A high-speed method for computing reachable sets based on variable-size grid

IF 6.3 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS ISA transactions Pub Date : 2025-01-01 DOI:10.1016/j.isatra.2024.11.021
Wei Liao , Ming Tang , Yu Zhang , Taotao Liang
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Abstract

In this paper, we improve the dynamic programming based reachable set computation method by replacing the constant size grid in the original method with a variable size grid. With this improvement, the computational time consumption can be significantly reduced while maintaining the accuracy. The proposed method represents the reachable set as a sublevel set of a discount cost-to-go function, which is generated by dynamic programming. In order to compute the discount cost-to-go function quickly and accurately, the proposed method consists of three steps: (1) Rough computation. This step uses a coarse grid to obtain an interpolation function that is close to the real discount cost-to-go function; (2) Upsampling. This step is for generating a fine grid; (3) Fine tuning. This step generates an interpolation function that exactly approximates the real discount cost-to-go function. This paper theoretically proves the correctness of the proposed method and verifies its effectiveness by some examples.
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基于可变大小网格计算可达集的高速方法。
在本文中,我们改进了基于动态编程的可达集计算方法,将原方法中的恒定尺寸网格替换为可变尺寸网格。通过这一改进,在保持精度的前提下,计算时间消耗可以大大减少。所提出的方法将可达集表示为折现成本-去向函数的子级集,而折现成本-去向函数是通过动态编程生成的。为了快速准确地计算折扣成本到目标函数,建议的方法包括三个步骤:(1) 粗略计算。这一步使用粗网格获得一个接近实际折扣成本-收益函数的插值函数;(2)升采样。该步骤用于生成精细网格;(3)微调。这一步生成的插值函数完全接近实际折扣成本-收益函数。本文从理论上证明了所提方法的正确性,并通过一些实例验证了其有效性。
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来源期刊
ISA transactions
ISA transactions 工程技术-工程:综合
CiteScore
11.70
自引率
12.30%
发文量
824
审稿时长
4.4 months
期刊介绍: ISA Transactions serves as a platform for showcasing advancements in measurement and automation, catering to both industrial practitioners and applied researchers. It covers a wide array of topics within measurement, including sensors, signal processing, data analysis, and fault detection, supported by techniques such as artificial intelligence and communication systems. Automation topics encompass control strategies, modelling, system reliability, and maintenance, alongside optimization and human-machine interaction. The journal targets research and development professionals in control systems, process instrumentation, and automation from academia and industry.
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