The Experts below are selected from a list of 3651 Experts worldwide ranked by ideXlab platform
Kilian Weniger - One of the best experts on this subject based on the ideXlab platform.
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mobile node interfaces with multiple simultaneous connection to domestic and foreign network
2006Co-Authors: Jens Bachmann, Kilian WenigerAbstract:A method for controlling sending packets destined to a mobile node, wherein the mobile node is attached to a home Link, a home agent in the home Link is configured to intercept packets destined to the home Address of the mobile node, and at least one router other than the home agent is on the home Link, the method including the following steps: receiving (501) the mobile node a request to receive and forward packets Addressed to the home Address of the mobile node, wherein the mobile node includes an Address of Layer Link of the mobile node in the request; announcing (502) on behalf of the mobile node in the home Link, the Link Layer Address of the home agent as a destination Address for the home Address of the mobile node; stopping, by the mobile node, operation ad in the home Link the Link Layer Address of the mobile node as the destination Address for the home Address of mobile node; receiving (503) the at least one router in response to the announcement of the Link Layer Address of the home agent, packets destined to the home Address of the mobile node with the Link Layer Address of the home agent; and send (504) packets Addressed to the home Address of mobile node to the mobile node using the Link Layer Address of the mobile node.
Jens Bachmann - One of the best experts on this subject based on the ideXlab platform.
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mobile node interfaces with multiple simultaneous connection to domestic and foreign network
2006Co-Authors: Jens Bachmann, Kilian WenigerAbstract:A method for controlling sending packets destined to a mobile node, wherein the mobile node is attached to a home Link, a home agent in the home Link is configured to intercept packets destined to the home Address of the mobile node, and at least one router other than the home agent is on the home Link, the method including the following steps: receiving (501) the mobile node a request to receive and forward packets Addressed to the home Address of the mobile node, wherein the mobile node includes an Address of Layer Link of the mobile node in the request; announcing (502) on behalf of the mobile node in the home Link, the Link Layer Address of the home agent as a destination Address for the home Address of the mobile node; stopping, by the mobile node, operation ad in the home Link the Link Layer Address of the mobile node as the destination Address for the home Address of mobile node; receiving (503) the at least one router in response to the announcement of the Link Layer Address of the home agent, packets destined to the home Address of the mobile node with the Link Layer Address of the home agent; and send (504) packets Addressed to the home Address of mobile node to the mobile node using the Link Layer Address of the mobile node.
イェンス バッフマン - One of the best experts on this subject based on the ideXlab platform.
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multiple interfaces mobile node with a simultaneous home and foreign network connection
2006Co-Authors: キリアン ウェニゲール, イェンス バッフマンAbstract:First node, the second node receives the network Layer Address of the packet at the second node receives a request for requesting to transfer, it by the same network-Layer Address, the first node and associated with the second node. The first node and the second node has a different Link-Layer Addresses. First node, to a node connected to a packet-switched network, as a destination Address for the network Layer Address of the second node advertises a Link Layer Address of the first node. First node, in response to the advertisement, receives a packet of the network Layer Address of the second node having a Link Layer Address of the first node. First node, using the Link Layer Address of the second node, and transfers the network Layer Address of the packet at the second node to the second node. .TECHNICAL
Fernando Boavida - One of the best experts on this subject based on the ideXlab platform.
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6glad ipv6 global to Link Layer Address translation for 6lowpan overhead reducing
Next Generation Internet, 2008Co-Authors: A Zimmermann, Sa J Silva, J B M Sobral, Fernando BoavidaAbstract:The next generation of wireless sensor networks will integrate communication systems beyond the third generation paradigm. As a result of this integration, the new communication systems will be fed by the sensor networks with information gathered from the environment, achieving context awareness. To reach the necessary end-to-end connectivity between all-IP networks and sensor networks, the IETF 6LoWPAN working group has designed an IPv6 adaptation Layer for low power devices. This protocol stack provides IPv6 interoperability to the sensor networks, thus avoiding as much overhead as possible. This paper analyses and evaluates the associated IP communication overhead in each possible 6LoWPAN scenario, from intra to inter network communication. We conclude that, even the 6LoWPAN offering a light weight IP solution for Link local sensor network communication, it has a relatively high overhead when data flows between different networks. In order to avoid the communication overhead when global IPv6 Addressing is necessary we propose a new solution based on a 6LoWPAN global-to-Link-Layer Address translation.
キリアン ウェニゲール - One of the best experts on this subject based on the ideXlab platform.
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multiple interfaces mobile node with a simultaneous home and foreign network connection
2006Co-Authors: キリアン ウェニゲール, イェンス バッフマンAbstract:First node, the second node receives the network Layer Address of the packet at the second node receives a request for requesting to transfer, it by the same network-Layer Address, the first node and associated with the second node. The first node and the second node has a different Link-Layer Addresses. First node, to a node connected to a packet-switched network, as a destination Address for the network Layer Address of the second node advertises a Link Layer Address of the first node. First node, in response to the advertisement, receives a packet of the network Layer Address of the second node having a Link Layer Address of the first node. First node, using the Link Layer Address of the second node, and transfers the network Layer Address of the packet at the second node to the second node. .TECHNICAL