本文介绍了一种优化经工艺映射的组合逻辑电路功耗的方法。
This paper presents a method to the problem of optimizing technology mapped combinational circuits for low power.
高级综合结果中常量元件和输出悬空端口导致门级工艺映射结果中存在显式冗余。
Constant components and output opened ports in the result of high level synthesis lead to explicit redundancy in gate level technology mapping.
工艺映射作为高级综合中的一个重要的处理阶段,将与工艺无关的结构转换为特定的工艺描述。
The technology mapping, which transforms a technology independent structure into a particular technology specification, is a important step in the process of high-level synthesis.
该方法的提出是因为考虑到对一个经工艺映射的电路进行功耗分析,要比对未经过工艺映射的电路进行同样的工作更为精确。
The method is inspired by the fact that power analysis performed on a technology mapped network gives more realistic estimates than it would at the technology-independent level.
通过误差逆传播(BP)网络实现了逆映射,建立了工艺参数设计的神经网络模块。
The inverse mapping is achieved through BP network, and neural network modul is constructed for designing process parameters.
通过节点映射法实现各工艺路线的多道次挤压,不同的工艺路线对应的多道次挤压变形分布具有明显差异。
The different processing routes for equal round channel angular pressing process were conducted by using node mapping method in multi-pass pressing.
研究了设计特征、工艺特征和成本特征之间的相互关系,按照并行工程思想,提出了与设计进程并行的基于特征映射的成本估算模型,研究了模型的实现方法。
The relations between design feature, machining feature and cost feature are studied. Cost estimating model based on feature mapping and its application method are presented in concurrent engineering.
通过3d工序图模型和参数化空间尺寸链模型的映射,构造工艺模型结构。
Through the map of 3d process picture sheet model and the parameterization of 3d dimension chain model, a process model structure was constructed.
由于焊缝形状直接影响焊缝质量,准确地预测焊缝形状即建立焊接工艺参数与焊缝形状之间的映射关系具有重要意义。
The weld shape directly influences the weld quality, so it is important to predict the weld shape or establish the mapping between the welding process parameters and the weld shape.
由于焊缝形状直接影响焊缝质量,准确地预测焊缝形状即建立焊接工艺参数与焊缝形状之间的映射关系具有重要意义。
The weld shape directly influences the weld quality, so it is important to predict the weld shape or establish the mapping between the welding process parameters and the weld shape.
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