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IPV6 Packet Transmission for High Speed Networks

机译:高速网络的IPV6数据包传输

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摘要

IPV6 is a new technology that has been developing as a replacement for existing Internet protocol, IPV4. IPV6 was designed with same additional features to the IPV4. In order to meet the requirement of fast growing internet, we must switch from IPV4 to IPV6. IPV6 is a datagram protocol same as IPV4 having 128 bit addresses instead of 32 bit in IPV4. The Internet Protocol Version 6 (IPv6) becomes the next-generation Internet protocol, and was originally proposed due to the scarcity of the IPv4 address space. To transmit lage IPV6 packet on short time, we can use Gigabit Ethernet. The CRC calculation is a core part of the Ethernet processing. CRC is used to generate a checksum over the whole frame at transmission and to check that the frame is still correct at reception. Gigabit is a popular broadband technology for good reason. It can transfer large amounts of data through a large network at high speeds. It uses full duplex bidirectional links, each side of the link must be capable of computing two CRC checksums at the same time, one for the transmitted frame. Here the CRC processing time is very much reduced.
机译:IPV6是一项新技术,已开发为替代现有Internet协议IPV4。 IPV6的设计具有与IPV4相同的附加功能。为了满足快速增长的Internet的需求,我们必须从IPV4切换到IPV6。 IPV6是与IPV4相同的数据报协议,具有128位地址,而不是IPV4中的32位。 Internet协议版本6(IPv6)成为下一代Internet协议,最初是由于IPv4地址空间不足而提出的。为了在短时间内发送大量IPV6数据包,我们可以使用千兆以太网。 CRC计算是以太网处理的核心部分。 CRC用于在发送时对整个帧生成校验和,并在接收时检查帧是否仍然正确。千兆比特是有理由的一种流行的宽带技术。它可以通过大型网络高速传输大量数据。它使用全双工双向链路,链路的每一侧都必须能够同时计算两个CRC校验和,一个用于传输的帧。在这里,CRC处理时间大大减少了。

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