Extraordinary Passive Safety in Cars Using a Sensor Network Model

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY Ingenieria Pub Date : 2022-01-04 DOI:10.14483/23448393.18493
J. S. Ruíz Castilla, F. García Lamont
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Abstract

Context:  The automobile industry has included active and passive safety. Active safety incorporates elements to avoid crashes and collisions. Some elements are ABS brakes and stabilization bars, among others. On the other hand, passive safety avoids or minimizes damage to the occupants in the event of an accident. Some passive safety features include seat belts and front and curtain airbags for the driver and other occupants. Method: In this research work, we propose a new category called Extraordinary Passive Safety (XPS). A model of a sensor network was designed to inspect the conditions inside the car to detect fire, smoke, gases, and extreme temperatures. The sensors send data to a device (DXPS) capable of receiving and storing the data. Results: Each sensor collects data and sends it to the DXPS every period. The sensor sends 0s while there is no risk, and 1s when it detects a risk. When the DXPS receives a 1, the pattern is evaluated, and the risk is identified. Since there are several sensors, the reading pattern is a set of 0s (000000). When a pattern with one or more 1s (000100, 010101) is received, the DXPS can send an alert or activate a device. Conclusions: The proposed solution could save the lives of children left in the car or people trapped when the car catches fire. As future work, it is intended to define the devices to avoid or minimize damage to the occupants such as oxygen supply, gas extraction, regulating the temperature, among others.
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使用传感器网络模型实现汽车的非凡被动安全
背景:汽车工业包括主动安全和被动安全。主动安全包含避免碰撞和碰撞的元素。一些元素是ABS刹车和稳定杆等。另一方面,被动安全避免或减少事故发生时对乘员的伤害。一些被动安全功能包括为驾驶员和其他乘员配备安全带、前部和幕布安全气囊。方法:在本文的研究工作中,我们提出了一个新的分类——超常被动安全(XPS)。设计了一个传感器网络模型,用于检查汽车内部的情况,以检测火灾、烟雾、气体和极端温度。传感器将数据发送到能够接收和存储数据的设备(DXPS)。结果:每个传感器每周期采集数据并发送给DXPS。无风险时发送0,检测到风险时发送15。当DXPS接收到1时,将对模式进行评估,并识别风险。由于有几个传感器,读取模式是一组0(000000)。当接收到具有一个或多个1(000100,010101)的模式时,DXPS可以发送警报或激活设备。结论:提出的解决方案可以挽救车内留守儿童或汽车着火时被困人员的生命。作为未来的工作,它旨在定义设备,以避免或尽量减少对居住者的伤害,如氧气供应,气体抽取,调节温度等。
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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来源期刊
Ingenieria
Ingenieria ENGINEERING, MULTIDISCIPLINARY-
CiteScore
0.70
自引率
25.00%
发文量
33
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