Design and Development of Layered Security: Future Enhancements and Directions in Transmission

Sensors (Basel). 2016 Jan 6;16(1):37. doi: 10.3390/s16010037.

Abstract

Today, security is a prominent issue when any type of communication is being undertaken. Like traditional networks, supervisory control and data acquisition (SCADA) systems suffer from a number of vulnerabilities. Numerous end-to-end security mechanisms have been proposed for the resolution of SCADA-system security issues, but due to insecure real-time protocol use and the reliance upon open protocols during Internet-based communication, these SCADA systems can still be compromised by security challenges. This study reviews the security challenges and issues that are commonly raised during SCADA/protocol transmissions and proposes a secure distributed-network protocol version 3 (DNP3) design, and the implementation of the security solution using a cryptography mechanism. Due to the insecurities found within SCADA protocols, the new development consists of a DNP3 protocol that has been designed as a part of the SCADA system, and the cryptographically derived security is deployed within the application layer as a part of the DNP3 stack.

Keywords: distributed network protocol; dynamic cryptography buffer; supervisory control and data acquisition.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Computer Communication Networks / standards*
  • Computer Security*
  • Internet
  • Research