6LoWPAN defines how to carry IPv6 packets over IEEE 802.15.4 low power wireless or sensor networks. Limited bandwidth, memory and energy resources require a careful application of IPv6 in a LoWPAN. The IEEE 802.15.4 standard defines a maximum frame size of 127 bytes that decreases to 102 bytes considering the header overhead. A further reduction is due to the security, network and transport protocols header overhead that, in case of IPv6 and UDP, leave only 33 bytes for application data. A compression algorithm is necessary in order to reduce the overhead and save space in data payload. This paper describes and compares the proposed IPv6 header compression mechanisms for 6LoWPAN environments
The Internet of Things is a new paradigm where smart embedded devices and systems are connected to t...
International audienceLPWANs have recently emerged as a promising solution for enabling industrial I...
Internet Engineering Task Force (IETF) Request for Comments (RFC) 8138This specification introduces ...
6LoWPAN defines how to carry IPv6 packets over IEEE 802.15.4 low power wireless or sensor networks. ...
6LoWPAN defines how to carry Ipv6 packet over IEEE 802.15.4 low power wireless or sensor networks. L...
Wireless Embedded Internet aims for efficient connectivity for embedded devices to the internet. Thi...
In the world of Internet of Things (IoT) and wireless embedded internet, the IPv6 over Low-Power Wir...
compression mechanisms to adapt to their limited bandwidth, memory and energy constraints. This pape...
International audienceThis paper presents an experimental study of TCPHC, a novel algorithm for comp...
International audienceThe rapid growth of IoT applications usage enables the Internet connectivity o...
Wireless is becoming a popular way to connect mobile computers to the Internet and other networks. T...
Wireless is becoming a popular way to connect mobile computers to the Internet and other networks. T...
Internet Protocol version 6 (IPv6) over Low-power Personal Area Network (6LoWPAN) is proposed by the...
RFC 6282 defines header compression in 6LoWPAN packets (where "6LoWPAN " refers to "I...
Summarization: Low-power and lossy networks (LLNs) are continually gaining popularity, due to their ...
The Internet of Things is a new paradigm where smart embedded devices and systems are connected to t...
International audienceLPWANs have recently emerged as a promising solution for enabling industrial I...
Internet Engineering Task Force (IETF) Request for Comments (RFC) 8138This specification introduces ...
6LoWPAN defines how to carry IPv6 packets over IEEE 802.15.4 low power wireless or sensor networks. ...
6LoWPAN defines how to carry Ipv6 packet over IEEE 802.15.4 low power wireless or sensor networks. L...
Wireless Embedded Internet aims for efficient connectivity for embedded devices to the internet. Thi...
In the world of Internet of Things (IoT) and wireless embedded internet, the IPv6 over Low-Power Wir...
compression mechanisms to adapt to their limited bandwidth, memory and energy constraints. This pape...
International audienceThis paper presents an experimental study of TCPHC, a novel algorithm for comp...
International audienceThe rapid growth of IoT applications usage enables the Internet connectivity o...
Wireless is becoming a popular way to connect mobile computers to the Internet and other networks. T...
Wireless is becoming a popular way to connect mobile computers to the Internet and other networks. T...
Internet Protocol version 6 (IPv6) over Low-power Personal Area Network (6LoWPAN) is proposed by the...
RFC 6282 defines header compression in 6LoWPAN packets (where "6LoWPAN " refers to "I...
Summarization: Low-power and lossy networks (LLNs) are continually gaining popularity, due to their ...
The Internet of Things is a new paradigm where smart embedded devices and systems are connected to t...
International audienceLPWANs have recently emerged as a promising solution for enabling industrial I...
Internet Engineering Task Force (IETF) Request for Comments (RFC) 8138This specification introduces ...