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Generalized Transmitter Compensation of Frequency Dependent I/Q Imbalance

机译:频率相关的I / Q失衡的通用发射机补偿

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This paper considers the formulation of a digital pre-distorter to eliminate distortions that are generated by a frequency-dependent imbalance between the analog in-phase (I) and quadrature (Q) channels of a direct conversion transmitter. Estimation of the imbalance occurs in the frequency domain, while compensation occurs in the time domain. We demonstrate the efficacy of the approach by estimating and eliminating transmitter distortions whose digital-to-analog converters (DACs) and filters have differing impulse responses, as well as a phase and amplitude imbalance between the local oscillators (LOs). The estimator developed includes a separation of the linear and nonlinear transmitter response, facilitating the application of nonlinear pre-distortion without architectural restriction. Furthermore, the estimator not only compensates for I/Q imbalances, but fully characterizes the frequency response and identifies the source of the imbalance. An interesting outcome of the analysis is that it may not be possible with baseband processing to compensate for an imbalance that occurs after up-conversion but prior to I/Q summing.
机译:本文考虑了数字预失真器的设计,以消除由直接转换发射机的模拟同相(I)和正交(Q)通道之间的频率相关不平衡所产生的失真。不平衡的估计发生在频域中,而补偿发生在时域中。我们通过估计和消除发射机失真来证明该方法的有效性,发射机失真的数模转换器(DAC)和滤波器具有不同的脉冲响应,以及本地振荡器(LO)之间的相位和幅度不平衡。所开发的估算器包括线性和非线性发射机响应的分离,便于非线性预失真的应用而不受体系结构的限制。此外,估算器不仅可以补偿I / Q不平衡,而且可以充分表征频率响应并确定不平衡的根源。分析的一个有趣结果是,基带处理可能无法补偿在上转换之后但在I / Q求和之前发生的不平衡。

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