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BPH Sensor Network Optimization Based on Cellular Automata and Honeycomb Structure

机译:基于蜂窝自动机和蜂窝结构的BPH传感器网络优化

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摘要

The brown planthopper (BPH) is a crucial pest of rice in tropical zones like the Mekong Delta of Vietnam. It economically causes severe loss to the rice harvest via direct nutritional depletion. Many studies address the BPH surveillance by using networks of wireless sensors that are mounted on light traps. However, these approaches have not been confirmed as effective deployment due to inoperative light traps' locations. The problem is that the geographical area of towns is not identical, leading to unnecessary redundancy of sensors and light traps. Our aim in this article is to optimize the locations of BPH sensor networks by utilizing cellular automata and honeycomb architecture which have not been affected by the spatial characteristic geographically. The authors have made several contributions regarding the mentioned problem by (i) quantitatively proving that the deployment cost of BPH sensor networks is significantly reduced, and consequently (ii) optimizing the BPH sensor network. Therefore, the appropriate configuration of the network is maintained in any circumstances. The experiments have been performed on BPH surveillance networks in Hau Giang, a substantial rice province in the Mekong Delta of Vietnam.
机译:棕色Planthopper(BPH)是越南湄公河三角洲的热带地区的米饭中的一个至关重要的害虫。通过直接营养耗尽,经济地导致稻米收获的严重损失。许多研究通过使用安装在光陷阱上的无线传感器网络来解决BPH监控。然而,由于不起作用的光陷阱位置,这些方法尚未确认为有效的部署。问题是,城镇的地理区域并不相同,导致传感器和光陷阱的不必要冗余。我们在本文中的目标是通过利用蜂窝自动机和蜂窝架构来优化BPH传感器网络的位置,该蜂窝自动机和蜂窝结构在地理上没有受到空间特征的影响。作者对所提到的问题进行了几项贡献(i)定量证明,BPH传感器网络的部署成本显着降低,因此(ii)优化BPH传感器网络。因此,在任何情况下都维持网络的适当配置。在越南湄公河三角洲的大米省,HAU Giang的BPH监控网络已经进行了实验。

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