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Graph Trace Analysis Approach to Optimizing Power and Heat Flow for Clustered Computing; An Example of Model Based System of Systems Design and Deployment

机译:图跟踪分析法优化集群计算的功率和热流;基于模型的系统设计与部署系统实例

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During System of System (SoS) design, many decisions from different engineering disciplines are made and documented. Today, designers increasingly use modeling. For example, they address the issues involved with total cost of ownership by better understanding the interactions of parts and systems. For a large SoS, the labor intense modeling has one potential alternative approach involving the concepts of Graph Trace Analysis (GTA) for distributed processing of Integrated System Models (ISM). GTA features a wide range of algorithms that flexibly attach to models that stay in their engineering domains in the ISM. A subsystem model for a single domain can be built directly from the engineering design data and then simulated or analyzed. A model using millions of simple objects can be built automatically, including looped and radial systems. Physical dependency linkages between engineering domains can be built directly from reference designators and parts data. Design and deployment of a compute cluster is illustrated by composing an "Integrated System Model" (ISM) from different engineering domain models, where models from different domains are linked together with dependency iterators from GTA. During early design phases, the ISM of a compute cluster might include a short list of engineering design domains. Later, during deployment, sensors and actuators are included in the ISM and GTA algorithms. A need for open, standard parts data is discussed for design tools used in engineering along with data exchange formats that allow product design data to be reused by other design teams.
机译:在系统系统(SOS)设计期间,制定并记录了不同工程学科的许多决策。今天,设计师越来越多地使用建模。例如,它们通过更好地理解零件和系统的交互,解决了总体拥有成本所涉及的问题。对于大型SOS,劳动力强烈建模具有一种涉及图形轨迹分析(GTA)的概念,用于集成系统模型的分布式处理(ISM)。 GTA具有各种算法,可灵活地连接到ISM中的工程域中的模型。单个域的子系统模型可以直接从工程设计数据建立,然后模拟或分析。可以自动构建使用数百万个简单物体的模型,包括循环和径向系统。工程域之间的物理依赖关系可以直接从参考指示符和零件数据建立。通过组合来自不同工程域模型的“集成系统模型”(ISM)来说明计算群集的设计和部署,其中来自不同域的模型与GTA的依赖迭代器一起链接在一起。在早期设计阶段,计算群集的ISM可能包括简短的工程设计域列表。后来,在部署期间,ISM和GTA算法中的传感器和执行器包括在ISM和GTA算法中。需要开放的标准零件数据,用于工程中使用的设计工具以及数据交换格式,允许通过其他设计团队重复使用产品设计数据。

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