Onboard reasoning and other applications of the logic-based approach to the moving objects intelligent control

A. Tyugashev
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Abstract

This article provides the theoretical background and practical case studies of the application of reasoning and other logic-based approaches to the moving objects control. Modern moving objects, both manned and unmanned, utilise computers as their 'onboard brain'. Since planes, spacecraft, cars, trucks and trains must demonstrate flexible and safe behaviour in various situations, it seems prospective to use intelligent control means instead of rigid control logic dispersed in a program source code. This article is concerned with the possible implementation of onboard intelligence. In contrast to the popular use of neural networks, the logic-based approach is based on clear and exact control rules with strict responsibility. Thus, formal specification and verification methods can be utilised. The article describes the real-time control algorithm logic (RTCAL) for the above-mentioned purposes. We also present case studies of reasoning at the design and operation stages for providing the fault tolerant control of a spacecraft.
车载推理等应用基于逻辑的方法对运动物体进行智能控制
本文提供了推理和其他基于逻辑的方法在运动物体控制中的应用的理论背景和实际案例研究。现代移动物体,无论是有人驾驶的还是无人驾驶的,都利用电脑作为它们的“机载大脑”。由于飞机、航天器、汽车、卡车和火车必须在各种情况下表现出灵活和安全的行为,因此使用智能控制手段而不是分散在程序源代码中的严格控制逻辑似乎是有前景的。本文讨论了机载智能的可能实现。与流行的神经网络相比,基于逻辑的方法是基于清晰、精确的控制规则和严格的责任。因此,可以使用正式的规范和验证方法。本文介绍了基于上述目的的实时控制算法逻辑(RTCAL)。我们还介绍了在设计和运行阶段的推理案例研究,以提供航天器的容错控制。
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