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滚珠丝杆导程谩差动态检测仪及其系统误差修正研究 被引量:4
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作者 肖沙里 陈骥 +1 位作者 杨世雄 余红 《光学精密工程》 EI CAS CSCD 1996年第2期103-108,共6页
采用误差修正技术,提高仪器检测精度,是精密工程中重要的技术之一。本文介绍一种用微机控制和误差修正补偿技术的精密丝杆导程动态检测仪,对这一技术的工作原理、系统结构、接口电路。误差分析与实验结果进行了研究。
关键词 导程检测 动态测量 误差修正 丝杆 滚珠丝杆
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A first comprehensive evaluation of China's GNSS-R airborne campaign:part Ⅱ—river remote sensing 被引量:3
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作者 Weihua Bai Junming Xia +10 位作者 Wei Wan Limin Zhao Yueqiang Sun Xiangguang Meng Congliang Liu Hua Chen Qifei Du Dongwei Wang Danyang Zhao Xianyi Wang Cheng Cheng 《Science Bulletin》 SCIE EI CAS CSCD 2015年第17期1527-1534,共8页
The Global Navigation Satellite System Reflectometry(GNSS-R) has been proven to be a powerful technique for retrieving geophysical parameters of ocean and land. Airborne GNSS-R is an important experimental platform, b... The Global Navigation Satellite System Reflectometry(GNSS-R) has been proven to be a powerful technique for retrieving geophysical parameters of ocean and land. Airborne GNSS-R is an important experimental platform, because it is not only needed as validation for spaceborne application, but also possesses the advantages to be capable of remote sensing of small and medium scale targets, such as rivers and lakes. This paper presents an overview of China's airborne GNSS-R campaign conducted on May 30, 2014, in Henan. The campaign has two objectives, i.e.:(1) to examine the capability of a GNSS-R payload developed by National Space Science Center,Chinese Academy of Sciences(NSSC, CAS) for airborneobservations and(2) to study the algorithms for soil moisture and river remote sensing, including altimetry and flow velocity measurement. A previous paper has presented results of soil moisture retrieval as part I, and in this paper,initial results of the Yellow River remote sensing are presented as part II. This paper presents the river altimetry results and explores a new potential application of GNSS-R technology, which is used to detect the flow velocity of the river. The river surface height results observed by code delay altimetry method were consistent with the height results of GPS dual-frequency differential positioning altimetry. The GNSS-R altimetry results showed that decimeter level heights were achieved in 1-min sliding average. Comparing with in situ measurements, the GNSSR flow velocity result was reasonable; the error was about0.027 m/s, which indicated the validity and feasibility of using GNSS-R technique to detect river flow velocity. 展开更多
关键词 GNSS-R River height Airborne campaign Flow velocity
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