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Energy Efficiency and Capacity Tradeoff in Cloud Radio Access Network of High-Speed Railways

机译:高速铁路云无线电接入网的能效与容量折衷

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To meet the increasing demand of high-data-rate services of high-speed railway (HSR) passengers, cloud radio access network (C-RAN) is proposed. This paper investigates the tradeoff between energy efficiency (EE) performance and capacity in C-RAN of HSR. Considering that the train location can be predicted, we propose a predictable path loss based time domain power allocation method (PPTPA) to improve EE performance of HSR communication system. First, we consider that the communication system of HSR only bears the passenger information services (PISs). The energy-efficient power allocation problem with delay constraint is studied. The formulated problem is nonconvex. To deal with it, an equivalent convex problem is reformulated. Based on PPTPA, we propose an iterative algorithm to improve the EE performance. Second, we consider that the PISs and the train control services (TCSs) are all bore. A capacity optimization problem with joint EE and services transmission delay constraints is formulated. Based on PPTPA, we propose a hybrid power allocation scheme to improve the capacity of the system. Finally, we analyze the effect of small-scale fading on EE performance. The effectiveness of the proposed power allocation algorithm is validated by HSR channel measurement trace based emulation results and extensive simulation results.
机译:为了满足高速铁路(HSR)乘客对高数据速率服务不断增长的需求,提出了云无线电接入网(C-RAN)。本文研究了高铁C-RAN中的能效(EE)性能与容量之间的权衡。考虑到可以预测列车的位置,我们提出了一种基于可预测路径损耗的时域功率分配方法(PPTPA),以提高高铁通信系统的EE性能。首先,我们认为高铁的通信系统仅承载乘客信息服务(PIS)。研究了具有时滞约束的节能型功率分配问题。提出的问题是非凸的。为了解决这个问题,重新提出了一个等效的凸问题。基于PPTPA,我们提出了一种迭代算法来提高EE性能。其次,我们认为PIS和列车控制服务(TCS)都很无聊。提出了具有联合EE和服务传输延迟约束的容量优化问题。基于PPTPA,我们提出了一种混合功率分配方案,以提高系统的容量。最后,我们分析了小型衰落对EE性能的影响。基于HSR通道测量轨迹的仿真结果和广泛的仿真结果验证了所提出的功率分配算法的有效性。

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