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A distributed power-saving framework for LTE Het-Nets exploiting Almost Blank Subframes

机译:用于LTE Het-Nets的分布式节能框架,用于利用几乎空白的子帧

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摘要

Almost Blank Subframes (ABS) have been defined in LTE as a means to coordinate transmissions in heterogeneousudnetworks (HetNets), composed of macro and micro eNodeBs: the macro issues ABS periods, and refrains from transmitting during ABSs, thus creating interference-free subframes for the micros. Micros report their capacity demands to the macro via the X2 interface, and the latter provisions the ABS period accordingly. Existing algorithms for ABS provisioning usually share resourcesudproportionally among HetNet nodes in a long-term perspective (e.g., based on traffic forecast). We argue instead that this mechanism can be exploited to save power in the HetNet: in fact, during ABSs, the macro consumes less power, since it only transmits pilot signals. Dually, the micros may inhibit data transmission themselves in some subframes, and optimally decide when to do this based on knowledge of the ABS period. This allows us to define a power saving framework that works in the short term, modifying the ABS pattern at the fastest possible pace, serving the HetNet traffic at reduced power cost. Our framework is designed using only standard signaling. Simulations show that the algorithm consumes less power than its competitors, especially at low loads, and improves the UE QoS.
机译:在LTE中,几乎空白子帧(ABS)已被定义为一种协调由宏和微型eNodeB组成的异构 udnetworks(HetNets)中的传输的方式:宏发布ABS周期,并且避免在ABS期间进行传输,从而避免了干扰微米的子帧。 Micros通过X2接口向宏报告其容量需求,而后者则相应地规定了ABS周期。从长期的角度来看(例如基于流量预测),现有的用于ABS设置的算法通常在HetNet节点之间成比例地共享资源。相反,我们认为可以利用这种机制来节省HetNet中的功率:实际上,在ABS期间,宏只消耗导频信号,因此消耗的功率更少。双重地,微控制器可以在某些子帧中自身禁止数据传输,并且基于对ABS周期的了解来最佳地决定何时进行此传输。这使我们能够定义一个短期内可使用的节能框架,以最快的速度修改ABS模式,以降低的电力成本为HetNet流量提供服务。我们的框架仅使用标准信令进行设计。仿真表明,该算法比竞争对手消耗更少的功率,尤其是在低负载下,并且提高了UE QoS。

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