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WiSP: A protocol for overcoming MAC overheads using packet size dependent channel widths

机译:WiSP:一种协议协议,用于使用与数据包大小有关的通道宽度来克服MAC开销

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In this paper, we propose to reduce the effect of rate-independent MAC overheads in random access protocols by partitioning the transmission channel spectrum into a narrow channel and a wide channel. The narrow channel is used for transmitting the short packets (approximately 100 bytes long) and the wide channel is used for transmitting the longer packets. We intend to use multiple radios, one each for the different channel partitions. Narrow width channels have a reduced capacity, which lowers the maximum transmission rate achievable on these channels. As a result, the channel wastage due to the rate-independent MAC overheads can be reduced. We propose a protocol called WiSP (channel Width Selection based on Packet size) to estimate the appropriate channel widths depending on the relative traffic load involving short and long packets in the network. We evaluate our protocol using extensive simulations and demonstrate its effectiveness in achieving higher throughputs. We propose our algorithm to complement the frame aggregation (an existing approach that aggregates multiple packets to be sent in a single transmit opportunity) technique. We show that there are scenarios during which the frame aggregation can perform poorly, and show that our proposed algorithm can provide a good performance even in those situations when used along with frame aggregation.
机译:在本文中,我们建议通过将传输信道频谱划分为窄信道和宽信道来减少随机访问协议中速率无关的MAC开销的影响。窄信道用于传输短数据包(大约100个字节长),而宽信道用于传输较长的数据包。我们打算使用多个无线电,每个无线电用于不同的信道分区。窄宽度的信道的容量减小,这降低了这些信道上可达到的最大传输速率。结果,可以减少由于与速率无关的MAC开销而导致的信道浪费。我们提出了一种称为WiSP(基于数据包大小的通道宽度选择)的协议,以根据涉及网络中短数据包和长数据包的相对流量负载来估计适当的通道宽度。我们使用广泛的仿真评估我们的协议,并证明其在实现更高吞吐量方面的有效性。我们提出了一种算法,以补充帧聚合(一种在单个传输机会中聚合要发送的多个数据包的现有方法)技术。我们证明了在某些情况下帧聚合可能会表现不佳,并且表明即使在与帧聚合一起使用的情况下,我们提出的算法也可以提供良好的性能。

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