Optimal on demand packet scheduling in single-hop multichannel communication systems

M. Bonuccelli, S. Pelagatti
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引用次数: 9

Abstract

In this paper, we study the problem of on demand minimum length packet scheduling in single-hop multichannel systems. Examples of these systems are those centered around switching networks, like crossbar switches, and WDM optical fiber networks. On demand scheduling require that packets are scheduled upon receipt, and without changing the schedule of earlier packets. On demand scheduling is performed by on-line algorithms. In this paper we-show that a large group of online scheduling algorithms, called maximal algorithms, are asymptotically optimal (in the worst case sense). This result is established by first giving the competitive ratio of these algorithms (nearly 3), and then by showing that no on-line algorithm can (asymptotically) perform better in the worst case. Then, we run a simulation experiment on randomly generated problem instances, whose outcome indicates an average increase of the schedule length of maximal algorithms, of 5% with respect to the lower bound.
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单跳多通道通信系统的最优按需分组调度
本文研究了单跳多信道系统中按需最小长度分组调度问题。这些系统的例子是那些以交换网络为中心的系统,如crossbar交换机和WDM光纤网络。按需调度要求数据包在接收时进行调度,而不改变先前数据包的调度。按需调度由在线算法实现。在本文中,我们证明了一大批在线调度算法,称为极大算法,是渐近最优的(在最坏情况下)。这个结果是通过首先给出这些算法的竞争比(接近3),然后通过显示在最坏情况下没有在线算法可以(渐近地)表现得更好来建立的。然后,我们对随机生成的问题实例进行了仿真实验,结果表明,最大算法的调度长度相对于下界平均增加了5%。
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