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Achieving Accurate and Real-Time Link Estimation for Low Power Wireless Sensor Networks

机译:为低功耗无线传感器网络实现准确和实时的链路估计

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Link estimation is a fundamental component of forwarding protocols in wireless sensor networks. In low power forwarding, however, the asynchronous nature of widely adopted duty-cycled radio control brings new challenges to achieve accurate and real-time estimation. First, the repeatedly transmitted frames (called wake-up frame) increase the complexity of accurate statistic, especially with bursty channel contention and coexistent interference. Second, frequent update of every link status will soon exhaust the limited energy supply. In this paper, we propose meter, which is a distributed wake-up frame counter. Meter takes the opportunities of link overhearing to update link status in real time. Furthermore, meter does not only depend on counting the successfully decoded wake-up frames, but also counts the corrupted ones by exploiting the feasibility of ZigBee identification based on short-term sequence of the received signal strength. We implement meter in TinyOS and further evaluate the performance through extensive experiments on indoor and outdoor test beds. The results demonstrate that meter can significantly improve the performance of the state-of-the-art link estimation scheme.
机译:链路估计是无线传感器网络中转发协议的基本组成部分。然而,在低功率转发中,广泛采用的占空比无线电控制的异步特性带来了新的挑战,以实现准确和实时的估计。首先,重复发送的帧(称为唤醒帧)会增加准确统计信息的复杂性,尤其是在突发信道争用和共存干扰的情况下。其次,频繁更新每个链路状态将很快耗尽有限的能源供应。在本文中,我们提出了仪表,它是一种分布式唤醒帧计数器。 Meter会利用链接监听的机会实时更新链接状态。此外,仪表不仅依赖于对成功解码的唤醒帧进行计数,而且还通过利用基于接收信号强度的短期序列的ZigBee识别的可行性来对损坏的帧进行计数。我们在TinyOS中实现了仪表,并通过在室内和室外测试台上进行的广泛实验进一步评估了性能。结果表明,仪表可以显着提高最新链路估计方案的性能。

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