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Interference mitigation by switching the underlaying transmitter in device-to-device communications

机译:通过切换设备间通信中的底层发射机来缓解干扰

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Device-to-Device (D2D) communication is essential for successful implementation of 5th generation (5G) communication networks. D2D communication allows bypassing the enhanced-Node B (eNB) and directly communicating with each other. However it induces interference to the cellular users (CUs) in the D2D enabled cellular network. Controlling the transmission power of D2D users is one of the solutions that maximizes cell throughput, while considering signal-to-noise-plus-interference ratio (SINR) for the CUs at the eNB. This paper proposes a scheme of power control by switching the D2D transmitter on the basis of D2D receiver-sensitivity. Simulation results, have been used to demonstrate the performance improvement, when the proposed scheme is used under the assumptions that the instantaneous channel state information (CSI) and D2D receiver-sensitivity is available at the eNB, and that the D2D pairs are stationary. The proposed scheme is valid for the uplink channel parameters considering communication between eNB and CU. Further, it is also shown that the proposed scheme offers significant increase in the cell sum-rate compared to conventional cellular network infrastructure without any major reduction of SINR performance for the CUs.
机译:设备到设备(D2D)通信对于成功实施第五代(5G)通信网络至关重要。 D2D通信允许绕过增强型节点B(eNB)并直接彼此通信。但是,它会在启用D2D的蜂窝网络中对蜂窝用户(CU)产生干扰。控制D2D用户的传输功率是使小区吞吐量最大化的解决方案之一,同时考虑eNB处CU的信噪比干扰比(SINR)。本文提出了一种基于D2D接收灵敏度的切换D2D发射器的功率控制方案。当在假设瞬时信道状态信息(CSI)和D2D接收器灵敏度在eNB可用并且D2D对是固定的假设下使用拟议的方案时,仿真结果已用于证明性能改进。考虑到eNB和CU之间的通信,所提出的方案对于上行链路信道参数是有效的。此外,还显示出,与传统的蜂窝网络基础设施相比,所提出的方案提供了小区总速率的显着增加,而对于CU而言,SINR性能没有任何大的降低。

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