首页> 外文会议>IEE Colloquium on Design and Development of Autonomous Agents, 1995 >Parallel implementation of the recurrence method for computing the power-spectral density of thin avalanche photodiodes
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Parallel implementation of the recurrence method for computing the power-spectral density of thin avalanche photodiodes

机译:计算薄雪崩光电二极管功率谱密度的递归方法的并行实现

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A simulation program has been developed to calculate the power-spectral density of thin avalanche photodiodes, which are used in optical networks. The program extends the time-domain analysis of the dead-space multiplication model to compute the autocorrelation function of the APD impulse response. However, the computation requires a large amount of memory space and is very time consuming. We describe our experiences in parallelizing the code using both MPI and OpenMP. Several array partitioning schemes and scheduling policies are implemented and tested Our results show that the OpenMP code is scalable up to 64 processors on an SGI Origin 2000 machine and has small average errors.
机译:已经开发出仿真程序来计算在光网络中使用的薄雪崩光电二极管的功率谱密度。该程序扩展了死空间乘法模型的时域分析,以计算APD脉冲响应的自相关函数。但是,该计算需要大量的存储空间,并且非常耗时。我们描述了使用MPI和OpenMP并行化代码的经验。实施和测试了几种阵列分区方案和调度策略。我们的结果表明,OpenMP代码在SGI Origin 2000机器上最多可扩展至64个处理器,并且平均错误很小。

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