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首页> 外文期刊>IEEE transactions on wireless communications >Optimization of CDMA Systems with Respect to Transmission Probability, Part II: Signal to Noise Plus Interference Ratio Optimization
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Optimization of CDMA Systems with Respect to Transmission Probability, Part II: Signal to Noise Plus Interference Ratio Optimization

机译:关于传输概率的CDMA系统优化,第二部分:信噪比和干扰比优化

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Code division multiple access (CDMA) systems commonly use power control mechanism to reduce the amount of interference between the users. In part I of this paper, we introduced the concept of probability control that optimizes system performance with respect to the users'' transmission probabilities. The importance of probability control was demonstrated by proving that probability control alone optimizes the mutual information rates over a frequency-flat slow-fading multiple access channel. In this part we extend this result to the optimization of the average signal-to-noise plus interference ratio (SIR) in a CDMA system over a frequency-selective slow- fading channel model and any network topology. We prove that there is a group of CDMA receivers, in which the average SIR (ASIR) of all users is maximized using probability control (while all users transmit their maximal allowed power). This receivers group includes, among others, the common matched filter (MF) RAKE receiver, as well as the sophisticated minimal mean square error (MMSE) RAKE receiver. Simulations demonstrate for a 2- users scenario that both users achieve significantly higher ASIR using probability-control instead of power-control. Results are applicable both for CDMA and impulse radio (IR) systems.
机译:码分多址(CDMA)系统通常使用功率控制机制来减少用户之间的干扰量。在本文的第一部分中,我们介绍了概率控制的概念,该概念针对用户的传输概率优化了系统性能。通过证明概率控制本身可以优化频率平坦,慢衰落的多路访问信道上的互信息率,证明了概率控制的重要性。在这一部分中,我们将这一结果扩展到在频率选择性慢衰落信道模型和任何网络拓扑上,对CDMA系统中的平均信噪比与干扰比(SIR)的优化。我们证明存在一组CDMA接收器,其中使用概率控制将所有用户的平均SIR(ASIR)最大化(而所有用户都将发送其最大允许功率)。该接收器组包括公共匹配滤波器(MF)RAKE接收器以及复杂的最小均方误差(MMSE)RAKE接收器。仿真表明,对于2个用户的情况,两个用户都使用概率控制而不是功率控制来实现更高的ASIR。结果适用于CDMA和脉冲无线电(IR)系统。

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