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基于Zynq的空空导弹末端识别与定位系统研究
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作者 王西超 高颂 +1 位作者 浦乐 曲晓雷 《弹箭与制导学报》 北大核心 2021年第6期18-22,共5页
针对目前空空导弹末端识别与定位速度低下的问题,提出一种基于显著性分析的红外小目标检测算法,结合SVM分类器,实现飞机红外目标的快速检测与识别。硬件利用Zynq-7000处理器,并基于Vivado HLS对显著性分析中的频域残差计算模块进行高层... 针对目前空空导弹末端识别与定位速度低下的问题,提出一种基于显著性分析的红外小目标检测算法,结合SVM分类器,实现飞机红外目标的快速检测与识别。硬件利用Zynq-7000处理器,并基于Vivado HLS对显著性分析中的频域残差计算模块进行高层次硬件综合,构建硬件IP核,实现FPGA端的专用算法硬件加速。在Zybo平台上搭建嵌入式图像处理系统,以某大型运输机和某型战斗机为目标,实验结果表明,运输机和战斗机的识别率达到99%以上,定位速度达到每帧0.25 s。 展开更多
关键词 红外图像 空空导弹 末端识别 Zynq Vivado HLS
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Structural basis for the recognition of RNA polymerase II C-terminal domain by CREPT and p15RS 被引量:2
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作者 MEI KunRong JIN Zhe +3 位作者 REN FangLi WANG YinYing CHANG ZhiJie WANG XinQuan 《Science China(Life Sciences)》 SCIE CAS 2014年第1期97-106,共10页
CREPT and p15RS are two recently identified homologous proteins that regulate cell proliferation in an opposite way and are closely related to human cancer development. Both CREPT and pl5RS consist of an N-terminal RP... CREPT and p15RS are two recently identified homologous proteins that regulate cell proliferation in an opposite way and are closely related to human cancer development. Both CREPT and pl5RS consist of an N-terminal RPR domain and a C-terminal domain with high sequence homology. The transcription enhancement by CREPT is attributed to its interaction with RNA polymerase II (Pol II). Here we provide biochemical and structural evidence to support and extend this molecular mechanism. Through fluorescence polarization analysis, we show that the RPR domains of CREPT and pl5RS (CREPT-RPR and pI5RS-RPR) bind to different Pol II C-terminal domain (CTD) phosphoisoforms with similar affinity and specificity. We also determined the crystal structure of pl5RS-RPR. Sequence and structural comparisons with RPR domain of Rttl03, a homolog of CREPT and p l5RS in yeast, reveal structural basis for the similar binding profile of CREPT-RPR and p 15RS-RPR with Pol II CTD. We also determined the crystal structure of the C-terminal domain of CREPT (CREPT-CTD), which is a long rod-like dimer and each monomer adopts a coiled-coil structure. We propose that dimerization through the C-terminal domain enhances the binding strength between CREPT or pl5RS with Pol II by increasing binding avidity. Our results collectively reveal the respective roles of N-terminal RPR domain and C-terminal domain of CREPT and pl5RS in recognizing RNA Pol II. 展开更多
关键词 CREPT p15RS STRUCTURE RPR domain C-terminal domain RNA Pol II
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