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Signal design for Multiple-Antenna Systems and Wireless Networks

机译:多天线系统和无线网络的信号设计

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摘要

This dissertation is concerned with the signal design problems for Multiple Input and Multiple Output (MIMO) antenna systems and wireless networks. Three related but distinct problems are considered.The first problem considered is the design of space time codes for MIMO systems in the case when neither the transmitter nor the receiver knows the channel. We present the theoretical concept of communicating over block fading channel using Layered Unitary Space Time Codes (LUSTC), where the input signal is formed as a product of a series of unitary matrices with corresponding dimensionality. We show the channel capacity using isotropically distributed (i.d.) input signaling and optimal decoding can be achieved by layered i.d. signaling scheme along with a low complexity successive decoding. The closed form layered channel capacity is obtained, which serves as a design guideline for practical LUSTC. In the design of LUSTC, a successive design method is applied to leverage the problem of optimizing over lots of parameters.The feedback of channel state information (CSI) to the transmitter in MIMO systems is known to increase the forward channel capacity. A suboptimal power allocation scheme for MIMO systems is then proposed for limited rate feedback of CSI. We find that the capacity loss of this simple scheme is rather small compared to the optimal water-filling solution. This knowledge is applied for the design of the feedback codebook. In the codebook design, a generalized Lloyd algorithm is employed, in which the computation of the centroid is formulated as an optimization problem and solved optimally. Numerical results show that the proposed codebook design outperforms the existing algorithms in the literature.While it is not feasible to deploy multiple antennas in a wireless node due to the space limitation, user cooperation is an alternative to increase performance of the wireless networks. To this end, a coded user cooperation scheme is considered in the dissertation, which is shown to be equivalent to a coding scheme with the encoding done in a distributive manner. Utilizing the coding theoretic bound and simulation results, we show that the coded user cooperation scheme has great advantage over the non-cooperative scheme.
机译:本文涉及多输入多输出(MIMO)天线系统和无线网络的信号设计问题。考虑了三个相关但截然不同的问题。考虑的第一个问题是在发射机和接收机都不知道信道的情况下,MIMO系统的时空码的设计。我们提出了使用分层Unit时空码(LUSTC)通过块衰落信道进行通信的理论概念,其中输入信号是一系列具有相应维数的unit矩阵的乘积。我们显示了使用各向同性分布(i.d.)输入信令的信道容量,并且可以通过分层i.d实现最佳解码。信令方案以及低复杂度的连续解码。获得了封闭形式的分层通道容量,可作为实用LUSTC的设计指南。在LUSTC的设计中,采用了一种连续的设计方法来解决在众多参数上进行优化的问题。众所周知,MIMO系统中信道状态信息(CSI)对发射机的反馈会增加前向信道容量。然后针对CSI的有限速率反馈,提出了MIMO系统的次优功率分配方案。我们发现,与最佳注水解决方案相比,这种简单方案的容量损失很小。这些知识可用于反馈密码本的设计。在码本设计中,采用了广义的Lloyd算法,其中质心的计算被公式化为一个优化问题并得到了最优解。数值结果表明,所提出的密码本设计优于文献中的现有算法。尽管由于空间限制,在无线节点中部署多个天线是不可行的,但用户合作是提高无线网络性能的一种选择。为此,在本文中考虑了一种编码的用户合作方案,该方案被示为等效于以分布式方式进行编码的编码方案。利用编码理论界和仿真结果表明,编码用户合作方案比非合作方案具有更大的优势。

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    Song Xiaofei;

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  • 年度 2007
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