In machine-to-machine (M2M) networks, a key challenge is to overcome the overload problem caused by random access requests from massive machine-type communication (MTC) devices. When differentiated services coexist, such as delay-sensitive and delay-tolerant services, the problem becomes more complicated and challenging. This is because delay-sensitive services often use more aggressive policies, and thus, delay-tolerant services get much fewer chances to access the network. To conquer the problem, we propose an efficient mechanism for massive access control over differentiated M2M services, including delay-sensitive and delay-tolerant services. Specifically, based on the traffic loads of the two types of services, the proposed scheme dynam...
In a long term evolution‐advanced (LTE‐A) system, the traffic overload of machine type communication...
With the ever-increasing technological evolution, the current and future generation communication sy...
The growth of machine-to-machine (M2M) type interconnections in future mobile networks, such as 5G, ...
In machine-to-machine (M2M) networks, a key challenge is to overcome the overload problem caused by ...
Supporting simultaneous access of machine-type devices is a critical challenge in machine-to-machine...
International audienceMachine to Machine, (M2M) is an emerging technology in communication system an...
Enabling machine-to-machine (M2M) communications on cellular networks will provide a promising futur...
Internet-of-Things (IoT), which aims to integrate machines, industrial process, and people together,...
International audienceThe forecast dramatic growth, of the number of Machine-to-Machine (M2M) commun...
Machine-to-machine (M2M) wireless systems aim to provide ubiquitous connectivity between machine typ...
Machine-type communication (MTC) networks face the challenges of massive access and diverse quality ...
Abstract—LTE random access procedure performs satisfac-torily in case of asynchronous, uncorrelated ...
The expected tremendous growth of machine-to-machine (M2M) devices will require solutions to improve...
5th International Symposium on Electrical and Electronics Engineering (ISEEE) -- OCT 20-22, 2017 -- ...
The high risk of random access collisions leads to huge challenge for the deployment massive Machine...
In a long term evolution‐advanced (LTE‐A) system, the traffic overload of machine type communication...
With the ever-increasing technological evolution, the current and future generation communication sy...
The growth of machine-to-machine (M2M) type interconnections in future mobile networks, such as 5G, ...
In machine-to-machine (M2M) networks, a key challenge is to overcome the overload problem caused by ...
Supporting simultaneous access of machine-type devices is a critical challenge in machine-to-machine...
International audienceMachine to Machine, (M2M) is an emerging technology in communication system an...
Enabling machine-to-machine (M2M) communications on cellular networks will provide a promising futur...
Internet-of-Things (IoT), which aims to integrate machines, industrial process, and people together,...
International audienceThe forecast dramatic growth, of the number of Machine-to-Machine (M2M) commun...
Machine-to-machine (M2M) wireless systems aim to provide ubiquitous connectivity between machine typ...
Machine-type communication (MTC) networks face the challenges of massive access and diverse quality ...
Abstract—LTE random access procedure performs satisfac-torily in case of asynchronous, uncorrelated ...
The expected tremendous growth of machine-to-machine (M2M) devices will require solutions to improve...
5th International Symposium on Electrical and Electronics Engineering (ISEEE) -- OCT 20-22, 2017 -- ...
The high risk of random access collisions leads to huge challenge for the deployment massive Machine...
In a long term evolution‐advanced (LTE‐A) system, the traffic overload of machine type communication...
With the ever-increasing technological evolution, the current and future generation communication sy...
The growth of machine-to-machine (M2M) type interconnections in future mobile networks, such as 5G, ...