一种用于自动雨刷控制的新型且具有成本效益的电阻式雨传感器:电路建模和实现

M. Joshi, Kaustubh Jogalekar, D. Sonawane, Vinayak Sagare, M. Joshi
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引用次数: 18

摘要

安全性和驾驶舒适性是汽车工业发展新趋势的基本目标。自动雨刮器控制器,不仅有助于提高安全性,减少干扰,但也增加了整体的舒适性。这种自动控制是可行的,但存在成本高、效率低的局限性。在这项工作中,我们提出了一种基于电阻式雨水传感器的自动雨刷控制器,该控制器具有成本效益,效率高,输出范围广的特点。建立了传感器的等效电学和数学模型,并进行了仿真和实际验证。雨水传感器具有预定的几何形状。因此,雨水在传感器表面形成一层薄膜,导致其阻力非线性变化。为了提高系统的整体效率,有必要对传感器响应进行线性化。它是利用传感器的电等效模型和适当的线性化电路来实现的。此外,利用PIC微控制器开发了定制嵌入式系统,实现了基于传感器输出的电机转速变化。该系统在一辆小型分段车(Indica V2)上进行了严格的性能测试。经观察,所开发的系统在各种降雨情况下都能令人满意地工作。
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A novel and cost effective resistive rain sensor for automatic wiper control: Circuit modelling and implementation
Safety and driver comfort are the essential goals of new trends in automobile industry. An automatic wiper controller, helps not only in increasing safety by reducing distractions but also increases the overall comfort. Such an automatic control is available however it has limitations of high cost and low efficiency. In this work, we have proposed an automatic wiper controller, based on resistive rain sensor which is cost effective, efficient and has a wide range of output. An equivalent electrical and mathematical model of the sensor is developed, simulated and practically verified. The rain sensor has a predetermined geometry. Hence the rain water forms a film on the sensor surface causing its resistance to change non-linearly. To increase the overall efficiency of system, it is necessary to linearize the sensor response. It is achieved using electrical equivalent model of the sensor and with appropriate linearization circuit. Further, a customized embedded system is developed using PIC micro-controller to achieve motor speed variation based on sensor output. The proposed system is rigorously tested on a small segment car (Indica V2) for its performance. It is observed that, the developed system works satisfactorily under various rain scenarios.
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