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Widely-linear minimum-mean-squared error multiple-candidate successive interference cancellation for multiple access interference and jamming suppression in direct-sequence code-division multiple-access systems

机译:直接序列码分多址系统中的宽线性最小均方误差多候选连续干扰消除,用于多址干扰和干扰抑制

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摘要

In this paper, the authors propose a widely-linear (WL) receiver structure for multiple access interference (MAI) and jamming signal (JS) suppression in direct-sequence code-division multiple-access systems. A vector space projection (VSP) scheme is also considered to cancel the JS before detecting the desired signals. They develop a novel multiple-candidate successive interference cancellation (MC-SIC) scheme which processes two consecutive user symbols at one time to process the unreliable estimates and a number of selected points serve as the feedback candidates for interference cancellation, which is effective for alleviating the effect of error propagation in the successive interference cancellation (SIC) algorithm. WL signal processing is then used to enhance the performance of the receiver in non-circular modulation scheme. By bringing together the techniques mentioned above, a novel interference suppression scheme is proposed which combines the WL MC-SIC minimum-mean-squared error (MMSE) algorithm with the VSP scheme to suppress MAI and JS simultaneously. Simulations for binary phase shift keying modulation scenarios show that the proposed structure achieves a better MAI suppression performance compared with previously reported SIC MMSE receivers at lower complexity and a superior JS suppression performance.
机译:在本文中,作者提出了一种用于直接序列码分多址系统中的多址干扰(MAI)和干扰信号(JS)抑制的宽线性(WL)接收器结构。向量空间投影(VSP)方案也被认为可以在检测到所需信号之前消除JS。他们开发了一种新颖的多候选连续干扰消除(MC-SIC)方案,该方案一次处理两个连续的用户符号以处理不可靠的估计,并且许多选择的点用作干扰消除的反馈候选,这对于缓解干扰非常有效错误传播在连续干扰消除(SIC)算法中的影响。然后在非圆形调制方案中使用WL信号处理来增强接收器的性能。通过结合上述技术,提出了一种新颖的干扰抑制方案,该方案将WL MC-SIC最小均方误差(MMSE)算法与VSP方案相结合,可以同时抑制MAI和JS。二进制相移键控调制方案的仿真表明,与先前报道的SIC MMSE接收机相比,该结构在较低的复杂度和JS抑制性能上具有更好的MAI抑制性能。

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