Satellite communications are characterized by long delays, packet losses, and, sometimes intermittent connectivity and link disruptions. The TCP/IP stack is ineffective against these impairments and even dedicated solutions, such as Performance Enhancing Proxies (PEPs), can hardly tackle the most challenging environments, and create compatibility issues with current security protocols. A possible solution arises from the Delay- and Disruption-Tolerant Networking (DTN) architecture, which specifies an overlay protocol, called Bundle Protocol (BP) on top of either transport protocols (TCP, UDP…), or of lower layer protocols (Bluetooth, Ethernet…). The DTN architecture provides long-term information storage on intermediate nodes, suitable fo...
We describe the first use from space of the Bundle Protocol for Delay-Tolerant Networking (DTN) and ...
Although often not explicitly stated, the existing Internet model is based on a number of assumption...
Fixed GEO satellite communications are impaired by long RTTs and the possible presence of packet los...
Satellite communications are characterized by long delays, packet losses, and, sometimes intermitten...
Satellite communications are characterized by long delays, packet losses, and sometimes intermittent...
Delay-/Disruption-Tolerant Networking represents an innovative way to cope with satellite communicat...
Over the past few years, networks which are subject to long delays, high disruptions, asymmetric dat...
Satellite communications are an interesting and promising application field for Delay/Disruption Tol...
Satellite communications pose serious challenges to transport layer performance, mainly because of l...
“Challenged networks” often violate the TCP design key assumption of continuous path availability fr...
Designing efficient transmission mechanisms for advanced satellite networks is a demanding task, req...
The disaster monitoring constellation (DMC), constructed by Surrey Satellite Technology Ltd (SSTL), ...
Delay-/Disruption- Tolerant Networking (DTN) was first conceived to cope with the impairments of Int...
We describe the first use from space of the Bundle Protocol for Delay-Tolerant Networking (DTN) and ...
Although often not explicitly stated, the existing Internet model is based on a number of assumption...
Fixed GEO satellite communications are impaired by long RTTs and the possible presence of packet los...
Satellite communications are characterized by long delays, packet losses, and, sometimes intermitten...
Satellite communications are characterized by long delays, packet losses, and sometimes intermittent...
Delay-/Disruption-Tolerant Networking represents an innovative way to cope with satellite communicat...
Over the past few years, networks which are subject to long delays, high disruptions, asymmetric dat...
Satellite communications are an interesting and promising application field for Delay/Disruption Tol...
Satellite communications pose serious challenges to transport layer performance, mainly because of l...
“Challenged networks” often violate the TCP design key assumption of continuous path availability fr...
Designing efficient transmission mechanisms for advanced satellite networks is a demanding task, req...
The disaster monitoring constellation (DMC), constructed by Surrey Satellite Technology Ltd (SSTL), ...
Delay-/Disruption- Tolerant Networking (DTN) was first conceived to cope with the impairments of Int...
We describe the first use from space of the Bundle Protocol for Delay-Tolerant Networking (DTN) and ...
Although often not explicitly stated, the existing Internet model is based on a number of assumption...
Fixed GEO satellite communications are impaired by long RTTs and the possible presence of packet los...