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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Implementation of Interpolation algorithm in FPGA for Fine Frequency Accuracy
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Implementation of Interpolation algorithm in FPGA for Fine Frequency Accuracy

机译:内插算法在FPGA中实现精细频率精度的实现

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摘要

In today EW scenario the Radar features are getting advanced day by day. To intercept and analyse signals coming from such Radar, ESM receivers also should have modern and advanced features and techniques. There are many ESM Receivers developed/being developed based on Analog and Digital techniques to measure the intercepted Radar signal parameters. Frequency of the signal is one of the important basic parameter measured by ESM Receiver. Better frequency resolution and accuracy are desirable specifications of the receiver. Systems based on Digital Receiver are sampled signal systems. By means of the Fast Fourier Transform (FFT) algorithm, Frequencies of intercepted signals can be estimated from their locations in the discrete spectrum with a resolution depending on the number of points of FFT. But computational or other limitations often restrict the number of points, which correspondingly restricts the resolution of the estimate provided by the FFT. This paper brings out implementation of interpolation algorithm in FPGA for fine Frequency accuracy without increasing the FFT size.
机译:在当今的电子战场景中,雷达功能正在日趋完善。为了拦截和分析来自此类雷达的信号,ESM接收器还应具有现代化和先进的功能和技术。有很多基于模拟和数字技术的ESM接收器已经开发/正在开发,以测量拦截的雷达信号参数。信号频率是ESM接收器测量的重要基本参数之一。更好的频率分辨率和精度是接收机的理想规格。基于数字接收器的系统是采样信号系统。通过快速傅立叶变换(FFT)算法,可以根据离散频谱中它们的位置估计截获信号的频率,其分辨率取决于FFT点的数量。但是计算或其他限制常常限制点的数量,这相应地限制了FFT提供的估计的分辨率。本文提出了在不增加FFT大小的情况下实现精确频率精度的FPGA插值算法的实现。

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