"Factory physics principles" provided a method to evaluate the performance of a simple production line, whose fundamental parameters are known or given. However, it is difficult to obtain the exact and reaso..."Factory physics principles" provided a method to evaluate the performance of a simple production line, whose fundamental parameters are known or given. However, it is difficult to obtain the exact and reasonable parameters in actual manufacturing environment, especially for the complex chipset assembly & test production line(CATPL). Besides, research in this field tends to focus on evaluation and improvement of CATPL without considering performance interval and status with variability level. A developed internal benchmark method is proposed, which established three-parameter method based on the Little′s law. It integrates the variability factors, such as processing time, random failure time, and random repair time, to meet performance evaluation and improvement. A case study in a chipset assembly and test factory for the performance of CATPL is implemented. The results demonstrate the potential of the proposed method to meet performance evaluation and emphasise its relevance for practical applications.展开更多
结合在体元式三维显示(Volumetric 3D display)中比较有代表性的3种显示系统,在说明了体元式真三维显示系统的实现思路和方法的基础上,从应用的角度解析以DMD为核心构成的三维成像引擎在体元式真三维显示系统中的应用,并给出3种基于DMD...结合在体元式三维显示(Volumetric 3D display)中比较有代表性的3种显示系统,在说明了体元式真三维显示系统的实现思路和方法的基础上,从应用的角度解析以DMD为核心构成的三维成像引擎在体元式真三维显示系统中的应用,并给出3种基于DMD的三维成像引擎架构,能够在不同层次上很好地满足真三维显示对海量数据实时、高速、精确处理的要求。展开更多
多芯片协同工作是一种廉价、低风险的高密度计算应用解决方案。由于片上网络(Network On Chip,NoC)的数据通讯具有并发、分离的特性,因此可以方便地在板级集成多块NoC多核芯片协同工作,构成NoC多核芯片组,快速提供更强大的处理能力。基...多芯片协同工作是一种廉价、低风险的高密度计算应用解决方案。由于片上网络(Network On Chip,NoC)的数据通讯具有并发、分离的特性,因此可以方便地在板级集成多块NoC多核芯片协同工作,构成NoC多核芯片组,快速提供更强大的处理能力。基于某高性能图像处理项目,其硬件系统主要由4块NoC多核芯片构成,4块芯片采用全互连方式,研究了报文数据在不同多核芯片间的传输问题,提出了一种通过硬件实现的多核芯片组通讯方案,该方案已应用在某高性能图像处理项目。展开更多
基金supported by National Natural Science Foundation of China (No. 71671026)Sichuan Science and Technology Program (Nos. 2018GZ0306 and 2017GZ0034)
文摘"Factory physics principles" provided a method to evaluate the performance of a simple production line, whose fundamental parameters are known or given. However, it is difficult to obtain the exact and reasonable parameters in actual manufacturing environment, especially for the complex chipset assembly & test production line(CATPL). Besides, research in this field tends to focus on evaluation and improvement of CATPL without considering performance interval and status with variability level. A developed internal benchmark method is proposed, which established three-parameter method based on the Little′s law. It integrates the variability factors, such as processing time, random failure time, and random repair time, to meet performance evaluation and improvement. A case study in a chipset assembly and test factory for the performance of CATPL is implemented. The results demonstrate the potential of the proposed method to meet performance evaluation and emphasise its relevance for practical applications.
文摘结合在体元式三维显示(Volumetric 3D display)中比较有代表性的3种显示系统,在说明了体元式真三维显示系统的实现思路和方法的基础上,从应用的角度解析以DMD为核心构成的三维成像引擎在体元式真三维显示系统中的应用,并给出3种基于DMD的三维成像引擎架构,能够在不同层次上很好地满足真三维显示对海量数据实时、高速、精确处理的要求。
文摘多芯片协同工作是一种廉价、低风险的高密度计算应用解决方案。由于片上网络(Network On Chip,NoC)的数据通讯具有并发、分离的特性,因此可以方便地在板级集成多块NoC多核芯片协同工作,构成NoC多核芯片组,快速提供更强大的处理能力。基于某高性能图像处理项目,其硬件系统主要由4块NoC多核芯片构成,4块芯片采用全互连方式,研究了报文数据在不同多核芯片间的传输问题,提出了一种通过硬件实现的多核芯片组通讯方案,该方案已应用在某高性能图像处理项目。