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Optimal power control law for multimedia multirate CDMA systems

机译:多媒体多速率CDMA系统的最佳功率控制律

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This paper considers the optimal reverse-link power control law for multimedia multirate DS/CDMA systems which offer services with different transmission rates (VBR or CBR) and quality of service (QoS) requirements. In the multimedia multirate CDMA system, the transmission power of a mobile station (MS) is proportional to a power control law, which is a function of its distance to the base station (BS), the transmission rates and interference level (number of active users). Each transmitted signal from the MS will be affected by path loss, Rayleigh fading and log-normal shadowing in the reverse link. The bit error probability of the asynchronous multirate CDMA system that takes the MS locations into account is derived first in order to derive the optimum power control functions. By applying the optimal power control functions to mobile stations, the QoS (bit error probability) requirements can be met, the system capacity (number of simultaneously transmitted users) can be maximized, and the power consumption can be minimized. Since the difficulty of deriving the optimal power control law in a closed form, we discretize the power control function so that dynamic programming (DP) can be utilized to obtain the optimal solution. The numerical results show that the optimal power control law can increase the system capacity and decrease the power consumption compared with other power control laws (eg. equal received bit energy) in the multimedia multirate CDMA system.
机译:本文考虑了多媒体多速率DS / CDMA系统的最佳反向链路功率控制法则,该系统可提供具有不同传输速率(VBR或CBR)和服务质量(QoS)要求的服务。在多媒体多速率CDMA系统中,移动站(MS)的发射功率与功率控制定律成比例,该定律取决于移动站到基站(BS)的距离,发射率和干扰电平(有效信号数)。用户)。来自MS的每个发送信号将受到反向链路中的路径损耗,瑞利衰落和对数正态阴影的影响。首先推导考虑了MS位置的异步多速率CDMA系统的误码率,以便推导最佳功率控制功能。通过将最佳的功率控制功能应用于移动台,可以满足QoS(误码概率)的要求,可以使系统容量(同时发送的用户数)最大化,并且可以使功耗最小化。由于很难以封闭形式导出最优功率控制律,因此我们离散化功率控制函数,以便可以利用动态编程(DP)来获得最优解。数值结果表明,与多媒体多速率CDMA系统中的其他功率控制律(例如,接收比特能量相等)相比,最优功率控制律可以增加系统容量并降低功耗。

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