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Load Balancing across ECUs in Automotives

机译:汽车中各个ECU的负载平衡

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Modern automotive subsystems are no longer a heap of electro-mechanics but instead involve a number of electronic control units (ECUs). Electronic control unit (ECU) has become the fundamental building block of any automotive subsystem and is interfaced with electro mechanics counterpart. To meet the system wide requirements, these ECUs are interconnected using the communication infrastructure. Although the communication infrastructure in terms of, predominantly, the CAN based vehicle network took its birth to enable ECUs to work in a coordinated manner in order to support system wide requirements, during the past decade, this infrastructure was also viewed as a potential means to incorporate extensibility in terms of addition of newer ECUs which are built for implementing additional requirements. With this paradigm, the number of ECUs started growing in a steep manner, uncontrolled and as a result, today, it is not hard to see a high segment automotive housing ECUs as large as 75-80. Hence, load balancing mechanisms are needed to ease ECU integration and for efficient utilization of CPU power in ECUs. In this paper, we explain the concept of load balancing on the basis of CPU utilization across ECUs.
机译:现代汽车子系统不再是一堆机电设备,而是涉及许多电子控制单元(ECU)。电子控制单元(ECU)已成为任何汽车子系统的基本组成部分,并与电子机械部件相连接。为了满足系统范围的要求,这些ECU使用通信基础结构互连。尽管主要基于CAN的车辆网络的通信基础设施应运而生,以使ECU能够以协调的方式工作,以支持整个系统的要求,但在过去十年中,该基础设施也被视为一种潜在的手段来结合了可扩展性,以增加为满足附加要求而构建的新型ECU。在这种模式下,ECU的数量开始急剧增长,不受控制,结果,今天,不难发现有75-80的大型汽车外壳ECU。因此,需要负载平衡机制来简化ECU集成并有效利用ECU中的CPU功率。在本文中,我们将基于跨ECU的CPU利用率来说明负载平衡的概念。

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