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In Terms of Testability on the Design of Fire Extinguishing and Explosion Suppression System of Armored Vehicles

机译:从可测性上看装甲车灭火防爆系统设计

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In order to improve the testability of electrical system of the armored vehicles of the PLA, the author of this paper elaborates on the concept of DFT (design for test) in designing the fire extinguishing and explosion suppression system of armored vehicles, analyzes the structural characteristics of the system and the test strategies of DFT and puts forward two effective strategies on fault diagnosis and fault isolation of analog circuitry close-loop systems which are difficult to isolate, and provides efficient and brand-new detecting methods for monitoring system power supply by applying the theory on series of numbers. Featuring DSP as control kernel, the new system can be categorized into fire alarm checking module, fire extinguisher checking module, detonating driving module and CAN communication module in terms of test strategy and module function. The author also designs BIT circuitry for input/output of analog and on-off signals through hardware encirclement methodology and BIT circuitry for serial communication and for A/D, D/A conversion through hardware back-circling methodology. The experiment result shows that the overall performance of the newly-designed system has reached and even surpassed the level of its predecessors and the system’s DFT can meet the requirements of fault detection and isolation.
机译:为了提高解放军装甲车电气系统的可测试性,本文作者在设计装甲车灭火防爆系统时阐述了DFT(试验设计)的概念,分析了其结构特点。系统的研究和DFT的测试策略,提出了难以隔离的模拟电路闭环系统故障诊断和故障隔离的两种有效策略,并通过应用DFT提供了高效,全新的监测系统电源的检测方法。关于数列的理论。新系统以DSP为控制内核,可根据测试策略和模块功能分为火灾报警检查模块,灭火器检查模块,起爆驱动模块和CAN通信模块。作者还设计了用于通过硬件包围方法进行模拟和开/关信号输入/输出的BIT电路,以及用于通过硬件逆循环方法进行串行通信和A / D,D / A转换的BIT电路。实验结果表明,新设计的系统的整体性能已经达到甚至超过了其前代产品的水平,并且该系统的DFT可以满足故障检测和隔离的要求。

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