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On the scheduling, multiplexing and diversity trade-off in MIMO ad hoc networks: A unified framework

机译:关于MIMO ad hoc网络中的调度,复用和分集权衡:统一框架

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In this paper we study the fundamental scheduling, multiplexing and diversity trade-off in M1M0 ad hoc networks. In particular, we propose a unified framework for the scheduling-multiplexing and scheduling-diversity sub-problems that constitutes a major step towards solving the overall problem. The two sub-problems are motivated by a fundamental trade-off between scheduling full multiplexing (diversity) gain non-interfering links and scheduling interfering links using lower multiplexing (diversity) gain in conjunction with interference nulling. First, we cast each sub-problem as a cross-layer optimization problem that jointly decides the scheduling and MIMO stream allocation, subject to signal-to-interference-and-noise-ratio (SINR) constraints. Second, we characterize the problem as non-convex integer programming which is quite challenging to solve. Hence, we shift our focus to characterize the optimal for the simple case of two links. The main result of this paper is that the two fundamentally different sub-problems give rise to structurally similar SINR-based decision rules which constitute the basis for a resource allocation algorithm with linear complexity in the number of links, namely Iterative MIMO Link Scheduling (IMLS), that solves the two sub-problems and achieves significant gains for any number of links. Numerical results exhibit more than twofold/quadratic improvement over scheduling non-interfering links with full multiplexing/diversity gain, for plausible scenarios. IMLS and its variants reveal an important throughput-fairness trade-off which is an interesting topic for future research.
机译:在本文中,我们研究了M1M0 ad hoc网络中的基本调度,复用和分集权衡。特别是,我们为调度复用和调度多样性子问题提出了一个统一的框架,这是解决整个问题的重要步骤。这两个子问题是由在安排完整多路复用(分集)增益无干扰链路与使用较低复用(分集)增益结合干扰归零来调度干扰链路之间进行基本权衡而产生的。首先,我们将每个子问题都转换为跨层优化问题,该问题可以共同决定调度和MIMO流的分配,并受信噪比(SINR)约束。其次,我们将问题描述为非凸整数规划,这很难解决。因此,我们将重点转移到表征两个链接的简单情况的最优值上。本文的主要结果是,两个根本不同的子问题产生了结构上类似的基于SINR的决策规则,这些决策规则构成了链路数量具有线性复杂度的资源分配算法的基础,即迭代MIMO链路调度(IMLS) ),这解决了两个子问题,并为任意数量的链接带来了可观的收益。在合理的情况下,数值结果显示,与安排具有完全多路复用/分集增益的无干扰链路相比,具有两倍以上/二次方的改进。 IMLS及其变体揭示了重要的吞吐量-公平性折衷,这是未来研究的有趣话题。

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