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首页> 外文期刊>International Journal of Engineering Science and Technology >PARALLEL IMPLEMENTATION OF THE COUPLED HARMONIC OSCILLATOR
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PARALLEL IMPLEMENTATION OF THE COUPLED HARMONIC OSCILLATOR

机译:并联谐振器的并行实现

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This article presents the parallel implementation of the coupled harmonic oscillator. From the analytical solution of the coupled harmonic oscillator, the design parameters are obtained. After that, a numerical integration of the system with MATLAB, which is used as a tool of benchmark evaluation, is performed. Next, parallel implementation is performed using a well-known approach like OpenMP and WinAPI. Taking into account the errors of basic parameters of the simulated process, the generated oscillations of the proposed parallel realization are almost identical to the actual solution of the harmonic oscillator model. Test ways to optimize the parallel architecture of computing processes for software implementations of the considered application is carried out. The developed model is used to study a fixed priority scheduling algorithm for real-time parallel threads execution. The proposed parallel implementation of the considered dynamic system has an independent value and can be considered as a test for determining the characteristics of multi-core systems for time-critical simulation problems.
机译:本文介绍了耦合谐波振荡器的并行实现。从耦合谐波振荡器的解析解中,获得了设计参数。之后,将系统与MATLAB进行数值积分,以用作基准评估工具。接下来,使用诸如OpenMP和WinAPI的众所周知的方法执行并行实现。考虑到模拟过程基本参数的误差,所提出的并行实现产生的振荡几乎与谐波振荡器模型的实际解决方案相同。进行了测试方法,以优化所考虑应用程序的软件实现的计算过程的并行体系结构。所开发的模型用于研究用于实时并行线程执行的固定优先级调度算法。所建议的动态系统的并行实现具有独立的价值,可以被视为确定针对时间紧迫的仿真问题的多核系统特性的测试。

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