Service area deployment of IEEE 802.16j wireless relay networks: service area coverage, energy consumption, and resource utilization efficiency

Service area deployment of IEEE 802.16j wireless relay networks: service area coverage, energy consumption, and resource utilization efficiency
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IEEE 802.16j无线中继网络服务区部署:服务区覆盖、能耗、资源利用效率

DOI:
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发表时间:
2010
期刊:
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影响因子:
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通讯作者:
H. Nakano
H. Nakano
中科院分区:
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文献类型:
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作者:
Shoichi Takemori;G. Hasegawa;Y. Taniguchi;H. Nakano

文献摘要

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在基于IEEE 802.16j的无线中继网络中,每个中继节点具有其自己的服务区域,该服务区域向客户端终端提供无线因特网接入服务。这种网络的性能受到每个中继节点如何确定其服务区域大小的严重影响。为了确定每个中继节点的服务区域大小,重要的是使用其他相邻节点的位置信息及其服务区域大小。然而,一般来说,这种信息是完全未知或仅部分已知的。在本文中,我们介绍了三种方法来确定服务区的大小,每一个假设一个不同的知识水平,关于相邻节点。我们进行了广泛的模拟实验,以评估这三种方法的性能,在覆盖率,服务区重叠特性,能量消耗,无线网络资源的利用效率。我们确认这三种方法的知识水平和性能之间的权衡关系。关键词-WiMAX; IEEE 802.16j;中继网络;服务区;能耗;
In wireless relay networks based on IEEE 802.16j, each relay node has its own service area that provides wireless Internet access service to the client terminal. The performance of such networks is heavily affected by how each relay node determines its service area size. In order to determine the service area size for each relay node, it is important to use the location information of other neighboring nodes and their service area sizes. However, in general, such information is completely unknown or only partially known. In the present paper, we introduce three methods to determine the service area size, each of which assumes a different level of the knowledge regarding neighboring nodes. We conduct extensive simulation experiments to evaluate the performance of these three methods in terms of coverage ratio, service area overlap characteristics, energy consumption, and utilization efficiency of wireless network resources. We confirm the trade-off relationships between the knowledge level and performance for these three methods. Keywords-WiMAX; IEEE 802.16j; relay networks; service area; energy consumption;