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Utility optimization in heterogeneous networks via CSMA-based algorithms

机译:通过基于CSMA的算法在异构网络中进行效用优化

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We study algorithms for carrier and rate allocation in cellular systems with distributed components such as a heterogeneous LTE system with macrocells and femtocells. Existing work on LTE systems often involves centralized techniques or requires significant signaling, and is therefore not always applicable in the presence of femtocells. More distributed CSMA-based algorithms (carrier-sense multiple access) were developed in the context of 802.11 systems and have been proven to be utility optimal. However, the proof typically assumes a single transmission rate on each carrier. Further, it relies on the CSMA collision detection mechanisms to know whether a transmission is feasible. In this paper we present a framework for LTE scheduling that is based on CSMA techniques. In particular we first prove that CSMA-based algorithms can be generalized to handle multiple transmission rates in a multi-carrier setting while maintaining utility optimality. We then show how such an algorithm can be implemented in a heterogeneous LTE system where the existing Channel Quality Indication (CQI) mechanism is used to decide transmission feasibility.
机译:我们研究具有分布式组件的蜂窝系统(例如具有宏小区和毫微微小区的异构LTE系统)中的载波和速率分配算法。 LTE系统上的现有工作通常涉及集中式技术或需要大量信令,因此并不总是适用于毫微微小区的存在。在802.11系统中开发了更多基于CSMA的分布式算法(载波侦听多路访问),并被证明是实用性最佳的。但是,证明通常假定每个载波上的传输速率为单一。此外,它依靠CSMA冲突检测机制来了解传输是否可行。在本文中,我们提出了一种基于CSMA技术的LTE调度框架。特别是,我们首先证明,基于CSMA的算法可以通用化以在多载波设置中处理多种传输速率,同时保持效用最优。然后,我们展示了如何在异构LTE系统中实现这种算法,其中现有信道质量指示(CQI)机制用于确定传输可行性。

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