Throughput enhancement in wireless ad hoc networks with spatial channels a MAC layer perspective

Dhananjay Lal, Rahul Gupta, D. Agrawal
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引用次数: 8

Abstract

The use of directional antennas in cellular wireless networks offers many advantages such as range extension, reduced interference for signal detection and improved throughput. MAC protocols using directional antennas for wireless ad hoc networks that are based on and similar to IEEE 802.11 type WLANs have been proposed. We explore 'multiplexing in space' with directional antennas to enhance the total throughput at a bottleneck node in the network. We develop an access protocol for antenna systems that can transmit to multiple destinations simultaneously (and possibly receive from multiple sources as well). Some issues enabling multiple access in space for ad hoc network nodes are discussed. Our simulation results show that the current 802.11 MAC scheme using omnidirectional antennas for channel access fairs very poorly as the bandwidth demand increases. In contrast, we see substantial improvement when spatial multiplexing is employed.
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从MAC层的角度看空间信道无线自组织网络的吞吐量增强
在蜂窝无线网络中使用定向天线具有许多优点,如扩展范围、减少信号检测干扰和提高吞吐量。已经提出了基于和类似于IEEE 802.11类型wlan的无线自组织网络使用定向天线的MAC协议。我们探索了定向天线的“空间多路复用”,以提高网络瓶颈节点的总吞吐量。我们为天线系统开发了一种访问协议,可以同时发送到多个目的地(也可能从多个源接收)。讨论了实现自组织网络节点空间多址访问的一些问题。仿真结果表明,随着带宽需求的增加,目前采用全向天线进行信道接入的802.11 MAC方案的性能非常差。相比之下,当使用空间复用时,我们看到了实质性的改进。
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