An efficient soft error protection scheme for MPSoC and FPGA-based verification

Weichen Liu, Wei Zhang, Fubing Mao
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引用次数: 1

Abstract

As transistor density continues to increase with the advent of nanotechnology, reliability issues raised by more frequently appeared soft errors are becoming critical tasks for future embedded multiprocessor systems design. State-of-the-art techniques for soft error protections targeting multiprocessor systems involve either high chip cost and area overhead or much performance degradation and energy consumption, and do not fulfill the increasing requirement of high performance and reliability. In this paper, we present a hardware-software collaborated approach to efficiently manage application execution and overcome reliability threats for Multiprocessor Systems-on-Chip (MPSoC). A hardware-based on-chip sensor network is built for soft error detection, and a software-based recovery mechanism is applied for soft error correction. This strategy only introduces trivial overhead on hardware design and much lower overhead on software control and execution, and hence performance degradation and energy consumption are greatly reduced. The hardware sensor design is verified via FPGA-based implementations, which proves the feasibility of the proposed approach. A SystemC-based cycle-accurate simulator is built to further verify the effectiveness of our technique by comparing with related techniques on several real-world applications.
一种有效的基于MPSoC和fpga验证的软错误保护方案
随着纳米技术的出现,晶体管密度不断增加,由更频繁出现的软错误引起的可靠性问题成为未来嵌入式多处理器系统设计的关键任务。目前针对多处理器系统的软错误保护技术要么成本高、占地面积大,要么性能下降、能耗大,不能满足日益增长的高性能和可靠性要求。在本文中,我们提出了一种硬件软件协作的方法来有效地管理应用程序的执行并克服多处理器片上系统(MPSoC)的可靠性威胁。构建基于硬件的片上传感器网络进行软错误检测,采用基于软件的恢复机制进行软错误校正。该策略只在硬件设计上引入了少量开销,而在软件控制和执行上引入了更低的开销,因此大大降低了性能下降和能耗。硬件传感器设计通过fpga实现验证,验证了所提方法的可行性。建立了一个基于systemc的周期精确模拟器,通过与相关技术在几个实际应用中的比较,进一步验证了我们技术的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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