线束连续性测试设备设计基于单片机的飞机模块和atmega328p NRF24l01+ Wireless

Jaja Kustija, Zulkarnain, Irvan Purnama, Irgi Surya, Diki Fahrizal
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引用次数: 1

摘要

在飞机制造中,有一些系统非常复杂,必须相互集成,这些系统通过线束传输介质相互集成。线束是一组被绑成一束的电缆。目前可用的连续性测试工具使用万用表,使用万用表的缺点是需要很长时间,因为它必须一个接一个地测试要测试的点,而要测试的点相当多,两个运营商在无线列表上寻找电缆地址时经常遇到困难,使用的三种工具都不灵活。本研究的目的是设计和制造一种飞机线束连续性测试工具,它可以快速测试,因为它可以同时测试多个点,使操作员更容易在无线列表上寻找电缆地址,并且在测试时灵活,因为它可以测量相隔很远的两个点。远远超过万用表探头。该工具有主从两部分,每个部分使用基于Atmega328p微控制器的控制器作为数据处理器。然后还使用了2个CD74HC4067 ic,即一个4到16线的多路/解路复用器,其二进制输出由微控制器控制。以及使用NRF24l01+(无线)实现主从之间的单向通信。为了操作该工具并显示线束测试结果,使用Visual Studio 2010和Visual Basic编程语言创建了一个应用程序。所创建的系统将实现为硬件,能够以多点对多点的方式进行32个连接引脚的连续性测试。在所有系统实现后,对工具进行进一步的测试,进行该测试以确定该工具是否可以按照计划进行操作。在使用该工具进行连续性测试时,由于能够进行多点连续性测试,主从通信距离为20米,使用该工具的测试时间比使用万用表快46.2%,因此能够产生良好的测试结果。通过使用这种连续性测试仪来加快工作速度,结果更安全,因为电缆连接不混乱,可以测试连接是否断开或连接。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wireharness continuity test equipment design microcontroller-based aircraft module and atmega328p NRF24l01+ Wireless
In the manufacture of aircraft there are systems - systems that are very complex and must be integrated with each other, these systems are integrated with each other with wireharness transmission media. Wireharness is a collection of cables that are tied to form a bundle into a single unit. The continuity testing tool available today uses a multimeter, the disadvantage of using a multimeter is that it takes a long time to carry out because it must be tested one by one point to be tested while there are quite a lot of points to be tested, both operators often have difficulty when looking for cable addresses on the wirelist, the three tools used are not flexible. The purpose of this research is to design and make an aircraft wireharness continuity test tool that can test quickly because it can test many points at the same time, makes it easier for operators when looking for cable addresses on the wirelist, and is flexible when testing because it can measure two points that are quite far apart. far compared to a multimeter probe. This tool has two parts master and slave and each part uses an Atmega328p microcontroller-based controller as a data processor. Then also used 2 CD74HC4067 ICs, namely a 4 to 16 line multiplexer/demultiplexer whose binary output is controlled by a microcontroller. As well as for unidirectional communication between master and slave using NRF24l01+ (wireless). To operate the tool and display the results of the wireharness test, an application program was created using Visual Studio 2010 with the Visual Basic programming language. The system created will be realized into hardware capable of conducting a continuity test of 32 connection pin points in a multipoint to multipoint manner. After all systems are realized, then further testing is carried out on the tool, where this test is carried out to find out whether this tool can operate in accordance with what was planned. In continuity testing with this tool, it is able to produce good tests because it is able to carry out multipoint continuity tests and the communication distance between master and slave is 20 meters, and the testing time using this tool is 46.2% faster than using a multimeter. By using this continuity tester to speed up the work, the result is safer because the cable connections are not confused, can test the connection is disconnected or connected.
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