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A software stack for next-generation automotive systems on many-core heterogeneous platforms

机译:多核异构平台上用于下一代汽车系统的软件堆栈

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摘要

The next-generation of partially and fully autonomous cars will be powered by embedded many-core platforms. Technologies for Advanced Driver Assistance Systems (ADAS) need to process an unprecedented amount of data within tight power budgets, making those platform the ideal candidate architecture. Integrating tens-to-hundreds of computing elements that run at lower frequencies allows obtaining impressive performance capabilities at a reduced power consumption, that meets the size, weight and power (SWaP) budget of automotive systems. Unfortunately, the inherent architectural complexity of many-core platforms makes it almost impossible to derive real-time guarantees using "traditional" state-of-the-art techniques, ultimately preventing their adoption in real industrial settings. Having impressive average performances with no guaranteed bounds on the response times of the critical computing activities is of little if no use in safety-critical applications. Project Hercules will address this issue, and provide the required technological infrastructure to exploit the tremendous potential of embedded many-cores for the next generation of automotive systems. This work gives an overview of the integrated Hercules software framework, which allows achieving an order-of-magnitude of predictable performance on top of cutting edge Commercial-Off-The-Shelf components (COTS). The proposed software stack will let both real-time and non real-time application coexist on next-generation, power-efficient embedded platforms, with preserved timing guarantees. (C) 2017 Elsevier B.V. All rights reserved.
机译:下一代半自动驾驶汽车将由嵌入式多核平台提供动力。高级驾驶员辅助系统(ADAS)技术需要在紧张的功率预算内处理前所未有的数据,从而使这些平台成为理想的候选架构。集成了数百个以较低频率运行的计算元件,可以在降低功耗的情况下获得出色的性能,从而满足汽车系统的尺寸,重量和功耗(SWaP)预算。不幸的是,由于多核平台固有的架构复杂性,几乎不可能使用“传统”的最新技术来获得实时保证,最终阻止了它们在实际工业环境中的采用。如果没有在安全关键型应用程序中使用,则具有令人印象深刻的平均性能,并且对关键计算活动的响应时间没有任何保证的限制。 Hercules项目将解决此问题,并提供所需的技术基础架构,以利用嵌入式多核在下一代汽车系统中的巨大潜力。这项工作概述了集成的Hercules软件框架,该框架允许在最先进的商用现货组件(COTS)之上实现可预测性能的数量级。拟议的软件堆栈将使实时和非实时应用程序在下一代,高能效嵌入式平台上共存,并保留时序保证。 (C)2017 Elsevier B.V.保留所有权利。

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