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Real-time system support for hybrid structural simulation

机译:实时系统支持混合结构仿真

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Real-time hybrid simulation (RTHS) is an important tool in the design and testing of civil and mechanical structures when engineers and scientists wish to understand the performance of an isolated component within the context of a larger structure. Performing full-scale physical experimentation with a large structure can be prohibitively expensive. Instead, a hybrid testing framework connects part of a physical structure within a closed loop (through sensors and actuators) to a numerical simulation of the rest of the structure. If we wish to understand the dynamic response of the combined structure, this testing must be done in real-time, which significantly restricts both the size of the simulation and the rate at which it can be conducted. Adding parallelism to the numerical simulation can enable both larger and higher frequency real-time simulations, potentially increasing both the accuracy and the control stability of the test. We present a proof-of-concept exploration of the execution of real-time hybrid simulations (an exemplar of a more general class of cyber-mechanical systems) with parallel computations. We execute large numerical simulations within tight timing constraints and provide a reasonable assurance of timeliness and usability. We detail the operation of our system, its design features, and show how parallel execution could enable qualitatively better experimentation within the discipline of structural engineering.
机译:当工程师和科学家希望了解大型结构环境中隔离组件的性能时,实时混合仿真(RTHS)是设计和测试民用和机械结构的重要工具。使用大型结构进行大规模物理实验可能会非常昂贵。相反,混合测试框架将闭环内的物理结构的一部分(通过传感器和执行器)连接到其余结构的数值模拟。如果我们希望了解组合结构的动态响应,则必须实时进行此测试,这大大限制了仿真的大小和进行的速度。在数值模拟中增加并行性可以启用更大和更高频率的实时模拟,从而有可能提高测试的准确性和控制稳定性。我们通过并行计算对实时混合仿真(更广泛的网络机械系统类别的示例)的执行进行概念验证探索。我们在严格的时间限制内执行大型数值模拟,并为及时性和可用性提供合理保证。我们详细介绍了系统的操作,其设计功能,并展示了并行执行如何在结构工程学领域内从质上更好地进行实验。

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