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OGUPSA sensor scheduling architecture and algorithm

机译:OGUPSA传感器调度架构和算法

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Abstract: This paper introduces a new architecture for a sensor measurement scheduler as well as a dynamic sensor scheduling algorithm called the on-line, greedy, urgency-driven, preemptive scheduling algorithm (OGUPSA). OGUPSA incorporates a preemptive mechanism which uses three policies, (1) most-urgent-first (MUF), (2) earliest- completed-first (ECF), and (3) least-versatile-first (LVF). The three policies are used successively to dynamically allocate and schedule and distribute a set of arriving tasks among a set of sensors. OGUPSA also can detect the failure of a task to meet a deadline as well as generate an optimal schedule in the sense of minimum makespan for a group of tasks with the same priorities. A side benefit is OGUPSA's ability to improve dynamic load balance among all sensors while being a polynomial time algorithm. Results of a simulation are presented for a simple sensor system. !9
机译:摘要:本文介绍了一种用于传感器测量调度程序的新架构,以及一种称为在线,贪婪,紧急情况驱动的抢先调度算法(OGUPSA)的动态传感器调度算法。 OGUPSA包含了一种抢占机制,该机制使用三种策略:(1)最紧急优先(MUF),(2)最早完成优先(ECF)和(3)最少优先的(LVF)。连续使用这三个策略在一组传感器之间动态分配,调度和分配一组到达任务。 OGUPSA还可以检测到任务未能按时完成,并就具有相同优先级的一组任务的最小制造时间而言,生成最佳计划。另一个好处是OGUPSA可以改进多项传感器之间的动态负载平衡,同时又是多项式时间算法。给出了简单传感器系统的仿真结果。 !9

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