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雪崩管最佳倍增因子线性化温控技术研究
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作者 阎得科 敬嘉雷 +1 位作者 霍晶 郝培育 《激光技术》 CAS CSCD 北大核心 2018年第3期374-378,共5页
为了进一步增强机载激光测距机在全温范围内的环境适应性,分析了温度与探测器模块输出功率信噪比的关系,推导了最佳倍增因子与温度的方程式,阐述了温度变化引起倍增因子对最佳雪崩倍增因子偏离的原因。根据雪崩管探测器雪崩击穿电压的... 为了进一步增强机载激光测距机在全温范围内的环境适应性,分析了温度与探测器模块输出功率信噪比的关系,推导了最佳倍增因子与温度的方程式,阐述了温度变化引起倍增因子对最佳雪崩倍增因子偏离的原因。根据雪崩管探测器雪崩击穿电压的线性温度特性,设计了机载温度范围为-55℃~70℃的基于自然对数法的最佳倍增因子雪崩偏压线性化温控电路,用于补偿因温度变化所引起的倍增因子对最佳雪崩倍增因子的偏离。结果表明,实测雪崩偏压温控系数为2.29V/℃,与理论分析值误差仅为4%。该技术用于新型机载激光测距系统中,获得了良好的试验数据,满足机载环境的特殊需求。 展开更多
关键词 激光技术 最佳倍增因子 线性化温控 雪崩管 信噪比 激光测距
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Control-oriented dynamic fuzzy model and predictive control for proton exchange membrane fuel cell stack 被引量:1
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作者 李曦 邓忠华 +2 位作者 曹广益 朱新坚 卫东 《Journal of Central South University of Technology》 EI 2006年第6期722-725,共4页
Proton exchange membrane fuel cell (PEMFC) stack temperature and cathode stoichiometric oxygen are very important control parameters. The performance and lifespan of PEMFC stack are greatly dependent on the parameters... Proton exchange membrane fuel cell (PEMFC) stack temperature and cathode stoichiometric oxygen are very important control parameters. The performance and lifespan of PEMFC stack are greatly dependent on the parameters. So, in order to improve the performance index, tight control of two parameters within a given range and reducing their fluctuation are indispensable. However, control-oriented models and control strategies are very weak junctures in the PEMFC development. A predictive control algorithm was presented based on their model established by input-output data and operating experiences. It adjusts the operating temperature to 80 ℃. At the same time, the optimized region of stoichiometric oxygen is kept between 1.8?2.2. Furthermore, the control algorithm adjusts the variants quickly to the destination value and makes the fluctuation of the variants the least. According to the test results, compared with traditional fuzzy and PID controllers, the designed controller shows much better performance. 展开更多
关键词 proton exchange membrane fuel cell nonlinear predictive control TEMPERATURE stoichiometric oxygen
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