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基于小孔成像技术的中能电子成像谱仪及其空间观测结果 被引量:1
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作者 邹鸿 宗秋刚 +12 位作者 陈鸿飞 邹积清 陈江 施伟红 于向前 仲维英 王永福 叶雨光 贾向红 许峰 邵思霈 王博 郝晓云 《航天器环境工程》 2018年第4期307-314,共8页
中能电子测量对空间辐射环境的理论研究和空间航天器的防护设计具有重要意义。北京大学研制的中能电子成像谱仪(BD-IES)利用小孔成像技术实现多方向中能电子的能谱测量。地面标定试验结果表明,BD-IES具有良好的能量线性度和较小的系统噪... 中能电子测量对空间辐射环境的理论研究和空间航天器的防护设计具有重要意义。北京大学研制的中能电子成像谱仪(BD-IES)利用小孔成像技术实现多方向中能电子的能谱测量。地面标定试验结果表明,BD-IES具有良好的能量线性度和较小的系统噪声,能够有效实现对中能电子的能谱测量。该仪器已成功应用在我国导航卫星上。最新测量结果表明BD-IES对中能电子的测量是成功的,其结果对于研究如亚暴注入、波-粒子相互作用等空间物理热点问题具有重要意义。BD-IES未来将被应用到"风云"等空间环境探测平台上。 展开更多
关键词 中能电子成像谱仪 小孔成像技术 导航卫星 亚暴粒子注入 波–粒子相互作用
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存储器空间单粒子翻转率预测 被引量:1
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作者 陈傲 陈鸿飞 +6 位作者 向宏文 于向前 施伟红 邵思霈 邹鸿 邹积清 仲维英 《空间科学学报》 CAS CSCD 北大核心 2019年第4期460-468,共9页
根据SSO上两卫星搭载的三个PREM测得的空间中重离子LET谱,以及利用Weibull分布模型拟合出的不同器件的σ-LET曲线,对由空间中重离子引起的单粒子翻转的翻转率进行了预测估算.将预测值与实测值对比,分析了影响翻转率的因素.对于相同器件... 根据SSO上两卫星搭载的三个PREM测得的空间中重离子LET谱,以及利用Weibull分布模型拟合出的不同器件的σ-LET曲线,对由空间中重离子引起的单粒子翻转的翻转率进行了预测估算.将预测值与实测值对比,分析了影响翻转率的因素.对于相同器件,翻转率与设备在卫星上的位置和朝向有关.位于卫星尾部面向后退(-x)方向的翻转率高于位于底部对地(+z)方向的器件翻转率;太阳活动水平高的时间段翻转率高于太阳活动水平低的时间段.探测器接收的重离子微分LET谱的强度和硬度决定了器件的单粒子翻转率.在高于翻转LET阈值时,LET谱的强度越高,其硬度和翻转率越大.不同器件的翻转率也不相同. 展开更多
关键词 单粒子翻转率预测 单粒子效应 重离子LET谱
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脉冲星MCP探测器设计与在轨验证 被引量:4
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作者 徐延庭 宫超林 +5 位作者 胡慧君 张玉兔 邵思霈 史钰峰 宋娟 宋晓林 《航天器工程》 CSCD 北大核心 2018年第5期114-119,共6页
X射线脉冲星导航技术为航天器真正意义上的自主导航提供了一种途径。针对该技术在轨验证问题,提出了基于微通道板(Micro-Channel Plate,MCP)的X射线脉冲星导航探测器系统的设计。系统主要由光子探头、高压配电器和综合控制器组成。光子... X射线脉冲星导航技术为航天器真正意义上的自主导航提供了一种途径。针对该技术在轨验证问题,提出了基于微通道板(Micro-Channel Plate,MCP)的X射线脉冲星导航探测器系统的设计。系统主要由光子探头、高压配电器和综合控制器组成。光子探头采用MCP作为核心功能部件,用于X射线光子信号的接收和倍增放大。高压配电器为光子探头中MCP提供工作电压。综合控制器作为探测器的管理中心,对探测器进行综合管理。MCP探测器由硬X射线调制望远镜(HXMT)卫星搭载。通过在轨测试,成功地获取了Crab脉冲星辐射脉冲轮廓,为X射线脉冲星导航技术的研究积累了经验。 展开更多
关键词 硬X射线调制望远镜卫星 脉冲星导航 X射线探测器 微通道板
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Imaging energetic electron spectrometer onboard a Chinese navigation satellite in the inclined GEO orbit 被引量:5
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作者 ZOU Hong YE YuGuang +16 位作者 ZONG QiuGang CHEN HongFei ZOU JiQing CHEN Jiang SHI WeiHong YU XiangQian ZHONG WeiYing WANG YongFu ZHOU XuZhi HAO YiXin CHEN XingRan JIA XiangHong XU Feng shao sipei WANG Bo HAO XiaoYun ZHANG XiaoXin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第12期1845-1865,共21页
The energetic electron measurement is one of the most important issues to understand dynamics in space physics and the applications for space weather. In this study, the principle and functional components of the imag... The energetic electron measurement is one of the most important issues to understand dynamics in space physics and the applications for space weather. In this study, the principle and functional components of the imaging energetic electron spectrometer(IES) onboard a Chinese navigation satellite in the inclined GEO orbit(IGSO) was introduced. The IES instrument is developed by the team in Peking University(BeiDa), thus it is named as BD-IES. Based on the pin-hole technique, the instrument can measure 50–600 keV electrons incident from 9 directions over a range of 180° in polar angle. With pulse height analysis(PHA), the spectrum can be determined for each direction. The energy and angular calibrations were performed, which show the good energy and angular characteristics of BD-IES. Monte Carlo simulations show that the anti-proton design of BDIES can effectively decrease the proton contamination on the electron measurements in the inclined GEO orbit. The primary results of BD-IES verify the successful design of this instrument. 展开更多
关键词 IMAGING ENERGETIC electron SPECTROMETER pin-hole IMAGING system IGSO satellite
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Direct measurement of the linear energy transfer of ions in silicon for space application 被引量:2
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作者 CHEN HongFei YU XiangQian +7 位作者 shao sipei SHI WeiHong CUI ZhanGuo XIANG HongWen HAO ZhiHua ZOU JiQing ZHONG WeiYing ZOU Hong 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第1期128-134,共7页
The single event effect(SEE) is an important consideration in electronic devices used in space environments because it can lead to spacecraft anomalies and failures. The linear energy transfer(LET) of ions is commonly... The single event effect(SEE) is an important consideration in electronic devices used in space environments because it can lead to spacecraft anomalies and failures. The linear energy transfer(LET) of ions is commonly investigated in studies of SEE. The use of a thin detector is an economical way of directly measuring the LET in space. An LET telescope consists of a thin detector as the front detector(D1), along with a back detector that indicates whether D1 was penetrated. The particle radiation effect monitor(PREM) introduced in this paper is designed to categorize the LET into four bins of 0.2–0.4, 0.4–1.0, 1.0–2.0 and 2.0–20 Me V·cm^2/mg, and one integral bin of LET>20 Me V·cm^2/mg. After calibration with heavy ions and Geant4 analysis, the LET boundaries of the first four bins are determined to be 0.236, 0.479, 1.196, 2.254, and 17.551 Me V·cm^2/mg, whereas that of the integral bin is determined to be LET>14.790 Me V·cm^2/mg. The acceptances are calculated by Geant4 analysis as 0.452, 0.451, 0.476, 0.446, and 1.334, respectively. The LET accuracy is shown to depend on the thickness of D1; as D1 is made thinner, the accuracy of the measured values increases. 展开更多
关键词 空间应用 直接测量 能量转移 重离子 线性 单粒子效应 GEANT4 探测器
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A low-energy ion spectrometer with half-space entrance for three-axis stabilized spacecraft 被引量:1
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作者 HU RenXiang SHAN Xu +27 位作者 YUAN GuangYuan WANG ShuWen ZHANG WeiHang QI Wei CAO Zhe LI YiRen CHEN ManMing YANG XiaoPing WANG Bo shao sipei LI Feng ZHONG XiaoQing FAN Dan HAO XinJun FENG ChangQing SU ZhenPeng SHEN ChengLong LI Xin DAI GuYue QIU BingLin PAN ZongHao LIU Kai XU ChunKai LIU ShuBin AN Qi ZHANG TieLong WANG YuMing CHEN XiangJun 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2019年第6期1015-1027,共13页
A low-energy ion spectrometer(LEIS) for use aboard three-axis stabilized spacecraft has been developed to measure ion energy per charge distribution in three-dimensional space with good energy-, angular-and temporal-r... A low-energy ion spectrometer(LEIS) for use aboard three-axis stabilized spacecraft has been developed to measure ion energy per charge distribution in three-dimensional space with good energy-, angular-and temporal-resolutions. For the standard top-hat electrostatic analyzer used widely in space plasma detection, three-axis stabilized spacecraft makes it difficult to obtain complete coverage of all possible ion arrival directions. We have designed angular scanning deflectors supplementing to a cylindrically symmetric top-hat electrostatic analyzer to provide a half-space field of view as 360°×90°(–45°–+45°), and fabricated the LEIS flight model for detecting magnetospheric ions in geosynchronous orbit. The performance of this payload has been evaluated in detail by a series of simulation and environmental tests, and the payload has also been calibrated through laboratory experiments using a low-energy ion source. The results show that capabilities of the LEIS payload are in accordance with the requirements of a magnetospheric mission. 展开更多
关键词 LOW-ENERGY ION SPECTROMETER three-dimensional measurement TOP-HAT electrostatic analyzer angular scanning DEFLECTORS simulation ground calibration
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