1) hypercube
['haipə,kju:b]
超立方
1.
The problem of fault-tolerant routing on hypercube is studied on the basis of the method of adding bus.
研究了加总线超立方网络的容错寻径问题。
2.
According to the topological property of hypercube and the hallmark of the problem to be solved,a fast algorithm to solve large quasi-block triangular equationsis presented.
为快速求解大型拟块三对角方程组,根据超立方多处理机系统的结构特点、通讯特征,结合求解问题本身的特点,给出了一种快速算法,并分析了该算法的运行时间复杂性。
3.
This paper studies the design of the parallel iterative algorithm of linear equations on hypercube multiprocess system,analyses its time complexity and experiment result under PVM environment,and also gives corresponding speedups.
给出了超立方多处理机系统上大型线性方程组并行迭代求解算法设计及其运行时间复杂性分析,并在并行虚拟环境(PVM环境)下做了数值试验,求出了在多台工作站SUN4上的运行时间及运行加速比。
2) hypercube
['haipə,kju:b]
超立方体
1.
On the distinguishing number of the cube of the hypercube;
超立方体三次幂的可区别数研究
2.
Utilizing OPSBOPMs to realize a fault-tolerant routing strategy in hypercube system;
用OPSBOPMs实现超立方体系统的容错路由
3.
Embedding the hypercube into the twisted cube connected network;
扭立方体连接网络中超立方体的嵌入
3) Hypercubes
超立方体
1.
Optimal Broadcast in All-port Wormhole-routed Hypercubes;
全端口虫蚀寻径超立方体上的优化广播
2.
In illustration of this result, circulants, hypercubes, generalized hypercubes, toroidal.
作为实例 ,指明循环网络、超立方体、广义超立方体、超环面和立方连通圈等都是Cayley图 。
4) hyper-cubic lattice
超立方晶格
1.
Using the Fourier transformation method,we accurately solved the Gauss Model with long-range interactions on the d-dimensional hyper-cubic lattices and the two-dimensional triangular lattices.
利用傅里叶变换的方法,严格求解了d维(d=1,2和3)超立方晶格和二维三角晶格上具有长程相互作用的Gauss模型(这里考虑的长程作用有幂指数、指数和对数三种形式)。
5) hypercube graph
超立方体图
6) hypercube method
"超立方体"法
补充资料:超超
1.谓超然出尘。 2.高高在上貌。 3.犹绰绰。 4.见"超超玄箸"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条