首页> 外文期刊>WSEAS Transactions on Environment and Development >A New Genetic Algorithm Model-Based Prognostic Approach Applied to Onboard Electrohydraulic Servomechanisms
【24h】

A New Genetic Algorithm Model-Based Prognostic Approach Applied to Onboard Electrohydraulic Servomechanisms

机译:一种基于新的基于遗传算法的模型,应用于车载电液伺服机制

获取原文
获取原文并翻译 | 示例
       

摘要

The ever green solution of the electro hydraulic actuator (EHA) applications for the control of modern primary flight commands, justified by the superiority of hydraulic systems in furnishing more efficient solutions for power supplying in a controlled manner, brings us to focus on the need to make the EHA as efficient and reliable as possible. To this purpose, it must be noted that reliability of modern systems is increasingly more based on the valid support of diagnostics and prognostics; in fact, these two are the most robust instruments which mitigate life cycle costs without losing reliability and guarantee, in compliance with regulations, the bases for health management of integrated components, subsystems and systems. Developing a fault detection algorithm able to identify the precursors of EHA faults and their degradation patterns is thus beneficial for anticipating the incoming failure and alerting the maintenance crew so as to properly schedule the servomechanism replacement. About that, this paper proposes a new EHA model-based fault detection and identification method (FDI) that makes use of deterministic and heuristic solvers in order to converge to the actual state of wear of the tested actuator. The proposed FDI algorithm has been tested on three different types of progressive failures (the clogging of the first stage of the flapper-nozzle valve, the rising of friction between spool and sleeve and finally the rising of friction between jack and cylinder): to this purpose, a dedicated simulation test environment was developed. Results showed an adequate robustness and a suitable confidence was gained about its ability to early identify EHA malfunctions with low risk of false alarms or missed failures.
机译:Electro液压执行器(EHA)的绿色解决方案用于控制现代初级飞行指令,通过液压系统的优越性地为控制方式提供更有效的供电解决方案,使我们关注需要使EHA尽可能高效且可靠。为此目的,必须指出的是,现代系统的可靠性越来越多地根据诊断和预测的有效支持;事实上,这两者是最强大的仪器,在不损失可靠性和保证的情况下减轻生命周期成本,符合法规,综合组件,子系统和系统的健康管理基础。开发一个能够识别EHA故障的前体的故障检测算法以及其劣化模式因此有利于预期进入的失败,并提醒维护人员,以便正确安排伺服机构替代。关于此,本文提出了一种新的基于EHA模型的故障检测和识别方法(FDI),其利用确定性和启发式求解器来汇聚到测试执行器的实际磨损状态。所提出的FDI算法已经在三种不同类型的渐进故障(挡板喷嘴阀的第一阶段的堵塞上进行了测试,阀芯和套筒之间的摩擦升高,最后摩擦摩擦的升高):对此:对此目的,开发了专用的仿真测试环境。结果表明,充分的鲁棒性,并且对其早期识别EHA故障的能力,具有较低的误报或错过故障的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号