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Delay-constrained scheduling for interference-limited multi-carrier systems

机译:干扰受限多载波系统的时延约束调度

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The reduction of energy consumption in digital subscriber line (DSL) networks has obtained considerable attention recently. Today's DSL is designed under an ldquoalways onrdquo principle to keep the crosstalk noise as stable as possible. Departuring from this restriction, one approach to achieve energy savings is by ldquolazy schedulingrdquo which exploits the tradeoff between energy-consumption and transmission delay inherent in many communication systems. This work extends the scope of this idea to multi-user interference limited systems employing multi-carrier modulation. Mathematical decomposition appears to be a natural approach for cross-layer optimization when the physical-layer spectrum management algorithm is already based on dual relaxation. We identify Benders decomposition as the appropriate choice of an optimization scheme for rate and delay constrained energy-minimization. Based on this we propose a cross-layer scheduler for multi-user/multi-carrier systems. By simulations of a single-hop, multi-user DSL scenario this scheduler is shown to closely approximate the optimal solution to this nonconvex problem. Furthermore, by example we demonstrate that scheduling for interference avoidance in DSL yields negligible additional performance gains over sole physical layer spectrum balancing in practice.
机译:近年来,数字用户线(DSL)网络中能耗的降低已引起相当大的关注。当今的DSL是根据“始终在线”原则设计的,以保持串扰噪声尽可能稳定。摆脱这种限制,一种实现节能的方法是“惰性调度”,它利用了许多通信系统固有的能耗和传输延迟之间的权衡。这项工作将这一思想的范围扩展到了采用多载波调制的多用户干扰受限系统。当物理层频谱管理算法已经基于双重松弛时,数学分解似乎是跨层优化的自然方法。我们将Benders分解确定为速率和延迟受限的能量最小化优化方案的适当选择。基于此,我们提出了一种用于多用户/多载波系统的跨层调度程序。通过单跳,多用户DSL场景的仿真,该调度程序显示出非常接近针对此非凸问题的最佳解决方案。此外,通过示例,我们证明了在DSL中避免干扰的调度在实践中比单独的物理层频谱平衡产生的附加性能增益可忽略不计。

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