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{"id":3075,"date":"2020-12-22T05:12:44","date_gmt":"2020-12-22T05:12:44","guid":{"rendered":"https:\/\/www.dsgenterprisesltd.com\/product\/import-placeholder-for-26779\/"},"modified":"2022-01-06T11:47:48","modified_gmt":"2022-01-06T11:47:48","slug":"overcurrent-time-protection-simulation-uz-siemens-pss-sincal-protection-modules","status":"publish","type":"product","link":"https:\/\/dsgenterprisesltd.com\/product\/overcurrent-time-protection-simulation-uz-siemens-pss-sincal-protection-modules\/","title":{"rendered":"Overcurrent Time Protection Simulation (UZ) Siemens PSS SINCAL Protection Modules"},"content":{"rendered":"
Overcurrent Time Protection Simulation (UZ) Siemens PSS SINCAL Protection Modules<\/h1>\n
Requirements and Use Cases of Siemens PSS SINCAL Protection Modules<\/strong><\/p>\n
The task of network protection is to clear faults occurring in the network quickly, reliably and selectively, in order to protect plant and personnel and to ensure the continued operation of undisturbed network areas. A simulative validation of the setting values is necessary in order to verify these requirements.<\/p>\n
The following questions must be clarified here:<\/p>\n
\n
Are faults being cleared fast and selectively<\/li>\n
How long does the network protection need to clear faults<\/li>\n
Have the protection device parameters been set correctly regarding any load and short circuit currents?<\/li>\n<\/ul>\n
The following is also required:<\/p>\n
\n
Analysis of the fault clearing process<\/li>\n
Analysis of the influence of decentralized generation on network protection<\/li>\n
Creation of grading diagrams based on the setting values<\/li>\n
Documentation of the protection setting values<\/li>\n
Analysis of faults that have occurred<\/li>\n
Reliable detection of earth faults in compensated and isolated networks<\/li>\n<\/ul>\n