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A robust system maturity model for complex systems utilizing system readiness level and Petri nets

机译:利用系统准备水平和Petri网的复杂系统的鲁棒系统成熟度模型

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System development can be plagued with excessive cost and schedule delay. During the system development lifecycle process, the development team makes difficult decisions concerning where to allocate project resources. As systems become more complex, and budgets are more constrained, understanding how to make these decisions becomes more problematic. To assist in the system development lifecycle process, this research introduces a new system maturity model called Petri net system readiness level (PNSRL). PNSRL integrates the fundamentals of System Readiness Level (SRL) and Petri nets (PNs) to create a more robust system view that can be used to analyze and score the readiness of system-of-system architectures. Integrations between technologies are expanded using PN transitions, to offer integration relationships. System workflow can be visualized with PNSRL, which can lead to system model validation utilizing PN tokens. PNSRL expands SRL mathematical equations by including PN capacities, which are used to weight each sub-system’s importance based on the number of interconnections associated. This article will illustrate how to use the PNSRL model by creating a functional system view for system readiness calculations. PNSRL is graphically and mathematically compared to the latest SRL model, Incidence Matrix System Readiness Level (IMSRL), to show how PNSRL represents all system components when calculating system readiness and produces a more accurate readiness value. Guidelines for PNSRL token and capacity allocation are offered, to assist in the system validation process using reachability graphs. Project managers and systems engineers can use this model to accurately depict their system and more precisely calculate technology maturity through the system development lifecycle. This model can aid in the system resource allocation decision process and allows further understanding of how the system’s key components operate.
机译:系统开发可能会因成本过高和进度延迟而困扰。在系统开发生命周期过程中,开发团队会做出有关将项目资源分配到何处的艰难决策。随着系统变得越来越复杂,预算也越来越受限制,理解如何做出这些决定变得越来越成问题。为了协助系统开发生命周期过程,本研究引入了一种新的系统成熟度模型,称为Petri网系统准备水平(PNSRL)。 PNSRL集成了系统就绪级别(SRL)和Petri网(PNs)的基础知识,以创建更强大的系统视图,该视图可用于分析和评估系统体系结构的就绪性。使用PN转换扩展了技术之间的集成,以提供集成关系。可以使用PNSRL可视化系统工作流程,这可以导致使用PN令牌进行系统模型验证。 PNSRL通过包括PN容量扩展了SRL数学方程式,PN容量用于根据关联的互连数量来加权每个子系统的重要性。本文将通过创建用于系统就绪计算的功能系统视图来说明如何使用PNSRL模型。将PNSRL与最新的SRL模型“事故矩阵系统就绪程度(IMSRL)”进行图形和数学比较,以显示PNSRL如何在计算系统就绪情况时表示所有系统组件并产生更准确的就绪值。提供了PNSRL令牌和容量分配指南,以使用可达性图来协助系统验证过程。项目经理和系统工程师可以使用此模型来准确描述其系统,并在系统开发生命周期中更精确地计算技术成熟度。该模型可以协助系统资源分配决策过程,并可以进一步了解系统的关键组件的工作方式。

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