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Research and Implementation of Acquisition Algorithm Based on Multi-correlator Parallel Frequency Search for Long Code

机译:基于多相关器并行频率搜索的长码捕获算法的研究与实现

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The long pseudo-noise codes have the advantages of strong anti-interference capability and high ranging accuracy, which has been used in GPS, Compass and other navigation satellite systems. However, the general acquisition algorithm is no longer applicable in the long codes because the long period property leads to the problem of large computation and high consumption of hardware resource. In order to solve the problems mentioned above, firstly, a long code acquisition algorithm based on parallel phase search which has already been proposed currently is improved by the method of partial averaging, and the simulation results show that the calculated amount is reduced. Then, the employ of multi-correlator and FFT transform in parallel frequency search can not only reduce the computation of acquisition algorithm, but also increase the acquisition speed. In order to receive the long code on the receiver, this paper concentrates on the hardware implementation of long code acquisition algorithm based on multi-correlation parallel frequency search in FPGA. Besides, the operating principle of each module is explained in detail. Through the test on the FPGA board, it is proved that the designed acquisition module can effectively and timely acquire the navigation signal. Moreover, the method of hardware implementation proposed in this paper for long code acquisition has the advantages of small hardware resource consumption and simple implementation structure, which is able to provide a reference for the engineering application of long code acquisition.
机译:长的伪噪声码具有抗干扰能力强,测距精度高的优点,已被用于GPS,指南针等导航卫星系统。但是,通用的获取算法不再适用于长码,因为长周期的特性导致计算量大和硬件资源消耗高的问题。为了解决上述问题,首先,通过部分平均的方法对目前已经提出的基于并行相位搜索的长码获取算法进行了改进,仿真结果表明该算法减少了计算量。然后,在并行频率搜索中采用多相关器和FFT变换不仅可以减少采集算法的计算量,而且可以提高采集速度。为了在接收器上接收长码,本文重点研究了基于FPGA的基于多相关并行频率搜索的长码采集算法的硬件实现。此外,还详细说明了每个模块的工作原理。通过在FPGA板上的测试,证明所设计的采集模块可以有效,及时地采集导航信号。此外,本文提出的长码获取的硬件实现方法具有硬件资源消耗少,实现结构简单的优点,可以为长码获取的工程应用提供参考。

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