Zobrazeno 1 - 10
of 24
pro vyhledávání: '"放射線帯"'
Publikováno v:
電子情報通信学会技術研究報告. SANE, 宇宙・航行エレクトロニクス. 113(184):1-4
衛星の太陽電池は、宇宙空間の放射線などにより劣化し出力が低下していく。1989〜1992年では、あけぼの衛星の太陽電池出力の低下は、衛星が浴びる放射線帯プロトンのフラックス量と
Publikováno v:
宇宙航空研究開発機構特別資料: 第4回宇宙環境シンポジウム講演論文集 = JAXA Special Publication: Proceedings of the 4th Spacecraft Environment Symposium. :51-57
Highly energetic electrons in the outer radiation disappear during the main phase of the magnetic storm, and rebuilding of the highly energetic electrons is made during the recovery phase of the magnetic storm. A distribution of the new peak of highl
Publikováno v:
宇宙航空研究開発機構特別資料: 第4回宇宙環境シンポジウム講演論文集 = JAXA Special Publication: Proceedings of the 4th Spacecraft Environment Symposium. :79-84
High-energy electron flux at geosynchronous orbit significantly increases associated with high speed solar wind. The high-energy electron cause internal charging of satellites. It is important for satellite operations to forecast increase of the flux
Autor:
Goka, Tateo, Matsumoto, Haruhisa, Koga, Kiyokazu, Koshiishi, Hideki, Kimoto, Yugo, Sasaki, Yasutomo, Komiyama, Tatsuto
Publikováno v:
宇宙航空研究開発機構特別資料: 第4回宇宙環境シンポジウム講演論文集 = JAXA Special Publication: Proceedings of the 4th Spacecraft Environment Symposium. :32-39
The current status of measuring radiation using JAXA satellites is reviewed. Starting with Engineering Test Satellite-5 (ETS-5; KIKU-5 in Japanese) in 1987, efforts to conduct radiation measurements in space have continued using almost all Japan Aero
Publikováno v:
宇宙航空研究開発機構特別資料: 第3回宇宙環境シンポジウム講演論文集 = JAXA Special Publication: Proceedings of the 3rd Spacecraft Environment Symposium. :61-64
資料番号: AA0063585009
レポート番号: JAXA-SP-06-035
レポート番号: JAXA-SP-06-035
Autor:
Goka, Tateo, Matsumoto, Haruhisa
Publikováno v:
宇宙航空研究開発機構特別資料: 第3回宇宙環境シンポジウム講演論文集 = JAXA Special Publication: Proceedings of the 3rd Spacecraft Environment Symposium. :17-22
The current status of measuring radiation using JAXA satellites is reviewed. Starting with Engineering Test Satellite-5 (ETS-5, KIKU-5 in Japanese) in 1987, efforts to conduct radiation measurements in space have continued using almost all Japan Aero
Autor:
Shiokawa, Kazuo, Nishitani, Nozomu, Kikuchi, Takashi, Otsuka, Yuichi, Miyoshi, Yoshizumi, Fujii, Ryoichi, Yumoto, Kiyofumi, Kawano, Hideaki, Yoshikawa, Akimasa, Sato, Natsuo
Publikováno v:
第7回宇宙科学シンポジウム = Proceedings of the 7th Space Science Symposium. :914-917
第10回宇宙科学シンポジウム (2010年1月7日-8日. 宇宙航空研究開発機構宇宙科学研究本部)
10th Space Science Symposium (January 7-8, 2010. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agen
10th Space Science Symposium (January 7-8, 2010. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agen
Publikováno v:
宇宙航空研究開発機構特別資料: 平成18年度 宇宙航空研究開発機構 総合技術研究本部 宇宙科学研究本部 研究成果報告書 = JAXA Special Publication: Report on Research Achievements for FY2006 Institute of Space and Astronautical Science, Institute of Aerospace Technology, Japan Aerospace Exploration Agency. :133-138
The onboard electronic devices and astronauts on spacecrafts have many effects on the space radiation. It is one of the important issues for space mission planning to predict the space radiation environment and to evaluate it. Because the space vehic
Publikováno v:
第39回月・惑星シンポジウム = Proceedings of the 39th ISAS Lunar and Planetary Symposium. :33-36
The Jovian Synchrotron Radiation (JSR) is a radio wave emitted from the relativistic electrons in the Jovian radiation belt, which has information of dynamics of high-energy particles and electromagnetic disturbances in the Jovian inner magnetosphere
Autor:
Imai, Kota, Misawa, Hiroaki, Tsuchiya, Fuminori, Morioka, Akira, Watanabe, Takuo, Kudo, Riichi
Publikováno v:
第39回月・惑星シンポジウム = Proceedings of the 39th ISAS Lunar and Planetary Symposium. :37-40
We have made regular observations of the Jovian Synchrotron Radiation (JSR) with the Iitate Planetary Radio Telescope (IPRT) at 325 MHz since 2003. As a further project of IPRT, we have developed a new dual frequency receiver system which enables sim