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Space-time codes for high data rate wireless communication: performance criterion and code construction

机译:高数据速率无线通信的时空代码:性能标准和代码构造

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We consider the design of channel codes for improving the data rate and/or the reliability of communications over fading channels using multiple transmit antennas. Data is encoded by a channel code and the encoded data is split into n streams that are simultaneously transmitted using n transmit antennas. The received signal at each receive antenna is a linear superposition of the n transmitted signals perturbed by noise. We derive performance criteria for designing such codes under the assumption that the fading is slow and frequency nonselective. Performance is shown to be determined by matrices constructed from pairs of distinct code sequences. The minimum rank among these matrices quantifies the diversity gain, while the minimum determinant of these matrices quantifies the coding gain. The results are then extended to fast fading channels. The design criteria are used to design trellis codes for high data rate wireless communication. The encoding/decoding complexity of these codes is comparable to trellis codes employed in practice over Gaussian channels. The codes constructed here provide the best tradeoff between data rate, diversity advantage, and trellis complexity. Simulation results are provided for 4 and 8 PSK signal sets with data rates of 2 and 3 bits/symbol, demonstrating excellent performance that is within 2-3 dB of the outage capacity for these channels using only 64 state encoders.
机译:我们考虑信道码的设计,以提高数据速率和/或使用多个发射天线的衰落信道上通信的可靠性。通过信道代码对数据进行编码,并且将编码的数据划分为n个流,这些流使用n个发射天线同时发送。每个接收天线上的接收信号是被噪声干扰的n个发射信号的线性叠加。我们在衰落缓慢且频率非选择性的假设下得出了设计此类代码的性能标准。显示性能是由由成对的不同代码序列构成的矩阵决定的。这些矩阵中的最小秩量化了分集增益,而这些矩阵的最小行列式量化了编码增益。然后将结果扩展到快速衰落信道。设计标准用于设计用于高数据速率无线通信的网格代码。这些代码的编码/解码复杂度可与高斯信道上实际使用的网格编码相媲美。这里构造的代码在数据速率,分集优势和网格复杂度之间提供了最佳折衷。提供了4和8个PSK信号集的仿真结果,数据速率分别为2和3位/符号,证明仅使用64个状态编码器,这些通道的性能就在这些通道的中断容量的2-3 dB之内。

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