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Esup3/sup: Towards energy-efficient distributed least squares estimation in sensor networks

机译:e& sup& 3& / sup&gt ;:朝向传感器网络中的节能分布最小二乘估计

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Domain-specific applications, such as structural health monitoring, have been one of the main drivers that motivates the real-world deployment of wireless sensor networks. Due to their data-intensive nature, it is typical for these applications to make heavy uses of least squares estimation as a foundation for their algorithms, which is a standard approach to compute the approximate solution of sets of equations in which there are more equations than unknowns. Due to the very limited amount of energy and computation power available on the sensors, it is imperative to design new algorithms to perform least squares estimation in a distributed fashion. While we wish to conserving energy by minimizing communication with our design, constraints on communication delays will also need to be satisfied. In this paper, we propose E3, a new distributed algorithm specifically designed to guarantee the precision of least squares estimation in sensor networks, with the objective of minimizing the energy consumption incurred during communication, while observing constraints on application-specific communication delays. Compared to previous works, we show that E3 maintains the same level of estimation precision while incurring much lower energy costs.
机译:特定于域的应用程序,如结构健康监测,是激励无线传感器网络的真实部署的主要驱动程序之一。由于它们的数据密集型性质,这对于这些应用程序来说,将最小二乘估计作为其算法的基础,这是一种标准方法,这是计算更多方程的等式的近似解的标准方法。未知数。由于传感器上可用的能量和计算功率非常有限,因此设计新的算法以以分布式方式执行最小二乘估计。虽然我们希望通过最大限度地减少与我们的设计沟通来保护能量,但需要满足对通信延迟的限制。在本文中,我们提出了一种专门设计用于保证传感器网络中最小二乘估计精度的新分布式算法,其目的是最小化通信期间产生的能量消耗,同时观察到对特定于应用的通信延迟的限制。与以前的作品相比,我们表明E3维持相同的估计精度水平,同时产生更低的能源成本。

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