为了满足密集的用户需求,正在发展的蜂窝网络增加了移动系统下的能量消耗,但更广的网络覆盖范围和功耗更低的无线通信系统也给无线通信系统带来了更多的挑战。针对这些持续增长的需求,本文设计了一种能实现能量效率最大化的多小区大规...为了满足密集的用户需求,正在发展的蜂窝网络增加了移动系统下的能量消耗,但更广的网络覆盖范围和功耗更低的无线通信系统也给无线通信系统带来了更多的挑战。针对这些持续增长的需求,本文设计了一种能实现能量效率最大化的多小区大规模多输入多输出(multiple input multiple output,MIMO)系统下行链路的实现方法,提出了在非完美信道状态信息(channel state information,CSI)情况下包含基站天线数、导频复用因子以及用户数量等参数的信干噪比最佳闭式表达,通过最大比合并(maximal ratio combining,MRC)接收技术推导出大规模MIMO系统的下行链路频谱效率,再根据功耗模型得到系统的整体能量效率,利用交替迭代的优化算法进行优化求解,得出最大能效时的相关参数数值。由仿真结果可知,本文所提的多小区大规模MIMO系统的下行链路的实现方法与现有多小区方法相比,能量效率有12.2%的提升,并且对于环境的变化有更好的鲁棒性,对于多小区大规模MIMO系统具有一定参考意义。展开更多
We investigate the problem of resource allocation in a downlink orthogonal frequency-division multiple access (OFDMA) broadband network with an eavesdropper under the condition that both legitimate users and the eav...We investigate the problem of resource allocation in a downlink orthogonal frequency-division multiple access (OFDMA) broadband network with an eavesdropper under the condition that both legitimate users and the eavesdropper are with imperfect channel state information (CSI). We consider three kinds of imperfect CSI: (1) noise and channel estimation errors, (2) feedback delay and channel prediction, and (3) limited feedback channel capacity, where quantized CSI is studied using rate-distortion theory because it can be used to establish an information-theoretic lower bound on the capacity of the feedback channel. The problem is formulated as joint power and subcarrier allocation to optimize the maximum-minimum (max-min) fairness criterion over the users' secrecy rate. The problem considered is a mixed integer nonlinear programming problem. To reduce the complexity, we propose a two-step suboptimal algorithm that separately performs power and subcarrier allocation. For a given subcarrier assignment, optimal power allocation is achieved by developing an algorithm of polynomial computational complexity. Numerical results show that our proposed algorithm can approximate the optimal solution.展开更多
文摘为了满足密集的用户需求,正在发展的蜂窝网络增加了移动系统下的能量消耗,但更广的网络覆盖范围和功耗更低的无线通信系统也给无线通信系统带来了更多的挑战。针对这些持续增长的需求,本文设计了一种能实现能量效率最大化的多小区大规模多输入多输出(multiple input multiple output,MIMO)系统下行链路的实现方法,提出了在非完美信道状态信息(channel state information,CSI)情况下包含基站天线数、导频复用因子以及用户数量等参数的信干噪比最佳闭式表达,通过最大比合并(maximal ratio combining,MRC)接收技术推导出大规模MIMO系统的下行链路频谱效率,再根据功耗模型得到系统的整体能量效率,利用交替迭代的优化算法进行优化求解,得出最大能效时的相关参数数值。由仿真结果可知,本文所提的多小区大规模MIMO系统的下行链路的实现方法与现有多小区方法相比,能量效率有12.2%的提升,并且对于环境的变化有更好的鲁棒性,对于多小区大规模MIMO系统具有一定参考意义。
基金Project supported by the National Natural Science Foundation of China(Nos.61471008,61622101,and 61571020)the National Key Research and Development Program of China(No.2016YFE0123100)
文摘We investigate the problem of resource allocation in a downlink orthogonal frequency-division multiple access (OFDMA) broadband network with an eavesdropper under the condition that both legitimate users and the eavesdropper are with imperfect channel state information (CSI). We consider three kinds of imperfect CSI: (1) noise and channel estimation errors, (2) feedback delay and channel prediction, and (3) limited feedback channel capacity, where quantized CSI is studied using rate-distortion theory because it can be used to establish an information-theoretic lower bound on the capacity of the feedback channel. The problem is formulated as joint power and subcarrier allocation to optimize the maximum-minimum (max-min) fairness criterion over the users' secrecy rate. The problem considered is a mixed integer nonlinear programming problem. To reduce the complexity, we propose a two-step suboptimal algorithm that separately performs power and subcarrier allocation. For a given subcarrier assignment, optimal power allocation is achieved by developing an algorithm of polynomial computational complexity. Numerical results show that our proposed algorithm can approximate the optimal solution.