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首页> 外文期刊>IEEE Transactions on Signal Processing >Successive Interference Cancellation Using Constellation Structure
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Successive Interference Cancellation Using Constellation Structure

机译:使用星座结构的连续干扰消除

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摘要

An approach to successive interference cancellation is presented that exploits the structure of the combined signal constellation in a multiuser system. The asymptotic conditional efficiency of a successive detector is defined, based on the conditional probability of error at high signal-to-noise ratio (SNR), as a quantitative measure for evaluating detector performance at each stage of successive detection. The joint successive interference canceller (JSIC) that jointly detects consecutive users in an ordered set is proposed as an improvement over the conventional successive interference canceller (SIC). The maximal asymptotic conditional efficiency successive interference canceller (MACE-SIC) and its JSIC equivalent (MACE-JSIC) are also derived as the multiuser detectors that achieve the highest asymptotic conditional multiuser efficiency at each stage of successive detection among all possible SIC and JSIC detectors, respectively, given any particular ordering of user signals. The ordering of users achieving the highest asymptotic conditional efficiency at each stage of successive detection is derived. Performance bounds based on the signal constellation structure are derived to quantify the gain of the MACE-JSIC detector compared to the MACE-SIC detector.
机译:提出了一种用于连续干扰消除的方法,该方法利用了多用户系统中组合信号星座的结构。基于在高信噪比(SNR)下的条件错误概率,定义了连续检测器的渐进条件效率,作为在连续检测的每个阶段评估检测器性能的定量方法。提出了联合检测顺序集中的连续用户的联合连续干扰消除器(JSIC),作为对传统连续干扰消除器(SIC)的改进。最大渐近条件效率连续干扰消除器(MACE-SIC)和它的JSIC等效项(MACE-JSIC)也被推导出为在所有可能的SIC和JSIC检测器中,在逐次检测的每个阶段都实现最高渐近条件多用户效率的多用户检测器分别给定用户信号的任何特定顺序。得出在连续检测的每个阶段达到最高渐近条件效率的用户顺序。得出基于信号星座结构的性能界限,以量化与MACE-SIC检测器相比的MACE-JSIC检测器增益。

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