Two dimensional spreading for dispersive channels

J. Acharya, Roy D. Yates, Leonid Razoumov
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Abstract

Systems supporting broadband mobile services over wireless channels suffer from dispersion along time and frequency. Hence transmission by spreading information along both these dimensions leads to diversity gain in each dimension. Motivated by this principle, we propose a generalized two dimensional spreading scheme, in which a symbol is transmitted across several subcarriers with a total power constraint and along each subcarrier it is spread with CDMA codewords. The information theoretic bounds on capacity for this scheme are derived under different assumptions about the channel state information (CSI) available at the transmitter. These are perfect CSI, partial CSI characterized by one bit of channel information per subcarrier and no CSI. The receiver is assumed to have perfect CSI. The optimal codeword and power allocation strategies to achieve these bounds are derived for the single user point to point transmission. The solutions also apply to the cases of synchronous multi-user uplink transmission, or when the receiver schedules transmissions of multiple users. For asynchronous uplink communications, we show that the problem of optimal resource allocation is analytically intractable and instead suggest a heuristic solution, which can be implemented in a distributed manner
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色散通道的二维扩展
在无线信道上支持宽带移动服务的系统会受到时间和频率分散的影响。因此,沿着这两个维度传播信息的传播导致每个维度的多样性增益。基于这一原理,我们提出了一种广义的二维传播方案,该方案在总功率约束下将一个符号在多个子载波上传输,并在每个子载波上使用CDMA码字进行传播。在对发射机可用信道状态信息(CSI)的不同假设下,推导了该方案容量的信息理论边界。这些是完美CSI,部分CSI,每个子载波的信道信息为1位,没有CSI。假定接收方具有完美的CSI。针对单用户点对点传输,给出了实现这些边界的最佳码字和功率分配策略。该方案也适用于多用户同步上行传输,或接收方调度多用户传输的情况。对于异步上行通信,我们证明了最优资源分配问题是难以解析的,并提出了一种启发式解决方案,该解决方案可以以分布式方式实现
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