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Resource Management in CDMA Networks based on Approximate Dynamic Programming

机译:基于近似动态规划的CDMA网络资源管理

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In this paper a power and rate control scheme for down link packet transmission in CDMA networks is proposed. Under the assumption of stochastic packet arrivals and channel states the base station transmits to multiple mobile user at any time instant with in rate and power capacity constraints. The objective is to maximize system through put, while taking into account the queue length distribution over a time horizon. We are interested in optimal rate allocation policies over time and thus we formulate the problem as a discrete stochastic dynamic program. This dynamic program (DP) is exponentially complex in the number of users which renders it impractical and therefore we use an approximate dynamic programming algorithm to obtain in real time sub-optimal rate allocation policies. Numerical results reveal that the proposed algorithm increased the performance (in terms of a number of different measured parameters such as average queue size) of atleast 3.5 times compared to a number of different base line greedy heuristics.
机译:本文提出了一种用于CDMA网络中下行分组传输的功率和速率控制方案。在随机分组到达和信道状态的假设下,基站在任何时候都在速率和功率容量约束下向多个移动用户传输。目的是在考虑整个时间范围内的队列长度分布的同时,最大化系统的吞吐量。随着时间的流逝,我们对最优费率分配策略很感兴趣,因此我们将该问题表述为离散的随机动态程序。该动态程序(DP)的用户数量呈指数级复杂,这使其不切实际,因此,我们使用近似动态编程算法来实时获取次优速率分配策略。数值结果表明,与许多不同的基线贪婪启发式算法相比,所提算法的性能(在许多不同的测量参数(例如平均队列大小)方面)提高了至少3.5倍。

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