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3DGates: An Instruction-Level Energy Analysis and Optimization of 3D Printers

机译:3DGates:3D打印机的指令级能耗分析和优化

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摘要

As the next-generation manufacturing driven force, 3D printing technology is having a transformative effect on various industrial domains and has been widely applied in a broad spectrum of applications. It also progresses towards other versatile fields with portable battery-powered 3D printers working on a limited energy budget. While reducing manufacturing energy is an essential challenge in industrial sustainability and national economics, this growing trend motivates us to explore the energy consumption of the 3D printer for the purpose of energy efficiency. To this end, we perform an in-depth analysis of energy consumption in commercial, off-the-shelf 3D printers from an instruction-level perspective. We build an instruction-level energy model and an energy profiler to analyze the energy cost during the fabrication process. From the insights obtained by the energy profiler, we propose and implement a cross-layer energy optimization solution, called 3DGates, which spans the instruction-set, the compiler and the firmware. We evaluate 3DGates over 338 benchmarks on a 3D printer and achieve an overall energy reduction of 25%.
机译:作为下一代制造驱动力,3D打印技术在各种工业领域都具有变革性的作用,并已广泛应用于广泛的应用领域。随着便携式电池供电的3D打印机在有限的能源预算下工作,它也向其他通用领域发展。尽管减少制造能源是工业可持续发展和国民经济的一项基本挑战,但这一增长趋势促使我们探索3D打印机的能源消耗,以提高能源效率。为此,我们从指令级的角度对商用的现成3D打印机的能耗进行了深入分析。我们建立了指令级的能源模型和能源分析器,以分析制造过程中的能源成本。根据能源剖析器获得的见解,我们提出并实现了一种跨层能源优化解决方案,称为3DGates,该解决方案涵盖了指令集,编译器和固件。我们在3D打印机上对338个基准测试中的3DGates进行了评估,总体能耗降低了25%。

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