ENHANCING HIGH-SPEED PERFORMANCE: MODIFICATION OF BOOM BARRIER GATE WITH PUSH BRAKING SYSTEM FOR ETC APPLICATION

M. L. Nafis, H. Pranoto, R. P. Youlia
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Abstract

Congestion at toll roads has become a pervasive issue in contemporary times, predominantly manifesting at toll booths during the payment process. A noteworthy contributor to this congestion has been identified as the sluggish operational speed of boom gates. In response to this challenge, a modification strategy was implemented to enhance the operational efficiency of existing boom gates. The primary modification involved substituting the conventional electric motor with a more advanced Brushless DC (BLDC) motor boasting a power rating of 660 watts. Additionally, an innovative augmentation integrated a motorcycle disk brake system into the boom gate mechanism. Replacing the original electric motor's internal brake system with the disk brake system aimed to optimize the overall performance of the boom gate. The integration of the motorcycle disk brake system was further complemented by incorporating the push braking system (knoken braking system), serving as the actuator instead of the traditional motorcycle lever handle. This strategic substitution was instrumental in activating the disk brake function at the boom gate. During peak rush hours, the modified boom gate underwent rigorous testing at both the Ciawi and Kelapa Gading toll gates. Results from the trial activities unveiled a remarkable improvement in the boom gate's operational speed. Specifically, the opening speed demonstrated an impressive surge of 51 percent, catapulting from 548 ms to 265 ms. Similarly, the closing speed exhibited a commendable enhancement of 44 percent, elevating from 602 ms to 332 ms. Furthermore, the boom gate cycle per hour experienced a notable escalation, increasing by 25 percent from 356 to 449 cars per hour. These findings underscore the efficacy of the implemented modifications in ameliorating congestion issues at toll booths.
提高高速性能:改装带推制动系统的吊杆式隔离栅,用于等应用领域
收费公路拥堵已成为当代的一个普遍问题,主要表现在缴费过程中的收费站。造成这种拥堵的一个显著因素是臂闸的运行速度缓慢。为应对这一挑战,我们实施了一项改造战略,以提高现有臂闸的运行效率。主要的改造措施包括用更先进的无刷直流(BLDC)电机取代传统电机,该电机的额定功率为 660 瓦。此外,一项创新性的改进还将摩托车盘式制动系统集成到了臂闸机构中。用盘式制动系统取代原有电机的内部制动系统,旨在优化臂闸的整体性能。在整合摩托车盘式制动系统的基础上,还加入了推动式制动系统(Knoken 制动系统),作为执行器取代传统的摩托车拉杆手柄。这种战略性的替代在启动吊臂闸门的盘式制动器功能方面发挥了重要作用。在高峰时段,改装后的吊臂式闸门在 Ciawi 和 Kelapa Gading 收费站进行了严格测试。试验结果表明,臂闸的运行速度有了显著提高。具体而言,开启速度大幅提高了 51%,从 548 毫秒跃升至 265 毫秒。同样,关闭速度也提高了 44%,从 602 毫秒提高到 332 毫秒,令人称赞。此外,每小时的栅门周期也有显著提升,从每小时 356 辆增加到 449 辆,增幅达 25%。这些研究结果表明,所实施的改造措施在改善收费站拥堵问题方面卓有成效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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