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STAC: Simultaneous Transmitting and Air Computing in Wireless Data Center Networks

机译:STAC:无线数据中心网络中的同时发送和空中计算

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摘要

The data center network (DCN), wired or wireless, features large amounts of many-to-one (M2O) sessions. Each M2O session is currently established using point-to-point (P2P) communications and store-and-forward (SAF) relays, and is generally followed by a certain computation at the destination, typically a weighted summation of the received information digits. Fundamentally different from this separate P2P/SAF-based-transmission and computation framework, this paper proposes simultaneous transmission and air computation (STAC), a novel physical layer scheme that achieves STAC in wireless DCNs. In particular, STAC builds on a number of distinguishing characteristics of DCs to take advantage of the superposition nature of electromagnetic signals. With STAC, multiple sources transmit in the same time slot with appropriately chosen parameters, such that the superimposed signal can be directly transformed to the desired summation at the receiver. To enable STAC, we propose an enhanced software-defined network architecture, where a wired low-bandwidth backbone provides wireless transceivers with external reference signals. We also discuss some new challenges that STAC brings to scheduling and routing. Theoretical analysis and simulation results show that STAC can significantly improve both bandwidth and energy efficiency in DCNs.
机译:有线或无线数据中心网络(DCN)具有大量的多对一(M2O)会话。当前,每个M2O会话都是使用点对点(P2P)通信和存储转发(SAF)中继建立的,并且通常在目的地进行一定的计算,通常是接收到的信息数字的加权总和。与这种单独的基于P2P / SAF的传输和计算框架根本不同,本文提出了同时传输和空中计算(STAC),这是一种在无线DCN中实现STAC的新颖物理层方案。特别地,STAC建立在DC的许多区别特征上,以利用电磁信号的叠加特性。使用STAC,多个源可以在同一时隙中使用适当选择的参数进行传输,从而可以在接收机处将叠加的信号直接转换为所需的总和。为了启用STAC,我们提出了一种增强的软件定义网络架构,其中有线低带宽骨干网为无线收发器提供外部参考信号。我们还将讨论STAC给调度和路由带来的一些新挑战。理论分析和仿真结果表明,STAC可以显着提高DCN中的带宽和能效。

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