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PRACH Power Control Mechanism for Improving Random-Access Energy Efficiency in Long Term Evolution

机译:长期演进中提高随机接入能量效率的PRACH功率控制机制

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The Random Access (RA)procedure is one of the most frequently used and energy consuming operations in LTE User Equipment (UE)devices. However, little attention has been given to its energy-efficient operation in the literature. In this paper, we propose two Physical Random Access Channel (PRACH)power control mechanisms for improving the energy efficiency of the overall RA procedure. Our proposals increase the preamble transmit power based on special characteristics of the UE energy consumption behavior. By doing this, the number of transmitted preamble per successful RA procedure decreases, thus obtaining important energy savings. Our simulation results show that our proposals can reduce up to 41 percent the energy consumption of the RA procedure when compared to the standardized PRACH power control mechanism with power ramping.
机译:随机接入(RA)程序是LTE用户设备(UE)设备中最常用和耗能的操作之一。然而,在文献中很少关注其节能运行。在本文中,我们提出了两种物理随机接入信道(PRACH)功率控制机制,以提高整个RA程序的能效。我们的建议基于UE能耗行为的特殊特征来增加前导码发射功率。通过这样做,减少了每个成功的RA程序发送的前同步码的数量,从而节省了大量的能量。我们的仿真结果表明,与具有功率提升功能的标准PRACH功率控制机制相比,我们的建议可以将RA程序的能耗降低多达41%。

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