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Application of an Adaptive Direct Current Offset Elimination Algorithm Based on FPGA in Orthogonal Demodulation

机译:基于FPGA的自适应直流偏置消除算法在正交解调中的应用。

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In the coherent demodulation of the FM signal, an uncertain frequency deviation exists between the demodulated carrier and the modulated carrier, which will generate a direct-current (DC) offset in the demodulation signal and directly affect the performance of the system. An adaptive interference cancellation method based on least mean square (LMS) is proposed to eliminate the DC offset in this paper. Compared with the method of filtering the DC offset by using a high-pass filter, the LMS algorithm has low latency and low implementation cost. The method is implemented and verified on the field-programmable-gate-array (FPGA) platform by hardware description language. Simulation results show that the LMS algorithm can eliminate the DC offset from the demodulated signal within 1.5ms.
机译:在调频信号的相干解调中,解调后的载波与调制后的载波之间存在不确定的频率偏差,这将在解调信号中产生直流(DC)偏移,并直接影响系统的性能。为了消除直流偏移,提出了一种基于最小均方(LMS)的自适应干扰消除方法。与使用高通滤波器对直流偏移进行滤波的方法相比,LMS算法具有较低的等待时间和较低的实现成本。通过硬件描述语言在现场可编程门阵列(FPGA)平台上实现并验证了该方法。仿真结果表明,LMS算法可以在1.5ms内消除解调信号的直流偏移。

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