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Adaptive Nonlinear Equalization for Digital Array Receivers

机译:数字阵列接收机的自适应非线性均衡

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As low-cost fully digital array technology becomes more commercialized, techniques need to be developed to be able to deal with many of the inherent problems of these systems. This article focuses on mitigating the intermodulation distortion (IMD) caused by the low-input third-order intercept point (IIP3) of the low-noise amplifier (LNA) in a digital array element's channel. The performance of solid-state electronics also varies with the temperature of the device, thus changing the device's nonlinear characteristics. This article proposes an adaptive solution for nonlinear equalization (NLEQ) with the use of the least mean-square (LMS) algorithm. Data from a modern digital array channel are corrected using the proposed method; the channel nonlinearities are also characterized for further simulations. A simulation using these nonlinear coefficients shows that NLEQ can effectively mitigate the IMD of two strong interferers that had previously distorted the weak signal of interest. Finally, a nine-element fully digital array is simulated, showing the correlation of IMD with specific, predictable directions, and the decorrelation of these spurs after NLEQ is applied to each element of the array.
机译:随着低成本的全数字阵列技术的商业化,需要开发能够解决这些系统许多固有问题的技术。本文着重减轻数字阵列元件通道中低噪声放大器(LNA)的低输入三阶交调点(IIP3)引起的互调失真(IMD)。固态电子设备的性能也随设备温度而变化,从而改变了设备的非线性特性。本文提出了一种使用最小均方(LMS)算法的非线性均衡(NLEQ)自适应解决方案。使用提出的方法校正来自现代数字阵列通道的数据;通道非线性也被表征以用于进一步的仿真。使用这些非线性系数进行的仿真表明,NLEQ可以有效地减轻以前使感兴趣的弱信号失真的两个强干扰源的IMD。最后,模拟了一个九元素的全数字阵列,显示了IMD与特定的可预测方向的相关性,以及在将NLEQ应用于阵列的每个元素之后,这些杂散的去相关性。

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