FastFind »   Lastname: doi:10.1029/ Year: Advanced Search  

AGU: Space Weather

 

Keywords

  • space weather

Index Terms

  • Space Weather: Engineering for hazard mitigation
  • Space Weather: Impacts on technological systems
  • Space Weather: Solar effects
  • Space Weather: Space radiation environment
Abstract
Cited By (0)
 

Abstract

SPACE WEATHER, VOL. 7, S09001, 7 PP., 2009
doi:10.1029/2009SW000475

Aeronomy of Ice in the Mesosphere receiver/communication lock analysis: When bad space weather is good

D. N. Baker

Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, Colorado, USA

J. P. McCollough

Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, Colorado, USA

R. L. McPherron

Institute of Geophysics and Planetary Physics, University of California, Los Angeles, Los Angeles, California, USA

S. M. Ryan

Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, Colorado, USA

J. C. Westfall

Laboratory for Atmospheric and Space Physics, University of Colorado, Boulder, Colorado, USA

J. M. Russell

Center for Atmospheric Sciences, Hampton University, Hampton, Virginia, USA

S. M. Bailey

Bradley Department of Electrical and Computer Engineering, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, USA

The Aeronomy of Ice in the Mesosphere (AIM) spacecraft (launched on 25 April 2007) is in low-Earth polar orbit. Some days after launch, AIM began to exhibit a problem in which it would not always achieve proper receiver uplink communications lock (termed “bitlock” throughout this paper). In this context, we examined solar conditions and geomagnetic activity to search for possible connections with periods of bitlock problems. We have found that higher solar wind speeds often lead to greater geomagnetic activity and this, in turn, seems to lead to improved AIM operations. Here we present analysis of AIM bitlock to show when relative improvements or diminutions in spacecraft operations have occurred. We conclude that the spacecraft bitlock problem is related, in part, to space environment conditions (along with a gradual secular trend toward lower performance). The best indicator of “good lock” state (of all we have evaluated) is associated with a shift from low (or quiet) geomagnetic and solar wind conditions toward more disturbed conditions.

Received 10 February 2009; accepted 7 May 2009; published 3 September 2009.

Citation: Baker, D. N., J. P. McCollough, R. L. McPherron, S. M. Ryan, J. C. Westfall, J. M. Russell, and S. M. Bailey (2009), Aeronomy of Ice in the Mesosphere receiver/communication lock analysis: When bad space weather is good, Space Weather, 7, S09001, doi:10.1029/2009SW000475.

Cited By

Please wait one moment ...