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首页> 外文期刊>Fundamenta Informaticae >Modelling of Complex Systems: Systems as Dataflow Machines
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Modelling of Complex Systems: Systems as Dataflow Machines

机译:复杂系统的建模:作为数据流机器的系统

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摘要

We develop a unified functional formalism for modelling complex systems, that is to say systems that are composed of a number of heterogeneous components, including typically software and physical devices. Our approach relies on non-standard analysis that allows us to model continuous time in a discrete way.rnSystems are defined as generalized Turing machines with temporized input, internal and output mechanisms. Behaviors of systems are represented by transfer functions. A transfer function is said to be implementable if it is associated with a system. This notion leads us to define a new class -which is natural in our framework - of computable functions on (usual) real numbers.rnWe show that our definitions are robust: on one hand, the class of implementable transfer functions is closed under composition; on the other hand, the class of computable functions in our meaning includes analytical functions whose coefficients are computable in the usual way, and is closed under addition, multiplication, differentiation and integration. Our class of computable functions also includes solutions of dynamical and Hamiltonian systems defined by computable functions. Hence, our notion of system appears to take suitably into account physical systems.
机译:我们开发了一种用于对复杂系统建模的统一功能形式,也就是说,该系统是由许多异构组件组成的,通常包括软件和物理设备。我们的方法依赖于非标准分析,该分析使我们能够以离散方式对连续时间进行建模。系统被定义为具有临时输入,内部和输出机制的通用图灵机。系统的行为由传递函数表示。如果传递函数与系统关联,则可以说是可以实现的。这个概念使我们定义了(通常)实数上的可计算函数的新类(在我们的框架中很自然)。rn我们证明了我们的定义是可靠的:一方面,可实现传递函数的类在组成下是封闭的;另一方面,在我们的意义上,可计算函数的类别包括解析函数,其系数可以按常规方式计算,并且在加,乘,微分和积分下是封闭的。我们的可计算函数类别还包括由可计算函数定义的动力学系统和哈密顿系统的解决方案。因此,我们的系统概念似乎适当地考虑了物理系统。

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