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Generating requirements for complex embedded systems using State Analysis

机译:使用状态分析生成复杂嵌入式系统的需求

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It has become clear that spacecraft system complexity is reaching a threshold where customary methods of control are no longer affordable or sufficiently reliable. At the heart of this problem are the conventional approaches to systems and software engineering based on subsystem-level functional decomposition, which fail to scale in the tangled web of interactions typically encountered in complex spacecraft designs. Furthermore, there is a fundamental gap between the requirements on software specified by systems engineers and the implementation of these requirements by software engineers. Software engineers must perform the translation of requirements into software code, hoping to accurately capture the systems engineer's understanding of the system behavior, which is not always explicitly specified. This gap opens up the possibility for misinterpretation of the systems engineer's intent, potentially leading to software errors. This problem is addressed by a systems engineering methodology called State Analysis, which provides a process for capturing system and software requirements in the form of explicit models. This paper describes how requirements for complex aerospace systems can be developed using State Analysis, using representative spacecraft examples.
机译:显然,航天器系统的复杂性已达到一个极限,在这种极限下,常规的控制方法已不再负担得起或足够可靠。这个问题的核心是基于子系统级功能分解的常规系统和软件工程方法,这些方法无法在复杂航天器设计中通常遇到的复杂的交互网络中扩展。此外,系统工程师对软件的要求与软件工程师对这些要求的实现之间存在根本的鸿沟。软件工程师必须将需求转换为软件代码,以希望准确地捕获系统工程师对系统行为的理解,但并非总是明确指定。这种差距为系统工程师的意图提供了错误的解释,从而可能导致软件错误。此问题通过称为状态分析的系统工程方法解决,该方法提供了一种以显式模型的形式捕获系统和软件需求的过程。本文通过代表性的航天器示例,说明如何使用状态分析来开发复杂的航空系统的要求。

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