A Novel Node Design Based on Smart Antenna in Ad-hoc Network

Li-min Peng, Zhenhua Liu
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Abstract

In this paper, a novel node design based on smart antenna is investigated. Normally, the ad-hoc consists of many nodes, in which there are source nodes (SNs), destination nodes (DNs) and relay nodes (RNs). To improve the performance of ad-hoc network, smart antenna is introduced to increase the relay links in transmission. In traditional node design, the nodes would use analog beamforming (ABF)to form multi beams to transmit services. But there are three disadvantages in traditional node design, one is the high cost of beams, second is the limitation in beam number, and third is the high service loss probability. In our proposed novel node design, we use digital beamforming (DBF) method to reduce the beam costs. We combine DBF with overlay/underlay mode and introduce overlay/underlay beams to increase the beam number. Also, we take differentiated treatment to different services and transmit different services in proper overlay/underlay beams. Using this novel node design, the ad-hoc network could get more relay links and have low service loss probability, and that leads to more service capacity of ad-hoc network, while the network cost is low. Simulation results show that our proposed novel node design has a better performance than the traditional node design.
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Ad-hoc网络中基于智能天线的节点设计
本文研究了一种基于智能天线的节点设计方法。通常情况下,ad-hoc由多个节点组成,其中有源节点(SNs)、目的节点(DNs)和中继节点(RNs)。为了提高自组网的性能,引入了智能天线来增加传输中的中继链路。在传统的节点设计中,节点采用模拟波束形成(ABF)形成多波束来传输业务。但传统节点设计存在三个缺点,一是波束成本高,二是波束数量有限,三是业务损失概率高。在我们提出的新型节点设计中,我们使用数字波束形成(DBF)方法来降低波束成本。我们将DBF与叠加/衬底模式结合,引入叠加/衬底波束来增加波束数。此外,我们对不同的业务采取区别对待,并在适当的覆盖/底层梁中传输不同的业务。采用这种新颖的节点设计,使ad-hoc网络可以获得更多的中继链路,业务损失概率低,从而提高了ad-hoc网络的业务容量,同时降低了网络成本。仿真结果表明,本文提出的节点设计比传统的节点设计具有更好的性能。
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