Various applications of wireless Machine-to-Machine (M2M) communications have rekindled the research interest in random access protocols, suitable to support a large number of connected devices. Slotted ALOHA and its derivatives represent a simple solution for distributed random access in wireless networks. Recently, a framed version of slotted ALOHA gained renewed interest due to the incorporation of successive interference cancellation (SIC) in the scheme, which resulted in substantially higher throughputs. Based on similar principles and inspired by the rateless coding paradigm, a frameless approach for distributed random access in the slotted ALOHA framework is described in this paper. The proposed approach shares an operational analogy...
In this paper, we develop a new class of medium access control protocol, which allows each user to t...
Providing ultra-reliable, low-latency and massive access is a technical challenge that demands a red...
International audienceMotivated by scenario requirements for 5G cellular networks, we study one of t...
We propose a novel distributed random access scheme for wireless networks based on slotted ALOHA, mo...
With an explosive development of the Internet-of-Things (IoT), the number of devices or machines (ca...
In this paper, a random access scheme is introduced, which relies on the combination of packet erasu...
In this paper, a random access scheme is introduced, which relies on the combination of packet erasu...
The analogies between successive interference cancellation (SIC) in slotted ALOHA framework and iter...
One of the novelties brought by 5G is that wireless system design has increasingly turned its focus ...
Random access represents possibly the simplest and yet one of the best known approaches for sharing...
The wireless landscape is shifting to include more networks with massive numbers of unattended devic...
The wireless landscape is shifting to include more networks with massive numbers of unattended devic...
Motivated by the analogy between successive interference cancellation and iterative belief-propagati...
International audienceCoded Slotted ALOHA (CSA) is a random access scheme based on the application o...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Department of Electrical an...
In this paper, we develop a new class of medium access control protocol, which allows each user to t...
Providing ultra-reliable, low-latency and massive access is a technical challenge that demands a red...
International audienceMotivated by scenario requirements for 5G cellular networks, we study one of t...
We propose a novel distributed random access scheme for wireless networks based on slotted ALOHA, mo...
With an explosive development of the Internet-of-Things (IoT), the number of devices or machines (ca...
In this paper, a random access scheme is introduced, which relies on the combination of packet erasu...
In this paper, a random access scheme is introduced, which relies on the combination of packet erasu...
The analogies between successive interference cancellation (SIC) in slotted ALOHA framework and iter...
One of the novelties brought by 5G is that wireless system design has increasingly turned its focus ...
Random access represents possibly the simplest and yet one of the best known approaches for sharing...
The wireless landscape is shifting to include more networks with massive numbers of unattended devic...
The wireless landscape is shifting to include more networks with massive numbers of unattended devic...
Motivated by the analogy between successive interference cancellation and iterative belief-propagati...
International audienceCoded Slotted ALOHA (CSA) is a random access scheme based on the application o...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Department of Electrical an...
In this paper, we develop a new class of medium access control protocol, which allows each user to t...
Providing ultra-reliable, low-latency and massive access is a technical challenge that demands a red...
International audienceMotivated by scenario requirements for 5G cellular networks, we study one of t...