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Throughput assurance of wireless body area networks coexistence based on stochastic geometry

机译:基于随机几何的无线人体局域网共存吞吐量保证

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摘要

Wireless body area networks (WBANs) are expected to influence the traditional medical model by assisting caretakers with health telemonitoring. Within WBANs, the transmit power of the nodes should be as small as possible owing to their limited energy capacity but should be sufficiently large to guarantee the quality of the signal at the receiving nodes. When multiple WBANs coexist in a small area, the communication reliability and overall throughput can be seriously affected due to resource competition and interference. We show that the total network throughput largely depends on the WBANs distribution density (λp), transmit power of their nodes (Pt), and their carrier-sensing threshold (γ). Using stochastic geometry, a joint carrier-sensing threshold and power control strategy is proposed to meet the demand of coexisting WBANs based on the IEEE 802.15.4 standard. Given different network distributions and carrier-sensing thresholds, the proposed strategy derives a minimum transmit power according to varying surrounding environment. We obtain expressions for transmission success probability and throughput adopting this strategy. Using numerical examples, we show that joint carrier-sensing thresholds and transmit power strategy can effectively improve the overall system throughput and reduce interference. Additionally, this paper studies the effects of a guard zone on the throughput using a Matern hard-core point process (HCPP) type II model. Theoretical analysis and simulation results show that the HCPP model can increase the success probability and throughput of networks.
机译:无线体域网(WBAN)有望通过协助看护者进行健康远程监控来影响传统医疗模式。在WBAN内,节点的发射功率由于其有限的能量容量而应尽可能小,但应足够大以保证接收节点处的信号质量。当多个WBAN在一个小区域中共存时,由于资源竞争和干扰,通信可靠性和整体吞吐量可能会受到严重影响。我们表明,总的网络吞吐量在很大程度上取决于WBAN的分布密度(λp),其节点的发射功率(Pt)以及其载波侦听阈值(γ)。利用随机几何,提出了一种联合的载波侦听阈值和功率控制策略,以满足基于IEEE 802.15.4标准的共存WBAN的需求。给定不同的网络分布和载波侦听阈值,所提出的策略根据周围环境的变化得出最小的发射功率。我们采用这种策略获得了传输成功概率和吞吐量的表达式。使用数值示例,我们表明联合载波检测阈值和发射功率策略可以有效提高整体系统吞吐量并减少干扰。此外,本文使用Matern硬核点过程(HCPP)II型模型研究保护区对吞吐量的影响。理论分析和仿真结果表明,HCPP模型可以提高网络的成功概率和吞吐量。

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