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Equalization and combining techniques for distributed space time trellis codes on co-operative networks

机译:合作网络上分布式时空网格码的均衡和合并技术

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Fading severely affects wireless communications performance, causing large variations in signal strength as a function of the user position. Spatial diversity is an effective way to combat fading while keeps the bandwidth efficiency unaltered. To exploit the spatial diversity, multiple antennas have to be equipped at the transmitter and/or the receiver. However, it is difficult to place multiple antennas onto a mobile terminal or a sensor node due to the size limit and the hardware complexity. It is shown recently that the spatial diversity can be exploited if cooperation is adopted among the users. The resulted transmission scheme is referred to as the cooperative diversity. The main objective of the paper is to improve the performance of the distributed space-time trellis code (DSTTC) protocols by using different equalization techniques at different channels namely AWGN, slow fading, fast fading and quasi-slow fading. Various relay selection techniques are employed for AAF protocol in order to improve its performance. Relay selection is based on the received SNR at the relay and receiver, decoding capability of the relay, forward and backward channel quality of the relays and the harmonic mean of the channel magnitude. To reduce the effects of inter symbol interference and inter channel interference various equalizations such as zero forcing which uses the inverse channels at the receiver, minimum mean square error which tries to minimize the mean square error between the source data and received data at the receiver and the maximum likelihood tries to estimate the signal which is maximum likelihood to the source signal. Co-operative Maximum Ratio Combining scheme uses the weighting factor for each channel and the co-operative alamouti forms the orthogonal matrix at the receiver by receiving the signals of real and complex at different time slots.
机译:衰落严重影响无线通信性能,导致信号强度随用户位置而变化很大。空间分集是在保持带宽效率不变的情况下抵抗衰落的有效方法。为了利用空间分集,必须在发射器和/或接收器处配备多个天线。然而,由于尺寸限制和硬件复杂性,难以将多个天线放置在移动终端或传感器节点上。最近显示,如果在用户之间采用合作,则可以利用空间多样性。产生的传输方案称为合作分集。本文的主要目的是通过在不同的信道上使用不同的均衡技术,即AWGN,慢衰落,快速衰落和准慢衰落,来提高分布式时空网格码(DSTTC)协议的性能。 AAF协议采用了多种中继选择技术,以提高其性能。中继器的选择基于中继器和接收器接收到的SNR,中继器的解码能力,中继器的前向和反向信道质量以及信道幅度的谐波平均值。为减少符号间干扰和信道间干扰的影响,进行了各种均衡处理,例如在接收器上使用反向信道的零强制,最小均方误差试图最小化接收器和接收器之间的源数据和接收数据之间的均方误差。最大似然度试图估计对源信号来说最大似然度的信号。合作最大比率合并方案使用每个信道的加权因子,而合作阿拉莫蒂通过在不同时隙接收实信号和复信号来在接收机处形成正交矩阵。

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