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Design of Flow Stability System Based on Information Fusion

机译:基于信息融合的流量稳定系统设计

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Stability of cotton flow velocity determines the accuracy of foreign fiber detection system. There are many factors affecting fiber flow flux. In the process of operational control, recent research has been directed towards synthetically and effectively adjusting the relative parameters, and thus achieving a stable and economic foreign fiber detection system in textile sector. In the foreign fiber detection system, the parameters of flow velocity are affected by the temperature, pressure, density, which are also interrelated and redundant information. Based on Clustering Fusion, the design of the flow velocity used in the detection device is provided in this paper. Using captured parameter characteristic information, clustering fusion control, conducts the second fusion for ART-2 and BP neural network, and sends to fusion center, then fusion center process the data using neural network method. Linking with synthesis repository and global data base, different control strategies can be utilized to adjust velocity of flow parameter. The cluster control strategy that keeps output velocity of flow stable are proposed to improve the fiber measure precision in foreign fiber detection system. This system can be used in indigenous foreign fiber detection system, and significantly improve the performance of the entire system.
机译:棉花流速的稳定性决定了异纤检测系统的准确性。影响纤维流通量的因素很多。在操作控制过程中,最近的研究方向是综合有效地调整相关参数,从而在纺织领域实现了稳定,经济的异物纤维检测系统。在异物纤维检测系统中,流速的参数受温度,压力,密度的影响,它们也是相互关联和冗余的信息。本文基于聚类融合技术,对检测装置中所使用的流速进行了设计。利用捕获的参数特征信息,对融合控制进行聚类,对ART-2和BP神经网络进行第二次融合,并发送到融合中心,然后融合中心使用神经网络方法处理数据。与综合库和全局数据库链接,可以使用不同的控制策略来调整流量参数的速度。为了提高异物纤维检测系统中的纤维测量精度,提出了保持流量稳定输出的簇控制策略。该系统可用于本机异物纤维检测系统,并显着提高整个系统的性能。

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