Title :
Radio Resource Management for QoS Guarantees in Cyber-Physical Systems
Author :
Lien, Shao-Yu ; Cheng, Shin-Ming ; Shih, Sung-Yin ; Chen, Kwang-Cheng
Author_Institution :
Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
Abstract :
The recent deployment of Cyber-Physical Systems (CPS) has emerged as a promising approach to provide extensive interaction between computational and physical worlds. For a large-scale distributed CPS comprising of numerous machines, sharing radio resource efficiently with the existing wireless networks while maintaining sufficient quality of service (QoS) for machine-to-machine (M2M) communications becomes an essential and challenging requirement. By clustering CPS machines as a swarm with the cluster head managing radio resources inside the swarm, spectrum sharing among numerous machines can be achieved in a distributed and scalable fashion. Specifically, we apply the recent innovation, cognitive radio, and a special mode in cognitive radio, interweave coexistence, to leverage machines to collect radio resource usage information for autonomous and interference-free radio resource management in the CPS. To reduce the communication overheads of channel sensing feed backing from machines, we apply compressive sensing to construct a spectrum map indicating the radio resource availability on any given locations within the CPS coverage. Such spectrum map resource management (SMRM) only utilizes a small portion of machines to perform channel sensing but enables distributed cluster-based spectrum sharing in an efficient way. Through the concept of effective capacity, the SMRM controls available resources to guarantee the QoS for communications of CPS. By evaluating the performance of the proposed SMRM in the most promising realization of CPS based on LTE-Advanced machine-type communications coexisting with LTE-Advanced Macrocells to utilize identical spectrum, the simulation results show effective QoS guarantees of CPS by SMRM in the realistic environments.
Keywords :
Long Term Evolution; cognitive radio; mobility management (mobile radio); quality of service; LTE-Advanced machine-type communications; LTE-Advanced macrocells; M2M communications; QoS guarantees; SMRM controls; cluster head managing radio resources; clustering CPS machines; cognitive radio; computational worlds; cyber-physical systems; distributed cluster-based spectrum sharing; innovation; interference-free radio resource management; large-scale distributed CPS; machine-to-machine communications; physical worlds; quality of service; radio resource sharing; spectrum map resource management; spectrum sharing; wireless networks; Compressed sensing; Delay; Interference; Macrocell networks; Quality of service; Resource management; Sensors; Compressed sensing; Cyber-physical systems (CPS); Delay; Interference; Macrocell networks; Quality of service; Resource management; Sensors; cognitive radio (CR); compressive sensing; effective capacity; machine-to-machine (M2M) communication; quality of service (QoS); radio resource management.; spectrum map;
Journal_Title :
Parallel and Distributed Systems, IEEE Transactions on
DOI :
10.1109/TPDS.2012.151