Two optimization techniques for the reconfiguration of reconfigurable system 可重构系统重构过程的两种优化技术
Fault-tolerant scheduling algorithm of real-time tasks for reconfigurable system 可重构系统中实时任务容错调度算法
Internet Reconfigurable System Design 基于Internet的可重构系统设计
A New Design Method and Implementation of Dynamic Partial Reconfigurable System 一种新的动态部分可重构设计方法及实现
Reliability Optimization of Reconfigurable System under Given Redundancy 给定余度下可重构计算系统的可靠性最优化研究
Design and implementation of dynamic reconfigurable system with hardware transparent programming model 支持硬件透明编程模型的动态可重构系统的设计与实现
Immune Algorithm of Alterable Coefficient of Parameters Driven Partitioning for Dynamically Reconfigurable System 基于权重可变免疫算法的动态可重构任务划分
Design and Implementation of Reconfigurable System Based on FPGA 基于FPGA的动态可重构系统设计与实现
Design of Reconfigurable System of DES and tri-DES 可重构DES、3-DES加减密系统设计
Hardware/ software of reconfigurable system based on tabu algorithm 可重构系统中基于禁忌搜索算法的软硬件划分
The traditional hardware/ software partitioning does not meet the requirements of the runtime reconfigurable system, so this paper proposes a new hardware/ software partitioning based on simulated algorithm. 传统的软/硬件任务的划分已经不再适用于动态可重构系统,因此本文在模拟退火算法的基础上提出了一种适用于动态可重构系统的软硬件任务的划分。
Analysis and Research on Reconfigurable System 可重配置系统研究与分析
Research and Application of FPGA Based on Reconfigurable System 可重构计算系统的研究与应用
Using the reconfigurable system based on FPGA controlled by CPLD in the reconfigurable implementation of BP train Network and BP implement Network of Artificial Nerual Network. 并将由CPLD控制的基于FPGA的可重构系统应用到人工神经网络的BP网络训练和BP网络执行两个算法的可重构实现过程中并进行分析。
In their research, two types of reconfigurable hardware are employed. One is specific FPGA ( Field Programmable Gate Array) for the reconfigurable system; the other is the chip developed peculiarly for reconfigurable computing research. 其研究采用的可重构硬件有两种:用于可重构系统的特殊FPGA(FieldProgrammableGateArray)和专门开发用于可重构计算研究的芯片。
Firstly introduces system architectures of reconfigurable system, then presents an example of embedded real-time control application through which a methods for designing reconfigurable system is demonstrated. 在简单介绍可重构计算系统体系结构的基础上,通过一个嵌入式实时控制系统实例,给出了可重构计算系统的一种实现方法。
Based on the analysis of international implement approach and research status of reconfigurable technology, this paper design a reconfigurable system based on FPGA controlled by CPLD. 课题在分析国内外可重构系统的研究现状及实现方法的基础上,提出并设计一种由CPLD控制的基于FPGA的可重构系统。
The development of the FPGA technology promotes the birth of the runtime reconfigurable system. FPGA技术的发展促进了具有动态可重构特性的可重构系统的产生。
Design and implementation of a reconfigurable system of multi-transputer net work 多Transputer网络拓扑可重构系统的设计与实现
The EEPROM programmable technology in CPLDs can't be used in dynamic reconfigurable system. CPLD的EEPROM编程技术不适合动态可重构的应用。
Design and Implementation of a FPGA Based on Reconfigurable System 一种可重构计算系统设计与实现
A method of realizing configuration principle in rapidly reconfigurable system is proposed and its adaption discussed in detail based on the configuration principle and its core content. 在研究组态原理及其核心内容的基础上,提出了在快速重组制造系统(RRMS)中实现组态原理的方法,并详细讨论了其适应性。
Traditional scheduling algorithms ( including task scheduling on a single CPU and parallel task scheduling on multi-CPUs) offer some reference for the scheduling on reconfigurable system, but cannot meet the needs of scheduling research on reconfigurable computing systems. 传统任务调度算法(包括单CPU上的任务调度和多CPU上的并行任务调度)为可重构系统上的软硬任务调度研究提供了一定的参考,但是不能满足可重构计算系统的需要。
The thesis study deeply about the algorithm of placer and scheduler for reconfigurable system, and solves the on-line real-time task placement and scheduling problems in 2D area model. 本文对可重构操作系统中调度器和放置器的算法做了深入的研究,解决了2D区域模型下的硬件实时任务在线放置和调度问题。
Task scheduling algorithm is a standard evaluation of software/ hardware task partitioning scheme. Task scheduling algorithm oriented reconfigurable system needs to consider the reconfiguration delay and concurrent execution of tasks. 调度算法是评价软硬件任务划分方案的标准,面向可重构系统的任务调度需要考虑硬件任务的重构延时和并发执行等特性,提出一种采用预配置策略的链式调度算法。
Firstly, this paper defined the background about the reconfigurable system and introduced the reconfigurable technology from four aspects of the main application. 论文首先给出了可重构系统的研究背景,介绍可重构技术四个方面的主要应用,同时对可重构器件也作了简要说明。
In reconfigurable system, the key to make full use of the reconfigurable resource and improve the performance is how to determine configuration time and switching time of the task. 在可重构系统中,如何确定可重构任务在器件上的配置和切换时机,从而充分利用可重构资源配置和运行可重构任务,是提高可重构系统性能的关键。
The development of programmable logic devices provides the foundation of hardware for the reconfigurable system to tend towards to practicality in deed. 可编程逻辑器件的发展为可重构系统真正走向实用化提供了硬件基础。
Using self-design FPGA internal bus macro to implement the partial reconfigurable system. 利用自主设计的总线宏,完成了部分重配置的实现。
The results of these studies is the development and reconstruction of the competitiveness of enterprises reconfigurable system. 这些研究成果是对企业可重构竞争力理论的很好延续和发展。