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Characterization of the On-Body Path Loss at 2.45 GHz and Energy Efficient WBAN Design for Dairy Cows

机译:奶牛体内路径损耗的表征(2.45 GHz)和高能效的WBAN设计

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Wireless body area networks (WBANs) provide promising applications in the healthcare monitoring of dairy cows. The characterization of the path loss (PL) between on-body nodes constitutes an important step in the deployment of a WBAN. In this paper, the PL between nodes placed on the body of a dairy cow was determined at 2.45 GHz. Finite-difference time domain simulations with two half-wavelength dipoles placed 20 mm above a cow model were performed using a 3-D electromagnetic solver. Measurements were conducted on a live cow to validate the simulation results. Excellent agreement between measurements and simulations was achieved and the obtained PL values as a function of the transmitter-receiver separation were well fitted by a lognormal PL model with a PL exponent of 3.1 and a PL at reference distance (10 cm) of 44 dB. As an application, the packet error rate (PER) and the energy efficiency of different WBAN topologies for dairy cows (i.e., single-hop, multihop, and cooperative networks) were investigated. The analysis results revealed that exploiting multihop and cooperative communication schemes decrease the PER and increase the optimal payload packet size. The analysis results revealed that exploiting multihop and cooperative communication schemes increase the optimal payload packet size and improve the energy efficiency by 30%.
机译:无线人体局域网(WBAN)在奶牛的健康监护中提供了有希望的应用。人体节点之间路径损耗(PL)的表征是WBAN部署中的重要一步。在本文中,放置在奶牛身上的节点之间的PL确定为2.45 GHz。使用3-D电磁求解器对两个半波长偶极子放置在母牛模型上方20 mm的时域有限差分进行了仿真。在活牛上进行测量以验证模拟结果。测量和仿真之间实现了极好的一致性,并且通过对数正态PL模型(PL指数为3.1,PL在参考距离(10 cm)处为44 dB)很好地拟合了所获得的PL值,作为发射器与接收器之间的距离的函数。作为一种应用,研究了奶牛(即单跳,多跳和协作网络)的不同WBAN拓扑的包错误率(PER)和能效。分析结果表明,利用多跳和协作通信方案可降低PER,并增加最佳有效载荷数据包大小。分析结果表明,采用多跳和协作通信方案可增加最佳有效载荷数据包大小,并将能源效率提高30%。

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