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Compensation Method for Distorted Active Phased Array Antennas in Condition of Quantization Errors Based on Structural-Electromagnetic Coupling

机译:基于结构 - 电磁耦合的量化误差条件的扭曲有源相控阵天线的补偿方法

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摘要

Widely used digital attenuator and phase shifter could inevitably introduce quantization errors for distorted active phased array antenna, at the time of controlling the amplitude and phase for improving the electromagnetic performance. The reduction of quantization errors decides the compensation effect for antenna in complex service environment. Therefore, a compensation method for distorted antenna in condition of quantization errors is presented based on the coupled structural-electromagnetic model with least squares method. The quantized amplitude and phase adjustments are deduced from the perspective of multiple dividing of minimum quantization value and the optimal amplitude and phase differences, which could be implemented to recover a high quality pattern from a distorted antenna. Lastly, an X-band active phased array antenna with representative saddle shape deformation is illustrated to verify the compensation effect for quantization errors including both the amplitude and phase.
机译:广泛使用的数字衰减器和移相器可以不可避免地引入用于控制幅度和相位以改善电磁性能的幅度和相位的扭曲的有源相控阵天线的量化误差。量化误差的减少决定了在复杂的服务环境中的天线的补偿效果。因此,基于具有最小二乘法的耦合结构 - 电磁模型呈现了量化误差条件的扭曲天线的补偿方法。从最小量化值的多分裂的角度和最佳幅度和相位差的角度推导出量化幅度和相位调整,这可以实现以从失真的天线恢复高质量模式。最后,示出了具有代表鞍形状变形的X波段有源相控阵天线,以验证用于量化误差的补偿效果,包括幅度和相位。

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