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A novel scheduling algorithm to maximize the D2D spatial reuse in LTE networks

机译:一种新的调度算法,可最大化LTE网络中的D2D空间重用

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In order to offload base station (BS) traffic and to enhance efficiency of spectrum, operators can activate many Device-to-Device (D2D) pairs or links in LTE networks. This increases the overall spectral efficiency because the same Resource Blocks (RBs) are used across cellular UEs (CUEs) (i.e., all UEs connected to BS for both C-Plane and D-plane communication) and D2D links (i.e., where the UEs are connected to BS only for C-plane communication). However, significant interference problems can be caused by D2D communications as the same RBs are being shared. In our work, we address this problem by proposing a novel scheduling algorithm, Efficient Scheduling and Power control Algorithm for D2Ds (ESPAD), which reuses the same RBs and tries to maximize the overall network throughput without affecting the CUEs throughput. ESPAD algorithm also ensures that Signal to Noise plus Interference Ratio (SINR) for each of the D2D links is maintained above a certain predefined threshold. The aforementioned properties of ESPAD algorithm makes sure that the CUEs do not experience very high interference from the D2Ds. It is observed that even when the SINR (i.e., maximum permissible drop in SINR of CUEs) is as high as 10 dB, there is no drastic decrease in CUEs throughput (only 3.78%). We also compare our algorithm against other algorithms and show that D2D throughput improves drastically without undermining CUEs throughput.
机译:为了减轻基站(BS)流量并提高频谱效率,运营商可以激活LTE网络中的许多设备到设备(D2D)对或链接。这提高了总体频谱效率,因为在蜂窝UE(CUE)(即,所有用于C平面和D平面通信的连接到BS的UE)和D2D链路(即UE所在的位置)之间使用了相同的资源块(RB)仅连接到BS,用于C平面通信)。但是,由于共享相同的RB,D2D通信可能导致严重的干扰问题。在我们的工作中,我们通过提出一种新颖的调度算法D2D的高效调度和功率控制算法(ESPAD)来解决此问题,该算法可重用相同的RB,并尝试在不影响CUE吞吐量的情况下最大化整个网络的吞吐量。 ESPAD算法还确保每个D2D链路的信噪比与干扰比(SINR)保持在某个预定阈值以上。 ESPAD算法的上述属性可确保CUE不会受到D2D的很高干扰。可以看出,即使当SINR(即,CUE的SINR的最大允许下降)高达10 dB时,CUE的吞吐量也没有急剧下降(仅为3.78%)。我们还将我们的算法与其他算法进行了比较,结果表明D2D吞吐量在不损害CUE吞吐量的情况下得到了极大的提高。

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