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Link adaptation strategies for IEEE 802.15.4 WPANs: Protocol design and performance evaluation

机译:IEEE 802.15.4 WPAN的链路自适应策略:协议设计和性能评估

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This paper proposes two link adaptation strategies for IEEE 802.15.4 wireless personal area networks (WPANs), using a multi-rate signaling set. In the proposed link adaptation strategies, the most adequate modulation and coding scheme (MCS) satisfying the target bit error rate (BER) of the end device is selected based on the signal-to-interference-plus-noise ratio (SINR) of either a beacon or an acknowledgement (ACK) frame. The beacon-based link adaptation scheme has low complexity and overhead, given that it performs link adaptation only once per superframe. In contrast, the ACK-based strategy performs link adaptation at every ACK frame, and therefore provides a faster and more effective link adaptation, but at the expense of a larger overhead. The specific protocol design for the proposed link adaptation strategies is developed by constructing the signal flow based on the service primitives between the protocol stack layers. The network simulator OPNET is used to implement an accurate IEEE 802.15.4 WPAN protocol stack and the simulation environment required for performance evaluation. The simulation results show that the received throughput of IEEE 802.15.4 WPANs can be improved by exploiting the proposed link adaptation strategies instead of auto-rate fallback, the conventional WPAN strategy.
机译:本文提出了一种使用多速率信令集的IEEE 802.15.4无线个人区域网(WPAN)的两种链路自适应策略。在提出的链路自适应策略中,基于任一终端的信号干扰干扰噪声比(SINR)选择满足终端设备目标误码率(BER)的最适当的调制和编码方案(MCS)信标或确认(ACK)帧。基于信标的链路自适应方案具有较低的复杂度和开销,因为它每个超帧仅执行一次链路自适应。相反,基于ACK的策略在每个ACK帧上执行链路自适应,因此提供了更快,更有效的链路自适应,但以较大的开销为代价。通过基于协议栈层之间的服务原语构造信号流,可以开发出针对所提出的链路自适应策略的特定协议设计。网络仿真器OPNET用于实现准确的IEEE 802.15.4 WPAN协议栈和性能评估所需的仿真环境。仿真结果表明,通过利用提出的链路自适应策略代替传统的WPAN策略自动速率回退,可以提高IEEE 802.15.4 WPAN的接收吞吐量。

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