Onboard software of Plasma Wave Experiment aboard Arase : instrument management and signal processing of Waveform Capture/Onboard Frequency Analyzer
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- Material Type
- 記事
- Author/Editor
- Shoya MatsudaYoshiya KasaharaHirotsugu Kojima
- Publication, Distribution, etc.
- Publication Date
- 2018-05-04
- Publication Date (W3CDTF)
- 2018-05-04
- Periodical title
- EPS : Earth, Planets and Space
- No. or year of volume/issue
- 70(75)
- Volume
- 70(75)
- ISSN (Periodical Title)
- 1880-5981
- ISSN-L (Periodical Title)
- 1343-8832
- Text Language Code
- eng
- DOI
- 10.1186/s40623-018-0838-0
- Persistent ID (NDL)
- info:ndljp/pid/11125843
- Collection
- Collection (Materials For Handicapped People:1)
- Collection (particular)
- 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > その他
- Acquisition Basis
- オンライン資料収集制度
- Date Accepted (W3CDTF)
- 2018-08-10T20:26:03+09:00
- Date Captured (W3CDTF)
- 2018-08-10
- Format (IMT)
- application/pdf
- Access Restrictions
- 国立国会図書館内限定公開
- Service for the Digitized Contents Transmission Service
- 図書館・個人送信対象外
- Availability of remote photoduplication service
- 可
- Periodical Title (URI)
- Periodical Title (Persistent ID (NDL))
- info:ndljp/pid/11067456
- Data Provider (Database)
- 国立国会図書館 : 国立国会図書館デジタルコレクション
- Summary, etc.
- 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.
- DOI
- 10.1186/s40623-018-0838-0
- Access Restrictions
- インターネット公開
- Rights (production)
- © 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.
- Related Material
- Onboard software of Plasma Wave Experiment aboard Arase: instrument management and signal processing of Waveform Capture/Onboard Frequency Analyzer
- Related Material (URI)
- Is Referenced By
- The Plasma Wave Experiment (PWE) on board the Arase (ERG) satelliteMagnetic Search Coil (MSC) of Plasma Wave Experiment (PWE) aboard the Arase (ERG) satelliteDirect Comparison Between Magnetospheric Plasma Waves and Polar Mesosphere Winter Echoes in Both HemispheresMulti‐Event Analysis of Plasma and Field Variations in Source of Stable Auroral Red (SAR) Arcs in Inner Magnetosphere During Non‐Storm‐Time SubstormsArase Observation of Simultaneous Electron Scatterings by Upper‐Band and Lower‐Band Chorus EmissionsDeep Learning Model Size Performance Evaluation for Lightning Whistler Detection on Arase Satellite DatasetHigh frequency analyzer (HFA) of plasma wave experiment (PWE) onboard the Arase spacecraft, EarthTransient ionization of the mesosphere during auroral breakup: Arase satellite and ground-based conjugate observations at Syowa StationData processing in Software-type Wave–Particle Interaction Analyzer onboard the Arase satelliteSpatial Extent of Quasiperiodic Emissions Simultaneously Observed by Arase and Van Allen Probes on 29 November 2018Magnetic Field and Energetic Particle Flux Oscillations and High‐Frequency Waves Deep in the Inner Magnetosphere During Substorm Dipolarization: ERG ObservationsDetection of ultrafast electron energization by whistler-mode chorus waves in the magnetosphere of EarthVisualization of rapid electron precipitation via chorus element wave–particle interactionsStudy of an Equatorward Detachment of Auroral Arc From the Oval Using Ground‐Space Observations and the BATS‐R‐US–CIMI ModelA Ground‐Based Instrument Suite for Integrated High‐Time Resolution Measurements of Pulsating Aurora With AraseOver‐Darkening of Pulsating AuroraThe Characteristics of EMIC Waves in the Magnetosphere Based on the Van Allen Probes and Arase ObservationsInter‐Calibrated Measurements of Intense Whistlers by Arase and Van Allen ProbesRole of Ducting in Relativistic Electron Loss by Whistler‐Mode Wave ScatteringCollaborative Research Activities of the Arase and Van Allen ProbesQuantifying the Size and Duration of a Microburst‐Producing Chorus Region on 5 December 2017Whistler‐Mode Transmission Experiments in the Radiation Belts: DSX TNT Circuit Simulation and Data AnalysisTemporal and Spatial Correspondence of Pc1/EMIC Waves and Relativistic Electron Precipitations Observed With Ground‐Based Multi‐Instruments on 27 March 2017Tracking the Region of High Correlation Between Pulsating Aurora and Chorus: Simultaneous Observations With Arase Satellite and Ground‐Based All‐Sky Imager in RussiaData‐Driven Simulation of Rapid Flux Enhancement of Energetic Electrons With an Upper‐Band Whistler BurstPitch‐Angle Scattering of Inner Magnetospheric Electrons Caused by ECH Waves Obtained With the Arase SatelliteFirst Direct Observations of Propagation of Discrete Chorus Elements From the Equatorial Source to Higher Latitudes, Using the Van Allen Probes and Arase SatellitesStatistical Survey of Arase Satellite Data Sets in Conjunction With the Finnish Riometer NetworkMicroscopic Observations of Pulsating Aurora Associated With Chorus Element Structures: Coordinated Arase Satellite‐PWING ObservationsDensity Depletions Associated With Enhancements of Electron Cyclotron Harmonic Emissions: An ERG ObservationStrong Diffusion of Energetic Electrons by Equatorial Chorus Waves in the Midnight‐to‐Dawn SectorMultiple time-scale beats in aurora: precise orchestration via magnetospheric chorus wavesAutomatic Detection of Lightning Whistlers Observed by the Plasma Wave Experiment Onboard the Arase Satellite Using the OpenCV LibraryPlasma Wave Investigation (PWI) Aboard BepiColombo Mio on the Trip to the First Measurement of Electric Fields, Electromagnetic Waves, and Radio Waves Around MercuryRelative Contribution of ULF Waves and Whistler‐Mode Chorus to the Radiation Belt Variation During the May 2017 StormMesospheric ionization during substorm growth phaseDirect Observations of Energetic Electron Scattering and Precipitation Due To Whistler‐Mode Waves in the Dayside High‐Density RegionsA Calibration Method of Short‐Time Waveform Signals Passed Through Linear Time‐Invariant Systems: 1. Methodology and Simple ExamplesRelativistic electron flux growth during storm and non-storm periods as observed by ARASE and GOES satellitesOn the phase difference of ECH waves obtained from the interferometry observation by the Arase satelliteCharacteristic E-Region Plasma Signature of Magnetospheric Wave-Particle InteractionsSpatial Distribution of Fine‐Structured and Unstructured EMIC Waves Observed by the Arase SatelliteDetection of UHR Frequencies by a Convolutional Neural Network From Arase/PWE DataMultievent Study of Characteristics and Propagation of Naturally Occurring ELF/VLF Waves Using High‐Latitude Ground Observations and Conjunctions With the Arase SatelliteDirect Antenna Impedance Measurement for Quantitative AC Electric Field Measurement by AraseA Proposal for Modification of Plasmaspheric Electron Density Profiles Using Characteristics of Lightning WhistlersAn Implication of Detecting the Internal Modulation in a Pulsating Aurora: A Conjugate Observation by the Arase Satellite and All‐Sky ImagersConjugate Observations of Dayside and Nightside VLF Chorus and QP Emissions Between Arase (ERG) and Kannuslehto, FinlandA Systematic Study in Characteristics of Lower Band Rising‐Tone Chorus ElementsComprehensive Observations of Substorm‐Enhanced Plasmaspheric Hiss Generation, Propagation, and DissipationExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Onboard Frequency Analyzer (OFA) Level-2 power spectrum dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Waveform Capture (WFC) Level-2 electric field spectrum dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Onboard Frequency Analyzer (OFA) Level-2 spectral matrix dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Waveform Capture (WFC) Level-2 magnetic field waveform dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) High Frequency Analyzer (HFA) Level-3 electron density dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Onboard Frequency Analyzer (OFA) Level-3 wave property dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Onboard Frequency Analyzer (OFA) Level-2 complex spectrum dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Waveform Capture (WFC) Level-2 magnetic field spectrum dataExploration of energization and Radiation in Geospace (ERG) Plasma Wave Experiment (PWE) Waveform Capture (WFC) Level-2 electric field waveform dataPlasma frequency demand for mode conversion processes from slow Z-mode to LO-mode waves in an inhomogeneous plasmaOxygen torus and its coincidence with EMIC wave in the deep inner magnetosphere : Van Allen Probe B and Arase observationsGeospace exploration project ERGISEE_Wave : interactive plasma wave analysis toolSpace-to-space very low frequency radio transmission in the magnetosphere using the DSX and Arase satellites
- References
- Software wave receiver for the SS-520-2 rocket experimentThe Plasma Wave Experiment (PWE) on board the Arase (ERG) satelliteMagnetic Search Coil (MSC) of Plasma Wave Experiment (PWE) aboard the Arase (ERG) satelliteELF/VLF wave propagation at subauroral latitudes: Conjugate observation between the ground and Van Allen Probes AHigh frequency analyzer (HFA) of plasma wave experiment (PWE) onboard the Arase spacecraft, EarthSoftware-type Wave–Particle Interaction Analyzer on board the Arase satelliteThe ARASE (ERG) magnetic field investigationData processing in Software-type Wave–Particle Interaction Analyzer onboard the Arase satelliteGround-based instruments of the PWING project to investigate dynamics of the inner magnetosphere at subauroral latitudes as a part of the ERG-ground coordinated observation networkA direct link between chorus emissions and pulsating aurora on timescales from milliseconds to minutes: A case study at subauroral latitudesHigh-altitude<i>M</i>/<i>Q</i>=2 ion cyclotron whistlers in the inner magnetosphere observed by the Akebono satelliteHelium resonance and dispersion effects on geostationary Alfven/ion cyclotron wavesConvective growth rate of ion cyclotron waves in a H<sup>+</sup>−He<sup>+</sup> and H<sup>+</sup>−He<sup>+</sup>−O<sup>+</sup> plasmaCluster observations of EMIC triggered emissions in association with Pc1 waves near Earth's plasmapausePitch-angle diffusion of radiation belt electrons within the plasmaspherePotential waves for relativistic electron scattering and stochastic acceleration during magnetic stormsAkebono observations of EMIC waves in the slot region of the radiation beltsSubpacket structures in EMIC rising tone emissions observed by the THEMIS probes<i>M/Q</i> = 2 ion distribution in the inner magnetosphere estimated from ion cyclotron whistler waves observed by the Akebono satelliteVan Allen Probes observations of prompt MeV radiation belt electron acceleration in nonlinear interactions with VLF chorusThe Energization and Radiation in Geospace (ERG) ProjectSingular value decomposition methods for wave propagation analysisExperimental determination of the dispersion relation of magnetosonic wavesPropagation characteristics of the ELF emissions observed by the satellite Akebono in the magnetic equatorial regionStatistical analysis of relativistic electron energies for cyclotron resonance with EMIC waves observed on CRRESRelativistic particle acceleration in the process of whistler‐mode chorus wave generationA microscopic and nanoscopic view of storm‐time chorus on 31 March 2001Variation in crossover frequency of EMIC waves in plasmasphere estimated from ion cyclotron whistler waves observed by Van Allen Probe AEvaluation of quasi‐linear diffusion coefficients for EMIC waves in a multispecies plasmaModeling the electromagnetic ion cyclotron wave‐induced formation of detached subauroral proton arcsCyclotron instabilities and electromagnetic emission in the ultra low frequency and very low frequency rangesA systematic study of ULF Waves Above <i>F<sub>H+</sub></i> from GEOS 1 and 2 Measurements and Their Relationships with proton ring distributionsEnergetic electron precipitation associated with pulsating aurora: EISCAT and Van Allen Probe observationsLinear and Nonlinear Growth of Magnetospheric Whistler Mode WavesGlobal morphology and spectral properties of EMIC waves derived from CRRES observationsPostmidnight chorus: A substorm phenomenonRelativistic electron precipitation during magnetic storm main phaseRadiation belt electron acceleration by chorus waves during the 17 March 2013 stormTypical properties of rising and falling tone chorus wavesElectron Acceleration in the Heart of the Van Allen Radiation BeltsLinear analysis of ion cyclotron interaction in a multicomponent plasmaCluster observations of reflected EMIC‐triggered emissionSpatio‐temporal structure of storm‐time chorusWire Probe Antenna (WPT) and Electric Field Detector (EFD) of Plasma Wave Experiment (PWE) aboard the Arase satellite : specifications and initial evaluation results
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- 国立情報学研究所 : CiNii Research
- Original Data Provider (Database)
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- Bibliographic ID (NDL)
- 11125843
- NAID
- 120006529720