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Model Driven System Engineering for vehicle system utilizing Model Driven Architecture approach and hardware-in-the-loop simulation

机译:利用模型驱动架构方法和硬件在环仿真的车辆系统模型驱动系统工程

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In this paper, we show how Model Driven System Engineering (MDSE) can be applied in the development of a vehicle system. The drivers for the research have been to increase efficiency, flexibility and reconfigurability of UK vehicle system engineering, for enhanced competitiveness and innovation in face of increasing global competitions. Key contributions of the research include (i) establishment of baseline Model Driven Architecture (MDA) approach at the platform independent level; (ii) identification of suitable methodology and toolset (based on Rhapsody / Simulink combination) to permit MDA system designs and hardware-in-the loop (HIL) simulation (based on xPC Target by Mathworks) for system verification; (iii) design and development of a model transformer for seamless transformation of the Rhapsody model to a Simulink model. The end outcome is a streamlined, integrated development platform to facilitate integration of various subsystems and verification of overall system performance to meet the desired system requirements. A case study based on a vehicle system (in this case a train system) had been implemented to verify the effectiveness and capability of the development platform by designing and developing an engine controller and an ABS controller for the train system. The research outcomes shown promising results, which are anticipated to benefit the wider transport sectors, as well as other sectors such as manufacturing and automation.
机译:在本文中,我们展示了如何将模型驱动系统工程(MDSE)应用于车辆系统的开发。这项研究的驱动力是提高英国车辆系统工程的效率,灵活性和可重构性,以应对日益激烈的全球竞争,从而提高竞争力和创新能力。该研究的主要贡献包括:(i)在平台独立级别建立基线模型驱动架构(MDA)方法; (ii)确定合适的方法和工具集(基于Rhapsody / Simulink组合)以允许MDA系统设计和硬件在环(HIL)仿真(基于Mathworks的xPC Target)进行系统验证; (iii)设计和开发模型转换器,以将Rhapsody模型无缝转换为Simulink模型。最终结果是一个简化的集成开发平台,可促进各种子系统的集成以及对整个系统性能的验证,从而满足所需的系统要求。通过设计和开发用于火车系统的引擎控制器和ABS控制器,已经实施了基于车辆系统(在本例中为火车系统)的案例研究,以验证开发平台的有效性和功能。研究结果显示出令人鼓舞的结果,有望使更广泛的运输部门以及制造业和自动化等其他部门受益。

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