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Electromagnetic compatibility(EMC) - Part 1 - 4:General - Historical rationale for the limitation of power-frequency conducted harmonic current emissions from equipment, in the frequency range up to 2 kHz
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Electromagnetic compatibility(EMC) - Part 1-5: General - High power electromagnetic(HPEM) effects on civil systems
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Electromagnetic compatibility(EMC) - Part 2 - 8:Environment - Voltage dips and short interruptions on public electric power supply systems with statistical measurement results
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Electromagnetic compatibility(EMC) - Part 3:Limits - Section 7:Assessment of emission limits for fluctuating loads in MV and HV power systems
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Electromagnetic compatibility(EMC) - Part 4-32: Testing and measurement techniques - High-altitude electromagnetic pulse(HEMP) simulator compendium
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Electromagnetic compatibility(EMC) - Part 4-35: Testing and measurement techniques - HPEM simulator compendium
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Electromagnetic compatibility(EMC) - Part 5-3: Installation and mitigation guidelines - HEMP protection concepts
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Electromagnetic compatibility(EMC) - Part 5-6: Installation and mitigation guidelines - Mitigation of external EM influences
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Communication networks and systems for power utility automation - Part 7-5: IEC 61850 modelling concepts
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Communication networks and systems for power utility automation - Part 7-6: Guideline for definition of Basic Application Profiles(BAPs)using IEC 61850
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Communication networks and system for power utility automation - Part 80-3: Mapping to web protocol-Requirements and technical choices
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Communication networks and systems for power utility automation - Part 90-1: Use of IEC 61850 for the communication between substations
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Communication networks and systems for power utility automation - Part 90-2: Using IEC 61850 for communication between substation and control centres
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Communication networks and systems for power utility automation - Part 90-3: Using IEC 61850 for condition monitoring diagnosis and analysis
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Communication networks and systems for power utility automation - Part 90-4: Network engineering guidelines
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Communication networks and systems for power utility automation - Part 90-5: Use of IEC 61850 to transmit synchrophasor information according to IEEE C37.118
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Communication networks and systems for power utility automation - Part 90-6: Use of IEC 61850 for Distribution Automation Systems
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Communication networks and systems for power utility automation - Part 90-7: Object models for power converters in distributed energy resources(DER) systems
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Communication networks and systems for power utility automation - Part 90-9: Use of IEC 61850 for Electrical Energy Storage Systems
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Communication networks and systems for power utility automation - Part 90–12: Wide area network engineering guidelines
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