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Optimal placement of colocated and non-colocated LWA nodes in dense deployments

机译:在密集部署中的光环和非光环LWA节点的最佳位置

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Heterogeneous networks mitigate the co-tier interference which arises due to densification of homogeneous small cells deployment. LTE-Wi-Fi Aggregation (LWA) is one such realization of Hetnet which enables a tighter interworking between LTE small cells and Wi-Fi Access Points (AP) at radio level. LWA node deployment can be realized in colocated and non-colocated fashion. In this work, we have addressed the problems pertaining to dense deployment of LWA nodes. The placement of LWA nodes is done with the following objectives (i) Minimizing the number of LWA nodes without coverage hole (ii) Maximizing the Signal-to-Interference-plus-Noise Ratio (SINR) in every subregion of a building (iii) Minimizing the power spent at the User Equipment (UE) and at the LWA node. We have formulated the problems as Mixed Integer Non-Linear Programming (MINLP) problems. The performance of the proposed optimal LWA placement has been compared with Minimum Interference Region (MIR) placement. We could observe that the proposed optimization problem has improved dual coverage region by 43% and improved SINR by 8 dB compared to MIR. Also, the proposed optimization has lead to 10% energy saving at LWA node and 36% energy saving at UE.
机译:异构网络减轻其产生是由于均匀的小小区部署的致密化的共层的干扰。 LTE-的Wi-Fi聚合(LWA)是一个这样的实现异构网络的其使得更紧密在无线电级别LTE小细胞和Wi-Fi接入点(AP)之间的互通。 LWA节点部署在同一地点和非同一地点的方式来实现。在这项工作中,我们已经解决了有关轻骨料节点密集部署的问题。 LWA节点的放置以实现下列目标(一)尽量减少LWA节点的数量没有覆盖盲区进行(II)最大限度地在建筑物的每一个分区域的信号与干扰加噪声比(SINR)(三)最小化在所述用户设备(UE),并且在节点LWA花费的功率。我们已经制定了问题,混合整数非线性规划(MINLP)问题。建议的最佳LWA放置的表现一直与最小干扰区(MIR)放置比较。我们可以观察到,所提出的优化问题已经由43 %和改善SINR由8分贝相比,MIR改进的双覆盖区域。此外,所提出的优化导致了10 %的能量在轻骨料节点和36 %的能量在UE节能节电。

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