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All-digital automatic gain control loop based on gain decision

机译:基于增益决策的全数字自动增益控制环路

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A long settling time of the all-digital automatic gain control (AGC) algorithm is obtained in a navigation receiver. To solve this problem, an improved AGC algorithm based on the gain decision is proposed in this paper. First, a mathematical model and loop settling time of the conventional AGC algorithm in the navigation receiver are analyzed. The contradiction between the loop settling time and the gain accuracy in the algorithm is shown. Accordingly, the proposed AGC algorithm based on the gain decision is examined. The algorithm calculates the deviation between the amplitudes of the output signal and reference value. Hence, the AGC loop can immediately adjust the gain when the amplitudes of the input signal change. In a comparison with the conventional AGC algorithm, the theoretical analysis and numerical simulation results verified that the proposed AGC algorithm can decrease the settling time without decreasing the gain accuracy of the AGC loop. The presented algorithm was implemented by a field-programmable gate array with low resource consumption and low complexity.
机译:在导航接收器中获得了全数字自动增益控制(AGC)算法的长建立时间。针对这一问题,提出了一种基于增益决策的改进AGC算法。首先,分析了传统AGC算法在导航接收机中的数学模型和回路建立时间。显示了算法中环路建立时间与增益精度之间的矛盾。因此,研究了基于增益决策的AGC算法。该算法计算输出信号幅度与参考值之间的偏差。因此,当输入信号的幅度发生变化时,AGC环路可以立即调整增益。与常规AGC算法相比,理论分析和数值模拟结果表明,所提出的AGC算法可以在不降低AGC环路增益精度的前提下,缩短建立时间。所提出的算法由具有低资源消耗和低复杂度的现场可编程门阵列实现。

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