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A Networked Sensor System for the Analysis of Plot-Scale Hydrology

机译:一种用于样地水文分析的网络传感器系统

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This study presents the latest updates to the Audubon Society of Western Pennsylvania (ASWP) testbed, a $50,000 USD, 104-node outdoor multi-hop wireless sensor network (WSN). The network collects environmental data from over 240 sensors, including the EC-5, MPS-1 and MPS-2 soil moisture and soil water potential sensors and self-made sap flow sensors, across a heterogeneous deployment comprised of MICAz, IRIS and TelosB wireless motes. A low-cost sensor board and software driver was developed for communicating with the analog and digital sensors. Innovative techniques (e.g., balanced energy efficient routing and heterogeneous over-the-air mote reprogramming) maintained high success rates (>96%) and enabled effective software updating, throughout the large-scale heterogeneous WSN. The edaphic properties monitored by the network showed strong agreement with data logger measurements and were fitted to pedotransfer functions for estimating local soil hydraulic properties. Furthermore, sap flow measurements, scaled to tree stand transpiration, were found to be at or below potential evapotranspiration estimates. While outdoor WSNs still present numerous challenges, the ASWP testbed proves to be an effective and (relatively) low-cost environmental monitoring solution and represents a step towards developing a platform for monitoring and quantifying statistically relevant environmental parameters from large-scale network deployments.
机译:这项研究提供了西宾夕法尼亚州奥杜邦协会(ASWP)测试平台的最新更新,该测试平台耗资50,000美元,具有104个节点的室外多跳无线传感器网络(WSN)。该网络从包括MICAz,IRIS和TelosB无线在内的异构部署中收集了240多种传感器的环境数据,包括EC-5,MPS-1和MPS-2土壤水分和土壤水势传感器以及自制的液流传感器。尘埃。开发了一种低成本的传感器板和软件驱动程序,用于与模拟和数字传感器通信。在整个大型异构WSN中,创新技术(例如平衡的节能路由和异构的空中微粒重新编程)保持了较高的成功率(> 96%),并实现了有效的软件更新。该网络监测到的深层性质与数据记录仪的测量结果非常吻合,并且适合于pedotransfer函数来估算当地的土壤水力性质。此外,还发现了根据树木林分蒸腾量进行的树液流量测量值等于或低于潜在的蒸散量估算值。尽管室外WSN仍然面临众多挑战,但ASWP测试平台被证明是一种有效的(相对)低成本的环境监测解决方案,代表了开发平台的步骤,该平台可用于监测和量化大规模网络部署中的统计相关环境参数。

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