首页> 外文会议>International conference on advance manufacture;SME ICAM 2007; 20071126-28;20071126-28; Taiwan(CT);Taiwan(CT) >Improvement of Wire-EDM Finishing Processes through Adaptive Fuzzy Logic Control Algorithm
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Improvement of Wire-EDM Finishing Processes through Adaptive Fuzzy Logic Control Algorithm

机译:通过自适应模糊逻辑控制算法改进电火花线切割机的精加工工艺

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This paper presented tries to improve finishing accuracy through monitoring the lateral gap-width by an adaptive fuzzy logic controller. Since the complexities and stochastic properties inherited in EDM processes, it seems promising to introduce soft computing algorithm in such a process control application. The adaptive fuzzy logic system (AFLS) composed of a fuzzy logic system and a nearest neighborhood-clustering algorithm, which adjusts not only the parameters of fuzzy system but also its own structure. A detailed material removal mechanism was established through the concept of discharge-angle for analysis on the machining processes. Formation of lateral gap width was analyzed through material removal swept by the discharge angle. Combined with discharge power and other operation conditions, a feasible gap-width estimation model was established. And an adaptive control based on the AFLS was proposed to improve the conventional servo-voltage strategy in both the machining accuracy and the stability aspects. Experiment results showed that the proposed estimation model is effective, and the proposed control strategy help significantly in improving the geometric accuracy of Wire-EDM's finishing process.
机译:本文提出了通过自适应模糊逻辑控制器监测横向缝隙宽度来提高精加工精度的方法。由于EDM过程继承了复杂性和随机性,因此在这种过程控制应用中引入软计算算法似乎很有希望。自适应模糊逻辑系统(AFLS)由模糊逻辑系统和最近邻域聚类算法组成,不仅可以调整模糊系统的参数,还可以调整其自身的结构。通过出料角的概念建立了详细的材料去除机制,以分析加工过程。通过排出角扫过的材料去除来分析横向间隙宽度的形成。结合放电功率和其他运行条件,建立了可行的间隙宽度估计模型。提出了一种基于AFLS的自适应控制方法,从加工精度和稳定性两方面对传统的伺服电压策略进行了改进。实验结果表明,所提出的估计模型是有效的,所提出的控制策略对改善Wire-EDM精加工过程的几何精度有很大帮助。

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