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Direction-Finding System Using Two-Element Time Modulated Array With and Without Modulation

机译:使用带有和不带有调制的两元素时间调制阵列的测向系统

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In this paper, a Time Modulated Array (TMA) direction finding system using a two element antenna array is implemented in LabVIEW and is experimentally verified with continuous time and BPSK modulated signal as the source. The TMA involves high speed switches functioning periodically at the front end of the traditional antenna array. This makes the array output a periodic function of time and the harmonics involved has a direct relation with the incident angle of the signal. Thus a simple harmonic analysis technique can be used to find the Direction of Arrival(DoA) of the incoming signal. In this paper the system consists of a two monopole antenna array, an RF switch, Universal Software Radio Peripheral (USRP) and LabVIEW. The spectrum analysis and angle estimation is carried out in LabVIEW. The method is simple in terms of hardware and computational complexity. The simulation results give an estimate of the DoA with a maximum error of 2.230 incident angles ranging from 0 to 900. The results are verified experimentally with continuous time signal giving an estimate angle of arrival in a range 200 to 700 with a maximum error of 8.240. Further, BPSK modulated signal is used to give an estimate angle within an angle of arrival ranging from -500 to 500 with a maximum error of 70. The experiments are conducted in the laboratory environment.
机译:本文在LabVIEW中实现了使用两元件天线阵列的时间调制阵列(TMA)测向系统,并通过连续时间和BPSK调制信号作为源进行了实验验证。 TMA包含高速开关,这些开关在传统天线阵列的前端定期工作。这使得阵列输出时间的周期函数,并且所涉及的谐波与信号的入射角有直接关系。因此,可以使用一种简单的谐波分析技术来找到输入信号的到达方向(DoA)。在本文中,该系统由两个单极天线阵列,一个射频开关,通用软件无线电外围设备(USRP)和LabVIEW组成。频谱分析和角度估计在LabVIEW中进行。就硬件和计算复杂度而言,该方法很简单。仿真结果给出了DoA的估计值,最大误差为2.23 0 入射角从0到90 0 。实验结果通过连续时间信号进行实验验证,得出的到达角估计范围为20 0 至70 0 最大误差为8.24 0 。此外,BPSK调制信号用于给出到达角在-50范围内的估计角 0 至50 0 最大错误为7 0 。实验在实验室环境中进行。

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