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Dynamic Packet Scheduling in Wireless Networks

机译:无线网络中的动态数据包调度

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We consider protocols that serve communication requests arising over time in a wireless network that is subject to interference. Unlike previous approaches, we take the geometry of the network and power control into account, both allowing to increase the network's performance significantly. We introduce a stochastic and an adversarial model to bound the packet injection. Although taken as the primary motivation, this approach is not only suitable for models based on the signal-to-interference-plus-noise ratio (SINR). It also covers virtually all other common interference models, for example the multiple-access channel, the protocol model, the radio-network model, and distance-2 matching. Packet-routing networks allowing each edge or each node to transmit or receive one packet at a time can be modeled as well. Starting from an algorithm for the respective scheduling problem with static transmission requests, we build distributed stable protocols. This is more involved than in previous, similar approaches because the algorithms we consider do not necessarily scale linearly when scaling the input instance. We can guarantee a throughput that is as large as the one of the original static algorithm. In particular, for SINR models the competitive ratios of the protocol in comparison to optimal ones in the respective model are between constant and Ο(log~2 m) for a network of size m.
机译:我们考虑在经过干扰的无线网络中提供随时间产生的通信请求的协议。与以前的方法不同,我们考虑到网络的几何和功率控制,既可以显着提高网络的性能。我们介绍了一种随机和对抗性模型,以绑定包注射。虽然被视为主要动机,但这种方法不仅适用于基于信号 - 干扰和噪声比(SINR)的模型。它还涵盖了几乎所有其他常见的干扰模型,例如多访问通道,协议模型,无线电网络模型和距离-2匹配。还可以建模允许每个边缘或每个节点在一次发送或接收一个分组的分组路由网络。从静态传输请求的相应调度问题的算法开始,我们构建分布式稳定协议。这比以前的类似方法更涉及,因为我们认为在缩放输入实例时,我们认为我们认为的算法不一定是线性的。我们可以保证与原始静态算法之一一样大的吞吐量。特别地,对于SINR模型,协议的竞争比与各个模型中的最佳最优值之间的竞争比率在常量和ο(log〜2 m)之间用于尺寸m的网络。

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