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A FPGA Software based GPS Receiver Implementation with Signal blocker through Simulink

机译:通过Simulink使用基于FPGA软件的​​GPS接收器和信号拦截器实现

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Background/Objectives: Field-Programmable Gate Array (FPGA) software based Global Positioning System (GPS) receiver has been designed and developed using the C language interface environment. GPS Receivers are used for tracking a signal and calculates the current position of the signal in real time. GPS Receiver is a real time application used for tracking purpose. Methods/Analysis: A GPS Receiver works on specially coded GPS satellite signals. The signal is processed in a GPS receiver for computing position, velocity and time. A GPS uses minimum four satellite signals for computing positions in three dimensions using the real time receiver clock. Findings: In this paper, it is planned to build a FPGA-based software GPS receiver using a high level Matlab design Simulink tool. This GPS Receiver is used to design such components that require huge computation like baseband signal processing correlator, C/A code generator, Discriminator Code Loop (DCL) are designed by the Xilinx FPGA block and implemented in Matlab/Simulink. Novelty: The “GPS Receiver Processing Captured Satellite data” model of GPS system without jammer, the signal level display shows the value 0.1779; but in case of a jammer, the signal level is reduced to 0.1447 which is 81% of the initial signal level. So, jammer reduces the signal strength and makes the signal weaker.
机译:背景/目的:已经使用C语言界面环境设计和开发了基于现场可编程门阵列(FPGA)软件的全球定位系统(GPS)接收器。 GPS接收器用于跟踪信号并实时计算信号的当前位置。 GPS接收器是用于跟踪目的的实时应用程序。方法/分析:GPS接收器可处理经过特殊编码的GPS卫星信号。信号在GPS接收器中进行处理,以计算位置,速度和时间。 GPS使用实时接收器时钟至少使用四个卫星信号来计算三维位置。发现:本文计划使用高级Matlab设计Simulink工具构建基于FPGA的软件GPS接收器。该GPS接收器用于设计需要大量计算的组件,例如基带信号处理相关器,C / A代码生成器,鉴别器代码循环(DCL)由Xilinx FPGA模块设计并在Matlab / Simulink中实现。新颖性:GPS系统没有干扰的“ GPS接收器处理捕获的卫星数据”模型,信号电平显示值为0.1779;但在发生干扰的情况下,信号电平会降低到0.1447,这是初始信号电平的81%。因此,干扰会降低信号强度并使信号变弱。

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