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MAVBench: Micro Aerial Vehicle Benchmarking

机译:Mavbench:微空气车辆基准测试

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Unmanned Aerial Vehicles (UAVs) are getting closer to becoming ubiquitous in everyday life. Among them, Micro Aerial Vehicles (MAVs) have seen an outburst of attention recently, specifically in the area with a demand for autonomy. A key challenge standing in the way of making MAVs autonomous is that researchers lack the comprehensive understanding of how performance, power, and computational bottlenecks affect MAV applications. MAVs must operate under a stringent power budget, which severely limits their flight endurance time. As such, there is a need for new tools, benchmarks, and methodologies to foster the systematic development of autonomous MAVs. In this paper, we introduce the MAVBench' framework which consists of a closed-loop simulator and an end-to-end application benchmark suite. A closed-loop simulation platform is needed to probe and understand the intra-system (application data flow) and inter-system (system and environment) interactions in MAV applications to pinpoint bottlenecks and identify opportunities for hardware and software co-design and optimization. In addition to the simulator, MAVBench provides a benchmark suite, the first of its kind, consisting of a variety of MAV applications designed to enable computer architects to perform characterization and develop future aerial computing systems. Using our open source, end-to-end experimental platform, we uncover a hidden, and thus far unexpected compute to total system energy relationship in MAVs. Furthermore, we explore the role of compute by presenting three case studies targeting performance, energy and reliability. These studies confirm that an efficient system design can improve MAV's battery consumption by up to 1.8X.
机译:无人驾驶航空公司(无人机)在日常生活中越来越越来越越来越多。其中,微型航空车辆(MAV)最近看到了一直在关注的爆发,特别是在该地区,具有自治需求。站在制作MAV的方式的关键挑战是研究人员缺乏对性能,力量和计算瓶颈如何影响MAV应用程序的全面了解。 Mavs必须根据严格的电力预算运行,严重限制其飞行续航时间。因此,需要新的工具,基准和方法来培养自主MAVS的系统发展。在本文中,我们介绍了由闭环模拟器和端到端应用程序基准套件组成的Mavench'框架。需要闭环仿真平台来探测和理解MAV应用程序中的系统内(应用数据流)和系统间(系统和环境)交互,以确定瓶颈并确定硬件和软件共同设计和优化的机会。除了模拟器外,Mavbench还提供了一个基准套件,它的第一个套件,包括各种MAV应用程序,旨在使计算机架构师能够进行表征和开发未来的空中计算系统。使用我们的开源,端到端的实验平台,我们揭开了隐藏的,因此迄今为止意外计算在MAV中的总系统能源关系。此外,我们通过呈现靶向性能,能量和可靠性的三种案例研究来探讨计算的作用。这些研究证实,高效的系统设计可以将MAV的电池消耗提高到1.8倍。

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