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Known ProblemsThe OLGA Server does not always consistently handle the case of labels. To avoid problems, it is recommended that you always use upper case for all labels both within the extension and in the *.inp file.On occasion and with certain LAN networks, it has been observed that the first attempt to connect to the OLGA Server (either via the Connect button on the Server page of the Setup tab or via the Auto Start feature) may result in a refusal to connect.
Simply try again and the connection should be successful. This problem occurs when you typically start a new UniSim Design session.Whilst this is not a problem, it has been observed that simulating your integrated model across two computers with a LAN may lead to slower simulation run speeds.
In our testing a 2 computer model (one computer for UniSim Design and one for OLGA) obtained a simulation speed of 4 times real time. When the same model was run on a single computer, 24 times real time was achieved. This will be dependent on your network communication speed.
8/13/2010
Conceptual Process Design Suite Getting Started
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• Status Bar . Found at the bottom of each property view, it shows the calculation status of the associated object. The indicator displays a status message with an appropriately coloured background (red for a missing parameter, yellow for a warning message, and green for OK).
• Scroll Bar . Clicking inside the scroll bar allows you to access information which cannot be displayed in the current size of a menu or view. The scroll bar in Figure 1.2 is horizontal.
• Scroll Button. Clicking and dragging the scroll button up/down or left/right allows you to access information which cannot be displayed in the current size of a menu or view.
• Table. A group of cells in tabular format, through which you can manoeuvre with the mouse or the keyboard arrow keys.
• Input Cell/Field. A location inside a view where information is supplied and/or displayed. Examples include stream names, temperatures, etc. In some cases, an Input Cell/Field has an associated drop-down.
• Status Bar . Found at the bottom of each property view, it shows the calculation status of the associated object. The indicator displays a status message with an appropriately coloured background (red for a missing parameter, yellow for a warning message, and green for OK).
• Scroll Bar . Clicking inside the scroll bar allows you to access information which cannot be displayed in the current size of a menu or view. The scroll bar in Figure 1.2 is horizontal.
• Scroll Button. Clicking and dragging the scroll button up/down or left/right allows you to access information which cannot be displayed in the current size of a menu or view.
• Table. A group of cells in tabular format, through which you can manoeuvre with the mouse or the keyboard arrow keys.
• Input Cell/Field. A location inside a view where information is supplied and/or displayed. Examples include stream names, temperatures, etc. In some cases, an Input Cell/Field has an associated drop-down.
UniSim Clean Fuels Property Package Reference Guide
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During the early 1990s gasoline sulphur levels were approximately 340 ppmw [1]. With new levels set in 2000, refiners are reducing sulphur to 150 ppmw. By 2006, the US EPA proposes to reduce sulphur to 30 ppmw with phased reductions beginning in 2004. European regulations call for reductions to 50 ppmw by 2005 while Canadian regulations require 30 ppmw by 2004 [1]. Farther ahead, the US EPA has called for even lower targets of 10 ppmw.
Continuously lower levels of gasoline sulphur present new challenges to develop and identify viable low cost solutions for reduced gasoline sulphur content in motor gasoline.Effective solutions to manage gasoline sulphur content involve choosing the best technology options for sulphur removal, as well as selecting designs that best fit the operating philosophy for refiners.
Important to gasoline sulphur management strategies is understanding how the various sulphur species are distributed in fractionator gasoline cuts which is critical in determining the optimum operating conditions of gasoline fractionators.
During the early 1990s gasoline sulphur levels were approximately 340 ppmw [1]. With new levels set in 2000, refiners are reducing sulphur to 150 ppmw. By 2006, the US EPA proposes to reduce sulphur to 30 ppmw with phased reductions beginning in 2004. European regulations call for reductions to 50 ppmw by 2005 while Canadian regulations require 30 ppmw by 2004 [1]. Farther ahead, the US EPA has called for even lower targets of 10 ppmw.
Continuously lower levels of gasoline sulphur present new challenges to develop and identify viable low cost solutions for reduced gasoline sulphur content in motor gasoline.Effective solutions to manage gasoline sulphur content involve choosing the best technology options for sulphur removal, as well as selecting designs that best fit the operating philosophy for refiners.
Important to gasoline sulphur management strategies is understanding how the various sulphur species are distributed in fractionator gasoline cuts which is critical in determining the optimum operating conditions of gasoline fractionators.
An Introduction to System Level Modeling in SystemC 2.0
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SystemC 2.0 Language ArchitectureFigure 1 below summarizes the SystemC 2.0 language architecture.
There are several important concepts tounderstand from this diagram.All of SystemC builds on C++.Upper layers within the diagram are cleanly built on top of the lower layers.
The SystemC core language provides only a minimal set of modeling constructs for structural description,concurrency, communication, and synchronization.Data types are separate from the core language and user-defined data types are fully supported.
Commonly used communication mechanisms such as signals and fifos can be built on top of the corelanguage. Commonly used models of computation (MOCs) can also be built on top of the core language.
SystemC 2.0 Language ArchitectureFigure 1 below summarizes the SystemC 2.0 language architecture.
There are several important concepts tounderstand from this diagram.All of SystemC builds on C++.Upper layers within the diagram are cleanly built on top of the lower layers.
The SystemC core language provides only a minimal set of modeling constructs for structural description,concurrency, communication, and synchronization.Data types are separate from the core language and user-defined data types are fully supported.
Commonly used communication mechanisms such as signals and fifos can be built on top of the corelanguage. Commonly used models of computation (MOCs) can also be built on top of the core language.
Agilent ADS 2009 Vendor Component Libraries
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Siemens DiodesThe Siemens Diodes include 19 components, representing individual parts.
The namingconvention for these components is di_sms .
Sony DiodesThe Sony Diodes include 4 components, representing individual parts.
The namingconvention for these components is di_sny .
The Toshiba Diodes include 3 components, representing individual parts.
The namingconvention for these components is di_tsb .
Siemens DiodesThe Siemens Diodes include 19 components, representing individual parts.
The namingconvention for these components is di_sms
Sony DiodesThe Sony Diodes include 4 components, representing individual parts.
The namingconvention for these components is di_sny
The Toshiba Diodes include 3 components, representing individual parts.
The namingconvention for these components is di_tsb
Agilent Technologies Uninstall ADS
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NoteBe sure you have exited all applications before running the Uninstaller program. If you have not, it ispossible you will get errors upon re-installing ADS. If these errors occur, reboot your computer and startthe new installation again, or search for and end any lingering processes using the Task Manager and startthe new installation again.The uninstaller will not remove all files in the ADS folder.
Files that have been added or modified since theprevious ADS installation are not removed.Be sure to retain the license.lic file to use if you re-install ADS.
Close all ADS applications, and all Windows programs. 1.Select Start > Programs > Advanced Design System 2009 Update 1> 2.Uninstall Advanced Design System 2009 Update 1.At the Introduction screen, choose Uninstall, then choose Next. This immediately 3.begins the uninstall process.When the uninstall process is complete, choose Done. 4.
NoteBe sure you have exited all applications before running the Uninstaller program. If you have not, it ispossible you will get errors upon re-installing ADS. If these errors occur, reboot your computer and startthe new installation again, or search for and end any lingering processes using the Task Manager and startthe new installation again.The uninstaller will not remove all files in the ADS folder.
Files that have been added or modified since theprevious ADS installation are not removed.Be sure to retain the license.lic file to use if you re-install ADS.
Close all ADS applications, and all Windows programs. 1.Select Start > Programs > Advanced Design System 2009 Update 1> 2.Uninstall Advanced Design System 2009 Update 1.At the Introduction screen, choose Uninstall, then choose Next. This immediately 3.begins the uninstall process.When the uninstall process is complete, choose Done. 4.
SystemC 2.1 Overview OSCI Language Working Group
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Improve modularity for IP delivery
C As SystemC 2.0.1 was more widely used for transaction-level design IP and verification IP, several practical barriers emerged Provide better support for transaction-level design and verification
C Requirements identified for TLM prior to TLM WG
C Requirements identified by Verification WGResolve longstanding ease-of-use issues
C Inconsistency, non-orthogonality, platform support
Structured error reporting mechanism
Improve modularity for IP delivery
C As SystemC 2.0.1 was more widely used for transaction-level design IP and verification IP, several practical barriers emerged Provide better support for transaction-level design and verification
C Requirements identified for TLM prior to TLM WG
C Requirements identified by Verification WGResolve longstanding ease-of-use issues
C Inconsistency, non-orthogonality, platform support
Structured error reporting mechanism
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