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    D

    Defense Systems (United States)

    企业
    218论文总数
    1,483引用总数

    论文量&引用量时间轴

    机构学者

    排序
    S. Zafran
    S. Zafran
    论文:4引用:0H-index:0
    d antoniuk
    d antoniuk
    论文:4引用:0H-index:0
    James B. Motley
    James B. Motley
    Defense Systems (United States)
    论文:4引用:0H-index:0
    Hans F. Meissinger
    Hans F. Meissinger
    TRW Systems Group, Redondo Beach, Calif
    论文:3引用:0H-index:0
    Pierre Minguet
    Pierre Minguet
    The Boeing Company
    论文:3引用:0H-index:0
    David D. Sworder
    David D. Sworder
    Department of Electrical and Computer Engineering, Jacobs School of Engineering, University of California, San Diego;California Institute for Telecommunications and Information Technology
    论文:3引用:0H-index:0
    John E. Boyd
    John E. Boyd
    Applied Defense Solutions (United States)
    论文:3引用:0H-index:0
    d k decker
    d k decker
    TRW Defense and Space Systems Group
    论文:3引用:0H-index:0
    j g torian
    j g torian
    论文:3引用:0H-index:0

    论文(218)

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    1Evaluation Mechanism Research Based on Improved Fuzzy Support Vector Machine
    Nan Liang, Zhongrui Huang, Jiaju Shi
    2025Sixth International Conference on Green Energy, Environment, and Sustainable Development (GEESD 2025...(2025)
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    2Development of a One-Handed UV Raman Sensor for Standoff Trace Detection
    Robert D. Waterbury,Thuyan Conghuyentonnu,Hunter Hardy, Alex Jacobson,Tim Molner,Ryan Robins,Marshall Scott

    Alakai Defense Systems has recently developed what we believe is the first one-handed UV Raman sensor for standoff trace detection of chemicals, which we refer to as Argos. Argos is the higher performance version of lower cost SAFR sensor, since it has increased range and trace detection capability. Since it is lightweight, Argos can also be deployed on Unmanned Ground Vehicles (UGV’s) or Unmanned Aerial Vehicles (UAVs). Data is presented showing how Argos detection performance is essentially the same as Alakai’s proven trace detection sensor PRIED, however it is ~70% smaller and lighter.

    2023Chemical, Biological, Radiological, Nuclear, and Explosives (CBRNE) Sensing XXIV(2023)引用:1
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    3Call for Papers: AESM Ethics, Values, Laws, and Standards for Responsible AI
    Wolfgang Koch
    2023IEEE Aerospace and Electronic Systems Magazine(2023)
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    41,1’-(Гексан-1,6-диил)бис(3-(((1r,4as,10ar)-7-изопропил-1,4a-диметил-1,2,3,4,4a,9,10,10a-октагидрофенантрен-1-ил)метил)мочевина, Проявляющая Ингибирующее Действие В Отношении Фермента Тирозил-Днк-фосфодиэстеразы 1 Человека И Увеличивающая Активность Темозоломида В Отношении Клеток Глиобластомы
    Ксения Сергеевна Ковалева, Ольга Сергеевна Олешко, Ольга Ивановна Яровая, Евгения Михайловна Мамонтова, Александра Леонидовна Захаренко,Ольга Дмитриевна Захарова, Сергей Владимирович Чересиз, Андрей Георгиевич Покровский, Ольга Ивановна Лаврик, Нариман Ф. Салахутдинов
    2020
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    5PIC S&T 2019 TOC
    Pavlo Galkin, Taylor Rodriguez Vance,Andrew Vance,Andriy Shtangret,Svitlana Shynkar,Taras Shyra,Myroslava Karaim, Sviatoslav Kavyn,Olexandr Pushkar,Yevhen Hrabovskyi,Yuliia Melnychuk,Maksym Slatvinskyi,
    2019
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    立即登录,查看全部 218 篇论文

    合作机构(45)

    美国国家航空航天局合作论文 14
    波音合作论文 4
    加利福尼亚大学圣地亚哥分校合作论文 4
    弗吉尼亚理工大学合作论文 3
    Ames Research Center,National Aeronautics and Space Administration,Government of the United States of America合作论文 2
    戈达德太空飞行中心合作论文 2
    加州理工学院合作论文 2
    Naval Supply Systems Command合作论文 2
    美國英特矽爾半導體有限公司合作论文 1
    中国电子科技集团公司合作论文 1

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