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星载10m合成孔径相干成像望远镜和波前估计
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作者 吴疆 李道京 +2 位作者 崔岸婧 高敬涵 周凯 《光子学报》 EI CAS CSCD 北大核心 2023年第1期13-26,共14页
针对天文观测和深空探测需求,提出了星载10 m合成孔径相干成像望远镜概念和形式。给出了波长可调谐激光本振相干探测器形式,分析了大口径衍射薄膜镜的双波段实现方式和系统主要参数。提出了基于子镜结构的光学合成孔径相干成像算法,给... 针对天文观测和深空探测需求,提出了星载10 m合成孔径相干成像望远镜概念和形式。给出了波长可调谐激光本振相干探测器形式,分析了大口径衍射薄膜镜的双波段实现方式和系统主要参数。提出了基于子镜结构的光学合成孔径相干成像算法,给出了基于相位恢复的阵列形变误差波前估计仿真结果,由于多个子镜所接收复信号的成像处理在计算机软件中完成,相比传统望远镜,可降低对微调机构等硬件的精度要求。该望远镜在短波红外1.45~1.65μm光谱范围内的中心波长角分辨率为0.15μrad;在中波红外4.55~4.75μm光谱范围内的中心波长角分辨率为0.46μrad,其探测灵敏度在原理上是传统10 m口径望远镜的约2.8倍。 展开更多
关键词 光学合成孔径 相干成像 波前估计 衍射光学系统 红外光谱 天文观测
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Synchronization for the Environment of OFDM Cooperative Communications Based on Preamble Design and Phase Rotation 被引量:2
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作者 Wang Xue Qian Zhihong Fu Yu 《China Communications》 SCIE CSCD 2015年第9期122-132,共11页
Timing and carrier frequency offset estimation are critical issue for OFDM cooperative communications. In view of the complexity and high accuracy requirement, 1/2 and 1/4 pilot symbol cycle CAZAC sequence structures ... Timing and carrier frequency offset estimation are critical issue for OFDM cooperative communications. In view of the complexity and high accuracy requirement, 1/2 and 1/4 pilot symbol cycle CAZAC sequence structures are defined as the pilot frequency sequence. Estimation within one symbol cycle is carried out through averaging samples of two neighboring symbol cycles, after which the operation is expanded to all the symbol cycles in one band group. Taking multipath effect into account, the concept of phase rotation is proposed for a further step. Adjust the phase difference of estimated symbols by phase rotation, and cross estimation could be done. Meanwhile, timing scheme works within one cycle training sequence. Theoretical and simulation analysis indicate that CRLB does not only relate to estimation symbol length, but also be influenced by phase difference of estimation symbols seriously. In the condition that the length of estimation is fixed, the bigger the phase rotation angle is, the smaller the CRLB is. The complexity of proposed algorithm is less than full cycle average estimation method for almost 50%. Meanwhile, the estimation accuracy is approximate with the full cycle average estimation method as well. Timing scheme with the defined preamble structure is also proposed. Simulation proves its efficiency. 展开更多
关键词 OFDM frequency offset estimation preamble phase rotation
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