模块式高效多处理器系统,具有网络接口通道的多维聚合

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Radio Electronics Computer Science Control Pub Date : 2022-10-17 DOI:10.15588/1607-3274-2022-3-13
D. M. Moroz
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Presently the problem of choice and analysis of network technologies for the module multiprocessor cluster systems did not get due development, as well as problem of reorganization of structure ofnetwork interfaceby aggregating of channels of network interface. \nObjective. An aim is in-process put improvement of structure and increase of the productivity of the multiprocessor computer system by the multidimensional aggregating of channels of network interface, adapted to the decision of tasks of the investigated class. \nMethod. The task of increase of efficiency of the module multiprocessor computer system is decided due to multidimensional aggregating of channels of network interface. Offered approach allowed not only to promote efficiency of parallelization but also substantially to decrease time of calculations. Such results succeeded to be attained due to diminishing to time of border exchange of data between the calculable knots of the cluster system. \nResults. 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引用次数: 0

摘要

上下文。在现代术语中,多处理机系统的构建问题具有特殊的价值,它以标准的流行技术和组件为基础。这是由于这种系统成为高性能计算的流行和廉价的车辆平台。此外,在大多数情况下,由于高性能计算的应用,实际问题的完全决策可能只是由于。因此,构建当今集群多处理器系统的主题是现实的、有趣的,并且正处于积极发展的阶段。同时,现代网络新技术的应用是多处理器集群系统高质量发展的新阶段。目前,模块多处理器集群系统的网络技术选择和分析问题以及通过网络接口通道聚合来重组网络接口结构的问题没有得到应有的发展。目标。目的是通过网络接口通道的多维聚合,改进多处理机系统的结构,提高系统的生产效率,以适应被调查班级的任务决策。方法。由于网络接口通道的多维聚合,决定了模块多处理机系统提高效率的任务。所提出的方法不仅提高了并行化的效率,而且大大减少了计算时间。由于簇系统的可计算结点之间的边界数据交换的时间减少,从而成功地获得了这样的结果。结果。该方法的一个特点是允许在多处理器系统节点的主存储器之间实现数据的直接交换,这促进了计算的快速执行,并提供了对其从节点内存的高速访问。因此,在系统节点之间的数据交换期间,系统CPU被卸载,并且在计算机系统节点之间通过的信道的加载下降,这有助于减少系统可计算节点之间边界数据交换的时间。结论。实验结果表明,所设计的多处理机系统可用于新工艺流程的创建。因此,她被用于长钢结构的сфероидизируещего退火的流态器强化。金属热处理工艺直接具有收率高、热电能耗大、可在金属等温处理模式下进行工艺参数控制等优点。
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MODULE HIGH-EFFICIENCY MULTIPROCESSOR SYSTEM WITH MULTIDIMENSIONAL AGGREGATING OF CHANNELS OF NETWORK INTERFACE
Context. In modern terms problem of constructing of the multiprocessor systems the special value acquires the base of standard popular technologies and components. It is caused by that such systems became popular and cheap vehicle platforms for highperformance calculations. In addition, practice pulls out problems complete decision of which in most cases possibly only due to application of high-performance calculations. Consequently, a theme of constructing of the cluster multiprocessor systems for today is actual, interesting and is on the stage of the active development. At the same time, the new high-quality stage of development of the multiprocessor cluster systems lies in area of the use of new modern network technologies. Presently the problem of choice and analysis of network technologies for the module multiprocessor cluster systems did not get due development, as well as problem of reorganization of structure ofnetwork interfaceby aggregating of channels of network interface. Objective. An aim is in-process put improvement of structure and increase of the productivity of the multiprocessor computer system by the multidimensional aggregating of channels of network interface, adapted to the decision of tasks of the investigated class. Method. The task of increase of efficiency of the module multiprocessor computer system is decided due to multidimensional aggregating of channels of network interface. Offered approach allowed not only to promote efficiency of parallelization but also substantially to decrease time of calculations. Such results succeeded to be attained due to diminishing to time of border exchange of data between the calculable knots of the cluster system. Results. A feature offered approach is that he allowed to realize a direct exchange data between main memory of knots of the multiprocessor system, that promotes the fast-acting of calculations and provides high-speed access to memory of her slave -nodes. Thus during an exchange by data between the knots of the system the system CPU gets unloaded and loading of channel which passes between the knots of the computer system goes down, that assists diminishing of time of border exchange of data between the calculable knots of the system. Conclusions. The results of the conducted experiments showed that the worked out multiprocessor system was used for creation of new technological processes. So, she is used in a fluidizer intensification of the сфероидизируещего annealing of long-length steelwork. Directly the technological process of heat treatment of metal acquires such advantages, as a high yield, substantial mionectic energy consumption and allows to carry out control of technological parameters in the modes of unisothermal treatment of metal.
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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