使用期限永久
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原产地加拿大
介质下载
适用平台windows
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Background
When digital programs were first developed for power system analysis, the computers available were the old mainframe type used by the company for their accounts and billing. A team of specialists, whose function was to oversee all transactions involving the system, also serviced the system. The technical user was but a slave to the whims of these specialists, whose power lay in their ability to speak the system language: The interpretation of a mysterious jumble of words known only as 'JCL' was a jealously guarded secret. Consequently, the 'end user' (or more humiliatingly the 'client') was kept in hand and normally suffered through the computer programs so condescendingly provided.
These computer programs were supposedly structured to anticipate, as the programmers hoped, the every need of the technical user. Model construction and variation was accomplished by data entry. Unfortunately, it was impossible to anticipate all needs. Developments in power system technologies out-sped advancements in the computer programs. Because of these limitations in program flexibility, the programs always lagged in representation of the emerging power system. The creative potential of the technical specialist could not be fully realized with such program modeling restrictions.
In addition, a newer sparse solution, which is
beneficial when solving larger subsystems, is implemented.
The new solution is automatically utilized if the number of
nodes in a subsystem is over 200 (default).
Application Automation with Python
Automation utilizing the Python language is embedded
directly into V5.
PSCAD has benefited from over 40 years of continuous research and development. We are inspired by the ideas and feedback from our global user base. This philosophy has helped establish PSCAD as the most popular power system transient simulation package available today.
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