Error resilient MRF message passing architecture for stereo matching

SiPS(2013)

引用 15|浏览18
暂无评分
摘要
Message passing based inference algorithms have immense importance in real-world applications. In this paper, error resilience of a message passing based Markov random field (MRF) stereo matching architecture is explored and enhanced through application of algorithmic noise tolerance (ANT) in order to cope with nanometer imperfections in post-silicon devices. We first explore the inherent robustness of iteration based MRF inference algorithms. Analysis and simulations show that for a 20-bit architecture, small errors (e ≤ 1024) are tolerable, while large errors (e ≥ 4096) degrade the performance significantly. Based on these error characteristics, we propose an ANT architecture to effectively compensate for large magnitude circuit errors. Introducing timing errors via voltage over scaling (VQS), experimental results show that the proposed ANT based hardware can tolerate an error rate of 21.3 %, with performance degradation of only 0.47% at a gate complexity overhead of 44.7%, compared to an errorfree full precision hardware with an energy savings of 41 %.
更多
查看译文
关键词
energy savings,ant architecture,message passing based mrf stereo matching architecture,gate complexity overhead,voltage over scaling,error resilience,image matching,stereo matching,random processes,nanometer imperfection,inference mechanisms,iteration based mrf inference algorithm,error resilient mrf message passing architecture,word length 20 bit,large magnitude circuit error compensation,performance degradation,error characteristics,post-silicon devices,timing error,error compensation,algorithmic noise tolerance,markov random field,message passing,vqs,stereo image processing,markov processes,message passing based inference algorithm,iterative methods
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要