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Source Code Library For Communication Protocol Development Distributed Network Protocol which is abbreviated DNP3 stack is a set of communication protocols which are commonly used by water and electric companies. It is uncommon for other companies to use DNP3 stack. The use of DNP3 stack is advantageous since it eases communication between different types of equipment that are used in collection of data. DNP3 protocol is the mainly used in supervisory control and data acquisition (SCADA) which is a system of control that uses computers for the purpose of supervisory management. To pass data from master stations to Remote terminal units or intelligent electronic Devices (IEDs) the SCADA systems rely heavily on DNP3 protocols. It’s interesting how the DNP3 protocol came into being. A standard that would permit interoperability between different vendors SCADA components for the electrical grid was needed since the IEC 60870-5 was under development.
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The usefulness of DNP3 protocol is seen in areas where installing electric utility automation systems is a challenge. The distortion caused by EMI could be overcome by use of DNP3 stack. The protocol extends the lifespan of the aging components, which may now last for decades. Through the use of DNP3 protocol poor transmission media would improve drastically.
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The reliability of the DNP3 stack cannot be questioned. DNP3 protocol is not that secure. Malicious people or hackers could interfere with the DNP3 protocol. Due to the level of insecurity associated with DNP3 major critical infrastructure and control systems could come to a standstill if malevolent forces come into play. However, there has been recent development that has contributed to improved security of the DNP3 stack. Improved security brought about by the authentication features that have been added to the DNP3 stack assures the usage of this protocol. The compliance of DNP3 protocol with IEC 62351-5 makes it very suitable. The compliance of DNP3 protocol with the IEC 62351-5 makes it less challenging when switching to either of the two. Firmness, efficiency and ability to be interoperable than the aged protocols makes DNP3 very suitable. The complexity of the DNP3 protocol cannot be compared with any other source code. If you need a protocol that offers multiplexing and data fragmentation you need to settle for DNP3 stack. It also helps in checking of errors in systems as well as linking to control. Time synchronization with a RTU could be supported by the DNP3 stack. To reconstruct data the DNP3 protocol could receive adequate sequences of events that happens in between polls. Any company should consider in depth the advantages and disadvantages of the DNP3 protocol and indeed any other protocol.