Bit rate maximization for LP-OFDM with noisy channel estimation

F. Muhammad, J. Baudais, J. Hélard
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引用次数: 4

Abstract

The resource allocation problem to maximize the bit rate of a linear precoded orthogonal frequency division multiplexing (LP-OFDM) system is considered taking into account the effects of imperfect channel state information. A discrete bit loading algorithm is proposed, which sustains the target bit error rate even under high mean square error (MSE) of estimation. The proposed scheme enhances the robustness of the system against noisy channel estimation without significantly compromising on the system throughput. It is shown that the proposed LP-OFDM allocation is more robust to estimation noise than OFDM allocations and provides sustainable mean bit error rate performance even at high MSEs. The results are shown for a power line communication system using a well-known multipath channel model.
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带噪声信道估计的LP-OFDM的比特率最大化
考虑了不完全信道状态信息的影响,研究了线性预编码正交频分复用(LP-OFDM)系统中最大化比特率的资源分配问题。提出了一种离散比特加载算法,即使在估计的均方误差(MSE)较大的情况下也能保持目标误码率。该方案提高了系统对噪声信道估计的鲁棒性,同时又不会显著降低系统吞吐量。结果表明,与OFDM分配相比,所提出的LP-OFDM分配对估计噪声的鲁棒性更强,即使在高mse下也能提供持续的平均误码率性能。结果显示了电力线通信系统使用一个著名的多径信道模型。
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