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Event-driven real-time actuator scheduling strategy over wireless sensor and actuator networks

机译:无线传感器和执行器网络上事件驱动的实时执行器调度策略

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Delay-time and energy constraints have a significant impact on the design and operation of wireless sensor and actuator networks (WSANs). Aiming for a class of random sudden events, the real-time actuator scheduling strategy is proposed based on the event driven in WSANs. In proposed scheduling strategy, three performance indexes, such as reaction time, energy consumption and energy distribution of whole network are considered at the same time. We translate the actuator scheduling strategy into a multi-objective optimization issue. However, the optimal solution of the multi-objective issues is usually not able to be obtained. To solve the problems, we first obtain the optimal solution of a single objective, and then make each performance index try to be close to own optimization solution via normalizing the evaluation function in order to achieve multi-objective approximate optimization solution. This approach is called the normalization optimization approach. The extended simulations illustrate the proposed actuator scheduling strategy is feasible and effective in WSANs.
机译:延迟时间和能量限制对无线传感器和执行器网络(WSAN)的设计和运行有重大影响。针对一类随机突发事件,提出了基于WSAN中驱动事件的实时执行器调度策略。在所提出的调度策略中,同时考虑了反应时间,能耗和全网能量分配等三个性能指标。我们将执行器调度策略转化为一个多目标优化问题。但是,通常无法获得多目标问题的最佳解决方案。为了解决这些问题,我们首先获得单个目标的最优解,然后通过对评估函数进行归一化处理,使每个性能指标都尽量接近自己的最优解,以实现多目标近似最优解。该方法称为归一化优化方法。扩展仿真说明了所提出的执行器调度策略在WSAN中是可行和有效的。

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