This parallel clustering system is called Pseudo remote threads because the threads are scheduled on the job dispatcher but the code within the threads is executed on a remote machine.
这种并行集群系统之所以被称为伪远程线程,是因为线程是在作业调度器上调度的,但线程内的代码却是在远程计算机上执行的。
Listing 1. Pseudo-code for generic divide-and-conquer parallel algorithms.
清单1.通用divide - and - conquer并行算法的伪代码。
The term components refers to the logical modules that make up the parallel clustering system known as Pseudo Remote Threads. The system consists of the following components
组件一词是指组成“伪远程线程”并行集群系统的逻辑模块。
The design of dual- phase dual- storage pseudo- parallel pixel is introduced in this paper.
本文将介绍双拍双存储伪并行彩色像素的设计及其特点。
To select suitable grid resource for a data parallel application, an idea of pseudo-cluster is introduced.
为给数据并行应用选择适合的网格资源,文章给出一个伪机群的想法。
We have reported the dual - phase dual - storage pseudo - parallel color operation to improve the duty.
为了在微型系统中实现高占空比,我们提出了双拍双存储伪并行的彩色实现方法。
Genetic-saving hybrid algorithm constructed in this paper is a double -deck pseudo-parallel structure. It makes the best of search methods in different fields.
本文构造的遗传节约混合算法是一个两层的伪并行搜索结构,充分利用了不同的领域搜索方法。
There are some difficulties in the research and implement of pseudo-random sequence parallel encrypt algorithm, that is caused by lack of an effective tool to support it.
伪随机序列并行加密算法存在研究和实现上的困难,主要原因就是没有一个有效对它进行支持的工具。
So the MPI-based pseudo-random sequence parallel encrypt algorithm will provide relevant application and research with new methods and directions.
因此,基于MPI的伪随机序列并行加密算法将会为相关应用和研究领域提供新的方法和方向。
Currently there exist several asynchronous measurement fusion algorithms, namely, firstly strict synchronizing sensors asynchronous data and deal with them with parallel or pseudo-sequential filter.
归纳几种多传感器异步量测融合算法,即首先将各传感器异步数据统一到同一时刻,再对该数据进行并行或伪序贯滤波处理。
Firstly the theoretical foundation of parallel multi-mode parallel pseudo-random number is analyzed.
首先从理论上分析了基于伪随机序列的并行多模式实现原理。
Firstly the theoretical foundation of parallel multi-mode parallel pseudo-random number is analyzed.
首先从理论上分析了基于伪随机序列的并行多模式实现原理。
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