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Concurrent engineering methods and models for satellite concept design

机译:卫星概念设计的并行工程方法和模型

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A common method of spacecraft concept design is to estimate size, mass, power and cost based on parametric or analogous relationships obtained from historical satellite data from similar systems that meet similar mission requirements. These are tried and true methods often used to perform early trade space analysis that depend heavily on the relevance and accuracy of the historical data. These methods fall short, however, when the goal is to generate a concept design for a system where the historical data is insufficient or irrelevant, mission requirements are not well defined, or the intent is to break from tradition and start a blank sheet design. Often this is the case for small satellites. In this paper it is shown how Concurrent Engineering Methods are used to create blank sheet concept designs by applying a “bottoms up” approach in a manner that can be accomplished by a single engineer. Simple mathematical models for some subsystems are presented that may be implemented using a spreadsheet. The rapid iterative nature of the concurrent engineering methodology is shown to converge to a design solution in a fraction of the time required by using non-concurrent bottoms up methods.
机译:普通的航天器概念设计方法是根据来自符合相似任务要求的类似系统的历史卫星数据获得的参数或类似的关系来估计大小,质量,功率和成本。这些都是经常用于执行早期贸易空间分析的真实方法,这些分析主要取决于历史数据的相关性和准确性。然而,这些方法缩短了,但是,当目标是为历史数据不足或无关的系统生成概念设计时,使命要求没有明确定义,或者意图是从传统中断并开始空白的纸张设计。通常这是小卫星的情况。在本文中,示出了如何通过以可由单个工程师实现的方式应用“底部向上”方法来创建空白纸张概念设计。提出了一些子系统的简单数学模型,其可以使用电子表格来实现。并发工程方法的快速迭代性质被证明可以在使用非并发底部向上方法所需的时间的一小部分中收敛到设计解决方案。

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