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Field programmable gate array-assigned complex-valued computation and its limits

机译:现场可编程门阵列分配的复数值计算及其局限性

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摘要

We discuss how leveraging Field Programmable Gate Array (FPGA) technology as part of a high performance computing platform reduces latency to meet the demanding real time constraints of a quantum optics simulation. Implementations of complex-valued operations using fixed point numeric on a Virtex-5 FPGA compare favorably to more conventional solutions on a central processing unit. Our investigation explores the performance of multiple fixed point options along with a traditional 64 bits floating point version. With this information, the lowest execution times can be estimated. Relative error is examined to ensure simulation accuracy is maintained.
机译:我们将讨论如何将现场可编程门阵列(FPGA)技术用作高性能计算平台的一部分,以减少延迟以满足量子光学仿真的实时要求。在Virtex-5 FPGA上使用定点数字进行复数值运算的实现,与在中央处理单元上更传统的解决方案相比具有优势。我们的研究探索了多个定点选项以及传统的64位浮点版本的性能。利用此信息,可以估计最短的执行时间。检查相对误差以确保维持仿真精度。

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