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Radar full life circle monitoring system

A technology of full life cycle and monitoring system, which is applied in the field of radar full life cycle monitoring system, can solve the problems of impossible data, unreliable manual written records, records, etc., and achieve the effect of reducing failures

Inactive Publication Date: 2018-10-02
CNGC INST NO 206 OF CHINA ARMS IND GRP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In order to accurately locate the radar fault and find the cause of the fault, it is necessary to record the whole life cycle activities of the radar to judge whether the radar has experienced activities that affect its function. However, there is currently no particularly effective and reliable means
[0003] The traditional data collection method is manual recording. During the process of sending the radar product to the army, whether it has experienced a large vibration exceeding the specified range or whether it has experienced high temperature and low temperature environment, the operator will record its environment during the work of the army. , but due to the unreliability of manual written records, it is impossible to accurately record this data
When the radar fails, it is necessary to check the components one by one, and guess the possible cause of the failure based on the unreliable manual written records. In short, the previous data acquisition system is very unreliable, and the workload is huge!

Method used

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  • Radar full life circle monitoring system
  • Radar full life circle monitoring system
  • Radar full life circle monitoring system

Examples

Experimental program
Comparison scheme
Effect test

Embodiment

[0019] as attached figure 1 As shown, a vibration amplitude sensor and a temperature sensor are installed on each radar, they monitor the environment where the radar is located and send the data to the data processor 1, which filters the received sensor data and converts Value G that exceeds the amplitude threshold (for example, 0.04grms) and temperature threshold (for example, less than 10 degrees below zero and more than 50 degrees above zero) i and T j , data processor 1 uses the known public key K of data processor 2 P for the data G i and T j Perform asymmetric encryption to obtain the ciphertext (G i ) KP and (T j ) KP , subsequently, the data transmitter transmits the ciphertext (G i ) KP and (T j ) KP After receiving the ciphertext, the data receiver sends it to the data processor 2, and the data processor 2 uses its own private key K S Decrypt the ciphertext to get the original data G i and T j , then the data G i and T j Send it to the data storage co...

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PUM

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Abstract

The invention relates to a radar full life circle monitoring system comprising a vibration amplitude sensor, a temperature sensor, a data processing unit 1, a data transmitter, a data receiver, a dataprocessing unit 2 and a data storage computer. After completion of radar checking, the monitoring system starts working. The sensors convert the real-time state of the radar into electric signals tobe filtered and encrypted by the data processing unit 1 and transmitted to the data receiver by the data transmitter through the ethernet and then the data are decrypted and transmitted to the data storage computer to be stored by the data processing unit 2 so that data analysis can be performed when the fault occurs in the radar and the root cause of the fault can be found. The advantages of themonitoring system are that radar full life circle monitoring can be performed and the environment state of the radar can be mastered in real time.

Description

technical field [0001] The invention belongs to the field of radar, and further relates to the field of radar data collection, in particular to a radar full life cycle monitoring system. Background technique [0002] In order to accurately locate the radar fault and find the cause of the fault, it is necessary to record the life cycle activities of the radar to determine whether the radar has experienced activities that affect its function. However, there is currently no particularly effective and reliable means. [0003] The traditional data collection method is manual recording. During the process of sending the radar product to the army, whether it has experienced a large vibration exceeding the specified range or whether it has experienced high temperature and low temperature environment, the operator will record its environment during the work of the army. , but due to the unreliability of manual written records, it is impossible to accurately record this data. When th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01S7/40
CPCG01S7/40
Inventor 张敏芳高峰韩亮赖飞刘峰李鹏超慕福顺刘成敏元可欣
Owner CNGC INST NO 206 OF CHINA ARMS IND GRP
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