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Efficient signaling schemes for wideband space-time wireless channels using channel state information

机译:使用信道状态信息的宽带空时无线信道的有效信令方案

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An orthogonal decomposition of a general wideband space-time frequency selective channel is derived assuming antenna arrays at both the transmitter and receiver. Knowledge of channel state information is assumed at both the transmitter and receiver. The decomposition provides a framework for efficiently managing the degrees of freedom in the space-time channel to optimize any combination of bit-error rate and throughput in single-user or multiuser applications. The decomposition is used to derive efficient signaling schemes and receiver structures for a variety of scenarios. For a fixed throughput system, we investigate a power allocation scheme that minimizes the effective bit-error rate. In addition, a strategy to maximize the throughput under a worst-case bit-error rate constraint is proposed. For multiuser applications, we propose a signaling scheme that achieves orthogonality among users by exploiting the temporal channel modes which are common to all users. The effect of imperfect channel state information at the transmitter is also investigated.
机译:假设在发射机和接收机处都有天线阵列,则可以得出一般宽带空时频率选择性信道的正交分解。在发送器和接收器都假定了信道状态信息的知识。分解提供了一个框架,可以有效地管理时空信道中的自由度,以优化单用户或多用户应用程序中误码率和吞吐量的任意组合。分解用于得出各种情况的有效信令方案和接收器结构。对于固定吞吐量的系统,我们研究了一种将有效误码率降至最低的功率分配方案。另外,提出了一种在最坏情况下的误码率约束下使吞吐量最大化的策略。对于多用户应用,我们提出了一种信令方案,该方案通过利用所有用户通用的时间信道模式来实现用户之间的正交性。还研究了发送器上不完善的信道状态信息的影响。

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