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Using Optimization to Exploit a Composable Satellite Product Line Architecture

机译:使用优化开发可组合的卫星产品线架构

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Lockheed Martin has implemented a composable design methodology in the update of its A2100 Satellite product line. The composable design methodology leverages model-based systems engineering language and tools to formalize allowable architectural choices within the product line, limiting the decision points and decision options available to system architects, as well as imposing constraints on how those decisions may be combined. Even in the context of those limitations, a complex system can have a large design space, required to support flexibility for widely varying missions, payloads, and customers. This can result in many valid architecture configurations that satisfy a given set of mission requirements. When faced with identifying the preferred satellite architecture for a given mission, a system architect may often resort to the familiar rather than evaluating all potential configurations for the optimal balance of cost, schedule, and performance. By leveraging optimization techniques with a Composable System Reference Architecture, Lockheed Martin enables a system architect to rapidly identify a subset of configurations that form an optimal pareto front based on performance and cost objectives. The system architect can choose a configuration that best achieves all identified objectives, while retaining flexibility to prioritize among competing objectives in a manner most appropriate for their program. This paper shows that the composable model suite developed by Lockheed Martin supports repeated analysis of optimal architecture configurations to satisfy varying mission and customer applications from program to program.
机译:洛克希德·马丁公司在更新其A2100卫星产品线时采用了可组合的设计方法。可组合的设计方法论利用基于模型的系统工程语言和工具来形式化产品线中允许的体系结构选择,限制了决策者和系统设计师可用的决策选项,并对这些决策的组合方式施加了约束。即使在这些限制的情况下,复杂的系统也可能具有较大的设计空间,以支持为多种任务,有效载荷和客户提供灵活性的灵活性。这可能会导致许多有效的体系结构配置满足一组给定的任务要求。当面对确定给定任务的首选卫星架构时,系统架构师通常会求助于熟悉的系统,而不是评估所有可能的配置以实现成本,进度和性能的最佳平衡。通过利用可组合系统参考体系结构中的优化技术,洛克希德·马丁公司使系统架构师能够基于性能和成本目标,快速识别出构成最佳对战阵线的配置子集。系统架构师可以选择最能实现所有已确定目标的配置,同时保留以最适合其程序的方式灵活地在竞争目标之间确定优先级的配置。本文表明,洛克希德·马丁公司(Lockheed Martin)开发的可组合模型套件支持对最佳体系结构配置进行反复分析,以满足不同程序和程序的不同任务和客户应用。

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