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BeFEMTO's self-organized and docitive femtocells

机译:Befemto的自我组织和文档毫微微蜂窝

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In this paper we use the emerging paradigm of docition for self-organized femtocell networks which are central to the ICT-BeFEMTO project. We consider that the femtocells are intelligent devices implementing a learning process through which they make decisions without the guidance of a centralized entity. In distributed settings, however, the learning may be complex and slow due to coupled decision making processes resulting in non-stationarities. The docitive paradigm proposes a timely solution based on knowledge sharing, which allows femtocells to develop new capacities for selecting appropriate actions. We demonstrate that this improves the femtocells' learning ability and accuracy, and gives them strategies for action selection in unvis-ited states. We evaluate the docitive paradigms in the context of a 3GPP compliant OFDMA (Orthogonal Frequency Division Multiple Access) based femtocell network modeled as a multi-agent system, where the agents implement a real-time multi-agent reinforcement learning technique known as decentralized Q-learning. Our goal is to solve the well known coexistence problem between macro and femto systems by controlling the aggregated interference generated by multiple femtocells at the macrocell receiver. We propose different docitive algorithms and we show their superiority to the well know paradigm of independent learning in terms of speed of convergence and precision.
机译:在本文中,我们使用docition的自组织毫微微细胞网络这是中央对ICT-BeFEMTO项目的新兴模式。我们认为,Femtocell是实现一个学习的过程,通过他们做决策,而无需实体的指导智能设备。在分布式设置,然而,学习可能是复杂和缓慢由于引起非stationarities耦合决策过程。该docitive范式提出了基于知识共享,这使得毫微微蜂窝基站开发新的能力来选择适当的措施及时解决。我们证明,这提高了飞蜂窝的学习能力和准确性,并给出了在unvis,资讯科技教育国家行动选择他们的策略。我们评估docitive范式基于3GPP标准的OFDMA(正交频分多址)建模为一个多Agent系统,其中药剂为实现分散已知的实时多智能体强化学习技术毫微微蜂窝网络的背景下Q-学习。我们的目标是通过控制由在宏蜂窝接收机多个毫微微小区中产生的聚合干扰来解决宏小区和毫微微系统间的公知的共存问题。我们提出了不同的docitive算法和我们展示自己的优势,以自主学习的良好范例知道收敛和精确的速度方面。

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