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Quadrature Errors and DC Offsets Calibration of Analog Complex Cross-Correlator for Interferometric Passive Millimeter-Wave Imaging Applications

机译:用于干涉式被动毫米波成像应用的模拟复数互相关器的正交误差和DC偏移校准

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The design and calibration of the cross-correlator are crucial issues for interferometric imaging systems. In this paper, an analog complex cross-correlator with output DC offsets and amplitudes calibration capability is proposed for interferometric passive millimeter-wave security sensing applications. By employing digital potentiometers in the low frequency amplification circuits of the correlator, the outputs characteristics of the correlator could be digitally controlled. A measurement system and a corresponding calibration scheme were developed in order to eliminate the output DC offsets and the quadrature amplitude error between the in-phase and the quadrature correlating subunits of the complex correlator. By using vector modulators to provide phase controllable correlated noise signals, the measurement system was capable of obtaining the output correlation circle of the correlator. When injected with ?18 dBm correlated noise signals, the calibrated quadrature amplitude error was 0.041 dB and the calibrated DC offsets were under 26 mV, which was only 7.1% of the uncalibrated value. Furthermore, we also described a quadrature errors calibration algorithm in order to estimate the quadrature phase error and in order to improve the output phase accuracy of the correlator. After applying this calibration, we were able to reduce the output phase error of the correlator to 0.3°.
机译:互相关器的设计和校准是干涉成像系统的关键问题。本文提出了一种具有输出直流偏移和幅度校准功能的模拟复互相关器,用于干涉式无源毫米波安全感测应用。通过在相关器的低频放大电路中使用数字电位器,可以对数字相关器的输出特性进行数字控制。为了消除复数相关器的同相和正交相关子单元之间的输出直流偏移和正交幅度误差,开发了一种测量系统和相应的校准方案。通过使用矢量调制器提供相位可控的相关噪声信号,测量系统能够获得相关器的输出相关圆。当注入约18 dBm的相关噪声信号时,校准的正交幅度误差为0.041 dB,校准的DC失调低于26 mV,仅为未校准值的7.1%。此外,我们还描述了一种正交误差校准算法,以便估计正交相位误差并提高相关器的输出相位精度。应用此校准后,我们​​能够将相关器的输出相位误差降低至0.3°。

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