...
首页> 外文期刊>Journal of atmospheric and oceanic technology >Anisotropic Error Distributions in a Bistatic Doppler Radar System
【24h】

Anisotropic Error Distributions in a Bistatic Doppler Radar System

机译:双基地多普勒雷达系统中的各向异性误差分布

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Anisotropic errors that contaminate two-dimensional wind vectors determined using a bistatic Doppler radar system composed of a transceiver (traditional Doppler radar) and a receiver are characterized. Two kinds of errors are identified and their influences on the retrieved wind vectors described. Type-1 errors are caused by the finite resolution of the Doppler velocity observed at the transceiver and receiver. Type-2 errors are associated with the finite resolution in detecting azimuth angles at the transceiver and ranges at the receiver. The two errors show remarkably anisotropic behavior. Error vectors for type-1 or type-2 errors have lengths that are a unique function of direction. These error vectors that can appear with equal probability form an ellipse at observation points. The larger the ratio of the length of the longer axis to that of the shorter axis, the higher the anisotropy. For type-1 errors, the longer axis is approximately perpendicular to the radar beam; the shorter axis is parallel to it. The directions of the corresponding axes for type-2 errors depend on the location of the observation point and the wind there. Retrieved wind vectors contaminated with type-1 and type-2 errors are simulated. Random noise is superimposed on a uniform wind with standard deviations of half the resolutions of four parameters. The resultant type-1 and type-2 error vectors both show anisotropic distributions consistent with the error ellipses mentioned above. This suggests that spurious divergence/convergence and spurious rotation dominate cases wherein the wind is parallel or perpendicular to the direction of the longer axis.
机译:使用由收发器(传统多普勒雷达)和接收器组成的双基地多普勒雷达系统确定了污染二维风矢量的各向异性误差。确定了两种错误,并描述了它们对检索到的风矢量的影响。 Type-1错误是由收发器和接收器上多普勒速度的有限分辨率引起的。类型2错误与检测收发器处的方位角和接收器范围内的有限分辨率相关。这两个误差显示出明显的各向异性行为。类型1或类型2错误的错误向量的长度是方向的唯一函数。这些可能以相等概率出现的误差向量在观察点处形成椭圆。长轴的长度与短轴的长度之比越大,各向异性越大。对于类型1错误,较长的轴近似垂直于雷达波束;较短的轴与之平行。类型2错误的相应轴的方向取决于观察点的位置和那里的风。模拟了被1型和2型错误污染的检索到的风矢量。随机噪声叠加在均匀风中,标准偏差为四个参数分辨率的一半。所得的类型1和类型2误差矢量都显示出与上述误差椭圆一致的各向异性分布。这表明,在风平行于或垂直于长轴方向的情况下,虚假的发散/会聚和虚假的旋转占主导地位。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号