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首页> 外文期刊>IEEE Transactions on Signal Processing >Distributed Cophasing With Autonomous Constellation Selection
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Distributed Cophasing With Autonomous Constellation Selection

机译:具有自主星座选择的分布式同相

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In this paper, we consider a distributed cophasing (DCP) technique in which multiple sensor nodes (SNs) communicating their observations to a fusion center (FC) need to transmit different classes of data requiring different levels of error protection. To achieve this, we propose a variant of the DCP technique with autonomous constellation selection at the different SNs. In the first stage of the two-stage time division duplexed cophasing scheme, the SNs obtain estimates of the channels to the FC using pilot symbols transmitted by the latter. Following this, the SNs simultaneously transmit their data symbols prerotated according to the estimated channel phases to combine coherently at the FC. The symbols transmitted by different SNs are drawn from possibly different constellations selected based on the estimated instantaneous channel gains. We show that this scheme is equivalent to transmitting symbols from hierarchical constellations. Based on the properties of hierarchical constellations, we develop recursive expressions for the BER of the proposed system. Following this, we use the properties of the effective channel coefficients to show that it is possible to recover the transmitted data bits from the signal received at the FC blindly, without requiring explicit pilot symbols to be sent by the power-starved SNs. We develop three blind channel estimation and data detection schemes for the presented system model. Using Monte Carlo simulations, we show that the proposed blind channel estimation algorithm achieves a probability of error performance close to that with genie aided perfect channel state information (CSI) at the FC, while using only a moderate number of unknown data symbols for channel estimation.
机译:在本文中,我们考虑了分布式共相位(DCP)技术,其中多个传感器节点(SN)将其观测结果传达给融合中心(FC),需要传输需要不同级别的错误保护的不同类别的数据。为实现此目的,我们提出了DCP技术的一种变体,其中在不同SN处具有自主星座选择。在两阶段时分双工同相方案的第一阶段,SN使用由FC发送的导频符号来获得到FC的信道估计。此后,SN同时发送其根据估计的信道相位进行预旋转的数据符号,以在FC处进行相干组合。从不同的SN发送的符号是从基于估计的瞬时信道增益选择的可能不同的星座中得出的。我们表明,该方案等效于从分层星座图传输符号。基于分层星座的性质,我们为所提出系统的BER开发了递归表达式。接下来,我们使用有效信道系数的属性来表明,有可能盲目地从FC接收的信号中恢复发送的数据位,而无需由功率不足的SN发送明确的导频符号。对于提出的系统模型,我们开发了三种盲信道估计和数据检测方案。使用蒙特卡洛模拟,我们表明,所提出的盲信道估计算法在FC处使用精灵辅助的完美信道状态信息(CSI)可获得接近于错误性能的概率,同时仅使用中等数量的未知数据符号进行信道估计。

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