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framework for hybrid simulation with online model updating suitable for hard real-time computing

机译:用于混合模拟的框架,在线模型更新适用于硬实时计算

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摘要

The hybrid simulation method is used to test one or some components of a prototype structure subjected to a plausible loading history, accounting for their interaction with the untested ones, which are simulated numerically. If tested components have similar numerical counterparts, a possible approach to reduce simulation errors is to update the parameters of numerical substructures based on tested physical substructures. For this reason, online parameter estimation has gained the attention of the hybrid simulation community in the last decade. The term online indicates that the parameters of the identification model of the physical substructure are updated during the experiment. Main state-of-the-art middleware tools (e.g., OpenFresco and UI-SIMCOR) have been extended to support online model updating for the pseudodynamic hybrid simulation method. In this case, both numerical substructures and dynamic identification models are implemented on existing finite-element analysis software, which communicates with the middleware using a data exchange protocol with non-deterministic time schedule (e.g., TCP/IP). On the other hand, fast- and real-time hybrid simulation methods require a deterministic data exchange schedule between substructures, which imposes the adoption of hard real-time implementations. In this context, partitioned time integration is proposed to coordinate the parallel execution of simulation and model updating processes with heterogeneous sampling rates. As a result, the allocation of computational resources can leverage parallelization capabilities of multi-core CPUs.
机译:混合仿真方法用于测试经受合理的装载历史的原型结构的一个或一些组件,占据与未经测试的互动的互动,它们在数字上模拟。如果测试的组件具有类似的数字对应物,则降低模拟误差的可能方法是基于测试的物理子结构更新数值子结构的参数。因此,在线参数估计在过去十年中获得了混合模拟社区的注意。术语在线表示在实验期间更新物理子结构的识别模型的参数。已经扩展了主要的最先进的中间件工具(例如,OpenFresco和UI-Simcor),以支持对伪变压器混合仿真方法的在线模型更新。在这种情况下,在现有的有限元分析软件上实现了数值子结构和动态识别模型,其使用具有非确定性时间调度(例如,TCP / IP)的数据交换协议与中间件通信。另一方面,快速和实时混合仿真方法需要子结构之间的确定性数据交换计划,这施加了采用硬实时实现。在此上下文中,提出分区时间集成以协调具有异构采样率的模拟和模型更新过程的并行执行。结果,计算资源的分配可以利用多核CPU的并行化能力。

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