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A comparison model for the Wireless Local Area Network technologies: 802.11n and HeNB in LTE networks

机译:无线局域网技术的比较模型:LTE网络中的802.11n和HeNB

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Most of connections in indoor environments can be with high data rate due to local area characteristics, so the technologies for Wireless Local Area Networks (WLAN) will become increasingly important in the future in terms of frequency reuse. Home evolved Node B (HeNB), known as Femtocell Access Point (FAP) and 802.11n WLAN belonging to WLAN are promising technologies to tackle these issues. Femtocells, however, use the IP Network as backhaul architecture instead of the conventional cellular network infrastructure. Thus, femtocell and Wi-Fi infrastructure networks have a lot in common. This raises a curiosity whether femtocell technology would replace existing Wi-Fi technology. This can be answered only by carefully analyzing the similarities and differences between the two technologies. In this article, the comparison and analysis between these two technologies based on PHY data rate and MAC layer throughput is essential to answer this question. The contributions of this article mainly fall on establishing throughput estimation and comparison for HeNB and 802.11n not much addressed in other works. Our main contribution falls on that the maximal throughput of 802.11n in MAC occurs when the number of active UEs is 4 instead of one. The model developed in this article can also be used to estimate the performance of HeNB for LTE-Advanced and the future 802.11ac and 802.11ad.
机译:由于本地区域的特性,室内环境中的大多数连接都可以具有高数据速率,因此,就频率复用而言,无线局域网(WLAN)的技术在将来将变得越来越重要。称为毫微微小区接入点(FAP)的家庭演进型节点B(HeNB)和属于WLAN的802.11n WLAN是解决这些问题的有前途的技术。然而,毫微微小区使用IP网络作为回程架构,而不是传统的蜂窝网络基础架构。因此,毫微微小区和Wi-Fi基础架构网络有很多共同点。这引发了人们对毫微微小区技术是否会取代现有Wi-Fi技术的好奇。只有仔细分析两种技术之间的异同,才能回答这一问题。在本文中,基于PHY数据速率和MAC层吞吐量的这两种技术之间的比较和分析对于回答这个问题至关重要。本文的贡献主要在于建立针对HeNB和802.11n的吞吐量估算和比较,而在其他工作中未作过多论述。我们的主要贡献在于,当活动UE的数量为4个而不是1个时,MAC中802.11n的最大吞吐量就会出现。本文开发的模型还可以用于评估HeNB for LTE-Advanced和未来的802.11ac和802.11ad的性能。

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