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Analysis of multi-port amplifier calibration for optimal magnitude and phase error detection

机译:分析多端口放大器校准,以检测最佳幅度和相位误差

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摘要

This study presents theoretical analysis and verification on optimal hardware platform for calibration of signal manipulation in multi-port amplifier (MPA). Since MPA output power and isolation characteristics are strongly dependent on magnitude and relative phase balances in each array path of MPA, proper calibration technique is necessary for ideal MPA operation. Although variety of calibration methods can be considered, they can be classified into two methods from the calibration signal detection based on hardware platform point of view. That is, calibration signals for each array path in MPA can be sampled and detected before output hybrid matrix (OHM) or after OHM according to hardware setup. Since optimal signal detection for each array path is the key to ideal MPA calibration and maximised performance, this study theoretically analyses two different calibration hardware platforms detecting calibration signals. Then, the mathematically derived optimal calibration hardware setup for detecting magnitude and phase error is finally verified and concluded by simple simulation and measurement at 900 MHz Industrial, Scientific and Medical-band (902-928 MHz).
机译:这项研究提出了用于多端口放大器(MPA)中信号处理校准的最佳硬件平台的理论分析和验证。由于MPA输出功率和隔离特性在很大程度上取决于MPA的每个阵列路径中的幅度和相对相位平衡,因此理想的MPA操作必须采用适当的校准技术。尽管可以考虑多种校准方法,但是从基于硬件平台的角度来看,从校准信号检测可以将它们分为两种方法。也就是说,根据硬件设置,可以在输出混合矩阵(OHM)之前或在OHM之后对MPA中每个阵列路径的校准信号进行采样和检测。由于针对每个阵列路径的最佳信号检测是理想MPA校准和最大化性能的关键,因此本研究从理论上分析了检测校准信号的两个不同的校准硬件平台。然后,通过在900 MHz工业,科学和医疗频段(902-928 MHz)上进行简单的仿真和测量,最终验证并得出数学上得出的用于检测幅度和相位误差的最佳校准硬件设置。

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