Improving the performance of the time-of-arrival estimator in MIMO systems

Li Zhang, Y. Chew, L. Wong
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Abstract

With the objective of minimizing the Cramer-Rao lower bound (CRLB) of the time of arrival (ToA) estimator, we propose a method to improve the accuracy of ToA estimate for multiple-input multiple-output (MIMO) systems when the transmitted signal can be pre-processed. Transmit beamforming is adopted when the channel state information at the transmitter (CSIT) is available, while space time block code (STBC) is utilized as the transmit diversity technique for the case of unavailable CSIT. Under the assumption that the channel state information at the receiver (CSIR) is always available for both cases, we employ receive beamforming at the receiver. We demonstrate through simulation that the performance of ToA estimator is enhanced with the availability of CSIT, and further improved with the increase of antenna number. Under the condition of erroneous CSIT, improvement can still be observed compared with the case of unavailable CSIT when the signal to noise ratio (SNR) is below a threshold.
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改进MIMO系统中到达时间估计器的性能
以最小化到达时间估计器的Cramer-Rao下界(CRLB)为目标,提出了一种在多输入多输出(MIMO)系统中对传输信号进行预处理时提高到达时间估计精度的方法。在发射端信道状态信息可用的情况下,采用发射波束形成技术;在发射端信道状态信息不可用的情况下,采用空时分组码(STBC)作为发射分集技术。假设接收端的信道状态信息(CSIR)在两种情况下都是可用的,我们在接收端采用接收波束形成。我们通过仿真证明,随着CSIT的可用性,ToA估计器的性能得到增强,并随着天线数量的增加而进一步提高。在错误CSIT条件下,当信噪比低于阈值时,仍然可以观察到与不可用CSIT情况相比的改善。
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