A Novel Approach for Performance Analysis of Multi-Rate Relay Networks

B. Alkandari, K. Pahlavan
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引用次数: 1

Abstract

In a multi-rate data WLAN, the data rate is a function of the distance from the access point (AP). To extend the coverage of the AP to cover a target terminal outside the AP coverage area, relay nodes are deployed between the AP and the target terminal. Therefore, for a given relationship between the throughput and the distance, and a given distance between the access point and the target receiver, there is a minimum number of nodes that provides the maximum throughput to the target receiver. It is always desirable to optimize the deployment from various aspects. These aspects are application-dependent and they range from energy conservation in sensor networks to throughput and coverage maximization in data networks. This paper presents a novel approach to determine the optimal bounds for the Medium Access Control (MAC) throughput at the target receiver in a multi-hop multi-rate wireless data network. We use the principles of linear programming and a model for the physical layer (PHY) throughput-distance relationship to determine the optimal performance bounds for the MAC throughput of a target terminal as a function of distance from the AP and the number of hops. We determine the performance bounds for two scenarios. The first scenario assumes all network nodes are visible to each other. The second scenario assumes each node is only visible to it neighbors. Additionally, we determine the physical locations for the relays to reach the optimal MAC throughput for a target terminal located at a specific distance from the AP
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一种多速率中继网络性能分析的新方法
在多速率数据WLAN中,数据速率是与接入点(AP)距离的函数。为了将AP的覆盖范围扩展到AP覆盖区域外的目标终端,需要在AP和目标终端之间部署中继节点。因此,对于吞吐量与距离之间的给定关系,以及接入点与目标接收器之间的给定距离,存在向目标接收器提供最大吞吐量的最小节点数。从各个方面对部署进行优化总是可取的。这些方面依赖于应用,它们的范围从传感器网络的节能到数据网络的吞吐量和覆盖最大化。提出了一种确定多跳多速率无线数据网络中目标接收端介质访问控制(MAC)吞吐量最优边界的新方法。我们使用线性规划原理和物理层(PHY)吞吐量-距离关系模型来确定目标终端的MAC吞吐量的最佳性能界限,作为与AP的距离和跳数的函数。我们确定了两种场景的性能界限。第一个场景假设所有网络节点彼此可见。第二个场景假设每个节点只对它的邻居可见。此外,我们确定了中继的物理位置,以达到距离AP特定距离的目标终端的最佳MAC吞吐量
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