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Power Allocation of Multi-Users Based on Optimal Power Allocation Algorithm in Uplink Base Stations Cooperative System

机译:上行基站协同系统中基于最优功率分配算法的多用户功率分配

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In cellular systems with tight frequency reuse, one base station receives signals not only from users in local cell but also from users in adjacent cell, which cause co-channel interference. In this paper, we achieve a base stations cooperative system based on a successive interference cancellation method and a power allocation algorithm with low backhaul traffic. It requires users detected in local base station with an order. One base station detects local users firstly, then it passes on the information to the other base stations so that the other base stations detect local users. Since quantized reliability information is transferred system enable better detection of the received data streams and required lower backhaul traffic. The total backhaul traffic is always less than joint detection for a few base stations in cooperation. The proposed power allocation strategies are to be used together with the cooperative system to achieve some required performance regardless scenario and location of users. The power allocation algorithm can achieve maximizing throughput, and minimizing bit error rate with a constant transmitted power based on optimal power allocation algorithm according to practical needs.
机译:在具有严格频率复用的蜂窝系统中,一个基站不仅从本地小区的用户接收信号,而且从相邻小区的用户接收信号,这会导致同信道干扰。在本文中,我们实现了一种基于连续干扰消除方法和低回程流量的功率分配算法的基站协作系统。它要求在本地基站中检测到的用户有订单。一个基站首先检测本地用户,然后将信息传递给其他基站,以便其他基站检测本地用户。由于传递了量化的可靠性信息,因此系统可以更好地检测接收到的数据流并减少所需的回程流量。回传的总流量始终少于几个协作基站的联合检测。拟议的功率分配策略将与协作系统一起使用,以实现某些所需的性能,而不管用户的情况和位置如何。该功率分配算法可以根据实际需要,在最优功率分配算法的基础上,以恒定的发射功率实现吞吐量的最大化和误码率的最小化。

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