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Real-time hybrid simulation based on vector form intrinsic finite element and field programmable gate array

机译:基于矢量形式固有有限元和现场可编程门阵列的实时混合仿真

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摘要

The numerical substructure of a real-time hybrid simulation (RTHS) has been considerably simplified through condensation methods to relieve the burden incurred by computation. However, this simplification severely limits the application of RTHS to structures whose numerical parts are complex and require a large number of degrees of freedom (DOFs) to model. Thus, in this study, a vector form intrinsic finite element (VFIFE) analysis is introduced to RTHS with numerical substructures containing a large number of DOFs. A field programmable gate array (FPGA) is also employed to speed-up the numerical simulation of the VFIFE through parallel computing in RTHS. The characteristics of this parallel RTHS platform using VFIFE and FPGA are discussed in detail in this paper. A simple RTHS was carried out to verify the feasibility of this new platform, followed by a complex virtual RTHS to show its powerful computational capability.
机译:实时混合仿真(RTHS)的数字子结构已通过压缩方法大大简化,以减轻计算带来的负担。但是,这种简化严重限制了将RTHS应用于其数字部分复杂且需要大量自由度(DOF)进行建模的结构。因此,在这项研究中,将矢量形式固有有限元(VFIFE)分析引入具有大量自由度的数字子结构的RTHS。还通过RTHS中的并行计算,采用了现场可编程门阵列(FPGA)来加速VFIFE的数值模拟。本文详细讨论了使用VFIFE和FPGA的并行RTHS平台的特性。进行了简单的RTHS验证该新平台的可行性,然后进行了复杂的虚拟RTHS以显示其强大的计算能力。

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