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红外焦平面阵列非均匀性的校正方法研究 被引量:9
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作者 史浩然 李召龙 沈同圣 《激光与红外》 CAS CSCD 北大核心 2016年第2期204-208,共5页
针对读出电路与探测器产生的非均匀性,并对递归最小二乘非均匀校正算法(RLS算法)进行扩展和改进,提高非均匀校正的精度和算法的收敛速度。首先对红外焦平面阵列的非均匀性进行建模仿真,根据建立的模型利用局部恒定统计法对读出电路产生... 针对读出电路与探测器产生的非均匀性,并对递归最小二乘非均匀校正算法(RLS算法)进行扩展和改进,提高非均匀校正的精度和算法的收敛速度。首先对红外焦平面阵列的非均匀性进行建模仿真,根据建立的模型利用局部恒定统计法对读出电路产生的非均匀性进行校正,然后采用自适应中值滤波算法(RAMF算法)对图像进行预处理,从而提供给后续RLS算法具有较低噪声的图像,实现RLS算法对探测器的非均匀性校正。仿真结果表明提出的算法能够有效地抑制读出电路对校正精度的影响,消除图像的非均匀性,同时采用RAMF算法对图像的预处理过程,能够加快RLS算法的收敛速度,提高信噪比,获得较好的非均匀性校正效果。 展开更多
关键词 非均匀性建模 均匀校正 RLS算法 自适应中值滤波
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Thermal Modeling and Cooling Analysis of High-power Lithium Ion Cells 被引量:10
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作者 Zhuqian Zhang Li Ji a Nan Zhao Lixin Yang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2011年第6期570-575,共6页
The heat generation model and three-dimensional computational fluid dynamics model for lithium ion cells were established with boundary conditions defined.In order to provide a better insight about the behaviors of hi... The heat generation model and three-dimensional computational fluid dynamics model for lithium ion cells were established with boundary conditions defined.In order to provide a better insight about the behaviors of high-power lithium ion cells under realistic discharge conditions,the temperature difference of the cells and an active thermal management system with a pure air-cooling mode were analyzed and predicted with the factors affecting the unevenness of temperature field discussed.The results show a significant effect of the cooling flow rate on the temperature rise of the cells for all discharge rates.Average surface temperatures are relatively uniform at lower discharge rate that makes it easier to control the temperature of the pack.Cell temperatures are expected to rise significantly toward the end of discharge and they show non-uniformity at higher discharge rates.Adequate air flow rate of active cooling is required at high discharge rate and high ambient temperature for practical pack thermal management system. 展开更多
关键词 Lithium ion battery thermal management system air-cooling temperature rise
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