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首页> 外文期刊>International Journal of Control >Ambulatory wireless sensor network power management using constrained explicit generalised predictive control
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Ambulatory wireless sensor network power management using constrained explicit generalised predictive control

机译:使用约束显式广义预测控制的动态无线传感器网络电源管理

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摘要

This work considers the problem of controlling transmit power within a wireless sensor network (WSN), where the practical constraints typically posed by an ambulatory healthcare setting are explicitly taken into account, as a constrained received signal strength indicator (RSSI) tracking control problem. The problem is formulated using an explicit generalised predictive control (GPC) strategy for dynamic transmission power control that ensures a balance between energy consumption and quality of service (QoS) through the creation of a stable floor on information throughput. Optimal power assignment is achieved by an explicit solution of the constrained GPC problem that is computed off-line using a multi-parametric quadratic program (mpQP). The solution is shown to be a piecewise-affine function. The new design is demonstrated to be practically feasible via a resource-constrained, fully IEEE 802.15.4 compliant, Moteiv's Tmote Sky sensor node platform. Design utility is benchmarked experimentally using a representative selection of scaled ambulatory scenarios.
机译:这项工作考虑了控制无线传感器网络(WSN)内发射功率的问题,其中作为约束接收信号强度指示器(RSSI)跟踪控制问题,明确考虑了通常由门诊医疗设置所带来的实际限制。该问题是使用用于动态传输功率控制的显式广义预测控制(GPC)策略提出的,该策略通过在信息吞吐量上建立稳定的下限来确保能耗和服务质量(QoS)之间的平衡。最佳功率分配是通过使用多参数二次程序(mpQP)离线计算的受约束GPC问题的显式解决方案来实现的。该解决方案显示为分段仿射函数。通过资源受限,完全符合IEEE 802.15.4的Moteiv的Tmote Sky传感器节点平台,该新设计被证明是切实可行的。设计实用程序使用比例选择的动态方案的代表性选择进行实验基准测试。

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