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タイトル: | Onboard software of Plasma Wave Experiment aboard Arase: instrument management and signal processing of Waveform Capture/Onboard Frequency Analyzer |
著者: | Matsuda, Shoya Kasahara, Yoshiya Kojima, Hirotsugu ![]() ![]() ![]() Kasaba, Yasumasa Yagitani, Satoshi Ozaki, Mitsunori Imachi, Tomohiko Ishisaka, Keigo Kumamoto, Atsushi Tsuchiya, Fuminori Ota, Mamoru Kurita, Satoshi ![]() ![]() ![]() Miyoshi, Yoshizumi Hikishima, Mitsuru Matsuoka, Ayako ![]() ![]() ![]() Shinohara, Iku |
著者名の別形: | 小嶋, 浩嗣 |
キーワード: | Arase satellite ERG PWE Plasma wave Geospace Radiation belt Onboard processing Chorus wave EMIC wave Magnetosonic wave |
発行日: | 4-May-2018 |
出版者: | Springer Nature |
誌名: | Earth, Planets and Space |
巻: | 70 |
論文番号: | 75 |
抄録: | We developed the onboard processing software for the Plasma Wave Experiment (PWE) onboard the Exploration of energization and Radiation in Geospace, Arase satellite. The PWE instrument has three receivers: Electric Field Detector, Waveform Capture/Onboard Frequency Analyzer (WFC/OFA), and the High-Frequency Analyzer. We designed a pseudo-parallel processing scheme with a time-sharing system and achieved simultaneous signal processing for each receiver. Since electric and magnetic field signals are processed by the different CPUs, we developed a synchronized observation system by using shared packets on the mission network. The OFA continuously measures the power spectra, spectral matrices, and complex spectra. The OFA obtains not only the entire ELF/VLF plasma waves’ activity but also the detailed properties (e.g., propagation direction and polarization) of the observed plasma waves. We performed simultaneous observation of electric and magnetic field data and successfully obtained clear wave properties of whistler-mode chorus waves using these data. In order to measure raw waveforms, we developed two modes for the WFC, ‘chorus burst mode’ (65, 536 samples/s) and ‘EMIC burst mode’ (1024 samples/s), for the purpose of the measurement of the whistler-mode chorus waves (typically in a frequency range from several hundred Hz to several kHz) and the EMIC waves (typically in a frequency range from a few Hz to several hundred Hz), respectively. We successfully obtained the waveforms of electric and magnetic fields of whistler-mode chorus waves and ion cyclotron mode waves along the Arase’s orbit. We also designed the software-type wave–particle interaction analyzer mode. In this mode, we measure electric and magnetic field waveforms continuously and transfer them to the mission data recorder onboard the Arase satellite. We also installed an onboard signal calibration function (onboard SoftWare CALibration; SWCAL). We performed onboard electric circuit diagnostics and antenna impedance measurement of the wire-probe antennas along the orbit. We utilize the results obtained using the SWCAL function when we calibrate the spectra and waveforms obtained by the PWE. |
著作権等: | © The Author(s) 2018. This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. |
URI: | http://hdl.handle.net/2433/234677 |
DOI(出版社版): | 10.1186/s40623-018-0838-0 |
出現コレクション: | 学術雑誌掲載論文等 |

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