随着信息化社会的深入发展,数字集成电路技术运用得越来越广泛.乘法器是数字电路系统最重要的算术运算单元之一,影响了整个电路系统的工作效率.实际设计通常采用Booth结构作为数字乘法器实现框架,决定此类乘法器运算效率的最为关键的两...随着信息化社会的深入发展,数字集成电路技术运用得越来越广泛.乘法器是数字电路系统最重要的算术运算单元之一,影响了整个电路系统的工作效率.实际设计通常采用Booth结构作为数字乘法器实现框架,决定此类乘法器运算效率的最为关键的两个方面是:部分积产生和部分积合并.提出了一种从结构上采用独立路由寻址的机制来实现部分积的产生,设计方法上采用异步微流水线,控制机制上采取数据通路的方法,来设计基于异步NoC(Network On Chip)机制的Booth乘法器设计.最后,通过FPGA开发板进行了仿真和实现,并与传统的Booth乘法器性能做了对比分析.展开更多
The local characteristics of multi-dimensional modeling method of multivariate copula. A new modeling remedy this defect. Different types of copula distribution random variables are seldom considered in the general me...The local characteristics of multi-dimensional modeling method of multivariate copula. A new modeling remedy this defect. Different types of copula distribution random variables are seldom considered in the general method, called pair-copula construction, is introduced to functions are allowed to be introduced in this method. Correspondingly, the related characteristics of complex multivariate can be described by a cascade of pair-copula acting on two variables at a time. In the analysis of asynchronism-synchronism of regional precipitation in WED inter- basin water transfer areas, the pair-copula construction method is compared with the general modeling method of mul- tivariate copula. The results show that the local dependence structure would exist among hydrologic variables even in three-dimensional cases. In this situation, the general modeling method of multivariate copula would face difficulties in fitting distribution. However, the pair-copula construction method could capture the local information of hydrologic variables efficiently by introducing different types of copula distribution functions. Moreover, the compensation ca- pacity of water resources is strong in different hydrological areas of WED water transfer project. The asynchronous frequency of wetness and dryness is 69.64% and the favorable frequency for water transfer is 46.15%.展开更多
文摘随着信息化社会的深入发展,数字集成电路技术运用得越来越广泛.乘法器是数字电路系统最重要的算术运算单元之一,影响了整个电路系统的工作效率.实际设计通常采用Booth结构作为数字乘法器实现框架,决定此类乘法器运算效率的最为关键的两个方面是:部分积产生和部分积合并.提出了一种从结构上采用独立路由寻址的机制来实现部分积的产生,设计方法上采用异步微流水线,控制机制上采取数据通路的方法,来设计基于异步NoC(Network On Chip)机制的Booth乘法器设计.最后,通过FPGA开发板进行了仿真和实现,并与传统的Booth乘法器性能做了对比分析.
基金Supported by National Natural Science Foundation of China (No. 50979011)
文摘The local characteristics of multi-dimensional modeling method of multivariate copula. A new modeling remedy this defect. Different types of copula distribution random variables are seldom considered in the general method, called pair-copula construction, is introduced to functions are allowed to be introduced in this method. Correspondingly, the related characteristics of complex multivariate can be described by a cascade of pair-copula acting on two variables at a time. In the analysis of asynchronism-synchronism of regional precipitation in WED inter- basin water transfer areas, the pair-copula construction method is compared with the general modeling method of mul- tivariate copula. The results show that the local dependence structure would exist among hydrologic variables even in three-dimensional cases. In this situation, the general modeling method of multivariate copula would face difficulties in fitting distribution. However, the pair-copula construction method could capture the local information of hydrologic variables efficiently by introducing different types of copula distribution functions. Moreover, the compensation ca- pacity of water resources is strong in different hydrological areas of WED water transfer project. The asynchronous frequency of wetness and dryness is 69.64% and the favorable frequency for water transfer is 46.15%.