We consider packet forwarding in the adversarial queueing theory (AQT) model introduced by Borodin et al. We introduce a refinement of the AQT $(\rho, \sigma)$-bounded adversary, which we call a \emph{locally bursty adversary} (LBA) that parameterizes injection patterns jointly by edge utilization and packet origin. For constant ($O(1)$) parameters, the LBA model is strictly more permissive than the $(\rho, \sigma)$ model. For example, there are injection patterns in the LBA model with constant parameters that can only be realized as $(\rho, \sigma)$-bounded injection patterns with $\rho + \sigma = \Omega(n)$ (where $n$ is the network size). We show that the LBA model (unlike the $(\rho, \sigma)$ model) is closed under packet bundling and discretization operations. Thus, the LBA model allows one to reduce the study of general (uniform) capacity networks and inhomogenous packet sizes to unit capacity networks with homogeneous packets. On the algorithmic side, we focus on information gathering networks -- i.e., networks in which all packets share a common destination, and the union of packet routes forms a tree. We show that the Odd-Even Downhill (OED) forwarding protocol described independently by Dobrev et al.\ and Patt-Shamir and Rosenbaum achieves buffer space usage of $O(\log n)$ against all LBAs with constant parameters. OED is a local protocol, but we show that the upper bound is tight even when compared to centralized protocols. Our lower bound for the LBA model is in contrast to the $(\rho, \sigma)$-model, where centralized protocols can achieve worst-case buffer space usage $O(1)$ for $\rho, \sigma = O(1)$, while the $O(\log n)$ upper bound for OED is optimal only for local protocols.
翻译:我们考虑在 Borodin 等人 推出的对抗性队列理论( AQT) 模型中转发包。 我们引入了对 AQT$( rho,\ sgma) 受美元约束的对战方的精细。 我们称之为 $( rph{ 局部爆裂对手) (LBA), 将注入模式通过边端利用和包源来共同设定。 对于恒定( O(1) $) 参数来说, LBA 模型比$( rho,\ sgma) 模型严格宽松。 例如, LBA 模型中带有恒定参数的输入模式, 只有美元( rho,\ sgma) 美元( $) 受美元约束的对AQQQT$( r), Dosgma) 受AQTAQO 约束的注射模式, 当我们O- 的常规轨道协议中, 我们的O- malbal- mal com 网络显示的是所有恒定协议, 我们的O 的常规网络显示一个固定的磁盘 。