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Multi-channel broadcast in asymmetric duty cycling wireless body area networks

机译:非对称占空比无线人体局域网中的多频道广播

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We formulate and study a broadcast problem arising in multi-channel duty cycling wireless body area networks (WBANs), where the sink needs to broadcast the control message to all sensor nodes. The objective is to design robust multichannel wake-up schedule with minimum worst-case broadcast delay while guaranteeing the full broadcast diversity regardless of clock drifts and asymmetric duty cycles. To that end, we first derive the lower-bound of worst-case broadcast delay with full diversity of any broadcast protocol and then design a multichannel broadcast protocol (MCB) that satisfies the performance requirement for the latency and diversity. Finally, the simulation results demonstrate the capability of MCB of ensuring successful broadcast delivery on every channel within the theoretical worst-case broadcast delay, even under asymmetric duty cycles and any amount of clock drifts.
机译:我们制定并研究了多通道占空比无线人体局域网(WBAN)中出现的广播问题,其中接收器需要将控制消息广播到所有传感器节点。目的是设计具有最小的最坏情况广播延迟的鲁棒的多通道唤醒时间表,同时不管时钟漂移和不对称占空比如何,都能保证完整的广播分集。为此,我们首先得出具有任何广播协议完全多样性的最坏情况广播延迟的下限,然后设计一个满足延迟和多样性性能要求的多信道广播协议(MCB)。最后,仿真结果证明了MCB的能力,即使在不对称的占空比和任何数量的时钟漂移下,也能确保在理论上最坏情况下的广播延迟内在每个频道上成功进行广播传送。

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