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Design and Implementation of the Digital Costas Loop Based on Software Defined Radio

机译:基于软件定义无线电的数字Costas循环的设计与实现

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摘要

The frequency offset is the main problem of the conventional SDR receiver for demodulation. In order to overcome this drawback, the new methods are applied to improve the conventional Costas loop which is used to extract carrier. Firstly, the integration and accumulator is designed to realize the function of low-pass filter, which takes up fewer hardware resources. Secondly, the more accurate arctangent phase detector is used to detect the phase. It replaces the multiplier phase detector, which only obtain the approximate phase difference. Based on these two improvements, the realization of each module about the improved loop is presented. In this paper, first of all, the designed algorithm is simulated on the plat of MATLAB and Modelsim. The simulation results show that the design in this paper is feasible and the method is very effective. Moreover the system has been implemented and tested using field programmable gate arrays (FPGA). The test results indicate that the system has many advantages, including the design structure is simple, the convergence speed and the stability are better, and it can eliminate the frequency offset effectively. Therefore, this system can be widely applied in the engineering.
机译:频率偏移是传统SDR接收器用于解调的主要问题。为了克服该缺点,应用新方法来改进用于提取载波的传统Costas循环。首先,集成和累加器旨在实现低通滤波器的功能,占用更少的硬件资源。其次,更精确的畸形相位检测器用于检测相位。它替换乘法器相位检测器,其仅获得近似相位差。基于这两种改进,提出了关于改进环路的每个模块的实现。在本文中,首先,在Matlab和ModelSim的平台上模拟了设计的算法。仿真结果表明,本文的设计是可行的,方法非常有效。此外,系统已经使用现场可编程门阵列(FPGA)来实现和测试。测试结果表明,该系统具有许多优点,包括设计结构简单,收敛速度和稳定性更好,并且可以有效地消除频率偏移。因此,该系统可以广泛应用于工程中。

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