Symphony Plus
SD Series: HPC800 controller
Symphony® Plus is the new generation of ABB’s widely acclaimed
Symphony family of distributed control systems – the world’s most
widely used DCS in the power generation and water industries.
In all, there are more than 6,500 Symphony DCS installations
in operation all over the world, more than 4,500 of which are in
power and water applications.
No other automation platform has such a long field record
and large installed base in power and water applications
as Symphony. For more than 30 years, ABB has evolved
this family, ensuring that each new generation enhances its
predecessors and is backwardly compatible with them - all in
accordance with ABB’s long-held policy of ‘Evolution without
obsolescence.’
Included in Symphony Plus is a comprehensive suite of
standards-based control hardware and software that meets
the requirements of total plant automation. SD Series
HPC800 represents the newest addition to the S+ Control
family. HPC800 control-based system solutions feature
modular DIN-rail packaging; a flexible, high-performance Fast
Ethernet-based plant network; intelligent electrical and field
device integration; PROFIBUS and HART communication
protocols; integrated turbine control; an efficient, easy-to-use
engineering tool, and a state-of-the-art HMI workplace.
Together, HPC800’s technology enhancements meet the
present and future needs of the power generation and water
industries. HPC800 control-based solutions lower system
installation and maintenance costs through their smaller
footprint, reduced field wiring, simplified and repeatable
engineering, shorter project schedules, tighter and more
reliable process control, and greater visibility of plant
operations to all users of plant data.
Overview
The SD Series HPC800 controller is a high-performance,
high-capacity process controller that is used to support
the plant’s total control requirements, from discrete and
continuous, to batch and advanced control applications.
The HPC800’s controller environment executes demanding
process control applications that are both data and program
intensive. Redundancy options are available at all levels
of control, I/O and communication, resulting in maximum
flexibility and availability.
Along with a range of I/O options, the HPC800 delivers
powerful, versatile and scalable automation solutions for
plant applications of all sizes.
Simultaneously, the HPC800 connects to DIN style I/O
modules and traditional Rack I/O modules. Intelligent I/O
devices such as smart transmitters, actuators, intelligent
electronic devices (IEDs), and third-party PLCs are easily
integrated through industry-standard fieldbuses and
networks. Each device’s resident information can be used
in control strategies and higher-level applications in order to
produce tighter and more reliable process control solutions.
The HPC800 controller uses ABB’s extensive set of
field-proven standard function code algorithms and
S+ Engineering’s graphical design tools to develop its control
strategies. By using the same function code algorithms as
previous generation Harmony and INFI 90 rack controllers,
the HPC800 supports the easy and risk-free re-use of timetested,
field proven control application solutions.
All in all, the HPC800 provides users with the benefits of fast,
accurate and uninterrupted control of their process.
S+ Operations, S+ Engineering and other applications
communicate with HPC800 controllers over the system’s
high-speed, high-throughput and high-security 100 Mbps
Fast Ethernet-based redundant communication Plant
Network (PN800). The network-centric architecture allows
for integration of field devices, process and electrical system
areas, and business enterprise systems in a simple, scalable,
seamless and secure manner.
The HPC800’s functional capabilities are summarized in
figure 2.
Protecting the integrity and confi dentiality of system data
The process and power industries face intensifying cyber
security risks. In order to increase stability, security
and robustness in its solutions, ABB has established an
independent Device Security Assurance Center (DSAC)
where cyber security robustness is tested as part of the
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