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Performance comparison of optimum and MMSE receivers with imperfect channel estimation for VSF-OFCDM systems

机译:VSF-OFCDM系统的信道估计不完善的最佳接收机和MMSE接收机的性能比较

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摘要

Performances of optimum and minimum mean square error (MMSE) receivers for variable spreading factor orthogonal frequency and code division multiplexing (VSF-OFCDM) systems are compared in this paper. In VSF-OFCDM systems, the existence of multicode interference (MCI) in the frequency domain due to frequency-selective fading channels dramatically degrades the system performance. A quasi-analytic bit error rate performance is presented in the presence of imperfect channel estimations. Numerical results show that with linear computation complexity the MMSE receiver can improve system performance significantly by suppressing the MCI, although it cannot perform as well as the optimum receiver. Thus, with a small number of code channels, an optimum receiver can be employed to achieve better performance, whereas the MMSE receiver is suitable for a system with a large number of code channels due to simple complexity. In addition, the MMSE receiver is more robust than the optimum receiver to the different configurations of system parameters, e.g., spreading factors. Moreover, it is found that pilot channel power should be carefully assigned by making tradeoffs between the channel estimation quality and the received SNR for each code data channel.
机译:本文比较了可变扩频因子正交频率和码分复用(VSF-OFCDM)系统的最佳和最小均方误差(MMSE)接收机的性能。在VSF-OFCDM系统中,由于频率选择衰落信道而导致的频域中多码干扰(MCI)的存在大大降低了系统性能。在信道估计不完善的情况下,提供了准解析误码率性能。数值结果表明,尽管线性计算复杂度不如最佳接收器,但MMSE接收器可以通过抑制MCI来显着提高系统性能。因此,在少量的代码信道的情况下,可以采用最优的接收机来获得更好的性能,而由于简单的复杂性,MMSE接收机适合于具有大量代码信道的系统。另外,对于系统参数的不同配置,例如扩频因子,MMSE接收机比最佳接收机更健壮。此外,发现应该通过在每个码数据信道的信道估计质量和接收SNR之间进行折衷来仔细地分配导频信道功率。

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