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Formal Verification for Embedded Implementation of Convex Optimization Algorithms

机译:凸优化算法嵌入式实现的形式验证

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Advanced embedded algorithms are growing in complexity and length, related to the growth in autonomy, which allows systems to plan paths of their own. However, this promise cannot happen without proper attention to the considerably stronger operational constraints that safety-critical applications must meet. This paper discusses the formal verification for optimization algorithms with a particular emphasis on receding-horizon controllers. Following a brief historical overview, a prototype autocoder for embedded convex optimization algorithms will be discussed. Options for encoding code properties and proofs, and their applicability and limitations will be detailed as well.
机译:先进的嵌入式算法的复杂性和长度不断增长,与自治性的增长有关,这使系统可以规划自己的路径。但是,如果没有适当注意安全关键型应用程序必须满足的更强大的操作约束,就不可能实现这一承诺。本文讨论了优化算法的形式验证,尤其着重于后退水平控制器。在简短的历史概述之后,将讨论用于嵌入式凸优化算法的原型自动编码器。还将详细介绍用于编码代码属性和证明的编码选项及其适用性和限制。

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