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Joint Optimization of Path Selection and Link Scheduling for Millimeter Wave Transport Networks

机译:毫米波传输网络的路径选择和链路调度的联合优化

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In future mobile networks, the wireless transport networks are expected to carry traffic flows with different throughput and delay requirements due to the introduction of Cloud-RAN (C-RAN) and different functional splits that can be used, e.g., as defined by Next Generation Fronthaul Interface (NGFI). A promising wireless technology to support the high throughput requirements of C-RAN splits is Millimeter Wave (mmWave) band technologies standardized by IEEE 802.11ad amendment. Our target here is to derive the mathematical formulation of the path selection and link scheduling problem for mmWave transport networks, where the backhaul and fronthaul flows will co-exist, by defining the constraints brought by different functional splits and the IEEE 802.11ad standard. We present two objective functions that can be used for this problem: load balancing and minimization of the use of air time. We implemented the derived formulations in an Mixed-Integer Linear Programming (MILP) solver and evaluated realistic scenarios of wireless fronthaul/backhaul networks assessing the splits defined by NGFI for LTE.
机译:在未来的移动网络中,由于引入云-RAN(C-RAN)和可以使用的不同功能分裂,预计无线传输网络将携带具有不同吞吐量和延迟要求的流量流量,例如,如下一代Fronthaul接口(NGFI)。一个有前途的无线技术支持C-RAN分裂的高吞吐量要求是IEEE 802.11AD修正案标准化的毫米波(MMWAVE)频段技术。我们这里的目标是通过定义不同功能分割所带来的约束和IEEE 802.11ad标准,从而得出了MMWAVE传输网络的路径选择和链路调度问题的数学制定和链路调度问题,其中,通过定义所带来的不同功能分割和IEEE 802.11ad标准来共存回程和Fronthaul流。我们展示了两个可以用于此问题的客观功能:负载平衡和最小化空气时间。我们在混合整数线性编程(MILP)求解器中实现了派生的配方,并评估了无线Fronthaul /回程网络的逼真场景,评估了NGFI为LTE定义的分割。

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