The network calculus is a powerful tool to analyze the performance of wireless sensor networks. But the original network calculus can only model the single-mode wireless sensor network. In this paper, we combine the original network calculus with the multimode model to analyze the maximum delay bound of the flow of interest in the multimode wireless sensor network. There are two combined methods A-MM and N-MM. The method A-MM models the whole network as a multimode component, and the method N-MM models each node as a multimode component. We prove that the maximum delay bound computed by the method A-MM is tighter than or equal to that computed by the method N-MM. Experiments show that our proposed methods can significantly decrease the anal...
In this extended abstract we present an analytical solution for the end-to-end delay bound for multi...
This paper addresses the problem of computing end-to-end delay bounds for a traffic flow traversing ...
In this paper we provide a performance analysis framework for wireless industrial networks by derivi...
The network calculus is a powerful tool to analyze the performance of wireless sensor networks. But ...
The network calculus is a powerful tool to analyze the performance of wireless sensor networks. But ...
Recently, wireless sensor network (WSN) has become a promising technologywith a wide range of applic...
A fundamental problem for the delay and backlog analysis across multi-hop paths in wireless networks...
Abstract Network Calculus has been proposed and customized as a framework for worst-case analysis in...
Today’s wireless sensor networks (WSN) focus on energy-efficiency as the main metric to optimize. Ho...
In this article, we survey the sensor network calculus (SensorNC), a framework continuously develope...
The talk presents a closed-form expression for the end-to-end delay bound in wireless multi-hop hete...
In many applications of sensor networks, it is essential to ensure that messages are transmitted to ...
With the rapid development of smart grid technologies, communication systems are further integrated ...
Abstract—Network calculus has proven as a valuable and versatile methodology for worst-case analysis...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)Network calculus (NC) is a set of...
In this extended abstract we present an analytical solution for the end-to-end delay bound for multi...
This paper addresses the problem of computing end-to-end delay bounds for a traffic flow traversing ...
In this paper we provide a performance analysis framework for wireless industrial networks by derivi...
The network calculus is a powerful tool to analyze the performance of wireless sensor networks. But ...
The network calculus is a powerful tool to analyze the performance of wireless sensor networks. But ...
Recently, wireless sensor network (WSN) has become a promising technologywith a wide range of applic...
A fundamental problem for the delay and backlog analysis across multi-hop paths in wireless networks...
Abstract Network Calculus has been proposed and customized as a framework for worst-case analysis in...
Today’s wireless sensor networks (WSN) focus on energy-efficiency as the main metric to optimize. Ho...
In this article, we survey the sensor network calculus (SensorNC), a framework continuously develope...
The talk presents a closed-form expression for the end-to-end delay bound in wireless multi-hop hete...
In many applications of sensor networks, it is essential to ensure that messages are transmitted to ...
With the rapid development of smart grid technologies, communication systems are further integrated ...
Abstract—Network calculus has proven as a valuable and versatile methodology for worst-case analysis...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)Network calculus (NC) is a set of...
In this extended abstract we present an analytical solution for the end-to-end delay bound for multi...
This paper addresses the problem of computing end-to-end delay bounds for a traffic flow traversing ...
In this paper we provide a performance analysis framework for wireless industrial networks by derivi...