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Method for detecting data transmission delay time of photoelectric theodolite wireless communication system

A photoelectric theodolite and wireless communication technology, which is applied in the direction of transmission monitoring, transmission system, relay system monitoring, etc., can solve the problems of fixed or unfixed time delay, small data volume, etc., and achieve high detection accuracy, simple operation, and versatility strong effect

Inactive Publication Date: 2011-05-04
CHANGCHUN INST OF OPTICS FINE MECHANICS & PHYSICS CHINESE ACAD OF SCI
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Problems solved by technology

With the continuous improvement of the demand for shooting range testing, the photoelectric theodolite has also ushered in rapid development. The traditional ground-based photoelectric theodolite can no longer meet the test requirements. The vehicle-mounted photoelectric theodolite with higher mobility has become the mainstream of design. The flexibility and timeliness of theodolite station deployment, wireless communication instead of traditional cable and optical fiber communication has become the preferred solution for inter-station communication of vehicle-mounted photoelectric theodolite
Compared with wired communication systems such as optical fiber, the wireless communication system has the advantages of strong mobility and simple station deployment. However, its lack of stability and anti-interference ability cannot be ignored. One of the specific manifestations is the instability of its data transmission delay time. Due to Due to real-time changes in the shooting range environment and real-time differences in the amount of transmitted data, there is an unfixed time delay in the inter-station transmission of photoelectric theodolite image data, and this delay will affect the overall operation of the photoelectric theodolite measurement system to a certain extent. Therefore, how to effectively The data transmission delay time of the wireless communication system in the detection range has become a technical problem to be solved urgently
[0003] The traditional detection method of data transmission delay time uses computers between different stations to transmit fixed data packets through the spelling operation, and uses the link delay time displayed by the computer as the basis for judging the data transmission delay time of the wireless communication system. The amount of data is small and fixed, and it is impossible to simulate the real situation of data transmission between photoelectric theodolite stations. Therefore, it is imperative to provide a wireless communication system data transmission delay time detection method based on actual use conditions.

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  • Method for detecting data transmission delay time of photoelectric theodolite wireless communication system

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[0019] The method of the present invention presses figure 1 The flow shown is implemented, and each step is carried out according to the method steps mentioned in the technical solution. In step 1, a set of high-precision clock targets is established by figure 2 The structure schematic diagram shown is implemented, the power supply system 15 adopts the DC-DC module MAX1651, the central controller 9 adopts the Virtex E series FPGA produced by Xilinx Company, the FLASH memory 12 adopts the standard SPI interface FLASH, and the temperature-compensated crystal oscillator 11 adopts Beijing Jingchen The temperature-compensated crystal oscillator customized by the company, the GPS receiver 10 can use a standard serial port receiver, and the LED display screen is a display screen customized by Cedar Company, which requires fast response and high brightness. In step 4, create a set of high-precision timing cards image 3 The structure schematic diagram shown is implemented, the powe...

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Abstract

The invention relates to a method for detecting data transmission delay time of a photoelectric theodolite wireless communication system, belonging to the technical field of photoelectric detection. The invention aims to provide a method for detecting data transmission delay time of a photoelectric theodolite wireless communication system. The technical scheme comprises the following steps: establishing high-precision clock targets; completing target range station arrangement of photoelectric theodolites; establishing a wireless communication link; putting the high-precision clock targets in the substations, so that the clock targets are clearly imaged in the viewing fields of the photoelectric theodolites in the corresponding substations; establishing a high-precision timing card for themaster station; realizing image transmission between the master station and the substations; extracting image time information, making a difference between the extracted image time information and the time information of the timing card of the master station, and storing the difference; continuously transmitting data for 2 hours, and carrying out difference storage on images of all frames; and processing data of the difference sequence to obtain the maximum time, the mean time and the variance index of data transmission delay, thereby completing the evaluation on the data transmission delay time of the photoelectric theodolite wireless communication system.

Description

technical field [0001] The invention belongs to the technical field of photoelectric detection and relates to a detection method for data transmission delay time of a photoelectric theodolite wireless communication system. Background technique [0002] The photoelectric theodolite is widely used in the measurement of the outer ballistic trajectory parameters of the flying target, and takes into account the real-time measurement of the attitude of the flying target. It is an important photoelectric test equipment for the shooting range. With the continuous improvement of the demand for shooting range testing, the photoelectric theodolite has also ushered in rapid development. The traditional ground-based photoelectric theodolite can no longer meet the test requirements. The vehicle-mounted photoelectric theodolite with higher mobility has become the mainstream of design. The flexibility and timeliness of theodolite station deployment, wireless communication instead of traditi...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B17/00H04B17/40
Inventor 李俊霖贺庚贤宁飞李载峰
Owner CHANGCHUN INST OF OPTICS FINE MECHANICS & PHYSICS CHINESE ACAD OF SCI