![]() How to copy a custom component using PSCAD In this video you will learn how to use the ‘Consolidate Workspace’ feature. This video will show you how to setup the module comparison tool and how to use the tool to find differences between modules. ![]() This webinar will provide you with an overview on large system parallel simulation using concurrent EMTDC. Webinar on Parallel Simulation using Concurrent EMTDC This webinar will show you how to do TRV simulations in PSCAD/EMTDC. Webinar on Transient Recovery Voltage (TRV) This webinar provides information on Lightning Overvoltage Studies using PSCAD/EMTDC. Lightning Over Voltage Simulations in PSCAD™ EMTDC™ This video will provide you with a general overview of FACE Software – Field and Corona Effects. This webinar will provide you with an indepth introduction to FACE Software. In the future, support will be added to allow actual tower components to be used to define the aerial cables. In other words, you can now effectively simulate overhead lines and underground cables within the same system. Note that it possible to define the above-ground cables as bare, which is equivalent to an overhead line conductor. You must also specify in the coax or pipe cable components, whether or not they are aerial or underground. It is now possible to combine both underground and aerial cables in the same right-of-way! This feature affects mainly the ground plane component, where you must specify the formulae used for aerial, underground and mutual (underground/aerial) earth return representation. ![]() This includes ports, parameters, graphics and script segments. Automatic Component Creation: A new, non-module component definition and instance is created, based on the contents of the module schematic canvas.Automatic Object/Library file Creation: The option to compile the generated source file into an object file is provided.The black box function will generate FORTRAN source code specifically formatted to be used as external source for inclusion in any EMTDC simulation. FORTRAN Source Generation: PSCAD already generates FORTRAN source, however this code is written specifically to interact with EMTDC as part of the greater simulation project and is not formatted to be used as external source.The black-box algorithm performs the following functions automatically: This instructs the link to collect its value from a foreign source, and thus allows for a more sophisticated means of multiple run control.īlack-boxing allows users to design their control system schematically, and then quickly collapse it into a pre-compiled, binary version of itself, thereby protecting any intellectual property invested in the design, before distributing the model to clients. This is accomplished using the already well defined Radio Link transmitter and receiver components, which were extended in v4.5 to include a provision field for a foreign namespace. ![]() The idea behind the development of the RCI was to support both parameter sweep, as well as optimization-based, multiple-run studies. Like the simulation sets, the RCI is an inherent part of the workspace, which enables interproject communication within a single simulation set. The Root Control Interface (RCI) was first released as part of the PSCAD v4.5 minor upgrade. Root control allows for one root, or master project, to control multiple slave projects, where both master and slaves must be part of the same Simulation Set. When you next launch the simulation set, 7 instances of that simulation will be launched in parallel, utilizing all available processor cores. For example, if you want to launch 7 simultaneous runs of a single project, then set the Volley Count to 7. Once added, simply invoke the Simulation Options dialog and adjust the Volley Count option. To set up a volley, a simulation must first be added to a simulation set. Volley launch provides the ability to launch multiple EMTDC simulation runs in parallel (up to a maximum of 64), based on a single PSCAD case project. ![]()
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