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Exasmoc
Yokogawa's APC Suite to Leverage Your Competitive Advantage
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What better way to improve business and operational performance than to implement Exasmoc?

                                     A Generic Process Plant with Exasmoc Controller

A product of Yokogawa’s alliance with Shell, Exasmoc was jointly developed - and is in continual development - to meet the demanding necessities of industry.

Designed for use by a process engineer in a process plant with minimal advanced control theory knowledge, Exasmoc is a multi-variable control APC suite built by the user for the user.

Key Characteristics of Exasmoc
• Easy-to-use design and simulation kit (off-line)
• Scenario based simulation tool that encompasses all possible
  plant situations - in short, a "real simulation tool"
• Highest uptime in industry
• Use of unmeasured disturbance models, includes a-priori
  process know-how resulting in high robustness
• Grey box models to facilitate easier debugging of control
  responses, also enables a higher confidence level
• Easy embedding in DCS
• Easy integration with other plant information networks


Exasmoc Shimulation Plot

Exasmoc is a multi-variable control suite that is able to compute sequences of manipulated variable adjustments for the purpose of optimizing future plant behavior with the use of models to evaluate the effects of control strategies.

Able to deal with explicit constraints, Exasmoc goes in pursuit for an ideal strategy for one control step, and then re-evaluates its strategy based on the plant's response. It also simultaneously copes with amplitude constraints on inputs, outputs, and states.

Having reduced oscillations in the controlled variables, Exasmoc allows the operator to work the plant to its optimum, raising the plant's profitable operating point without violating quality
specification.


Advanced Features of Exasmoc
• A unique, unmeasured disturbance model that can be updated, filters out noise to bring about
  more robust control, and also includes an Observer that permits the introduction of intermediate
  variables for better smoother control
• Optimization to derive greater economic benefits with extra degrees of freedom is available
• A separate disturbance model
• Use of long control horizon for processes with long dead times to minimize disturbance
• On-line tuning
• Tried, tested, and proven in more than 400 applications worldwide in different process units
• Adjudged as 'Controller with Highest Uptime in Industry' by autonomous body Solomon
  Associates

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