Studying of space weather electromagnetic parameters of ionosphere in «Obstanovka 1-step» experiment on the Russian segment of the ISS

S. Klimov, V. Grushin, Kalman Balajthy, D. Bachvarov, S. Belyaev, J. Bergman, C. Ferencz, K. Georgieva, M. Gough, Alla B. Belikova, Lyudmila D. Belyakova, T. V. Grechko, V. Konoshenko, V. Korepanov, B. Kirov, O. Lapshinova, J. Lichtenberger, A. Marusenkov, M. Morawski, Nagygál János, R. Nedkov, D. Novikov, V. Rodin, H. Rothkaehl, G. Stanev, S. Szalai, P. Szegedi
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引用次数: 3

Abstract

The program and results of physical research in the international (5 countries) space experiment «The situation (1 stage)», conducted onboard the Russian segment of the International Space Station (ISS) in the period 27.02.2013 to 09.05.2015, is presented. The methods and scientific tasks of the experiment and the composition of the Plasma-wave complex based on the combined wave diagnostics method are described in detail, and designed to conduct geophysical studies through long-term monitoring measurements of the electromagnetic parameters of the ionosphere plasma and plasma-wave processes associated with the manifestation in the ionosphere of the solar-magnetosphere-ionosphere and ionosphere-atmosphere relationships, i. e., parameters of space weather. Studies in the near-surface zone of plasma-wave processes of interaction of an extra-large spacecraft, like ISS, with the ionosphere are necessary for both applied and fundamental geophysical studies. The electric and magnetic fields and currents measured at the surface of the ISS are determined by the parameters of the surrounding ionosphere plasma and the nature of the interaction of the materials on the surface with this medium. Key words: orbital space station, fundamental space research, ionosphere plasma, plasma-wave processes, electromagnetic fields and radiation, scientific instrument, space weather.
国际空间站俄罗斯段“奥布斯塔诺夫卡一步”实验中电离层空间天气电磁参数的研究
介绍了2013年2月27日至2015年5月9日期间在国际空间站俄罗斯段进行的国际(5国)空间实验“形势(1阶段)”的物理研究方案和结果。详细介绍了实验方法和科学任务以及基于组合波诊断法的等离子体波复合体的组成,旨在通过对电离层等离子体的电磁参数和等离子体波过程的长期监测测量进行地球物理研究,这些过程与电离层中太阳-磁层-电离层和电离层-大气关系的表现有关,即:空间天气参数。超大航天器(如国际空间站)与电离层相互作用的等离子体波近地表过程研究对于应用和基础地球物理研究都是必要的。在国际空间站表面测量的电场、磁场和电流是由周围电离层等离子体的参数和表面材料与该介质相互作用的性质决定的。关键词:轨道空间站,基础空间研究,电离层等离子体,等离子体波过程,电磁场与辐射,科学仪器,空间天气
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