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Volume 39 Issue 4
May  2015
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Analysis and correction of LRCS measurement error under non-ideal conditions

  • Received Date: 2014-05-19
    Accepted Date: 2014-06-20
  • In order to improve the measurement accuracy of laser radar cross section (LRCS) and to avoid the measurement error of LRCS because of the instability of laser energy and atmospheric conditions, multi-channel comparison measurement method was adopted. New equation and calculation expressions were deduced for LRCS. The applicability and limitation of traditional LRCS measurement were discussed. The influence of laser energy instability and random atmospheric fluctuation on LRCS testing was analyzed. The results of two measurement methods were analyzed and compared. The test shows that the new method is more feasible than the traditional method. The measurement results of LRCS by multi-channel comparison are more accurate and could avoid and decrease the measurement error induced by laser energy instability and random atmospheric fluctuation.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Analysis and correction of LRCS measurement error under non-ideal conditions

  • 1. Luoyang Electronic Equipment Testing Center of China, Luoyang 471003, China;
  • 2. Key Laboratory of Electro-Optical Countermeasures Test & Evaluation Technology, Luoyang 471003, China;
  • 3. 63751 Unit, Chinese People's Liberation Army, Xi'an 710001, China

Abstract: In order to improve the measurement accuracy of laser radar cross section (LRCS) and to avoid the measurement error of LRCS because of the instability of laser energy and atmospheric conditions, multi-channel comparison measurement method was adopted. New equation and calculation expressions were deduced for LRCS. The applicability and limitation of traditional LRCS measurement were discussed. The influence of laser energy instability and random atmospheric fluctuation on LRCS testing was analyzed. The results of two measurement methods were analyzed and compared. The test shows that the new method is more feasible than the traditional method. The measurement results of LRCS by multi-channel comparison are more accurate and could avoid and decrease the measurement error induced by laser energy instability and random atmospheric fluctuation.

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