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A New Fusion Structure Model on Greenhouse Environment Data and a New Fusion Algorithm of Sunlight

机译:温室环境数据融合结构的新模型及阳光融合算法

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In order to meet the requirements of data fusion for greenhouse monitoring system based on wireless sensor network. A kind of multi-sensor data fusion structure model about spatial and temporal fusion is proposed. According to the greenhouse environment parameters such as temperature, humidity, CO2 change slowly, while the parameter of sunlight changes rapidly, this paper proposes that it respectively uses temporal fusion model and dual prediction strategy fusion to fuse these two kinds of parameters to reduce the communication effort in WSN. The sensor nodes are vulnerable to be obscured by the greenhouse structure or crop. It has large impact on sunlight but little impact on other environment parameters. So this paper proposes a new spatial fusion algorithm based on gray incidence analysis to fuse sunlight, and it use power average operator based on support function to fuse other parameters. Algorithms were tested in the greenhouse of Tongji University Jiading Campus. Experimental results obtained demonstrate the efficiency and versatility of the proposed temporal fusion framework in improving the communication savings, the new spatial fusion of sunlight provides an effective way to avoid the fusion effect being affected by obscured nodes' data to acquire more accurate greenhouse sunlight intensity.
机译:为了满足基于无线传感器网络的温室监测系统数据融合的要求。提出了一种基于时空融合的多传感器数据融合结构模型。针对温室环境中温度,湿度,CO2变化缓慢,而日光参数变化迅速的问题,建议分别采用时间融合模型和双重预测策略融合来融合这两种参数,以减少通信量。 WSN中的努力。传感器节点很容易被温室结构或农作物遮挡。它对日光的影响很大,但对其他环境参数的影响很小。为此,本文提出了一种基于灰度关联分析的新的空间融合算法来融合太阳光,并使用基于支持函数的平均功率算子融合其他参数。在同济大学嘉定校区温室中对算法进行了测试。获得的实验结果证明了所提出的时间融合框架在改善通信节省方面的效率和多功能性,新的日光空间融合提供了一种有效的方法来避免融合效果受节点数据遮盖的影响,从而获得更准确的温室日照强度。

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