This book introduces various kinds of high-precision measurements, including the measurements of time and space, digital activity, border sensors and other physical quantities. Further, it demonstrates how to eliminate the quantitative errors believed to be the main problem in measurements using the border effect. In metrology technology, detection resolution is crucial to improving measurement precision in devices and instruments, and since the resolution is limited, a fuzzy area is usually found during detection. As such the book presents numerous experimental findings showing that the measurement precision can be improved by two or three orders of magnitude compared to traditional methods by achieving stability of resolution and more accurately detecting the border of the fuzzy area.
Utilizes the higher-resolution stability of measuring devices instead of their resolution to improve on traditional measurement experiments
Eliminates the quantitative errors generally considered to be the main problem in measurements by border effect
Discusses the precision enhancement of different sensors used in instruments with the border effect and processing techniques
Utilizes the higher-resolution stability of measuring devices instead of their resolution to improve on traditional measurement experiments Eliminates the quantitative errors generally considered to be the main problem in measurements by border effect Discusses the precision enhancement of different sensors used in instruments with the border effect and processing techniques
Wei Zhou
Time and Frequency Digital Processing Border Effect Response Time Quantization Error Phase Processing Border Metrology