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Optimizing a fuzzy logic traffic signal controller via the differential evolution algorithm under different traffic scenarios

机译:在不同交通场景下通过差分进化算法优化模糊逻辑交通信号控制器

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This study aims at optimizing fuzzy logic controller (FLC) triangle membership functions (MFs) for different traffic volumes via differential evolution (DE). To achieve this goal, a new FLC with a red time limiter, which actually calculates green time and the extension time of traffic movement phase, is developed to control an intersection. Subsequently, this FLC is optimized with two levels, namely Level-1 and Level-2. Level-1 searches each fuzzy class's minimum and maximum values ( and ) that generate the lowest average delay per vehicle with DE. Using DE Level-2 inherits Level-1 ranges and reshapes the MFs to explore lower delay values computed by Level-1. The proposed method is tested with nine different traffic scenarios. For each scenario, 15 different headways are applied for a four-leg isolated intersection. The results indicate that the intersection average performance is increased up to 52%, 48%, and 14% at 800, 1600, and 2400 veh/h total intersection volumes, respectively, after Level-1 optimizations. They also reveal that intersection control produces higher delay values in only four scenarios after Level-2 procedures. Consequently, it is shown that the DE has significant potential to optimize FLCs at the intersection signal control. In addition, tuning fuzzy class ranges is found to be more critical than the MF reshaping process in traffic control via FLCs.
机译:本研究旨在通过差分进化(DE)针对不同的交通量优化模糊逻辑控制器(FLC)三角隶属函数(MF)。为了实现这一目标,开发了一种带有红色时间限制器的新型FLC,它可以实际计算绿色时间和交通移动阶段的延长时间,以控制交叉路口。随后,使用两个级别(即Level-1和Level-2)对FLC进行优化。级别1搜索每个模糊类的最小值和最大值(和),这些最小值和最大值生成每辆具有DE的车辆的最低平均延迟。使用DE Level-2可以继承Level-1的范围,并调整MF的形状以探究Level-1计算出的较低延迟值。该方法在九种不同的交通场景下进行了测试。对于每种情况,将15个不同的车距应用到四腿孤立的交叉路口。结果表明,在进行Level-1优化后,在800、1600和2400 veh / h的总路口体积下,路口平均性能分别提高了52%,48%和14%。他们还揭示出,相交控制仅在Level-2程序之后的四个场景中产生较高的延迟值。因此,表明在交叉信号控制下,DE具有优化FLC的巨大潜力。另外,在通过FLC进行流量控制时,发现模糊类范围的调整比MF重整过程更为关键。

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