Two-Way Frequency Fluctuations Observed During Coronal Radio Sounding Experiments

被引:0
|
作者
A. I. Efimov
L. A. Lukanina
L. N. Samoznaev
V. K. Rudash
I. V. Chashei
M. K. Bird
M. Pätzold
机构
[1] Russian Acad. Science,Kotel’nikov Inst. Radio Eng. & Electronics
[2] Russian Acad. Science,Lebedev Phys. Inst.
[3] Univ. Bonn,Argelander
[4] Univ. Köln,Institut für Astronomie
来源
Solar Physics | 2014年 / 289卷
关键词
Coronal radio sounding; Coherent signals; Frequency fluctuations; Spectral analysis;
D O I
暂无
中图分类号
学科分类号
摘要
Coronal radio-sounding experiments were carried out using two-way coherent dual-frequency carrier signals of the ESA spacecraft Rosetta (ROS) in 2006. Frequency measurements recorded at both NASA and ESA tracking stations (sample rate: 1 Hz) are analyzed in this work. Spectral analysis of the S-band, X-band, and differential frequency records has shown that the mean frequency fluctuation of each signal can be described by a radial power-law function of the form σi=Ai(R/R⊙)−mi, where i=x,s,sx. The ratio of the coefficients As and Ax is not the expected theoretical value As/Ax=fs/fx. This occurs because the X-band fluctuations underlie a two-way propagation mode while the S-band fluctuations are essentially the product of a one-way propagation experiment. Results are compared with similar, but not identical, two-way radio propagation experiments performed during the 1991 solar conjunction of the Ulysses spacecraft.
引用
收藏
页码:1715 / 1729
页数:14
相关论文
共 50 条
  • [31] Radio-wave phase and frequency fluctuations as observed in radio-eclipse experiments along a satellite-satellite link
    Yakovlev, O.I.
    Matyugov, S.S.
    Vilkov, I.A.
    Zakharov, A.I.
    Kucheryavenkova, I.L.
    Journal of Communications Technology and Electronics, 1996, 41 (11): : 993 - 998
  • [32] Radio-wave phase and frequency fluctuations as observed in radio-eclipse experiments along a satellite-satellite link
    Yakovlev, OI
    Matyugov, SS
    Vilkov, IA
    Zakharov, AI
    Kucheryavenkova, IL
    RADIOTEKHNIKA I ELEKTRONIKA, 1996, 41 (09): : 1088 - 1093
  • [33] Two-way ranging with carrier frequency and phase offset compensation based on software defined radio
    Rustamaji
    Kliwati, Sri
    Widada, Wahyu
    MEASUREMENT, 2024, 232
  • [34] Wideband power amplifier for two-way radio applications via real-frequency technique
    Aridas, N. K.
    Yarman, B. S.
    Chacko, P.
    ELECTRONICS LETTERS, 2014, 50 (23) : 1762 - 1763
  • [35] Investigation of coronal mass ejections by the two-position radio sounding method
    A. I. Efimov
    N. A. Armand
    L. A. Lukanina
    L. N. Samoznaev
    I. V. Chashei
    M. K. Bird
    Geomagnetism and Aeronomy, 2009, 49 : 1165 - 1169
  • [36] Investigation of coronal mass ejections by the two-position radio sounding method
    Efimov, A. I.
    Armand, N. A.
    Lukanina, L. A.
    Samoznaev, L. N.
    Chashei, I. V.
    Bird, M. K.
    GEOMAGNETISM AND AERONOMY, 2009, 49 (08) : 1165 - 1169
  • [37] Properties of solar wind turbulence near the Sun as deduced from coronal radio sounding experiments
    Chashei, IV
    Efimov, AI
    Samomaev, LN
    Plettemeier, D
    Bird, MK
    SOLAR ENCOUNTER, SOLAR-B AND STEREO, 2005, 36 (08): : 1454 - 1460
  • [38] A CNN-LSTM Phase Compensation Method for Unidirectional Two-way Radio Frequency Transmission System
    Cheng, Jiahui
    Wang, Zhengkang
    Qiao, Yaojun
    Gao, Hao
    Liu, Chenxia
    Zhao, Zhuoze
    Zhang, Jie
    Zhao, Baodong
    Luo, Bin
    Yu, Song
    IEEE PHOTONICS JOURNAL, 2024, 16 (03): : 1 - 8
  • [39] THE EFFECT OF A TWO-WAY RADIO SYSTEM UPON CLINCAL COMMUNICATION
    Brown, J. R.
    Campwala, Z.
    Li, A.
    You, H.
    Amasyali, A. S.
    Alsyouf, M.
    Shah, M.
    Hajiha, M.
    Baldwin, D.
    Abourbih, S.
    Baldwin, D.
    JOURNAL OF INVESTIGATIVE MEDICINE, 2019, 67 (01) : 196 - 197
  • [40] INDUSTRIAL MULTIPLE TWO-WAY RADIO COMMUNICATIONS SYSTEM.
    Hanousek, K.
    Ricny, V.
    Radioelectronics and Communications Systems (English translation of Izvestiya Vysshikh Uchebnykh Z, 1985, 28 (07): : 64 - 65