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Training and limited feedback strategies for fading channels.

机译:衰落信道的培训和有限的反馈策略。

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A practical challenge in wireless communication systems is acquisition of channel state information at the transmitter and the receiver. In this thesis, we address the problem of training and limited-rate feedback optimization for fading channels. In a wideband (multi-carrier) channel, given limited coherence time and power, only a finite number of channel coefficients (each corresponding to a coherence band, or sub-channel) can be estimated. The achievable rate of such systems is therefore governed by the coherence time. A threshold based on-off transmission scheme, which requires only limited rate feedback, is assumed. For both single-user and a multiple access wideband channels, we optimize the training length and power, number of sub-channels probed, and the feedback threshold.;For a correlated fading channel, we propose an adaptive training power control scheme, which can be implemented with limited rate channel state feedback (CSF). With this scheme, training power is reduced (increased) when the channel is faded (good). At low signal to noise ratios, or with fast fading, this scheme is shown to provide substantial gains.;Next we consider the design of a limited CSF scheme for multi-carrier channels in which sub-channels randomly take on either a good or bad state. The problem is formulated as a vector quantization problem and performance bounds are obtained using rate-distortion theory. The results are then applied to Rayleigh fading sub-channels, which are reduced to two state sub-channels by comparing channel gains with a threshold.;We also study the reliability of block codes over memoryless channels in which a fraction of received symbols are noiselessly fed back to the transmitter. We give an upper bound on the error exponent for this channel. In addition, for additive white Gaussian noise channels, we propose a coding scheme that exploits the partial feedback and achieves an error exponent that is close to the upper bound.;Finally, we study the trade-off between CSF and receiver state feedback (RSF) over a multi-carrier block Rayleigh fading channel. RSF refers to the information about the decoder state, which can be used to improve reliability (e.g., through re-transmissions). Given a fixed forward rate we divide the feedback between CSF and RSF to maximize the error exponent. It is shown that the optimal trade-off depends critically on the coherence time.
机译:无线通信系统中的实际挑战是在发射机和接收机处获取信道状态信息。在本文中,我们解决了衰落信道的训练和有限速率反馈优化问题。在宽带(多载波)信道中,给定有限的相干时间和功率,仅可以估计有限数量的信道系数(每个信道系数对应一个相干带或子信道)。因此,这种系统的可实现速率取决于相干时间。假设基于阈值的开-关传输方案仅需要有限的速率反馈。对于单用户和多路访问宽带信道,我们优化了训练长度和功率,探测的子信道数以及反馈阈值。对于相关衰落信道,我们提出了一种自适应训练功率控制方案,该方案可以用有限速率信道状态反馈(CSF)来实现。使用此方案,当信道变淡(良好)时,训练功率会降低(增加)。在低信噪比或快速衰落的情况下,该方案显示出可观的增益。接下来,我们考虑针对多载波信道的有限CSF方案的设计,其中子信道随机承担好坏州。将该问题公式化为矢量量化问题,并使用速率失真理论获得性能范围。然后将结果应用于瑞利衰落子信道,通过将信道增益与阈值进行比较,将其缩减为两个状态子信道。我们还研究了无记忆信道上分组码的可靠性,其中接收符号的一部分无噪声反馈到发射器。我们为该通道的误差指数给出上限。此外,对于加性高斯白噪声信道,我们提出了一种利用部分反馈并获得接近上限的误差指数的编码方案。最后,我们研究了CSF和接收器状态反馈(RSF)之间的权衡)在多载波块瑞利衰落信道上。 RSF是指关于解码器状态的信息,其可以用于提高可靠性(例如,通过重传)。给定一个固定的前向速率,我们在CSF和RSF之间划分反馈,以最大化误差指数。结果表明,最佳权衡主要取决于相干时间。

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