PHASE FREQUENCY INTERPRETATION OF THE COINCIDENCE METHOD FOR FREQUENCY TO CODE CONVERSION

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
V. Petrushak
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引用次数: 0

Abstract

Context. The problem of fast conversion of radio signal frequency for monitoring the radial velocity of a moving object. The object of the study was the process of converting frequency into a code based on the coincidence method. Objective. The goal of the work is to improve the coincidence method for creating a new signal-to-code frequency converter without fixing the conversion time interval. Method. The coincidence method for converting the signal frequency into a code has been improved. The improved frequency conversion method, unlike the existing ones, consists in counting the number of complete phase cycles of the known and unknown signals during the time of double coincidence and asynchronous mode of hardware determination of the particle. The improved method has advantages in comparison with the method of an electro-counter frequency meter when determining the radial speed of objects and does not have a methodical error, which in an electro-counter frequency meter increases as the unknown frequency approaches the reference to 100%. However, the improved coincidence method compared to other versions has a hardware scheme for tracking the moments of coincidence and determining the fraction and does not require expensive and high-speed microprocessors to calculate the conversion results. Results. Based on the phase-frequency interpretation and the derived conversion equation and the proposed frequency-to-code conversion scheme using the coincidence method, a functional scheme of the frequency converter was developed. This made it possible to implement a 16-bit frequency converter in code on Intel’s MAX V series CPLD. Conclusions. The coincidence method for converting the signal frequency into a code received further development, which, unlike the existing ones, consists in counting the number of complete phase cycles of the known and unknown signals during the time of double coincidence and the asynchronous mode of hardware determination of the fraction. The influence of the frequency of signals on the time of a single measurement was studied using the coincidence method, as a result of which it was found that with an increase in the difference between the reference and unknown frequency, the time of a single measurement decreases. The obtained research results can be used for the development of high-speed means of converting the signal frequency into a binary code: in industrial tomography, radar and radio navigation for monitoring moving objects.
相位频率解释的符合性方法,用于频码转换
上下文。用于监测运动物体径向速度的无线电信号频率快速转换问题。研究的对象是基于重合法的频率转换成码的过程。目标。这项工作的目标是改进符合方法,在不固定转换时间间隔的情况下创建新的信码变频器。方法。改进了将信号频率转换为码的符合方法。改进的频率转换方法不同于现有的方法,在于计算已知和未知信号在双符合和硬件确定粒子的异步模式下的完整相位周期数。在确定物体径向速度时,改进的方法与电计数频率计的方法相比具有优点,并且不存在方法误差,在电计数频率计中,当未知频率接近参考频率100%时,方法误差会增加。然而,与其他版本相比,改进的符合法具有跟踪符合矩和确定分数的硬件方案,并且不需要昂贵的高速微处理器来计算转换结果。结果。基于相频解释和推导出的转换方程,提出了基于重合法的频率码转换方案,建立了变频器的泛函格式。这使得在Intel的MAX V系列CPLD上用代码实现16位变频器成为可能。结论。将信号频率转换成码的符合法得到了进一步的发展,与现有的符合法不同的是,该符合法是对已知和未知信号在双重符合时的完整相位周期数进行计数,并采用硬件确定分数的异步方式。采用符合法研究了信号频率对单次测量时间的影响,发现随着参考频率与未知频率之差的增大,单次测量时间减小。所获得的研究成果可用于开发将信号频率转换为二进制码的高速手段,用于工业层析成像,雷达和无线电导航,以监测运动物体。
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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