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Maximum Allowable Transfer Interval Aware Scheduling for Wireless Remote Monitoring

机译:无线远程监控的最大允许传输间隔感知调度

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In this paper, we tackle the problem of remote monitoring (e.g., remote factory) in which a number of sensor nodes are transmitting time sensitive measurements to a remote monitoring site. We assume that packets generated by different sensors have different sizes. Moreover, different sensors have different Maximum Allowable Transfer Intervals (MATIs). We consider minimizing a metric that maintains a trade-off between minimizing the average MATI violation of all sensors, and minimizing the probability that the MATI violation of each sensor exceeds a predefined threshold. We formulate the problem as a stochastic optimization problem with integer constraints. In order to solve this problem, we first relax the original intractable formulation to a tractable problem. Then, we use the Lyapunov stochastic optimization framework to solve the relaxed problem. Simulation results show that the proposed algorithm outperforms the considered baselines in terms of minimizing the probability of the MATI violation for all sensors.
机译:在本文中,我们解决了远程监控(例如,远程工厂)的问题,在该问题中,许多传感器节点正在将对时间敏感的测量值传输到远程监控站点。我们假设由不同传感器生成的数据包具有不同的大小。此外,不同的传感器具有不同的最大允许传输间隔(MATI)。我们考虑最小化一个度量标准,该度量标准在最小化所有传感器的平均MATI违规与最小化每个传感器的MATI违规超出预定义阈值的可能性之间保持折衷。我们将该问题表述为具有整数约束的随机优化问题。为了解决这个问题,我们首先将原来难以解决的问题放松到一个棘手的问题。然后,我们使用Lyapunov随机优化框架来解决松弛问题。仿真结果表明,在最小化所有传感器违反MATI的可能性方面,该算法优于考虑的基线。

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