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好心人帮忙查一下SCI检索号,十分感谢
论文题目:Analysis of Space Target Detection Range Based on Space-borne Fisheye Imaging System in Deep Space Background
期刊名称:Infrared Physics and Technology
出版时间:2012年10月
--------------------------------------------和通常的检索信息不一样?------------------------------------
Analysis of space target detection range based on space-borne fisheye imaging system in deep space background&&
作者: Fuyu H Yongzhong W Xueju S Gang Li; Shihua Yan&&
来源出版物: Infrared Physics & Technology 卷: 55&&期: 6&&页: 475-80&&出版年: Nov. 2012&&DOI: 10.1016/j.infrared.& &
摘要: A space-borne photoelectric detection method is proposed based on the long wave infrared (LWIR, 8-14mum) fisheye imaging system (LWIRFIS) in this paper. The existing detection range equation is modified to calculate the maximum detection ranges of the LWIRFIS for space targets, and the influence of several key parameters is discussed in detail. The results show that, the system maximum detection range increases with the decrease of the half-field angle, the increase of the target area, the rise of the target temperature, the drop of the optics temperature, and the reduction of the system threshold signal-to-noise ratio. The detection range can be improved greatly through taking measures to optimize the latter two system parameters, such as setting up diaphragms, controlling the operating temperature, suppressing the noises by software or hardware methods. This work lays the foundation for the further research of space-borne super-wide field of view (FOV) imaging system, and provides a useful exploration for improving the capability of space situation awareness (SSA) of the space-borne observation platform. .&&
入藏号: &&
文献类型: Journal Paper&&
语种: English&&
处理类型: Practical&&
受控索引: object detection&&
非受控索引: space target dete space-borne fi d space-borne photoelect LWIRFIS; maxi system max half- threshold signal-to- space-borne super- FOV space space-borne observation platform&&
分类代码: B6135 Optical, image and vid C5260B Computer vision and image processing techniques&&
国际专利分类: G06T Image data processing or generation, in general&&
作者地址: Fuyu H Yongzhong W Xueju S Gang Li; Shihua Y Dept. of Opt. & Electron. Eng., Mech. Eng. Coll., Shijiazhuang, China.
出版商: Elsevier Science B.V., Netherlands&&
研究方向: C Computer Science (由 Thomson Reuters 提供)&&
参考文献数: 14&&
CODEN: IPTEEY&&
文献号: S)00060-6 Infrared Physics and Technology这个期刊就不是SCI期刊,哪来的检索啊 刚才弄错了 应该用Infrared Physics & Technology代替Infrared Physics and Technology进行检索,这个文章还没有进库 哥们,认真给你查了一下,确实查不到检索号,还没有入藏,再等等吧!你文章是Volume 55, Issue 6, November 2012, Pages 475–480,Web of science里只能检索到该杂志SEP 2012的文章。 : Originally posted by hhzjw at
--------------------------------------------和通常的检索信息不一样?------------------------------------
Analysis of space target detection range based on space-borne fisheye imaging system in deep&&... 这是从哪里查到的? : Originally posted by 李玉林 at
这是从哪里查到的?... ISI啊 Infrared Physics & Technology
Volume 55, Issue 6, November 2012, Pages 475–480 还没有被收录,再等等吧 Analysis of space target detection range based on space-borne fisheye imaging system in deep space background&&
作者: Huang, FY (Huang, Fuyu)1; Wang, YZ (Wang, Yongzhong)1; Shen, XJ (Shen, Xueju)1; Li, G (Li, Gang)1; Yan, SH (Yan, Shihua)1&&
来源出版物: INFRARED PHYSICS & TECHNOLOGY&&卷: 55& &期: 6& &页: 475-480& &出版年: NOV 2012&&
摘要: A space-borne photoelectric detection method is proposed based on the long wave infrared (LWIR, 8-14 mu m) fisheye imaging system (LWIRFIS) in this paper. The existing detection range equation is modified to calculate the maximum detection ranges of the LWIRFIS for space targets, and the influence of several key parameters is discussed in detail. The results show that, the system maximum detection range increases with the decrease of the half-field angle, the increase of the target area, the rise of the target temperature, the drop of the optics temperature, and the reduction of the system threshold signal-to-noise ratio. The detection range can be improved greatly through taking measures to optimize the latter two system parameters, such as setting up diaphragms, controlling the operating temperature, suppressing the noises by software or hardware methods. This work lays the foundation for the further research of space-borne super-wide field of view (FOV) imaging system, and provides a useful exploration for improving the capability of space situation awareness (SSA) of the space-borne observation platform. Crown Copyright (C) 2012 Published by Elsevier B.V. All rights reserved.&&
入藏号: CCC:005&&
文献类型: Article&&
语种: English&&
作者关键词: Space- LWIR; Fi Detection range&&
通讯作者地址: Huang, Fuyu (通讯作者),Mech Engn Coll, Dept Opt & Elect Engn, Shijiazhuang, Hebei, Peoples R China&&
1. Mech Engn Coll, Dept Opt & Elect Engn, Shijiazhuang, Hebei, Peoples R China&&
电子邮件地址: &&
出版商: ELSEVIER SCIENCE BV, PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS, &&
学科: APPLIED PHYSICS/CONDENSED MATTER/MATERIALS SCIENCE
OPTICS & ACOUSTICS
OPTICS & LASER RESEARCH & TECHNOLOGY&&
研究方向: Materials S P A Optics&&
CC 专辑/合集: Physical, Chemical & Earth Sciences (PCES); Engineering, Computing & Technology (ECT); Electronics & Telecommunications Collection (EC)&&
ISI 文献传递号: 036JZ&&
: Originally posted by 李玉林 at
哥们,认真给你查了一下,确实查不到检索号,还没有入藏,再等等吧!你文章是Volume 55, Issue 6, November 2012, Pages 475–480,Web of science里只能检索到该杂志SEP 2012的文章。 知道这个大约什么时候出来吗?年终岁尾,单位要一下检索号,呵呵 确证还没有被收录。完毕
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关于去美国的签证问题,求高人解答!!!时间非常紧迫,路过的好心人帮帮忙,万分感谢!
高人?如果等着9号去面试我现在说明一下我的情况,你知道该怎么快速办理去美国的签证么:我现在人在悉尼留学。可是我的面试时间就是6月9号(预约时间里最早的一天了)。我必须最晚要11号之前赶到美国?有没有什么特殊的申请渠道?万分感谢。我现在该怎么办呢,那真的就晚了,而且贴签时间也需要3-4天的时间,也就是6月9号要去美国,下个月
可以发一个传真给领馆,他们有让我提前面签,会和你联系,你也不要在传真里面提到多付钱这种事情,他们如果愿意考虑的话,提前安排一个日子给你面签的。我当时没有多付钱。我曾经在中国试过发传真这个做法,和他们说明情况
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其他3条回答
我晕...楼上两位都是哪年的情况了 不用传真 直接买张电话卡 给大使馆打电话 说明你的情况 请求加急签证 应该会有机会的 这个跟钱 是没有任何关系的
这个就真的没办法了, 不然你多给钱给大使馆,然后说明情况,看他给不给
跟大使馆把情况说约加急。。
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