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Vibration-Based Fault Detection in a Hydraulic Brake System using Artificial Immune Recognition System with Statistical Features

机译:使用统计特征的人工免疫识别系统液压制动系统中基于振动的故障检测

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In an automobile, the brake is an essential part responsible for the control of the vehicle. Any failure in the brake system impacts the vehicle’s motion. It will generate frequent catastrophic effects on the safety of the vehicle cum passenger. Thus the brake system plays a vital role in an automobile and hence condition monitoring of the brake system is necessitated. Vibration-based condition monitoring techniques are gaining momentum. This study is one such attempt to categorize the faults that occur in a hydraulic brake system through vibration analysis. In this research, the performance of an artificial intelligence technique called Artificial Immune Recognition System for brake fault diagnosis has been reported. A hydraulic brake system test setup was fabricated. The vibration signals under good and faulty conditions of a brake system were acquired using a piezoelectric transducer. The statistical parameters were extracted from the vibration signals. The best features were identified using an attribute evaluator. The selected features were then classified using various versions of the Artificial Immune Recognition System (AIRS). The classification accuracy of such artificial intelligence techniques has been reported and discussed.
机译:在汽车中,制动器是负责控制车辆的重要部分。制动系统中的任何故障都会影响车辆的运动。它将对车辆暨乘客的安全产生频繁的灾难性影响。因此,制动系统在汽车中起着至关重要的作用,因此需要在制动系统的情况下监测。基于振动的状态监测技术正在获得动力。本研究是通过振动分析将在液压制动系统中发生的故障进行分类的试图。在这项研究中,报道了称为制动故障诊断人工免疫识别系统的人工智能技术的性能。制造液压制动系统测试设置。使用压电换能器获取制动系统的良好和故障条件下的振动信号。从振动信号中提取统计参数。使用属性评估器识别最佳功能。然后使用各种版本的人工免疫识别系统(空气)分类所选特征。报告并讨论了这种人工智能技术的分类准确性。

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