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Security Architecture for the Internet Protocol

R. Atkinson
- Vol. 1825, pp 1-101
TLDR
This document describes an updated version of the "Security Architecture for IP", which is designed to provide security services for traffic at the IP layer, and obsoletes RFC 2401 (November 1998).
Abstract
This document describes an updated version of the "Security Architecture for IP", which is designed to provide security services for traffic at the IP layer. This document obsoletes RFC 2401 (November 1998). [STANDARDS-TRACK]

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Posted Content

A Practical Key Exchange for the Internet using Lattice Cryptography.

TL;DR: Peikert’s Diffie-Hellman-like key exchange algorithms are presented along with security, correctness and implementation analysis, and parameter choices are demonstrated that outperform [1] by a factor of up to 13 for equivalent security.
Journal ArticleDOI

An Approach for a Cloud-based Machine Tool Control

TL;DR: In this article, the authors present an approach to split the physical location of machine tool control from the machine tool itself and move the control in a cloud providing machine control as a service (MCaaS).
Journal ArticleDOI

Multicast receiver and sender access control and its applicability to mobile IP environments: a survey

TL;DR: This article addresses the receiver and sender access control problems to the delivery tree and extends the interest to the mobile IP environment by taking into account its particular issues and requirements.
Proceedings ArticleDOI

US-AID: Unattended Scalable Attestation of IoT Devices

TL;DR: US-AID is presented – the first collective attestation schemes for large autonomous dynamic networks of embedded devices and verifies overall network integrity by combining continuous in-network attestation with a key exchange mechanism and Proofs-of-non-Absence.
Patent

Method and apparatus for fragmenting and reassembling internet key exchange data packets

TL;DR: In this article, a method and apparatus for fragmenting and reassembling IKE protocol data packets that exceed a maximum transmission unit is provided, where a transmitting node determines whether to fragment IKE data depending on whether the receiving node has the capability to receive and reassemble fragmented data packets.
References
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Journal ArticleDOI

New Directions in Cryptography

TL;DR: This paper suggests ways to solve currently open problems in cryptography, and discusses how the theories of communication and computation are beginning to provide the tools to solve cryptographic problems of long standing.

Key words for use in RFCs to Indicate Requirement Levels

S. Bradner
TL;DR: This document defines these words as they should be interpreted in IETF documents as well as providing guidelines for authors to incorporate this phrase near the beginning of their document.
Journal ArticleDOI

Using encryption for authentication in large networks of computers

TL;DR: Use of encryption to achieve authenticated communication in computer networks is discussed and example protocols are presented for the establishment of authenticated connections, for the management of authenticated mail, and for signature verification and document integrity guarantee.

Internet Protocol, Version 6 (IPv6) Specification

S. Deering, +1 more
TL;DR: In this paper, the authors specify version 6 of the Internet Protocol (IPv6), also referred to as IP Next Generation or IPng, and propose a new protocol called IPng.

Internet Protocol

J. Postel
TL;DR: Along with TCP, IP represents the heart of the Internet protocols and has two primary responsibilities: providing connectionless, best-effort delivery of datagrams through an internetwork; and providing fragmentation and reassembly of data links to support data links with different maximum transmission unit (MTU) sizes.