The Experts below are selected from a list of 2535 Experts worldwide ranked by ideXlab platform
Chaojing Tang - One of the best experts on this subject based on the ideXlab platform.
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Ethernet Address resolution in the context of dynamic IP Address changes
2016 IEEE International Conference of Online Analysis and Computing Science (ICOACS), 2016Co-Authors: Shaolei Wang, Lei Zhang, Chaojing TangAbstract:While developing dynamic IP Address changing techniques under current TCP/IP protocol cluster, the ARP request and reply messages of dynamic IP Addresses must be carefully and effectively handled. In this paper, we propose a novel algorithm based on current ARP protocol and switch's self-learning algorithm to Address the Ethernet Address resolution problem in the context of dynamic IP Address changes, which is designed to be deployed in the SDN environment. To evaluate the effectiveness of proposed algorithm, an experimental network was constructed by mininet. The hosts' ARP tables and OpenFlow switches' corresponding mapping tables in the experiment demonstrate that the proposed algorithm could fully satisfy the need of Ethernet Address resolution in the context of dynamic IP Address changes.
Shaolei Wang - One of the best experts on this subject based on the ideXlab platform.
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Ethernet Address resolution in the context of dynamic IP Address changes
2016 IEEE International Conference of Online Analysis and Computing Science (ICOACS), 2016Co-Authors: Shaolei Wang, Lei Zhang, Chaojing TangAbstract:While developing dynamic IP Address changing techniques under current TCP/IP protocol cluster, the ARP request and reply messages of dynamic IP Addresses must be carefully and effectively handled. In this paper, we propose a novel algorithm based on current ARP protocol and switch's self-learning algorithm to Address the Ethernet Address resolution problem in the context of dynamic IP Address changes, which is designed to be deployed in the SDN environment. To evaluate the effectiveness of proposed algorithm, an experimental network was constructed by mininet. The hosts' ARP tables and OpenFlow switches' corresponding mapping tables in the experiment demonstrate that the proposed algorithm could fully satisfy the need of Ethernet Address resolution in the context of dynamic IP Address changes.
T Chiueh - One of the best experts on this subject based on the ideXlab platform.
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ethereal a host transparent real time fast Ethernet switch
International Conference on Network Protocols, 1998Co-Authors: S Varadarajan, T ChiuehAbstract:Distributed multimedia applications require guaranteed quality of service (QoS) from the underlying networks. This paper describes the design, implementation, and evaluation of a real-time Fast Ethernet switch called EtheReal that provides bandwidth guarantees to real-time applications running on Ethernet without modification to the hardware and operating system on the host machines. At the heart of the EtheReal switch architecture is a novel real-time connection setup protocol that is completely transparent to the host machine's OS, and thus allows the switch to be deployed in a network of heterogeneous machines running different OS platforms. The only dependency of EtheReal on the hosts is their support for TCP/UDP/IP. In addition, the EtheReal switch uses an Ethernet Address swapping technique for real-time packets, similar to ATM to avoid the complexity of maintaining a global connection ID space. Because of the inherent CRC support built into Ethernet hardware, this technique significantly reduces the total processing overhead compared to Address swapping at higher network layers. The current EtheReal switch prototype is fully operational; and is built with off-the-shelf PC hardware. It is capable of supporting up to 640 Mbits/sec across 4 ports, and has a per-hop connection establishment overhead of 0.1-0.6 msec and a 10 /spl mu/s non-real-time packet latency.
Lei Zhang - One of the best experts on this subject based on the ideXlab platform.
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Ethernet Address resolution in the context of dynamic IP Address changes
2016 IEEE International Conference of Online Analysis and Computing Science (ICOACS), 2016Co-Authors: Shaolei Wang, Lei Zhang, Chaojing TangAbstract:While developing dynamic IP Address changing techniques under current TCP/IP protocol cluster, the ARP request and reply messages of dynamic IP Addresses must be carefully and effectively handled. In this paper, we propose a novel algorithm based on current ARP protocol and switch's self-learning algorithm to Address the Ethernet Address resolution problem in the context of dynamic IP Address changes, which is designed to be deployed in the SDN environment. To evaluate the effectiveness of proposed algorithm, an experimental network was constructed by mininet. The hosts' ARP tables and OpenFlow switches' corresponding mapping tables in the experiment demonstrate that the proposed algorithm could fully satisfy the need of Ethernet Address resolution in the context of dynamic IP Address changes.
S Varadarajan - One of the best experts on this subject based on the ideXlab platform.
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ethereal a host transparent real time fast Ethernet switch
International Conference on Network Protocols, 1998Co-Authors: S Varadarajan, T ChiuehAbstract:Distributed multimedia applications require guaranteed quality of service (QoS) from the underlying networks. This paper describes the design, implementation, and evaluation of a real-time Fast Ethernet switch called EtheReal that provides bandwidth guarantees to real-time applications running on Ethernet without modification to the hardware and operating system on the host machines. At the heart of the EtheReal switch architecture is a novel real-time connection setup protocol that is completely transparent to the host machine's OS, and thus allows the switch to be deployed in a network of heterogeneous machines running different OS platforms. The only dependency of EtheReal on the hosts is their support for TCP/UDP/IP. In addition, the EtheReal switch uses an Ethernet Address swapping technique for real-time packets, similar to ATM to avoid the complexity of maintaining a global connection ID space. Because of the inherent CRC support built into Ethernet hardware, this technique significantly reduces the total processing overhead compared to Address swapping at higher network layers. The current EtheReal switch prototype is fully operational; and is built with off-the-shelf PC hardware. It is capable of supporting up to 640 Mbits/sec across 4 ports, and has a per-hop connection establishment overhead of 0.1-0.6 msec and a 10 /spl mu/s non-real-time packet latency.