• DocumentCode
    1514482
  • Title

    Strapdown inertial measurement units for motion compensation for synthetic aperture radars

  • Author

    Kennedy, Thomas A.

  • Author_Institution
    Hughes Aircraft Co., Los Angeles, CA, USA
  • Volume
    3
  • Issue
    10
  • fYear
    1988
  • Firstpage
    32
  • Lastpage
    35
  • Abstract
    It is shown that synthetic-aperture radar (SAR) motion can be compensated by using an antenna-mounted strapdown inertial measurement unit (IMU) as the motion sensing system, but sensor and system errors affect SAR image quality. A strapdown IMU consists of three accelerator channels and three gyro channels. Strapdown IMU errors include gyro-scale and accelerometer-scale factor and bias errors, velocity error, platform tilt, and errors induced by limited inertial sensor bandwidth. The effects of these errors on the SAR image quality are presented in terms of the SAR impulse response. IMU errors that cause low-frequency phase errors (less than one cycle per array time) are categorized in terms of quadratic and cubic phase errors. IMU errors that cause high-frequency phase errors (greater than one cycle per array time) are categorized in terms of the integrated sidelobe ratio and peak sidelobe ratio. A motion compensation system conceptualization is described wherein a strapdown IMU is attached to an antenna and transfer-aligns to the aircraft´s master navigator.<>
  • Keywords
    aircraft instrumentation; error compensation; inertial navigation; radar systems; radionavigation; SAR; aircraft instrumentation; antenna-mounted strapdown inertial measurement unit; bias errors; cubic phase errors; high-frequency phase errors; image quality; inertial sensor bandwidth; integrated sidelobe ratio; low-frequency phase errors; motion compensation; peak sidelobe ratio; platform tilt; quadratic phase errors; radionavigation; synthetic aperture radars; velocity error; Aircraft navigation; Image quality; Image sensors; Measurement units; Motion compensation; Phased arrays; Radar antennas; Radar imaging; Radar measurements; Synthetic aperture radar;
  • fLanguage
    English
  • Journal_Title
    Aerospace and Electronic Systems Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    0885-8985
  • Type

    jour

  • DOI
    10.1109/62.9371
  • Filename
    9371