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Accurate Characterization of T/R Modules with Consideration of Amplitude/Phase Cross Effect in AESA Antenna Unit

机译:考虑到AESA天线单元中的幅度/相位交叉效应的T / R模块的准确表征

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In this paper, an accurate characterization of a fabricated X-band transmit/receive module is described with the process of generating control data to correct amplitude and phase deviations in an active electronically scanned array antenna unit. In the characterization, quantization errors (from both a digitally controlled attenuator and a phase shifter) are considered using not theoretical values (due to discrete sets of amplitude and phase states) but measured values (of which implementation errors are a part). By using the presented procedure for the characterization, each initial control bit of both the attenuator and the phase shifter is closest to the required value for each array element position. In addition, each compensated control bit for the parasitic cross effect between amplitude and phase control is decided using the same procedure. Reduction of the peak sidelobe level of an array antenna is presented as an example to validate the proposed procedure.
机译:在本文中,通过生成控制数据来校正有源电子扫描阵列天线单元中的幅度和相位偏差的过程,描述了制造的X波段发送/接收模块的精确特性。在表征中,不是使用理论值(由于振幅和相位状态的离散集合),而是使用测量值(实现误差是其中的一部分)来考虑量化误差(来自数字衰减器和移相器)。通过使用提出的过程进行表征,衰减器和移相器的每个初始控制位都最接近每个阵列元件位置所需的值。另外,用于幅度和相位控制之间的寄生交叉效应的每个补偿控制位是使用相同的过程确定的。以降低阵列天线的峰值旁瓣电平为例,以验证所提出的程序。

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