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Joint handover decision and channel allocation for LTE-A femtocell networks

机译:LTE-A飞蜂窝网络的联合切换决策和信道分配

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Cell handover has been considered as one of the most challenging issues in LTE-A macro-femtocell networks, due to the ad hoc deployment nature of Femto Base Stations (FBSs). In this paper, our goal is to achieve seamless handover of Mobile Terminal (MT) among different cells while improving the system throughput. First, we formulate the handover decision and channel allocation problem as a Markov Decision Problem (MDP) whose objective is to maximize the total discounted expected reward per connection over an inOilite horizon. The MDP formulation takes various system parameters into account such as MT moving velocity, MT buffer size, cell switching cost and call dropping penalty. Then, we propose an algorithm based on Q-Iearning techniques to obtain the optimal cell handover and channel allocation policy. Simulation results show that our proposed algorithm is effective, and can maximize the expected total reward and reduce the average number of handovers.
机译:由于毫微微基站(FBS)的临时部署性质,小区切换已被视为LTE-A宏毫微微小区网络中最具挑战性的问题之一。在本文中,我们的目标是在提高系统吞吐量的同时,实现不同小区之间移动终端(MT)的无缝切换。首先,我们将切换决策和信道分配问题公式化为马尔可夫决策问题(MDP),其目的是在inilite范围内最大化每个连接的总折价预期奖励。 MDP公式考虑了各种系统参数,例如MT移动速度,MT缓冲区大小,小区切换成本和掉话损失。然后,我们提出了一种基于Q学习技术的算法,以获得最优的小区切换和信道分配策略。仿真结果表明,本文提出的算法是有效的,可以最大化期望的总回报,减少平均切换次数。

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