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LTE-advanced based handover mechanism for natural disaster situations

机译:基于LTE-Advanced的自然灾害情况的切换机制

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Telecommunication networks often face power outage problems in the natural disaster affected areas. Also, owing to a sudden substantial increase in network traffic loads the battery backup power of the base stations run out quickly and therefore hampering telecommunication services. To overcome this system performance issues, we propose a Long Term Evolution (LTE)-Advanced (LTE-A)-based user equipment (UE)-controlled and base station (Evolved Node B or eNB)-assisted handover scheme. The idea is to limit the arrival of new traffic to an already overloaded eNB by diverting their handover to lightly loaded nearby eNBs. The novelty of this work is the ability of an UE to self-detect the occurrence of a natural disaster and to self-select the most suitable target eNB (TeNB) to handover with in the disaster affected areas. The handover is performed by obtaining the weighted average score (WAS) of the direction of motion (DoM) and the leftover battery backup power of the different neighboring eNBs (NeNB). The UE also predicts its DoM and dynamically adjust the weights of the two parameters if it's a disaster situation. Preliminary simulation results show that the scheme can offer up to 65% handover success rate in disaster situations.
机译:电信网络经常面临自然灾害影响地区的停电问题。此外,由于网络流量突然增加了大量的增加,基站的电池备用电源很快,因此妨碍电信服务。为了克服这种系统性能问题,我们提出了一个长期的演化(LTE) - 基于(LTE-A)的用户设备(UE) - 控制和基站(演进节点B或eNB) - 分配的切换方案。这个想法是通过转移切换来限制新流量的到达到已经过载的eNB,以便在附近的eNB上轻轻加载。这项工作的新颖性是UE自我检测到自然灾害的发生和自我选择最合适的目标eNB(TENB)的能力,以便在灾害影响地区切换。通过获得不同相邻eNB(NENB)的运动方向(DOM)和剩余电池备用电源的加权平均得分(是)来执行切换。 UE还预测其DOM并动态地调整两个参数的权重,如果它是灾难的情况。初步仿真结果表明,该方案可以提供高达65%的灾害情况下的移交成功率。

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