Accuracy of Adcock Watson-Watt DF in the Presence of Channel Errors

D. J. Sadler
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引用次数: 3

Abstract

Adcock Watson-Watt (AWW) methods for radio direction finding (DF) have a long history, but are often still used in modern, wideband DF systems. A number of sources of error can reduce the accuracy of the DF estimates produced. One such source of error is due to unaccounted for amplitude and phase errors in the three receiver channels; perhaps due to unbalance in the analogue circuitry, or component tolerance in the receive filters. This paper provides a theoretical analysis of the impact of complex gain errors on the expected DF estimates. When combined with the effects of receiver noise, analytical performance curves for the AWW system can be produced. For small array apertures, it is shown that AWW can actually outperform more sophisticated N-channel DF such as correlative interferometer, maximum likelihood and subspace techniques.
存在信道误差时Adcock - Watson-Watt DF的精度
Adcock - Watson-Watt (AWW)方法用于无线电测向(DF)有很长的历史,但通常仍用于现代宽带DF系统。许多误差来源会降低所产生的DF估计的准确性。其中一个这样的误差来源是由于三个接收信道中未考虑的幅度和相位误差;可能是由于模拟电路中的不平衡,或者是接收滤波器中的元件公差。本文从理论上分析了复杂增益误差对预期DF估计的影响。结合接收机噪声的影响,可以得到AWW系统的分析性能曲线。对于小阵列孔径,AWW实际上优于更复杂的n通道DF,如相关干涉仪、最大似然和子空间技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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