Abstract:
This paper investigates the sensing order problem for multi-user and multi-channel cognitive radio networks. While most of the literature studies focus on the sensing ord...Show MoreMetadata
Abstract:
This paper investigates the sensing order problem for multi-user and multi-channel cognitive radio networks. While most of the literature studies focus on the sensing order for a single user, we consider the scenario in which multiple secondary users sequentially sense and access the channel according to their individual sensing orders. In multi-user case, channel access collisions among secondary users will lead to performance degradation. We propose a novel metric that comprehensively consider the channel availability, transmission rate and collision probability, and exploit an efficient dynamic programming algorithm to establish the sensing order based on the metric to improve the sensing efficiency and transmission throughput. Simulation results demonstrate that our algorithm can not only effectively reduce the collisions among secondary users, but also can achieve higher network throughput than other schemes studied. Furthermore, we also discuss how the network environment impacts the performances of different sensing orders.
Date of Conference: 16-19 October 2012
Date Added to IEEE Xplore: 14 March 2013
ISBN Information:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Cognitive Networks ,
- Transmission Rate ,
- Dynamic Programming ,
- Multiple Users ,
- Network Throughput ,
- Single User ,
- Collision Probability ,
- Dynamic Programming Algorithm ,
- Secondary Users ,
- Channel Availability ,
- Channel State ,
- Optimal Selection ,
- Neighboring Nodes ,
- Stopping Rule ,
- Achievable Rate ,
- Potential Channels ,
- Channel Network ,
- Decision Strategy ,
- Transmission Phase ,
- Rate Of Channel ,
- Maximum Achievable Rate ,
- Negotiation Phase ,
- User Pairing ,
- Probability Of Channels ,
- Channel Index ,
- Common Channel ,
- Maximum Reward ,
- Actual Order ,
- Dynamic Search ,
- OFF Periods
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Cognitive Networks ,
- Transmission Rate ,
- Dynamic Programming ,
- Multiple Users ,
- Network Throughput ,
- Single User ,
- Collision Probability ,
- Dynamic Programming Algorithm ,
- Secondary Users ,
- Channel Availability ,
- Channel State ,
- Optimal Selection ,
- Neighboring Nodes ,
- Stopping Rule ,
- Achievable Rate ,
- Potential Channels ,
- Channel Network ,
- Decision Strategy ,
- Transmission Phase ,
- Rate Of Channel ,
- Maximum Achievable Rate ,
- Negotiation Phase ,
- User Pairing ,
- Probability Of Channels ,
- Channel Index ,
- Common Channel ,
- Maximum Reward ,
- Actual Order ,
- Dynamic Search ,
- OFF Periods
- Author Keywords