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The border effect in frequency signal processing and the phase measurement with arbitrary frequency relationship

机译:频率信号处理中的边界效应和任意频率关系的相位测量

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Based on the achievement of phase coincidence detection, the processing and elimination of quantization error is possible in digital frequency measurement. Because of the limited resolution of phase detection, a fuzzy area is to be formed. The higher precision can be obtained using the border stability of fuzzy areas. The decisive factor of the actual precision is the resolution stability of the border of fuzzy area, called the border effect. Therefore, utilizing the circuit with ns resolution one can obtain ps level or higher precision. On the basis of improving measuring resolution significantly and the phase variation regularity of periodic signals, through the frequency measurement with phase continuous, the measured frequency signal is compared with its theoretical nominal frequency by multiple periods and with measuring gate time one by one. Eventually, the measurement of phase variation of any measured signal in a wide frequency range can be realized. Compared with other measurement techniques and instruments it is a great advancement. Because of the phase information is obtained for the different even very complicated frequency signals, higher frequency measurement precision can be realized without any frequency transformation. It is possible to realize higher measurement and control precision.
机译:基于相位重合检测的实现,在数字频率测量中可以处理和消除量化误差。由于相位检测的分辨率有限,将形成模糊区域。使用模糊区域的边界稳定性可以获得更高的精度。实际精度的决定性因素是模糊区域边界的分辨率稳定性,称为边界效应。因此,利用ns分辨率的电路可以得到ps级或更高的精度。在显着提高测量分辨率和周期性信号的相位变化规律的基础上,通过连续相位的频率测量,可以将被测频率信号与其理论标称频率进行多个周期比较,并逐个测量选通时间。最终,可以实现在宽频率范围内任何被测信号的相位变化的测量。与其他测量技术和仪器相比,这是一个很大的进步。由于可以获得不同甚至非常复杂的频率信号的相位信息,因此无需任何频率转换即可实现更高的频率测量精度。可以实现更高的测量和控制精度。

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