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Call admission control algorithm for IDMA system based on SINR evolution

机译:基于SINR演化的IDMA系统呼叫接纳控制算法。

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Call admission control (CAC) is one of the most important issues for radio resource management of wireless communication systems, which has been widely investigated. However, the computational complexity of the CAC algorithm is still a stringent concern. The performance of interleave-division multiple-access (IDMA) system can be assessed by tracking signal-to-interference-plus-noise ratio (SINR) evolution of the iterative chip-by-chip (CBC) detection process. Based on this semi-analytical technique, a novel CAC algorithm, which makes resource estimation in advance by using the solution obtained from SINR evolution, is proposed to give a simple solution without compromising performance for CAC algorithm in IDMA systems. Besides, the effect of the base station multiuser detection (MUD) on the CAC algorithm is evaluated. It is shown that with the high efficiency of CBC MUD, a high throughput and a low blocking and dropping probability for multimedia users can be expected.
机译:呼叫准入控制(CAC)是无线通信系统的无线电资源管理最重要的问题之一,这已被广泛研究。但是,CAC算法的计算复杂性仍然是严格的问题。可以通过跟踪迭代芯片(CBC)检测过程的信号到干扰除噪声比(SINR)演变来评估交织分割多址(IDMA)系统的性能。基于该半分析技术,提出了一种通过使用SINR演化中获得的解决方案提前进行资源估计的新型CAC算法,以提供简单的解决方案,而不会影响IDMA系统中CAC算法的性能。此外,评估了基站多用户检测(MUD)对CAC算法的影响。结果表明,随着CBC泥浆的高效率,可以预期高吞吐量和多媒体用户的低阻阻滞和丢弃概率。

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