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Deterministic Asynchronous Scheduling with Probabilistic Reliability Guarantee in Industrial Wireless Networks

机译:工业无线网络中具有概率可靠性保证的确定性异步调度

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摘要

Industrial Wireless Networks (IWNs) play a critical role in industry 4.0 applications. However, industrial control processes require deterministic data delivery with an extremely high reliability, which is challenging in harsh IWN environments. Existing scheduling schemes rely mainly on accurate global synchronization to ensure deterministic transmission, which incurs additional hardware cost and a large communication overhead. To eliminate the synchronization requirements, we propose an asynchronous scheduling model that supports arbitrary time offset between any node pairs. As finding a solution with a given reliability guarantee in this model is a NP-hard problem, we design a probabilistic algorithm based on the Monte Carlo tree search (MCTS) method to generate and verify feasible schedules. The simulation results show that E-MCTS is significantly better in transmission reliability if compared to the classic Monte Carlo tree search algorithm.
机译:工业无线网络 (IWN) 在工业 4.0 应用中发挥着关键作用。然而,工业控制过程需要具有极高可靠性的确定性数据传输,这在恶劣的IWN环境中具有挑战性。现有的调度方案主要依靠精确的全局同步来保证确定性传输,这会产生额外的硬件成本和较大的通信开销。为了消除同步要求,我们提出了一种异步调度模型,该模型支持任意节点对之间的任意时间偏移。由于在该模型中寻找具有给定可靠性保证的解决方案是一个NP难问题,因此我们设计了一种基于蒙特卡洛树搜索(MCTS)方法的概率算法来生成和验证可行的时间表。仿真结果表明,与经典的蒙特卡洛树搜索算法相比,E-MCTS的传输可靠性明显更好。

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