Improved strategy of time-frequency opportunistic spectral usage for multi-rate wireless systems

Yubo Wang, Chenggui Wang, Chao Li, Ducheng Wu
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Abstract

In this paper, we present an improved strategy of channel probing and transmission scheduling in a multi-rate wireless system. We consider a fixed data time model, where time is slotted and channel states do not change within one slot. In a multichannel wireless system, a transmitter can opportunistically use channels with high-quality conditions. In order to make better decisions and find out the channel with the maximum transmission rate, the transmitter should probe individual channels by sending control packets, which will consume time and energy, thus reduce effective time for actual data transmission. In fact, the coherence time of the channel may be much larger than the duration of one slot. We can send multiple back-to-back packets if the channel are always in good conditions. Leveraging the absorbing Markov chain model, we propose a strategy for opportunistic spectral usage, in which both time and frequency domain process are taken into account.
多速率无线系统时频机会频谱利用改进策略
本文提出了一种改进的多速率无线系统的信道探测和传输调度策略。我们考虑一个固定的数据时间模型,其中时间是分槽的,信道状态在一个槽内不会改变。在多信道无线系统中,发射机可以偶然地使用具有高质量条件的信道。为了做出更好的决策,找出传输速率最大的信道,发射机需要通过发送控制包来探测各个信道,这会消耗时间和能量,从而减少实际数据传输的有效时间。实际上,信道的相干时间可能比一个时隙的持续时间大得多。如果信道一直处于良好状态,我们可以发送多个背靠背数据包。利用吸收马尔可夫链模型,我们提出了一种同时考虑时域和频域过程的机会性频谱利用策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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