Equipment layout regulating method on basis of exposure measurement on microwave frequency band radiation
A microwave frequency band, radiation exposure technology, applied in the direction of measuring electricity, measuring devices, measuring electrical variables, etc., can solve the problems of difficulty in rectification, difficulty in achieving monitoring purposes, and limited means of real-time control, so as to improve pertinence and effectiveness sexual effect
Active Publication Date: 2015-02-11
BEIHANG UNIV
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Problems solved by technology
[0003] In the late stage of design and manufacture of the helicopter system, various EMC standards tests will be carried out on the whole machine to show that the EMC performance of the whole machine is qualified when the airborne equipment is installed. At this time, many airborne equipment have been designed and finalized. It is difficult and costly to rectify the electromagnetic compatibility problems that arise
However, from the helicopter program stage to the engineering development stage, effective and real-time control methods for the radiation electromagnetic compatibility of airborne equipment are limited, and there is no clear and quantified radiation electromagnetic compatibility balance standard, which makes it difficult to achieve the monitoring purpose in the electromagnetic compatibility process control
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[0110] It is assumed that the five airborne equipment will affect the radiation safety of personnel in the helicopter working area, and the radiation intensity values of the five airborne equipment in the cockpit, the passenger compartment, and the three personnel operating areas below the tail boom are obtained by using test methods. The results are shown in the following table Shown:
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Abstract
The invention discloses an equipment layout regulating method on the basis of exposure measurement on microwave frequency band radiation. According to the method, by measuring microwave frequency band radiation intensity of airborne equipment in different regions of a helicopter cabin body, combining a military standard limit and adopting a weighting matrix strategy, calculation on the electromagnetic compatibility balance degree of the complete machine microwave frequency band radiation of a helicopter system is completed and the problems that conventionally, an electromagnetic compatibility balanced state of the equipment radiation in the microwave frequency band of the system is difficult to well track and monitor and improvement potential of the electromagnetic compatibility of the system cannot be judged are solved. By considering the radiation characteristics of the complete machine microwave frequency band of the helicopter system, the electromagnetic compatibility balanced state of the complete machine microwave frequency band of the helicopter system is evaluated, so that pertinence and effectiveness of quantitative evaluation on the electromagnetic compatibility of the microwave frequency range are improved.
Description
technical field [0001] The invention relates to an equipment layout adjustment method based on microwave frequency band radiation exposure measurement, and belongs to the field of electromagnetic compatibility design. Background technique [0002] In electronic and electrical systems where multiple devices work together, the electromagnetic interference generated by a certain device will be coupled to another device through conduction emission and radiation emission, causing the performance of the other device to degrade or even fail to work normally. With the increasing precision of integrated circuits and the increasing complexity of system equipment, the system's requirements for electromagnetic compatibility have been widely concerned by people. [0003] In the later stage of the design and manufacture of the helicopter system, various EMC standards tests will be carried out on the whole machine to show that the EMC performance of the whole machine is qualified when the ...
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Patent Type & Authority Patents(China)
IPC IPC(8): G01R31/00G01R29/08
Inventor 贾云峰马超胡修吴亮魏嘉利马新超苏东林
Owner BEIHANG UNIV
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