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Resource Management and Interference Control in Distributed Multi-Tier and D2D Systems

机译:分布式多层和D2D系统中的资源管理和干扰控制

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摘要

In order to improve the capacity and spectrum efficiency of next generation wireless networks, multi-tier wireless networking and device-to-device (D2D) communication are widely considered as strong candidates for 5G. In this thesis, I have developed new theories and design guidelines to improve the performance of large-scale multi-tier and D2D networks by studying their resource optimization and interference management.;In the first part of this thesis, we study optimal power allocation for distributed relays in a multi-channel system with multiple source-destination pairs and an individual power budget for each relay. We focus on designing the optimal relay beamformers, aiming at minimizing per-relay power usage while meeting minimum signal-to-noise guarantees. Showing that strong Lagrange duality holds even for this non-convex problem, we solve it in the dual domain. Further, we investigate the effect of imperfect channel information by quantifying the performance loss due to either quantization error with limited feedback or channel estimation error.;In the second part of this thesis, we study optimal inter-cell interference control for distributed relays in a multi-channel system. We design optimal relay beamforming to minimize the maximum interference caused at the neighboring cells, while satisfying minimum signal-to-noise requirements and per-relay power constraints. Even though the problem is non-convex, we propose an iterative algorithm that provides a semi-closed-form solution. We extend this algorithm to the problem of maximizing the minimum signal-to-noise subject to some pre-determined maximum interference constraints at neighboring cells. In order to gain insight into designing this system in practice, we further study the received worst-case signal-to-interference-and-noise ratio versus the maximum interference target.;In the third part of this thesis, we consider D2D communication underlaid in a cellular system for uplink resource sharing. Under optimal cellular user (CU) receive beamforming, we jointly optimize the powers of CUs and D2D pairs for their sum rate maximization, while satisfying minimum quality-of-service (QoS) requirements and worst-case inter-cell interference limit in multiple neighboring cells. The formulated joint optimization problem is non-convex. We propose an approximate power control algorithm to maximize the sum rate and provide an upper bound on the performance loss by the proposed algorithm and conditions for its optimality.;We further extended the results of the third part in the fourth part of this thesis, where we jointly optimize the beam vector and the transmit powers of the CU and D2D transmitter under practical system settings. We consider a multi-cell scenario, where perfect channel information is available only for the direct channels from the CU and D2D to the base station. For other channels, only partial channel information is available. The uncertain channel information, the non-convex expected sum rate, and the various power, interference, and QoS constraints, lead to a challenging optimization problem. We propose an efficient robust power control algorithm based on a ratio-of-expectation approximation to maximize the expected sum rate, which is shown to give near-optimal performance by comparing it with an upper bound of the sum rate.
机译:为了提高下一代无线网络的容量和频谱效率,多层无线网络和设备到设备(D2D)通信被广泛认为是5G的强大选择。本文通过研究大型多层D2D网络的资源优化和干扰管理,提出了新的理论和设计准则,以提高大规模多层D2D网络的性能。多通道系统中的分布式继电器,具有多个源-目标对,并且每个继电器都有各自的功率预算。我们专注于设计最佳的中继波束形成器,旨在最大程度地降低每次中继功率的使用,同时满足最低的信噪比保证。证明即使对于此非凸问题也具有强拉格朗日对偶性,我们在对偶域中对其进行了求解。进一步,我们通过量化有限反馈或信道估计误差导致的性能损失来研究不完善信道信息的影响。在本文的第二部分,我们研究了分布式中继中最优小区间干扰控制。多渠道系统。我们设计了最佳的中继波束成形,以最小化在相邻小区引起的最大干扰,同时满足最小的信噪比要求和每个中继功率限制。即使问题不是凸的,我们也提出了一种提供半封闭形式的解决方案的迭代算法。我们将此算法扩展到最大化最小信噪比的问题,该问题要在相邻小区处受到一些预定的最大干扰约束。为了在实践中深入了解该系统的设计,我们进一步研究了接收到的最坏情况下的信噪比与最大干扰目标之间的关系。在本文的第三部分,我们考虑了底层的D2D通信在蜂窝系统中用于上行链路资源共享。在最佳蜂窝用户(CU)接收波束成形的情况下,我们共同优化CU和D2D对的功率,以实现它们的总和最大化,同时满足最低服务质量(QoS)要求和多个邻域中最坏情况的小区间干扰限制细胞。制定的联合优化问题是非凸的。我们提出了一种近似的功率控制算法,以最大程度地提高总和率,并通过所提出的算法及其最优性条件提供了性能损失的上限。;在第四部分中我们进一步扩展了第三部分的结果,其中在实际系统设置下,我们共同优化了波束矢量以及CU和D2D发射机的发射功率。我们考虑一种多小区方案,其中完美的信道信息仅可用于从CU和D2D到基站的直接信道。对于其他频道,仅部分频道信息可用。不确定的信道信息,非凸期望总和率以及各种功率,干扰和QoS约束导致极具挑战性的优化问题。我们提出了一种基于期望比率近似的有效鲁棒功率控制算法,以使期望的总和率最大化,通过将其与总和率的上限进行比较,可以显示出接近最优的性能。

著录项

  • 作者

    Ramezani Kebrya, Ali.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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