具有零子载波的MIMO OFDM系统的近最优训练序列

M. Sandell, J. Coon
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引用次数: 11

摘要

在MIMO OFDM系统中,信道估计的质量变得非常重要,特别是在天线数量庞大的情况下。另一方面,希望最小化开销,使训练序列的设计成为关键任务。虽然这个问题已经有效地解决了使用所有子载波的OFDM系统,但对于具有零子载波的系统(如IEEE802.11a和IEEE802.11n),它仍然是一个悬而未决的问题,其中一些子载波是未调制的,以适应指定的频谱掩模。本文提出了一种利用零载波设计任意系统的MIMO OFDM训练序列的数值方法。结果表明,在简单的训练序列上,例如仅在非重叠子载波上传输,可以获得可观的收益。用均方误差和误码率来衡量这些新训练序列的性能
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Near-optimal training sequences for MIMO OFDM systems with nulled subcarriers
In MIMO OFDM systems, the quality of channel estimation becomes important, especially for a large number of antennas. On the other hand, it is desirable to minimise the overhead, making the design of training sequences a crucial task. Although this problem has been solved efficiently for OFDM systems using all subcarriers, it is still an open question for systems with nulled subcarriers (such as IEEE802.11a and IEEE802.11n), where some of the subcarriers are left unmodulated in order to fit specified spectrum masks. In this paper we present a numerical method for designing MIMO OFDM training sequences for arbitrary systems using nulled subcarriers. It is shown that substantial gains can be had over simple training sequences, such as only transmitting on non-overlapping subcarriers. The performance of these new training sequences are measured in both mean-squared error and bit-error rate
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