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Co-channel interference management using eICIC/FeICIC with coordinated scheduling for the coexistence of PS-LTE and LTE-R networks

机译:使用eICIC / FeICIC和针对PS-LTE和LTE-R网络共存的协调调度的同信道干扰管理

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In the Republic of Korea, a Long Term Evolution (LTE)-based public safety (PS)-LTE network is being built using 718~728?MHz for uplink and 773~783?MHz for downlink. However, the same bands are also assigned to the LTE-based high-speed railway (LTE-R) network, so great concerns and practical researches on co-channel interference (CCI) management schemes are urgently required. In this paper, performance is analyzed and evaluated by considering the cases of non-RAN (radio access network) sharing and LTE-R RAN sharing by PS-LTE user equipments (UE). Since a train control signal requires high reliability and low latency in order to fulfill its mission-critical service (MCS) requirements, we give higher priority to LTE-R UE during resource allocation under the LTE-R RAN sharing by PS-LTE UEs. In addition, interference management schemes are more effective for the coexistence of PS-LTE and LTE-R networks under RAN sharing environment. In this paper, we utilize enhanced inter-cell interference coordination (eICIC) and further enhanced ICIC (FeICIC) schemes to mitigate the interference from PS-LTE network to LTE-R network while improving the LTE-R eNodeB (eNB) resource utilization by offloading more PS-LTE UEs to LTE-R network. Moreover, a coordinated multipoint (CoMP) transmission scheme is considered among LTE-R eNBs to enhance LTE-R cell edge user performance. By employing FeICIC along with coordinated scheduling (CS) CoMP, the best throughput performance can be achieved under the case of RAN sharing.
机译:在大韩民国,正在建立一个基于长期演进(LTE)的公共安全(PS)-LTE网络,上行链路使用718〜728MHz,下行链路使用773〜783MHz。然而,相同的频带也被分配给基于LTE的高速铁路(LTE-R)网络,因此迫切需要对同信道干扰(CCI)管理方案的关注和实践研究。在本文中,通过考虑PS-LTE用户设备(UE)的非RAN(无线电接入网络)共享和LTE-R RAN共享的情况来分析和评估性能。由于列车控制信号需要高可靠性和低等待时间才能满足其关键任务服务(MCS)的要求,因此在PS-LTE UE共享LTE-R RAN的资源分配期间,我们会给LTE-R UE更高的优先级。另外,干扰管理方案对于RAN共享环境下的PS-LTE和LTE-R网络的共存更加有效。在本文中,我们利用增强的小区间干扰协调(eICIC)和进一步增强的ICIC(FeICIC)方案来减轻PS-LTE网络对LTE-R网络的干扰,同时通过以下方法提高LTE-R eNodeB(eNB)资源利用率将更多PS-LTE UE卸载到LTE-R网络。此外,在LTE-R eNB之间考虑了协作多点(CoMP)传输方案以增强LTE-R小区边缘用户性能。通过将FeICIC与协同调度(CS)CoMP一起使用,可以在RAN共享的情况下实现最佳的吞吐量性能。

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