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Measurement of envelope/phase path delay skew and envelope path bandwidth in polar transmitters

机译:极性发射机中包络/相位路径延迟偏斜和包络路径带宽的测量

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Polar transmitters are desirable for portable devices due to higher power efficiency they provide compared to traditional Cartesian transmitters. However, the difference in architecture results in differences in potential circuit impairments/fault models, leading to different test/measurement/calibration requirements. The delay skew between the envelope and phase signals and the finite envelope bandwidth can create inter modulation distortion that leads to the violation of the spectral mask and error vector magnitude (EVM) requirements. Therefore, measurement and compensation/calibration of these parameters are important to ensure proper operation for the polar transmitter. In this paper, we propose a technique to measure the delay skew and the finite envelope bandwidth based on the measurement of the 3rd order inter modulation distortion (IMD3) at the output of the transmitter. First, a two-tone input at a sufficiently low frequency is applied to the transmitter baseband input to calculate the delay. Then, we apply another two-tone input at a relatively higher frequency to determine the envelope bandwidth. Simulation and hardware measurement results show that the proposed technique can characterize the targeted impairments in the polar transmitter accurately within 10ms which is negligible compared to signal source switching and settling times.
机译:极性发射机是便携式设备所需要的,因为与传统的笛卡尔发射机相比,极性发射机提供了更高的功率效率。然而,架构上的差异导致潜在的电路损伤/故障模型的差异,从而导致不同的测试/测量/校准要求。包络和相位信号之间的延迟偏斜以及有限的包络带宽会产生互调制失真,从而导致违反频谱模板和误差矢量幅度(EVM)的要求。因此,这些参数的测量和补偿/校准对于确保极性发射器的正常工作很重要。在本文中,我们基于发射机输出端的3阶互调失真(IMD3)的测量,提出了一种测量延迟偏斜和有限包络带宽的技术。首先,将频率足够低的两音输入应用于发射机基带输入,以计算延迟。然后,我们以相对较高的频率应用另一个两音输入,以确定包络带宽。仿真和硬件测量结果表明,所提出的技术可以在10ms内准确表征极地发射机的目标损耗,与信号源的切换和建立时间相比,可以忽略不计。

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