Scheduling of resource blocks for Device-to-Device communications in LTE-Advanced networks

D. Murali, Karun Mathew Verghese, Keerthana Ravi, Vamsi Krishna Tumuluru
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Abstract

Device-to-Device (D2D) communication is seen as an important step in the LTE-A networks to improve spectral efficiency through reuse of resource blocks (RBs). In a scenario without D2D communication, the base station (referred in LTE-A network as eNB) allocates the RBs to the user equipments (UEs) (i.e., client devices in LTE-A network) based on the Signal-to-Noise Ratio (SNR) reported by them. However, if the RBs are to be reused for D2D communications then the signal-to-interference-plus-noise ratio (SINR) at each device (eNodeB included) sharing those RBs would decrease thereby deteriorating the network performance. To control the SINR violation the network operator may have to set target SINR values for all devices. The focus of this paper is to simultaneously allocate resource blocks for D2D communication and for the uplink (i.e., UE to eNodeB). First, an optimization problem is formulated to perform the scheduling of the RBs. But since the optimization problem is NP hard, an iterative heuristic resource block allocation algorithm (which respect the constraints of the optimization problem) is proposed. The proposed algorithm is compared with a modified version of an existing algorithm. The simulation results give important inferences which can help a network operator to select the desired target SINR for a given system setting.
LTE-Advanced网络中设备对设备通信的资源块调度
设备到设备(D2D)通信被视为LTE-A网络中通过资源块(RBs)的重用来提高频谱效率的重要步骤。在无D2D通信场景下,基站(在LTE-A网络中称为eNB)根据用户设备(即LTE-A网络中的客户端设备)上报的信噪比(SNR)将RBs分配给用户设备。然而,如果RBs被重新用于D2D通信,那么共享这些RBs的每个设备(包括eNodeB)的信噪比(SINR)将会降低,从而使网络性能恶化。为了控制SINR违规,网络运营商可能必须为所有设备设置目标SINR值。本文的重点是同时为D2D通信和上行链路(即UE到eNodeB)分配资源块。首先,制定了一个优化问题来执行RBs的调度。但由于优化问题是NP困难的,提出了一种尊重优化问题约束的迭代启发式资源块分配算法。将提出的算法与现有算法的改进版本进行了比较。仿真结果提供了重要的推论,可以帮助网络运营商在给定的系统设置下选择所需的目标信噪比。
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