Time-Optimized and Truthful Dynamic Spectrum Rental Mechanism
Shabnam Sodagari, Alireza Attar, Victor C. M. Leung, Sven G. Bilén · 2010
The process of admitting secondary spectrum users via spectrum auctions provides a convenient framework for the primary license holder to control utilization of its idle resources. While most existing solutions in the literature are static, offline auction mechanisms, the dynamics of arrival and departure of secondary bidders, as well as the uncertainty of availability of a given sub-channel for leasing in future, calls for novel auction strategies. In this paper we propose a dynamic, online auction design that addresses two key issues. First, we determine optimal auction instances so as to maximize the profitability of this auction model. Further, by utilizing critical pricing strategy, the incentive of bidding secondaries to misreport their price, time of arrival, and departure is alleviated and hence a truthful, profitable auction results. Our numerical results verify the profitability of this dynamic auction as compared with static Vickrey-Clarke-Groves auctions with fixed auction time.