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基于STM32的机载燃油计算机设计与实现 被引量:2

Design and Implementation of an On-Board Fuel Computer Based on the STM32 Microprocessor
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摘要 针对我国现役战机电容式燃油测量系统测量精度低、维护保障问题突出、故障率较高的缺点以及对新型战机发展的需要,采用嵌入式设计理念构建基于STM32微处理器的燃油计算机,实现对燃油系统的综合管理。首先提出了核心处理板+外围电路的燃油计算机的总体设计方案,然后重点阐述了基于STM32微处理器的核心处理板和基于CPLD的信号转换板、继电器控制信号输出板的外围电路的硬件设计,编写了自动液面控制、CPLD串口通信和429总线数据收发的应用程序;最后给出了系统的实物图并对其进行了测试。测试结果表明,燃油计算机设计是可行的,该燃油计算机的构建将对提高燃油测量精度和系统维护保障性具有十分重要的现实意义。 Aimed at the defects of the fuel measurement system of our country’s aircrafts in service, which are lower measurement accuracy, prominent maintenance problems and high failure rate, and the needs of the development of new aircraft, the embedded design idea is used to build a fuel computer based on the STM32 microprocessor. It can realize comprehensive management of the fuel system. First, the total design project of the fuel computer is put forward, which adopts key processing board plus peripheral circuitry. Second, we focus on illustrating the hardware design of a core processing board based on the STM32 microprocessor and the peripheral circuit including the signal conversion board based on CPLD and the control signal output board of electric relay. The application programs of automatic liquid level control, CPLD serial communication and 429 bus data receiving and sending are compiled. Finally, the fuel computer is tested and the results show that the fuel computer design is feasible. The achievement of the fuel computer has very important realistic significance to enhance fuel measurement accuracy and system maintenance and support.
出处 《计算机工程与科学》 CSCD 北大核心 2012年第1期154-158,共5页 Computer Engineering & Science
基金 中国航空科学基金(20101996012)
关键词 燃油测量系统 STM32微处理器 硬件设计 核心处理板 外围电路 软件设计 fuel measurement system STM32 microprocessor hardware design core processor board peripheral circuit software design
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  • 1Akos Balfizs, Guthe M, Klein R. Efficient trimmed NURBS tessellation [A]. Proceedings of WSCG'2004[C]. Plzen-Bory, Czech Republic, 2004. 27-34. 被引量:1
  • 2Jarek R, Megahed A, Schneider B O. Interactive inspection[J].1992on of solids: cross-sections and interferences ACM Transactions on Computer Graphics,26(2):353-360. 被引量:1
  • 3Marie D, Schumacher R. Fuel analysis: methods,techniques, and calibration[A]. SAWE Paper 3233,Proceedings of 61st Annual Conference of SAWE[C]. Virginia Beach, 2002. 被引量:1
  • 4Ohanian J O, III. Mass properties calculation and fuel analysis in the conceptual design of uninhabited air vehicles [D]. Blacksburg: Virginia Polytechnic Institute and State University, 2003. 被引量:1
  • 5International Aviation Industry. Aircraft fuel system safety program report [ EB/OL ]. http://www.twa800, com/pdf/afsspreportaug16, pdf,2000-08-16. 被引量:1
  • 6DDC公司.DD-00429 Microprocessor Interface Device. 被引量:1
  • 7The Fault- tolerance validation for an autonomus onboard spaceborne computer[ C ]. IBM federal systems company manassas. Virgina. 被引量:1
  • 8Dong Tang. Experimental analysis of computer system dependability[ J]. Annual Reliability and Maintainability Symposium, 1995 (2) :62 - 75. 被引量:1
  • 9Gregory L, Mealy, Richard B, Larzarus. Specification of Faulttolerant architecture, Reading Massachusetts[ A ]. 01867. The Procof the 1992 Summer Computer Simulation Cont. 被引量:1
  • 10王振西,张宝田等.科索沃战争(上中下)[M].北京:军事科学院出版社,2002. 被引量:1

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