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Automated software design and synthesis for distributed control of aircraft fuel systems

机译:飞机燃油系统分布式控制的自动化软件设计和综合

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There is an increasing interest to develop methodologies to reduce costs and risks in the development process of control software systems. A suitable solution is a shortcut in the classical development V-diagram to verify and validate the software requirements at early development stages, and automation of the code generation from models. This paper presents the simulation outcomes of a Helicopter Distributed Fuel Control System (HDFCS) that is developed by following the above software design methodology. It involves Smart Fuel Components (SFCs), and deals with an automated design tool and a simulation process for SFCs. The methodological approach chosen addresses the functional aspects of a HDFCS as to design and synthesis automation, and simulation. The software synthesis automation is carried out by the design computer tool that captures the behavior of the SFCs and system in flowchart diagrams. The software code generated by the above tool is utilized by the simulator for functional verification and validation. This paper also shows procedural aspects of the methodology for the automated software design and synthesis, illustrative test case studies showing how the control software code is tested, and simulation results.
机译:开发减少控制软件系统开发过程中的成本和风险的方法的兴趣日益浓厚。合适的解决方案是经典开发V型图中的捷径,它可以在早期开发阶段验证和验证软件需求,以及从模型自动生成代码。本文介绍了通过遵循上述软件设计方法开发的直升机分布式燃料控制系统(HDFCS)的仿真结果。它涉及智能燃料组件(SFC),并涉及针对SFC的自动化设计工具和仿真过程。选择的方法论方法解决了HDFCS的功能方面,包括设计和综合自动化以及仿真。软件综合自动化由设计计算机工具执行,该工具可在流程图中捕获SFC和系统的行为。模拟器将上述工具生成的软件代码用于功能验证和确认。本文还显示了自动化软件设计和综合方法的过程方面,说明性的测试案例研究显示了如何测试控制软件代码,以及仿真结果。

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