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Dynamic verification of a large discrete system aircraft landing gear controller

机译:大型离散系统的动态验证飞机着陆控制器

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Symbolic algebraic analysis techniques are applied to the landing gear subsystem in the Swedish fighter aircraft, JAS 39 Gripen. Our methods are based on polynomials over finite fields (with Boolean algebra and propositional logic as special cases). Polynomials are used to represent the basic dynamic equations for the processes (controller and plant) as well as static properties of these. Temporal algebra (or temporal logic) is used to represent specifications of system behaviour. These specifications are verified both on a model of the landing gear controller, and a model of the closed loop behaviour of the landing gear controller connected to a plant. The model of the landing gear controller is made from the actual implementation in Pascal. The tools used are developed by the authors in Mathematica and uses an efficient implementation of binary decision diagrams.
机译:符号代数分析技术应用于瑞典战斗机的着陆齿轮子系统,JAS 39 Gripen。 我们的方法基于有限字段的多项式(带布尔代数和命题逻辑作为特殊情况)。 多项式用于表示过程(控制器和工厂)的基本动态方程以及这些的静态属性。 时间代数(或时间逻辑)用于表示系统行为的规范。 这些规范在着陆齿轮控制器的模型上验证,以及连接到植物的着陆齿轮控制器的闭环行为的模型。 着陆齿轮控制器的模型由Pascal中的实际实现制成。 使用的工具是由Mathematica的作者开发的,并使用二进制决策图的有效实现。

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