Neighbors-Aware Proportional Fair scheduling for future wireless networks with mixed MAC protocols

被引:0
作者
Charles Jumaa Katila
Chiara Buratti
Melchiorre Danilo Abrignani
Roberto Verdone
机构
[1] University of Bologna,Electrical, Electronics and Information Engineering Department
来源
EURASIP Journal on Wireless Communications and Networking | / 2017卷
关键词
Proportional Fair; Neighbors-Aware; Scheduling; Unslotted CSMA; Packet delivery rate; Fairness; Packet length adaptation;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, we consider a beyond-5G scenario, where two types of users, denoted as scheduled and uncoordinated nodes, coexist on the same set of radio resources for sending data to a base station. Scheduled nodes rely solely on a centralized scheduler within the base station for the assignment of resources, while uncoordinated nodes use an unslotted Carrier Sense Multiple Access (CSMA) protocol for channel access. We propose and evaluate through simulations: (a) a novel centralized resource scheduling algorithm, called Neighbors-Aware Proportional Fair (N-PF) and (b) a novel packet length adaptation algorithm, called Channel-Aware (CA) Packet Length Adaptation algorithm for the scheduled nodes. The N-PF algorithm considers the uplink channel state conditions and the number of uncoordinated nodes neighboring each scheduled node in the aggregate scheduling metric, in order to maximize packet transmission success probability. The CA algorithm provides an additional degree of freedom for improving the performance, thanks to the fact that scheduled nodes with lower number of hidden terminals, i.e., having higher packet capture probability, are assigned longer packet transmission opportunities. We consider two benchmark schemes: Proportional Fair (PF) algorithm, as a resource scheduling algorithm, and a discrete uniform distribution (DUD) scheme for packet lengths distribution. Simulation results show that the proposed schemes can result in significant gain in terms of network goodput, without compromising fairness, with respect to two benchmark solutions taken from the literature.
引用
收藏
相关论文
共 48 条
[1]  
Osseiran A(2014)Scenarios for 5G mobile and wireless communications: the vision of the METIS project IEEE Commun. Mag 52 26-35
[2]  
Boccardi F(2014)Cognitive internet of things: a new paradigm beyond connection IEEE Internet Things J 1 129-143
[3]  
Braun V(1975)Aloha packet system with and without slots and capture SIGCOMM Comput. Commun. Rev 5 28-42
[4]  
Kusume K(2011)Coexistence challenges for heterogeneous cognitive wireless networks in tv white spaces IEEE Wirel. Commun 18 22-31
[5]  
Marsch P(2016)Using LTE in unlicensed bands: potential benefits and coexistence issues IEEE Commun. Mag 54 116-123
[6]  
Maternia M(1999)Cognitive radio: making software radios more personal IEEE Pers. Commun 6 13-18
[7]  
Queseth O(2013)Scheduling in centralized cognitive radio networks for energy efficiency IEEE Trans. Veh. Technol 62 582-595
[8]  
Schellmann M(1982)Analysis of a hybrid access scheme for buffered users-probabilistic time division IEEE Trans. Softw. Eng SE-8 52-61
[9]  
Schotten H(2008)Z-MAC: a hybrid MAC for wireless sensor networks IEEE/ACM Trans. Netw 16 511-524
[10]  
Taoka H(2014)Design of a scalable hybrid MAC protocol for heterogeneous M2M networks IEEE Internet Things J 1 99-111