Improving the Accuracy of Digital Simulation of the Radio Signal Propagation Delay

A. Bokov, V. Vazhenin, Emil Zeynalov
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Abstract

Methods of reducing and completely eliminating of the characteristic discrete error of simulating a variable delay (range) of radio signal propagation is discussed in this article. The structure and parameters of hardware-in-the-loop (HIL) simulators, which is based on basic digital radio frequency memory (DRFM) technology are considered. Some possibilities of improving the FPGA implementation are suggested. One of the feature is the simultaneous realizing of a continuously variable delay and Doppler frequency shift by using a double-frequency synchronization of the input and output parts of the simulator. It is possible to change all main parameters of the simulation, including automatic adjustment to the modulation parameters of a radio signal. The proposed simulator is useful to perform a HIL simulation with finer verification of both receiver-transmitting microwave paths and signal processing algorithms of typical and cognitive communication and radar systems.
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提高无线电信号传播延迟数字仿真的精度
本文讨论了减小和完全消除模拟变延迟(范围)无线电信号传播的特征离散误差的方法。研究了基于基本数字射频存储(DRFM)技术的半实物仿真器的结构和参数。提出了改进FPGA实现的一些可能性。其特点之一是利用模拟器输入输出部分的双频同步,同时实现连续可变延迟和多普勒频移。可以改变模拟的所有主要参数,包括自动调整无线电信号的调制参数。所提出的模拟器可用于进行HIL仿真,对典型和认知通信和雷达系统的接收机发射微波路径和信号处理算法进行更精细的验证。
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