DDSA: A Sampling and Validation Based Spectrum Access Algorithm in Wireless Networks

Panlong Yang, Hai Wang, Guihai Chen
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Abstract

Spectrum access scheme is a fundamental component in building efficient wireless networks. Conventional methods such as proactive channel assignment is costly due to large amount of protocol overhead. Also, those algorithms suffer from its inability in dealing with channel dynamics. The opportunistic methods however, spend more time on probing, and suffer from the myopic decisions as well. We present a decision based dynamic spectrum access algorithm (DDSA), which is built upon the Markov decision process (MDP), and could adaptively handle the DSA process for higher throughput. We employ quiet probing and dynamic controlling mechanisms in DDSA, so as to achieve a reduced protocol overhead and improved adaptivity. Different from previous methods, the DDSA is a model driven method, and we use the modeling technique on the IEEE 802.11 DCF for virtual channel state probing. The modeling technique could help us improve the accuracy on channel state, and reduce protocol overhead. Using a heuristic and adaptive algorithm named `hindsight optimization', we solve the hardness in computing the MDP. Moreover, under the feasibility testing and scaling processes, the validated decision can be confidentially applied for a congestion-free DSA.
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一种基于采样和验证的无线网络频谱接入算法
频谱接入方案是构建高效无线网络的基本组成部分。传统的方法,如主动信道分配,由于大量的协议开销,是昂贵的。此外,这些算法在处理信道动态方面也存在缺陷。然而,机会主义方法花费了更多的时间在探索上,并且也遭受了短视的决定。提出了一种基于马尔可夫决策过程的动态频谱访问算法(DDSA),该算法可以自适应地处理DSA过程,从而获得更高的吞吐量。DDSA采用安静探测和动态控制机制,降低了协议开销,提高了自适应能力。与以往的方法不同,DDSA是一种模型驱动的方法,我们使用IEEE 802.11 DCF上的建模技术进行虚拟信道状态探测。该建模技术可以帮助我们提高信道状态的准确性,减少协议开销。采用一种启发式自适应算法“后见之明优化”,解决了MDP计算困难的问题。此外,在可行性测试和扩展过程中,验证的决策可以保密地应用于无拥塞的DSA。
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