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Symmetrical to Asymmetrical Model Transformation for I/Q Imbalance in Zero-IF Transceivers

机译:零中频收发器中I / Q不平衡的对称到不对称模型转换

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Two main types of modeling are considered in the I/Q imbalance problem literature: symmetric models and asymmetrical models. Specifically, the symmetric models are applied in the I/Q imbalance testing area, while the asymmetrical models have applications in the I/Q imbalance calibration area; each model offers advantages in their respective areas, with applications in real systems. In this paper, a study of both types of modeling was carried out, covering main characteristics, advantages and differences between these models. Symmetrical and asymmetrical models in matrix form are developed for transmitter and receiver bearing on a zero-IF architecture, taking into account the main sources of imbalance in the analog front end (AFE). Based on these models, a matrix model transformation methodology is developed, which is capable of transferring the I/Q imbalance characteristics of a symmetric model into an asymmetric model. Simulation results confirm the proposed model transformation through a performance comparison of four I/Q imbalance testing algorithms in the sense of the AFE imbalances estimation, allowing a fair comparison under the same conditions of imbalance.
机译:I / Q不平衡问题文献中考虑了两种主要的建模类型:对称模型和非对称模型。具体来说,对称模型应用于I / Q不平衡测试区域,而非对称模型则应用于I / Q不平衡校准区域;每种模型在实际系统中的应用都在各自的领域中提供了优势。在本文中,对这两种类型的建模进行了研究,涵盖了这些模型的主要特征,优势和差异。考虑到模拟前端(AFE)中的不平衡的主要根源,以零中频架构为发射器和接收器开发了矩阵形式的对称和非对称模型。基于这些模型,开发了一种矩阵模型转换方法,该方法能够将对称模型的I / Q不平衡特性转换为非对称模型。仿真结果通过在AFE不平衡估计的意义上对四种I / Q不平衡测试算法的性能比较,证实了建议的模型转换,从而可以在相同不平衡条件下进行公平的比较。

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