帕斯卡定律原型的设计与开发物联网应用自动液压制动系统

Biplov Paneru, Bishwash Paneru
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引用次数: 0

摘要

随着各种科学技术的进步,自动驾驶汽车的广泛采用不断增加,这就需要应用必要的事故预防措施。本研究提出了一个创新的液压制动系统的设计和开发利用现成的组件和材料。帕斯卡压力定律在现代液压制动机构中非常适用。该系统采用了一个超声波传感器、一个改造磁盘、一个电机和一个由继电器控制的电磁锁,以形成一个有效的制动机制。本研究的主要目的是证明基于帕斯卡压力定律构建功能性制动系统的可行性,该系统使用当地采购的材料,以适应资源受限的环境。所提出的液压制动系统的功能如下:当超声波传感器检测到其附近(约20厘米)的物体时,它会触发继电器,从而激活电磁锁。电磁锁的动作启动注射器压缩机的运动,对液压流体施加压力。这个压力然后被传送到被重新利用的DVD(数字多功能磁盘),作为制动元件。由于圆盘被压在一个表面上,由此产生的摩擦使系统减速,有效地应用了制动器。最后,在物联网(IoT)平台ThingSpeak中评估数据,以识别安全和有害状态。
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Design and Development of a Prototype for a Pascal’s Law & IoT applied Automatic Hydraulic Braking System
The widespread adoption of autonomous vehicles continues to increase along with various scientific and technological advancements, and this is necessitating the application of essential accident prevention measures. This research presents the design and development of an innovative hydraulic braking system utilizing readily available components and materials. The Pascal’s law of pressure is very applicable in modern hydraulic braking mechanisms. The system employs an ultrasonic sensor, a repurposed disk, a motor, and a solenoid lock controlled by a relay to create an effective braking mechanism. The primary objective of this research is to demonstrate the feasibility of constructing a functional braking system based on Pascal’s law of pressure, using locally sourced materials, catering to resource-constrained environments. The proposed hydraulic braking system functions as follows: when the ultrasonic sensor detects an object within its proximity (approximately 20 centimeters), it triggers the relay, which activates the solenoid lock. The solenoid lock's action initiates the movement of a syringe compressor, exerting pressure on the hydraulic fluid. This pressure is then transmitted to the repurposed DVD (Digital Versatile Disk), which serves as the braking element. As the disk is pressed against a surface, the resulting friction decelerates the system, effectively applying the brake. Finally, data is evaluated in the IoT (Internet of Things) platform ThingSpeak to identify safe and harmful states.
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