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        《深空探測(cè)學(xué)報(bào)》第5卷(2018年)總目次

        2018-03-22 13:12:07
        深空探測(cè)學(xué)報(bào) 2018年6期
        關(guān)鍵詞:系統(tǒng)設(shè)計(jì)研究

        特約稿

        深遠(yuǎn)空連續(xù)推進(jìn)動(dòng)力與施圖林格解的解析……………………………………………………………欒恩杰(4-301)

        專 題

        月面馮·卡門撞擊坑的著陸選址和科學(xué)探測(cè)目標(biāo)淺析…………………………孟治國(guó),李翠,平勁松,等(1-3)

        基于LOLA數(shù)據(jù)的馮·卡門撞擊坑太陽(yáng)輻射研究……………………………張吉棟,孟治國(guó),朱蘊(yùn)哲,等(1-12)

        基于“ 嫦娥2號(hào)”CELMS數(shù)據(jù)的馮·卡門撞擊坑微波輻射特性……………胡碩,孟治國(guó),朱蘊(yùn)哲,等(1-20)

        基于場(chǎng)理論的“ 嫦娥4號(hào)”著陸區(qū)亮溫時(shí)空分布特征研究………………………連懿,何龍,孟治國(guó),等(1-27)

        藏匿在馮·卡門坑南部下方的月球質(zhì)量瘤………………………………………平勁松,黃倩,鄢建國(guó),等(1-34)

        “ 嫦娥4號(hào)”月球背面著陸區(qū)月殼及深部結(jié)構(gòu)特征…………………………黃倩,王太茂,趙健楠,等(1-41)

        基于影像數(shù)據(jù)的馮·卡門撞擊坑形貌分析………………………………………………………鄭晨,姚鴻泰(1-50)

        基于LOLA數(shù)據(jù)的馮·卡門地區(qū)地形特征分析…………………………………王慧慧,孟治國(guó),李翠,等(1-57)

        馮·卡門撞擊坑物質(zhì)成分研究…………………………………………………………張迅與,徐天奕,李翠(1-66)

        基于多因子綜合評(píng)估的月球探測(cè)軟著陸區(qū)域及最佳巡航路線分析……………………………………………………………牟乃夏,李潔,孟治國(guó),等(1-71)

        中國(guó)深空測(cè)控系統(tǒng)建設(shè)與技術(shù)發(fā)展……………………………………………董光亮,李海濤,郝萬宏,等(2-99)

        一種新型多普勒噪聲抑制技術(shù)對(duì)BepiColombo任務(wù)無線電科學(xué)實(shí)驗(yàn)的性能提升……………………………MARIANI J M,RUSCIO DI A,NOTARO V,等(2-115)

        基于波束分離技術(shù)的空間時(shí)延補(bǔ)償方法研究…………………………………………………………段玉虎(2-124)

        空間通信與BATS碼:天成之合………………………………………………楊偉豪,董光亮,朱鍵,等(2-129)

        深空微波測(cè)距測(cè)速現(xiàn)狀及發(fā)展建議…………………………………………………………徐茂格,施為華(2-140)

        激光測(cè)距通信一體化技術(shù)研究及深空應(yīng)用探索……………………………劉向南,李英飛,向程勇,等(2-147)

        對(duì)一種月球與火星探測(cè)多程微波測(cè)量鏈路定軌定位的數(shù)值模擬初步分析…………………………………………………………………楊軒,鄢建國(guó),葉茂,等(2-154)

        一種低信噪比條件下的深空探測(cè)載波捕獲算法…………………………………杜檢來,方堃,劉剛,等(2-162)

        分布式天線組陣優(yōu)選設(shè)計(jì)……………………………………………………………詹亞鋒,段超偉,孔謙(2-168)

        一種X頻段50 kW高功放的設(shè)計(jì)…………………………………………李新勝,劉海旭,韓來輝,等(2-175)

        光纖射頻穩(wěn)相傳輸技術(shù)試驗(yàn)研究……………………………………………劉友永,馬文起,陳少卿,等(2-182)

        脈沖星候選樣本分類方法綜述………………………………………………王元超,鄭建華,潘之辰,等(3-203)

        面向編隊(duì)飛行的天文多普勒差分/脈沖星組合導(dǎo)航……………………………喻子原,劉勁,寧曉琳,等(3-212)

        脈沖星X射線數(shù)據(jù)處理與分析………………………………………………………………楊成偉,鄭建華(3-219)

        基于FPGA + DSP的X射線脈沖星導(dǎo)航原理樣機(jī)的設(shè)計(jì)與實(shí)現(xiàn)……………………李艷麗,鄭建華,高東(3-226)

        脈沖星導(dǎo)航的天體測(cè)量考慮………………………………………………………李亮,王廣利,郭麗,等(3-235)

        脈沖星導(dǎo)航試驗(yàn)衛(wèi)星觀測(cè)數(shù)據(jù)處理與分析………………………………易韋韋,偶曉娟,許靜文,等(3-241)

        深空探測(cè)推進(jìn)技術(shù)發(fā)展趨勢(shì)……………………………………………………………李永,丁鳳林,周成(4-323)

        等離子體磁流體發(fā)電研究進(jìn)展…………………………………………………黃護(hù)林,李林永,李來,等(4-331)

        小行星探測(cè)電推進(jìn)系統(tǒng)方案研究………………………………………………李宗良,高俊,劉國(guó)西,等(4-347)

        磁屏蔽霍爾推力器技術(shù)的發(fā)展與展望………………………………………徐亞男,康小錄,余水淋,等(4-354)

        空間核電推進(jìn)系統(tǒng)比質(zhì)量?jī)?yōu)化建模及其木星探測(cè)應(yīng)用分析…………………周成,吳延龍,魏延明,等(4-361)

        大功率軌道轉(zhuǎn)移航天器全電推進(jìn)系統(tǒng)研究………………………………………湯章陽(yáng),周成,韓冬,等(4-367)

        我國(guó)首次火星探測(cè)任務(wù)……………………………………………………………耿言,周繼時(shí),李莎,等(5-399)

        中國(guó)首次火星探測(cè)任務(wù)科學(xué)目標(biāo)與有效載荷配置……………………………李春來,劉建軍,耿言,等(5-406)

        中國(guó)首次火星探測(cè)任務(wù)地面應(yīng)用系統(tǒng)……………………………………………劉建軍,蘇彥,左維,等(5-414)

        火星大氣進(jìn)入下降著陸段測(cè)控通信關(guān)鍵技術(shù)研究…………………………郝萬宏,董光亮,李海濤,等(5-426)

        火星探測(cè)VLBI測(cè)定軌技術(shù)………………………………………………………………………………劉慶會(huì)(5-435)

        中國(guó)首次火星探測(cè)任務(wù)有效載荷地面綜合測(cè)試系統(tǒng)設(shè)計(jì)……………………楊甲森,劉明潔,陳托,等(5-442)

        深空探測(cè)中的激光誘導(dǎo)擊穿光譜探測(cè)儀………………………………………舒嶸,徐衛(wèi)明,付中梁,等(5-450)

        火星探測(cè)高分辨率可見光相機(jī)光學(xué)系統(tǒng)設(shè)計(jì)………………………………孟慶宇,付中梁,董吉洪,等(5-458)

        火星多光譜相機(jī)的地面幾何標(biāo)定研究…………………………………………關(guān)昭,喬衛(wèi)東,楊建峰,等(5-465)

        火星車磁通門磁強(qiáng)計(jì)技術(shù)………………………………………………………趙琳,杜愛民,喬?hào)|海,等(5-472)

        環(huán)繞器次表層探測(cè)雷達(dá)實(shí)時(shí)處理技術(shù)…………………………………………………………范明意,呂鵬(5-478)

        火星探測(cè)器器箭分離沖擊響應(yīng)影響分析與評(píng)價(jià)………………………………申智春,林小艷,程坤,等(5-483)

        月球中繼通信衛(wèi)星系統(tǒng)發(fā)展綜述與展望……………………………………………………張立華,吳偉仁(6-497)

        “ 嫦娥4號(hào)”中繼星中繼通信方案研究與分析………………………………徐進(jìn),張愛兵,賀一峰,等(6-506)

        “ 嫦娥4號(hào)”中繼星任務(wù)分析與系統(tǒng)設(shè)計(jì)………………………………………張立華,熊亮,王鵬,等(6-515)

        “ 嫦娥4號(hào)”中繼星傘狀可展開天線設(shè)計(jì)與驗(yàn)證………………………………陳國(guó)輝,華岳,王波,等(6-524)

        “ 嫦娥4號(hào)”中繼星任務(wù)軌道確定問題初探……………………………………段建鋒,劉勇,李勰,等(6-531)

        深空測(cè)控網(wǎng)干涉測(cè)量系統(tǒng)在“鵲橋”任務(wù)中的應(yīng)用分析………………………王美,陳略,韓松濤,等(6-539)

        月球背面探測(cè)任務(wù)多目標(biāo)協(xié)同控制模式設(shè)計(jì)………………………………………彭德云,鄒雪梅,李亮(6-544)

        深空探測(cè)器大口徑天線指向在軌標(biāo)定方案………………………………………熊亮,王錦清,孫驥,等(6-554)

        論 文

        加拿大移動(dòng)服務(wù)系統(tǒng)地面遙操作模式綜述…………………………………………郭祥艷,劉傳凱,王曉雪(1-78)

        基于SiP技術(shù)的單片集成數(shù)字式太陽(yáng)敏感器………………………………………吳迪,陳紓,陳龍江,等(1-85)

        一種基于恒星分布的星敏感器導(dǎo)航星庫(kù)制作方法………………………………葉志龍,孫朔冬,陳紓,等(1-90)

        航天器用可變發(fā)射率熱控器件的研究進(jìn)展…………………………………………金海波,凌晨,李靜波(2-188)

        小天體表面采樣技術(shù)綜述……………………………………………………劉德赟,賴小明,王露斯,等(3-246)

        基于約束可滿足的深空探測(cè)任務(wù)規(guī)劃方法研究………………………………………姜嘯,徐瑞,朱圣英(3-262)

        基于高斯偽譜法的火星表面上升燃耗最優(yōu)軌跡設(shè)計(jì)………………………柯森锎,李爽,肖東東,等(3-269)

        雙星系統(tǒng)L1點(diǎn)懸停探測(cè)控制器設(shè)計(jì)與仿真……………………………………張永隆,劉華纓,曾祥遠(yuǎn)(3-276)

        月面著陸起飛試驗(yàn)技術(shù)研究……………………………………………………任德鵬,李青,劉振春,等(3-281)

        粉末材料的變溫介電常數(shù)測(cè)量……………………………………………………高博,陳楠,周舒,等(3-286)

        熱力學(xué)排氣系統(tǒng)壓力控制地面原理實(shí)驗(yàn)研究…………………………………………………劉欣,張曉嶼(3-292)

        月球基地建設(shè)方案設(shè)想…………………………………………………………………袁勇,趙晨,胡震宇(4-374)

        基于中國(guó)深空站的木星探測(cè)器開環(huán)測(cè)量試驗(yàn)…………………………………陳略,平勁松,李文瀟,等(4-382)

        有大氣行星懸飛探測(cè)初步設(shè)想與可行性探討………………………………邢卓異,馬玉偉,朱舜杰,等(4-387)

        一種通用的航天器在軌分離設(shè)計(jì)方法………………………………………盛瑞卿,陳春亮,邢卓異,等(4-392)

        月球阿波羅盆地區(qū)域月殼結(jié)構(gòu)及光譜特征………………………郭弟均,劉建忠,HEAD W.James,等(5-488)

        月球基地能源系統(tǒng)初步研究…………………………………………………………任德鵬,李青,許映喬(6-561)

        基于擴(kuò)展?fàn)顟B(tài)深空探測(cè)器任務(wù)規(guī)劃方法…………………………………………金顥,徐瑞,崔平遠(yuǎn),等(6-569)

        空間計(jì)算機(jī)冗余架構(gòu)可靠性分析比較……………………………………………………………李杰,沈銳(6-575)

        載人深空探測(cè)活動(dòng)中的尿液處理回收技術(shù)分析……………………………………朱國(guó)榮,謝倍珍,劉紅(6-582)

        Journal of Deep Space Exploration(Vol.5)

        Special Coutribution

        Continuous Propulsion Dynamics in very Far Space Exploration and Analysis of the Stuhlinger’s Solution…………………………………………………………………LUAN Enjie(4-301)

        Topic

        Analysis About Landing Site Selection and Prospective Scientific Objectives of the Von Kármán Crater in Moon Farside…………………MENG Zhiguo, LI Cui, PING Jinsong,et al(1-3)

        Research on Solar Radiation of Von Kármán Crater Using LOLA Data……………………………………………………ZHANG Jidong, MENG Zhiguo, ZHU Yunzhe,et al(1-12)

        Microwave Emission Features of Von Kármán Crater Revealed by Chang’E-2 CELMS Data………………………HU Shuo, MENG Zhiguo, ZHU Yunzhe,et al(1-20)

        The Research of Temporal and Spatial Distribution of Microwave Brightness Temperature in Chang’E-4 Landing Area Based on Field Theory……LIAN Yi, HE Long, MENG Zhiguo,et al(1-27)

        A Hidden Lunar Mascon Under the South Part of Von Kármán Crater………………………………………………PING Jinsong, HUANG Qian, YAN Jianguo,et al(1-34)

        Crustal and Subsurface Structures of Chang’E-4 Lunar Farside Landing-Site…………………………………………………HUANG Qian, WANG Taimao, ZHAO Jiannan,et al(1-41)

        Topography Analysis of the Von Kármán Crater Based on the Observed Images……………………………………………………………………………ZHENG Chen, YAO Hongtai(1-50)

        Topography Characteristics Analysis of Von Kármán Crater Using LOLA Data……………………………………………………………WANG Huihui, MENG Zhiguo, LI Cui,et al(1-57)

        Compositional Studies of the Von Kármán Crater…………………ZHANG Xunyu, XU Tianyi, LI Cui(1-66)

        Soft Landing Area and the Best Cruise Route of Lunar Exploration Based on Multi - Factor Analysis………………………………………………………………MOU Naixia, LI Jie, MENG Zhiguo,et al(1-71)

        Development and Future of China’s Deep Space TT&C System………………………………DONG Guangliang, LI Haitao, HAO Wanhong, et al(2-99)

        Improvement of BepiColombo’s Radio Science Experiment Through an Innovative Doppler Noise Reduction Technique…………………MARIANI J M, RUSCIO Di A, NOTARO V, et al(2-115)

        Research on Space Time Delay Compensation Method Based on Beam Squint Technique……DUAN Yuhu(2-124)

        Space Communication and BATS Codes: A Marriage Made in Heaven……………………………………Raymond W.YEUNG, DONG Guangliang, ZHU Jian, et al(2-129)

        Development of Deep Space Radio Ranging and Velocity Measurement Technology………………………………………………………………………………XU Maoge, SHI Weihua(2-140)

        Study on Integrated Technique of Laser Ranging and Communication and Its Applications in Deep Space………………LIU Xiangnan, LI Yingfei, XIANG Chengyong, et al(2-147)

        Preliminary Numerical Analysis of Precise Orbit Determination for a Multi-Way Microwave Measurement Mode in the Lunar and Mars Missions………………YANG Xuan, YAN Jianguo, YE Mao, et al(2-154)

        A Deep Space Exploration Carrier Capture Algorithm with Low SNR DU Jianlai, FANG Kun, LIU Gang, et al(2-162)

        Optimal Design for Distributed Antenna Arraying System……ZHAN Yafeng, DUAN Chaowei, KONG Qian(2-168)

        Design of A 50 kW X-Band High Power Amplifer………LI Xinsheng, LIU Haixu, HAN Laihui, et al(2-175)

        Experimental Research of Phase-Stabilized Transfer of RF Signal over Optical Fiber……………………………………………………LIU Youyong, MA Wenqi, CHEN Shaoqing,et al(2-182)

        An Overview of Pulsar Candidate Classification Methods………………………………………WANG Yuanchao, ZHENG Jianhua, PAN Zhichen, et al(3-203)

        Celestial Doppler Difference/Pulsar for Formation Flying and Its Integrated Navigation……………………………YU Ziyuan, LIU Jin, NING Xiaolin, et al(3-212)

        X-Ray Pulsar Data Processing and Analysis……………………YANG Chengwei, ZHENG Jianhua(3-219)

        Design and Implementation of X-Ray Pulsar Navigation Prototype Based on FPGA + DSP……………………………………LI Yanli, ZHENG Jianhua, GAO Dong(3-226)

        Some Discussion on X-Ray Pulsar Navigation in Astrometry………LI Liang, WANG Guangli, GUO Li, et al(3-235)

        Processing and Analysis of X-Ray Pulsar-Based Navigation Test Satellite Observation Data………………………YI Weiwei, OU Xiaojuan, XU Jingwen, et al(3-241)

        Development of Deep Space Propulsion Technology………………LI Yong, DING Fenglin, ZHOU Cheng(4-323)

        Research Progress of Plasma Magnetic Fluid Power Generation…HUANG Hulin, LI Linyong, LI lai, et al(4-331)

        Study on the Electric Propulsion System for Asteroid Detection…LI Zongliang, GAO Jun, LIU Guoxi, et al(4-347)

        Development and Prospect of Magnetically Shielded Hall Thruster XU Yanan, KANG Xiaolu, YU Shuilin(4-354)

        Specific Mass Optimization Modeling of Space Nuclear Electric Propulsion System for Jupiter Exploration Mission……………………ZHOU Cheng, WU Yanlong, WEI Yanming, et al(4-361)

        Study on High Power All-Electric Propulsion System for Spacecraft Orbit Transfer……………………TANG Zhangyang, ZHOU Cheng, HAN Dong, et al(4-367)

        A Brief Introduction of the First Mars Exploration Mission in China GENG Yan, ZHOU Jishi, LI Sha, et al(5-399)

        Scientific Objectives and Payload Configuration of China’s First Mars Exploration Mission……………………………………LI Chunlai, LIU Jianjun, GENG Yan, et al(5-406)

        Ground Research and Application System of China’s First Mars Exploration Mission……………………………………LIU Jianjun, SU Yan,ZUO Wei, et al(5-414)

        Key Technologies for Communications in Mars Entry Descent and Landing…………………………………HAO Wanhong, DONG Guangliang, LI Haitao, et al(5-426)

        VLBI Orbit Determination Technology for Mars Exploration……………………………………LIU Qinghui(5-435)

        Design of Payload Integrated Testing System for First Mars Exploration Mission in China…………………………YANG Jiasen, LIU Mingjie, CHEN Tuo, et al(5-442)

        Laser Induced Breakdown Spectroscopy Detector in Deep Space Exploration…………………………………SHU Rong, XU Weiming, FU Zhongliang, et al(5-450)

        The Optical System Design of the High-Resolution Visible Spectral Camera for China Mars Exploration…………MENG Qingyu, FU Zhongliang, DONG Jihong, et al(5-458)

        Ground Geometric Calibration of Mars Multispectral Camera…………………………GUAN Zhao, QIAO Weidong, YANG Jianfeng, et al(5-465)

        The ROVER Fluxgate Magnetometer………………………ZHAO Lin, DU Aimin, QIAO Donghai, et al(5-472)

        Real-Time Processing for a Subsurface Sounding Radar on Planet Orbiter………………………………………………………………FAN Mingyi,LV Peng(5-478)

        The Shock Response Suppression and Analysis of Mars Probe and Rocket Separation………………………………SHEN Zhichun, LIN Xiaoyan, CHENG Kun, et al(5-483)

        The Development Overview and Prospect of Lunar Relay Communication Satellite System…………………………………………………………ZHANG Lihua, WU Weiren(6-497)

        Research and Analysis for Relay Communication System of Chang’e-4 Lunar Relay Satellite………………………………………XU Jin, ZHANG Aibing, HE Yifeng, et al(6-506)

        The Mission Analysis and System Design of Chang’e-4 Lunar Relay Communication Satellite…………………………ZHANG Lihua, XIONG liang, WANG Peng, et al(6-515)

        Design and Verification for Umbrella-Type Deployable Antenna of Chang’e-4 Relay Satellite…………………………………………CHEN Guohui, HUA Yue, WANG Bo, et al(6-524)

        Preliminary Study on the Orbit Determinationof Chang’e-4 Relay Satellite Mission……………………………………………DUAN Jianfeng, LIU Yong, LI Xie, et al(6-531)

        Application of Deep Space VLBI System in Queqiao Mission…WANG Mei, CHEN Lue, HAN Songtao, et al(6-539)

        Design of Multiple Lunar Probe Collaborative Control Mode for Lunar Farside Exploration Missio……………………………………………PENG Deyun, ZOU Xuemei, LI Liang(6-544)

        The Calibration of Deep Space Exploration Spacecraft Antenna Beam Direction…………………………………………XIONG Liang, WANG Jinqing, SU Ji, et al(6-554)

        Article

        A Survey on Teleoperation of Canada’s Mobile Servicing System…………………………………………………………GUO Xiangyan, LIU Chuankai, WANG Xiaoxue(1-78)

        On Chip Digital Sun Sensor Based on SiP Technology…………………WU Di, CHEN Shu, CHEN Longjiang(1-85)

        Establishment of a Navigation Star Database Based on Star Distribution…………………………………………………………YE Zhilong, SUN Shuodong, CHEN Shu,et al(1-90)

        Development of Variable-Emittance Thermal Control Technology JIN Haibo, LING Chen, LI Jingbo(2-188)

        Summary of Sampling Technology for Small Celestial Bodies……………………………LIU Deyun, LAI Xiaoming, WANG Lusi, et al(3-246)

        Research on Task Planning Problems for Deep Space Exploration Based on Constraint Satisfaction…………………………………JIANG Xiao, XU Rui, ZHU Shengying(3-262)

        Minimum-Fuel Mars Ascent Trajectory Design Based on Gauss Peseudospectral Method…………………KE Senkai, LI Shuang, XIAO Dongdong, et al(3-269)

        Controller Design and Simulation of Hovering Flight Around L1in a Binary Asteroid System………………ZHANG Yonglong, LIU Huaying, ZENG Xiangyuan(3-276)

        Research on the Ground Test Technology of Lunar Landing and Ascending…………………………………REN Depeng, LI Qing, LIU Zhenchun,et al(3-281)

        Measurement of Temperature Dependent Dielectric Constant of Powder Materials…………………………………………GAO Bo, CHEN Nan, ZHOU Shu,et al(3-286)

        Ground Experimental Pressure Control Investigation of Thermodynamic Vent System……………………………………………LIU Xin, ZHANG Xiaoyu(3-292)

        Prospect of Lunar Base Construction Scheme……………………YUAN Yong, ZHAO Chen, HU Zhenyu(4-374)

        Juno Radio Open Loop Measurement Experiment based on China’s Deep Space Stations……………………………………CHEN Lue, PING Jinsong, LI Wenxiao, et al(4-382)

        A Preliminary Discussion on the Proposal and Feasibility of Atmospheric Planet Suspension Exploration………XING Zhuoyi, MA Yuwei, ZHU Shunjie, et al(4-387)

        A Universal Design Method for Spacecraft On-Orbit Separation……………………SHENG Ruiqing, CHEN Chunliang, XING Zhuoyi, et al(4-392)

        Crustal Structure and Spectral Features of Lunar Apollo Basin Region…………………………GUO Dijun, LIU Jianzhong, HEAD W.James, et al(5-488)

        Preliminary Research on the Lunar Base Energy System……………REN Depeng, LI Qing, XU Yingqiao(6-561)

        Mission Planning Approach based on Extensible States for Deep Space Probes…………………………………………JIN Hao, XU Rui, CUI Pingyuasn, et al(6-569)

        Analysis and Comparison of Reliability of Computer Redundancy Architecture in Space…LI Jie, SHEN Rui(6-575)

        Analysis of Urine Treatment and Recovery Technology Used in Manned Deep Space Exploration……………………………………ZHU Guorong, XIE Beizhen, LIU Hong(6-582)

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