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Fault-Tolerant Hardware Acceleration for High-Performance Edge-Computing Nodes
1. Introduction High-performance embedded systems are becoming increasingly prevalent in daily life, because they are used in various applications, from smartphones and laptops to automotive and aerospace industries, industrial automation, medical equipment, and telecommunications. Since power consumption is a critical aspect of the domain of embedded systems conceived to be powered by batteries, they must be designed to consume minimal power to reduce cost and improve portability.
Evaluation of Dynamic Triple Modular Redundancy in an Interleaved-Multi-Threading RISC-V Core
Abstract : Functional safety is a key requirement in several application domains in which microprocessors are an essential part. A number of redundancy techniques have been developed with the common purpose of protecting circuits against single event upset (SEU) faults.
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