Disclosed is a method used for synchronously collecting meteorological
radar servo information and intermediate-frequency signals, the method preventing a contradiction that angle information and echoinformation do not correspond in terms of collection and storage, reducing the complexity of subsequent algorithms to a great extent and increasing a
utilization rate of hardware storage resources. According to the method, a timing module is utilized to guarantee time reference synchronization between a comprehensive test device and a
signal processor; a LabVIEW (Laboratory
Virtual Instrument Engineering Workbench)
event driven architecture and a parallel structure are utilized to realize synchronization of
servo storage operation and intermediate-frequency echo collection, so that synchronization of
front panel operation and angle
information storage and
echo signal collection is guaranteed; an accurate time-
delay module is adopted to offset
system transmission time delays and communication
transmission time delays, so accurate synchronization of real-
time data collection and regular backhaul
servo information is realized; and
readability and effective utilization rates of data filesare improved by adding time headers to each group of data. According to the method, synchronization of meteorological
radar servo
information storage and intermediate-frequency
echo signal collectionis greatly realized.