because the communication antenna is intermittently blocked by the rotating blades of the helicopter. The helicopter-satellite channel model and the Forward Error Control(FEC) coding countermeasure are presented in this paper. On the basis of this model, Check-Hybrid(CH) Low-Density Parity-Check(LDPC)codes are designed to mitigate the periodical blockage over the helicopter-satellite channels. The CH-LDPC code is derived by replacing part of single parity-check code constraints in a Quasi-Cyclic LDPC(QC-LDPC) code by using more powerful linear block code constraints. In particular, a method of optimizing the CH-LDPC code ensemble by searching the best matching component code among a variety of linear block codes using extrinsic information transfer charts is proposed. Simulation results show that, the CH-LDPC coding scheme designed for the helicopter-satellite channels in this paper achieves more than 25% bandwidth efficiency improvement, compared with the FEC scheme that uses QC-LDPC codes. 展开更多
关键词 helicopter-satellite communications check-hybrid Low-Density Parity-Check(LDPC) codes Extrinsic Information Transfer(EXIT) iterative decoding
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