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System-on-Chip-based highly integrated Powertrain Control Unit for next-generation Electric Vehicles: harnessing the potential of Hybrid Embedded Platforms for Advanced Model-Based Control Algorithms

机译:基于系统的基于系统的高度集成动力总成控制单元,用于下一代电动车辆:利用混合嵌入式平台的潜力,用于高级模型的基于模型的控制算法

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In this paper, a novel highly integrated System on Chip (SoC) based control unit concept is presented, which is conceived to combine the functionality of various powertrain ECUs and to additionally enhance their control with predictions based on the real-time execution of complex mathematical models. Such a platform has the potential for providing considerable benefits to upcoming hybrid and electric vehicles, especially for highly complex and efficient hybrid and multi-motor electric vehicles. A clear advantage is the reduction of Control Units, consequently also reducing the system complexity, communication requirements and development effort, which are directly associated to production and development costs. A controller architecture capable of exploiting the strength intrinsic to the nature of each platform type is presented, basing on the new generation of high-performance hybrid SoC platforms which combine powerful processors with cutting edge FPGAs. The parallel hardware paradigm of FPGAs enables the implementation into a single component not only of several Field Oriented Control loops for electrical motors, power management functions and vehicle-level optimizations, but also of advanced real-time predictive algorithms. The combination of so many complex tasks would not be feasible on a typical automotive microcontroller unit. A further objective for obtaining a highly integrated solution is to establish an efficient development and prototyping process, aiming to simplify and harmonize the workflow through the whole V model, by completely basing it on model-based-design tools. Finally, the concept demonstrator being implemented in this paper will combine a state-of-the-art high performance microprocessor and FPGA using a commercial SoC platform together with model-based software development tools. This will also fulfil the expectation of providing a topology with great migration and industrialization potential for the case of higher qualification requirements. Furthermore, it is another step towards a necessary mindset shift on control system development and integration methods for increasingly complex vehicles.
机译:本文提出了一种基于芯片(SOC)的控制单元概念的新型高度集成系统,其构思为组合各种动力总成ECU的功能,并基于复杂数学的实时执行,通过预测等待其控制楷模。这种平台具有对即将到来的混合动力和电动车辆提供相当大的益处,特别是对于高度复杂,高效的混合动力和多电机电动车辆。明显的优势是控制单元的减少,因此还降低了与生产和开发成本直接相关的系统复杂性,通信需求和开发工作。提供了一种能够利用每个平台类型的性质的强度的控制器架构,基于新一代高性能混合SOC平台,该高性能混合SOC平台与切削刃FPGA相结合的强大处理器。 FPGA的并行硬件范例使得实施成为一种组件,不仅是电动机,电源管理功能和车辆级优化的多个现场导向的控制环路,还可以实现高级实时预测算法。如此多的复杂任务的组合在典型的汽车微控制器单元上不可行。获得高度集成的解决方案的另一个目标是建立有效的开发和原型过程,旨在通过完全基于基于模型的设计工具来简化和协调通过整个V型号的工作流程。最后,本文实施的概念示范器将使用商业SOC平台与基于模型的软件开发工具相结合的最先进的高性能微处理器和FPGA。这也将履行为提供更高资格要求的案例提供巨大移民和工业化潜力的拓扑的期望。此外,它是对越来越复杂的车辆的控制系统开发和集成方法进行必要的心态转变的另一个步骤。

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