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Congestion-adaptive data collection with accuracy guarantee in cyber-physical systems

机译:拥塞 - 自适应数据收集,具有网络物理系统的准确性保证

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Data collection by wireless sensor networks is a fundamental and critical function for cyber-physical systems (CPS) to estimate the state of the physical world. However, unstable network conditions impose great challenges in guaranteeing data accuracy, which is essential for reliable state estimation of the physical phenomena. For underlying sensor networks, without efficiently resolving congestion in data transmission, packet loss at congested nodes can considerably increase the estimation error. However, previous congestion control schemes relying on reducing transmitted data samples also increase the estimation error. Thus, we propose a Congestion-Adaptive Data Collection scheme (CADC) to efficiently resolve the network congestion while guaranteeing the overall data estimation accuracy. CADC mitigates congestion by adaptive lossy compression with guarantee that a given overall data estimation error bound is satisfied. Besides, since a CPS application may have different priorities for different data items, we further propose a weighted CADC scheme such that the data with higher priority has less distortion. Extensive experimental results demonstrate the effectiveness and efficiency of our CADC schemes.
机译:无线传感器网络的数据收集是网络物理系统(CPS)的基本和关键功能,以估算物理世界的状态。然而,不稳定的网络条件在保证数据准确性方面强烈挑战,这对于物理现象的可靠状态估计至关重要。对于底层传感器网络,在没有有效地解析数据传输中的拥塞,拥挤节点处的分组丢失可以大大增加估计误差。然而,依赖于减少传输数据样本的先前拥塞控制方案也增加了估计误差。因此,我们提出了一种拥塞 - 自适应数据收集方案(CADC),以有效地解决网络拥塞,同时保证整体数据估计准确性。 CADC通过自适应损耗压缩来缓解拥塞,保证满足给定的整体数据估计误差。此外,由于CPS应用程序可以具有不同数据项的不同优先级,因此我们进一步提出了一种加权CADC方案,使得具有较高优先级的数据具有较少的失真。广泛的实验结果表明了我们的CADC计划的有效性和效率。

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