基于NOMA的下行LiFi系统充水随机资源分配

Brian Pamukti, W.P. Vinsensius Sigit, Arfianto Fahmi, N. Adriansyah, N. Andini
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引用次数: 3

摘要

本文提出了光保真度(LiFi)系统中用水填充的随机资源分配方法,即water - filling random resource allocation (W-FRRA)。本文假设室内有几种物体可以反射或吸收LED灯泡发出的光,并产生阻挡概率。我们认为用户总是移动和变化,随机在一个房间里。我们使用4x4x3 m作为房间尺寸,第一次使用功率偏差1w来传输功率。功率控制用于组织信噪比(SNR),以便在任何用户位置实现相等的数据速率。我们的模拟表明,在员工W-FRRA之后,所有用户在任何传播距离下都具有大约90Mbps的相似数据速率。在利用功率分配实现等速率后,针对时隙资源有限、分组边缘不可预测等问题,考虑采用非正交多址(NOMA)技术提高LiFi的吞吐量。为了证明我们提出的方法有所改进,我们比较了随机分组传输如Slotted ALOHA (SA)和争用分辨率分集Slotted ALOHA (CRDSA)。在计算机仿真的基础上,用丢包率和吞吐量性能对结果进行了验证。我们发现,在SA和CRDSA中,W-FRRA的性能最高,可以服务的用户最多。此外,W-FRRA的吞吐量性能比CRDSA和SA分别高出10%和30%左右。我们还证明了我们的提议具有公平性系统,并且已经使用NOMA为LiFi系统上的每个位置的用户提供无冲突的服务。
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Water-Filling Random Resource Allocation (W-FRRA) Using NOMA for Downlink LiFi System
In this paper, we proposed random resource allocation using water filling for Light Fidelity (LiFi) system, namely Water-Filling Random Resource Allocation (W-FRRA). This paper assumes that the room has several things that can be reflected or absorbed the light from LED bulb and produce blocking probability. We consider that users always move and change, randomly in a room. We use 4x4x3 m for room dimension and power bias 1 W to transmit power for the first time. Power control is used to organise signal to noise ratio (SNR) for equality data rates in any user locations. Our simulation shows that after employee W-FRRA, all of users has similarity data rates around 90Mbps for any propagations distance. After equality data rates are achieved using power allocation, we concentrate for limited time-slot resource, unpredictable packet edge and consider to using Non-Orthogonal Multiple Access (NOMA) for increasing the throughput of LiFi. To prove that our proposed method has improve, we compare random packets transmission such as Slotted ALOHA (SA) and Contention resolution diversity slotted ALOHA (CRDSA). We validate the results using packet loss rate and throughput performances based on computer simulation. We found that W-FRRA has highest performance among SA and CRDSA with most number of user can be served. In addition, the throughput performance of W-FRRA has higher around 10% and 30% than CRDSA and SA, respectively. We also prove that our proposed has fairness system and already employee NOMA to serve users without collision for every location on LiFi system.
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