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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Online fault detection system for proportional hydraulic valves
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Online fault detection system for proportional hydraulic valves

机译:比例液压阀在线故障检测系统

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This paper presents the development of a method for condition monitoring and online fault detection on proportional directional valves. The systems that such valves are part of might be sensitive for unexpected maintenance or long duration stops. Consequently, the implementation of a fault detection and monitoring system can reduce maintenance costs and increase safety. The method is based on monitoring both the valve supply current and spool position related to the spool positioning control signal. Therefore, it is applicable for valves with embedded electronics including spool position measurement and internal controller. The supply current and spool position behavior depends on the friction, flow forces, solenoid current, and valve closed loop controller performance. Furthermore, valve static and dynamic characteristics are influenced by the spool size, overlapping and manufacturing tolerances. The effectiveness of the method to monitor and detect faults in valves with different sizes and constructive parameters is shown experimentally using five different proportional valves. The proposed method requires reference parameters characterizing the valve operation without faults. Standard tests are proposed to determine healthy valve parameters. For the method valuation and validation, experimental results with the valve operating under healthy conditions and with induced faults were compared. Faults were added in a way to represent spool locking and increase of friction forces between the spool and sleeve. The obtained results show the capability the method for the detection of faults classified as severe even if the valve controller attempts to compensate the faulty behavior.
机译:本文介绍了一种比例换向阀状态监测和在线故障检测方法的发展。此类阀门所属的系统可能对意外维护或长时间停止很敏感。因此,故障检测和监控系统的实施可以降低维护成本并提高安全性。该方法基于监测阀门供应电流和阀芯位置,与阀芯定位控制信号相关。因此,它适用于带有嵌入式电子元件的阀门,包括阀芯位置测量和内部控制器。电源电流和阀芯位置行为取决于摩擦、流量、电磁阀电流和阀门闭环控制器性能。此外,阀门的静态和动态特性还受阀芯尺寸、重叠和制造公差的影响。使用五种不同比例的阀门通过实验证明了该方法在具有不同尺寸和建设性参数的阀门中监测和检测故障的有效性。所提出的方法需要参考参数来表征阀门运行的无故障。建议进行标准测试以确定健康的瓣膜参数。对于方法评估和验证,比较了阀门在健康条件下运行和诱发故障的实验结果。添加故障的方式表示阀芯锁定以及阀芯和套筒之间摩擦力的增加。所获得的结果表明,即使阀门控制器试图补偿故障行为,该方法也能够检测被归类为严重故障的方法。

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