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Freshness-Aware Energy Saving in Cellular Systems with Cooperative Information Updates

机译:具有合作信息更新的蜂窝系统中的新鲜度感知节能

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Energy saving in cellular systems has attracted the extensive attention of various studies due to ever-deteriorating global warming. In addition to network greenness, various emerging mobile applications (e.g., mixed reality and automated vehicles) further necessitate timely service provision. Recently, the age of information (AoI) has been regarded as a promising performance metric for quantifying the freshness (i.e., timeliness) of information updates in communication systems. Despite the existing works devoted to energy saving in cellular systems, how to leverage information freshness to ensure timely information updates while achieving network greenness is rarely investigated. In this paper, we investigate the problem of freshness-aware energy saving in cellular systems, where active base stations (BSs) can cooperatively update information to target devices (TDs). To address this problem, we formulate a mixed-integer nonlinear program (MINLP) to minimize average power consumption. Due to its intractability, we propose decomposing the MINLP into two subproblems by means of constraint reinterpretation and spatiotemporal decoupling. Then, we propose a two-stage solution that leverages LP techniques to sequentially determine update scheduling and BS activeness. Our simulation results show that the proposed solution can adequately perform update scheduling and BS activeness control, thereby effectively saving energy for cellular systems under various parameter settings.
机译:由于全球变暖,蜂窝系统中的节能引起了各种研究的广泛关注。除了网络绿色外,各种新兴的移动应用(例如,混合现实和自动车辆)还需要及时服务提供。最近,信息时代(AOI)被认为是用于量化通信系统中信息更新的新鲜度(即及时性)的有希望的性能指标。尽管现有的作品专门用于蜂窝系统中的节能,但如何利用信息新鲜度,以确保在实现网络绿色时及时的信息更新。在本文中,我们研究了蜂窝系统中的新鲜度感知节能的问题,其中有源基站(BSS)可以协同更新到目标设备(TDS)的信息。为了解决这个问题,我们制定了混合整数非线性程序(MINLP),以最大限度地减少平均功耗。由于其难以防动,我们通过约束重新诠释和时空去耦提法将MINLP分解成两个子问题。然后,我们提出了一种双级解决方案,它利用LP技术顺序地确定更新调度和BS Activeness。我们的仿真结果表明,所提出的解决方案可以充分执行更新调度和BS激活控制,从而在各种参数设置下有效地节省蜂窝系统的能量。

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