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首页> 外文期刊>International journal of wireless and mobile computing >New blind equalisation for non-constant modulus signals using a segment cost function
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New blind equalisation for non-constant modulus signals using a segment cost function

机译:使用分段成本函数的非恒定模量信号的新盲均衡

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It is well known that for constant modulus (i.e., magnitude) signals the famous constant modulus (CM) blind equalisation algorithm implemented in a fractionally spaced equaliser can present a zero steady-state mean square error (MSE), which means completely eliminating the distortions introduced in transmitting signals through channels. But for non-constant modulus signals it suffers a large steady-state MSE. In order to overcome this defect, a segment cost function according to the CM criterion is suggested. The distinctive feature of the segment cost function is that the equalised signals (of the non-constant modulus signals) are divided into three segments to form a ⊓ shape where the ideal signals have a constant modulus instead of non-constant. And then a new blind equalisation algorithm seeks to minimise this segment cost function by applying a stochastic gradient method is proposed. When employing the proposed algorithm to equalise the 4-PAM or 16-QAM non-constant modulus signals, just as using the CM blind equalisation algorithm to equalise the 4-QAM constant modulus signal, a zero steady-state MSE can be obtained, which is derived. Compared to the classical bind equalisation algorithms, such as CMA, MMA, MCMA, or CMA+SDD, the proposed algorithm yields improved performance, especially for higher SNR.
机译:众所周知,对于恒定模数(即幅度)信号,在小数间距均衡器中实施的著名的恒定模数(CM)盲均衡算法可以呈现零稳态均方误差(MSE),这意味着完全消除了失真通过通道传输信号中引入。但是对于非恒定模数信号,它会遭受较大的稳态MSE。为了克服该缺陷,提出了根据CM准则的分段成本函数。段成本函数的显着特征是(非恒定模量信号的)均衡信号被分为三个段,以形成⊓形,其中理想信号具有恒定的模量而不是非恒定的。然后提出了一种新的盲均衡算法,试图通过应用随机梯度法来最小化该分段成本函数。当采用所提出的算法均衡4-PAM或16-QAM非恒定模量信号时,就像使用CM盲均衡算法均衡4-QAM恒定模量信号一样,可以获得零稳态MSE,这派生。与经典的绑定均衡算法(例如CMA,MMA,MCMA或CMA + SDD)相比,所提出的算法具有更高的性能,尤其是对于更高的SNR。

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