Truthful Least-Priced-Path Routing in Opportunistic Spectrum Access Networks

Tao Shu, M. Krunz
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引用次数: 19

Abstract

We study the problem of finding the least-priced path (LPP) between a source and a destination in opportunistic spectrum access (OSA) networks. This problem is motivated by economic considerations, whereby spectrum opportunities are sold/leased to secondary radios (SRs). This incurs a communication cost, e.g., for traffic relaying. As the beneficiary of these services, the end user must compensate the service-providing SRs for their spectrum cost. To give an incentive (i.e., profit) for SRs to report their true cost, typically the payment to a SR should be higher than the actual cost. However, from an end user's perspective, unnecessary overpayment should be avoided. So we are interested in the optimal route selection and payment determination mechanism that minimizes the price tag of the selected route and at the same time guarantees truthful cost reports from SRs. This setup is in contrast to the conventional truthful least-cost path (LCP) problem, where the interest is to find the minimum-cost route. The LPP problem is investigated with and without capacity constraints at individual SRs. For both cases, our algorithmic solutions can be executed in polynomial time. The effectiveness of our algorithms in terms of price saving is verified through extensive simulations.
机会频谱接入网中的真实最小价格路径路由
研究了机会频谱接入(OSA)网络中源端和目标端之间的最低价格路径(LPP)问题。这个问题是由经济考虑引起的,因此频谱机会被出售/租赁给二级无线电(SRs)。这就产生了通信成本,例如流量中继。作为这些业务的受益者,终端用户必须补偿提供业务的sr的频谱成本。为了激励SR报告其真实成本(即利润),通常支付给SR的费用应该高于实际成本。然而,从最终用户的角度来看,应该避免不必要的多付。因此,我们对最优路线选择和支付决定机制感兴趣,该机制可以使所选路线的价格标签最小化,同时保证sr的真实成本报告。这种设置与传统的真实最小代价路径(LCP)问题相反,LCP问题的目的是找到最小代价路径。研究了在单个srr上有和没有容量约束的LPP问题。对于这两种情况,我们的算法解决方案可以在多项式时间内执行。通过大量的仿真验证了我们的算法在节省价格方面的有效性。
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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