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Characterizing Dynamic Data Driven Applications Systems (DDDAS) in Terms of a Computational Model

机译:在计算模型方面表征动态数据驱动应用系统(DDDA)

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The DDDAS (Dynamic Data Driven Applications Systems) concept creates new capabilities in applications and measurements, through a new computational paradigm where application simulations can dynamically incorporate and respond to online field-data and measurements, and/or control such measurements. Such capabilities entail dynamic integration of the computational and measurement aspects of an application in a dynamic feed-back-loop, leading to unified SuperGrids of the computational and the instrumentation platforms. Examples of advances in applications capabilities enabled through DDDAS over traditional computational modeling methods, and advances in measurements methods, and instrumentation and sensor network systems, have appeared extensively in the literature. This paper concentrates in discussing a computational model representing the unified DDDAS computation-measurement environments, and asymptotic cases leading to traditional computational environments, data assimilation, and traditional control systems.
机译:DDDA(动态数据驱动应用系统)概念通过新的计算范例在应用程序和测量中创造新功能,其中应用程序模拟可以动态地结合和响应在线现场数据和测量,以及/或控制此类测量。此类功能需要在动态馈回循环中动态集成应用程序的应用程序和测量方面,导致计算和仪表平台的统一超级级。通过DDDA通过传统的计算建模方法通过DDDA启用的应用程序的进步示例,以及测量方法和仪器和传感器网络系统的进步,在文献中显着出现。本文集中在讨论代表统一DDDA计算测量环境的计算模型,以及导致传统的计算环境,数据同化和传统控制系统的渐近案例。

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