期刊文献+

星载电场探测仪的传感器空间布局研究 被引量:2

Analysis on Sensor Layout for Space-borne Electric Field Detector
在线阅读 下载PDF
导出
摘要 电场探测仪是卫星进行高精度电场探测的关键载荷,其传感器的空间布局对探测精度影响很大。文章对传感器空间布局的影响因素和分析方法进行了研究,并以轨道高度500km的太阳同步轨道卫星为例,结合卫星的实际任务运行,对虚假光电场控制、电场探测仪传感器的几何布局构型、传感器与卫星的相互遮挡和干涉关系进行了分析,并最终优化确定了传感器的空间布局。研究结果表明,优化的传感器空间布局可以在设计阶段就针对多种误差,有效地提高其探测精度。 Space borne electric field detector (EFD) is a key instrument to detect in-situ electric field within ionosphere, and the sensor layout for EFD is one of the most important factors which would affect electric field data accuracy. In the paper, the influence of sensor layout is studied as well as the relevant analysis method. To demonstrate the whole procedure, a satellite in 500kin sun-synchronous orbit is used as an example for analyzing the factors such as sunward offset field, geometric layout and shading effects etc. , which concludes an optimized sensor layout. The analysis result shows that several error sources could be avoided through detailed analysis and op timized on EFD sensor layout, which can improve the EFD performance at design stage.
出处 《航天器工程》 2012年第5期64-69,共6页 Spacecraft Engineering
基金 国家重大航天工程
关键词 卫星 电场探测仪 双探针 传感器空间布局 α角 satellite electric field detector dual-probe sensor layout α angle
  • 相关文献

参考文献8

  • 1Parrot M,Berthelier J J,Lebreton J P. DEMETER observations of EM emissions related to thunderstorms[J].Space Science Reviews,2008,(1/2/3/4):511-519.
  • 2Parrot M. Use of satellite to detect seismo-electromag netic effects[J].Advances in Space Research,1995,(11):27-35.
  • 3Gustafsson G,Bostrom R,Holback B. The electric field and wave experiment for the Cluster mission[J].Space Science Reviews,1997,(1/2):137-156.
  • 4Berthelier J J,Godefroy M,Leblanc F. ICE:the electric field instrument on Demeter[J].Planetary and Space Science,2006,(05):456-471.
  • 5Pedersen A,Cattell C A,Falthammar C G. Quasistatic electric field measurements with spherical double probes on the GEOS and ISEE satellites[J].Space Science Reviews,1984,(3/4):269-312.
  • 6Ergun R E,Carlson CW,Mozer F S. The FAST satellite fields instrument[J].Space Science Reviews,2001,(1/2):67-91.
  • 7张润宁,杨芳,王海明,陶志刚,刘森.我国地震电磁监测卫星总体技术研究[J].地震,2009,29(B10):9-16. 被引量:7
  • 8Parrot M. The micro-satellite Demeter[J].Journal of Geodynamics,2002,(4/5):535-541.

二级参考文献11

  • 1卓贤军,赵国泽,王继军,汤吉,詹艳.地震预测中的电磁卫星[J].大地测量与地球动力学,2005,25(2):1-5. 被引量:17
  • 2中国地震局.GPS、卫星遥感及地震变化磁场地震短期预测方法研究[M].北京:地震出版社,2006.
  • 3Pulinets S A. Space technologies for short term earthquake warning[J]. Advances in Space Re-search, 2006, 37:643-652.
  • 4Pulinets S A. Strong earthquake Prediction possibility with the help of topside sonding from satel lites[J]. Advances in Space Research, 1998, 21: 455- 458.
  • 5Liu J Y, Chen Y L, Pulinets S A, et al. Seismoionospheric signatures prior to Ms6 0 Taiwan earth-quakes[J].Geophys Res Lett, 2000, 27:3113-3116.
  • 6Chuo Y J, Chen Y I, Liu J Y, et al. Ionospheric fof2 variations prior to strong earthquakes in Tai wan area[J]. Advances in Space Research. 2001, 27: 1305 1310.
  • 7Larkina V I, Nalivayko A V, Gershenzon N I, et al. Observations of VLF emission related with seismic activity on the Interkosmos-19 satellite[J]. Geomagn Aeron, 1983, 23:684-687.
  • 8申旭辉,吴云,单新建.地震遥感应用趋势与中国地震卫星发展框架[J].国际地震动态,2007,28(8):38-45. 被引量:27
  • 9杨俊英.卫星观测数据与地震关系的统计分析[J].国际地震动态,2007(8):46-53. 被引量:1
  • 10欧阳新艳.地震电磁卫星观测物理量简介[J].国际地震动态,2007,28(8):54-58. 被引量:6

共引文献6

同被引文献24

  • 1Pen Chunrong,Yang Pengfei,Liu Shiguo. Detecting internal defect of non-ceramic insulators using a novel micromachined electric field sensor[A].Cancun,2011.561-564.
  • 2Vaillancourt G H,Carignan S,Jean C. Experience with the detection of faulty composite insulators on high-voltage power lines by the electric field measurement method[J].IEEE Transactions on Power Delivery,1998,(02):661-666.doi:10.1109/61.660958.
  • 3Wijeweera G,Bahreyni B,Shafai C. Micromachinedelectric-field sensor to measure AC and DC fieldsin powersystems[J].IEEE Transactions on Power Delivery,2009,(03):988-995.
  • 4Bahreyni B,Wijeweera G,Shafai C. Analysis and design of a micromachined electric-field sensor[J].Journal of Microelectromechanical Systems,2008,(01):31-36.doi:10.1109/JMEMS.2007.911870.
  • 5Chen X,Peng C,Tao H. Thermally driven micro-electrostatic field meter[J].Sensors and Actuators A:Physical,2006,(02):677-682.
  • 6Peng C,Chen X,Bai Q. A novel high performance micromechanical resonant electrostatic field sensor used in atmospheric electric field detection[A].Istanbul,Turkey,2006.698-701.
  • 7Peng C,Yang P,Zhang H. Design of a novel closed-loop SOI MEMS resonant electrostatic field sensor[A].Linz,Austria,2010.1482-1485.
  • 8Horenstein M N,Stone P R. A micro-aperture electrostatic field mill based on MEMS technology[J].Journal of Electrostatics,2001.515-521.
  • 9Riehl P S,Scott K L,Muller R S. Electrostatic charge and field sensors based on micromechanical resonators[J].Journal of Microelectromechanical Systems,2003,(05):577-589.doi:10.1109/JMEMS.2003.818066.
  • 10Denison A T,Shafran J S,Kuang Jin-bo. A self-resonant MEMS-based electrometer[A].Warsaw,Poland,2007.1-5.

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部