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Delay minimization in energy constrained wireless communications .

机译:能量受限的无线通信中的延迟最小化。

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摘要

We first investigate the problem of minimizing the overall transmission delay of packets in a multiple access wireless communication system, where the transmitters have average power constraints. We show that the optimal policy has a threshold structure: when the sum of the queue lengths is larger than a threshold, both users should transmit a packet during the current slot; when the sum of the queue lengths is smaller than a threshold, only one of the users, the one with the longer queue, should transmit a packet during the current slot.;Then, we study the delay-optimal rate allocation in a multiple access wireless communication system. We formulate the problem as a Markov decision problem (MDP) with an average cost criterion. We first show that the value function is increasing, symmetric and convex in the queue length vector. Taking advantage of these properties, we show that the optimal rate allocation policy is one which tries to equalize the queue lengths as much as possible in each slot, while working on the dominant face of the capacity region.;Next, we extend the delay-optimal rate allocation problem to a communication channel with two transmitters and one receiver, where the underlying rate region is approximated as a general pentagon. We show that the delay-optimal policy has a switch curve structure.;Next, we shift our focus from the average delay minimization problem to transmission completion time minimization problem in energy harvesting communication systems. Under a deterministic system setting, we develop an optimal off-line scheduling policy which minimizes the transmission completion time, under causality constraints on both data and energy arrivals.;Then, we investigate the transmission completion time minimization problem in a two-user additive white Gaussian noise (AWGN) broadcast channel, where the transmitter is able to harvest energy from the nature. We first analyze the structural properties of the optimal transmission policy. We prove that the optimal total transmit power has the same structure as the optimal single-user transmit power. We also prove that there exists a cut-off power level for the stronger user.;Next, we investigate the transmission completion time minimization problem in a two-user AWGN multiple access channel. We first develop a generalized iterative backward waterfilling algorithm to characterize the maximum departure region of the transmitters for any given deadline. Then, based on the sequence of maximum departure regions at energy arrival epochs, we decompose the transmission completion time minimization problem into a convex optimization problem and solve it efficiently.;Finally, we investigate the average delay minimization problem in a single-user communication channel with an energy harvesting transmitter. We consider three different cases. In the first case, both the data packets and the energy to be used to transmit them are assumed to be available at the transmitter at the beginning. In the second case, while the energy is available at the transmitter at the beginning, packets arrive during the transmissions. In the third case, the packets are available at the transmitter at the beginning and the energy arrives during the transmissions, as a result of energy harvesting. In each scenario, we find the structural properties of the optimal solution, and develop iterative algorithms to obtain the solution. (Abstract shortened by UMI.)
机译:我们首先研究使发射机具有平均功率约束的多址无线通信系统中的数据包总体传输延迟最小化的问题。我们表明最优策略具有阈值结构:当队列长度的总和大于阈值时,两个用户都应在当前时隙内发送数据包;当队列长度的总和小于阈值时,只有一个用户(队列较长的用户)应在当前时隙内发送数据包。然后,我们研究多路访问中的延迟最优速率分配无线通信系统。我们将该问题公式化为具有平均成本准则的马尔可夫决策问题(MDP)。我们首先显示值函数在队列长度向量中正在增加,对称且凸。利用这些特性,我们表明最优速率分配策略是一种尝试在容量区域的主要面上工作时,在每个时隙中尽可能使队列长度相等的策略。具有两个发射机和一个接收机的通信信道的最优速率分配问题,其中基础速率区域近似为一个五边形。我们证明了延迟最优策略具有切换曲线结构。接下来,我们将精力从能量收集通信系统中的平均延迟最小化问题转移到传输完成时间最小化问题。在确定性的系统设置下,我们开发了一种最佳的离线调度策略,该策略在数据和能量到达的因果关系约束下,将传输完成时间最小化;然后,我们研究了两用户相加白色的传输完成时间最小化问题高斯噪声(AWGN)广播频道,发射机能够从大自然中获取能量。我们首先分析最优传输策略的结构特性。我们证明最佳总发射功率与最佳单用户发射功率具有相同的结构。我们还证明了较强的用户存在截止功率水平。接下来,我们研究了两用户AWGN多址信道中的传输完成时间最小化问题。我们首先开发一种广义的向后迭代充水算法,以表征在任何给定期限内发射机的最大离开区域。然后,根据能量到达时期的最大离开区域的序列,将传输完成时间最小化问题分解为凸优化问题,并有效地求解。最后,研究了单用户通信信道中的平均时延最小化问题。带有能量收集发射器。我们考虑三种不同的情况。在第一种情况下,一开始就假定数据包和将用于传输它们的能量都在发射机处可用。在第二种情况下,虽然开始时在发射机处有可用能量,但数据包在传输期间到达。在第三种情况下,数据包一开始在发送器处可用,并且由于能量收集,能量在传输期间到达。在每种情况下,我们都找到最佳解决方案的结构特性,并开发迭代算法来获得解决方案。 (摘要由UMI缩短。)

著录项

  • 作者

    Yang, Jing.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 265 p.
  • 总页数 265
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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