voltage-violation-mitigation

Apply a predefined mitigation sequence to resolve voltage violations in power-system studies.

58|13|Updated Jan 26, 2026
One-click install
npx skills add https://github.com/Power-Agent/PowerSkills --skill voltage-violation-mitigation
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: voltage-violation-mitigation
Source: https://github.com/Power-Agent/PowerSkills/tree/main/voltage-violation-mitigation
Command: npx skills add https://github.com/Power-Agent/PowerSkills --skill voltage-violation-mitigation

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

This playbook provides a structured, senior-engineer approach to diagnose and mitigate voltage violations observed in power system studies or operations, guiding teams to verify violations, identify root causes, and apply safe, effective remedies.

Core Features & Use Cases

  • Preferred action order: Follow a prioritized sequence to adjust reactive resources, regulator settings, shunt devices, and topology to restore voltages.
  • High-voltage case handling: Strategies to manage under- or over-voltage scenarios across different equipment, including LTCs, capacitors, reactors, and inverter controls.
  • Software cues: Tool-specific guidance for PowerWorld, PSLF, PSSE, OpenDSS, pandapower, and PyPSA to implement mitigation steps and re-solve the study.
  • Deliverables: Clearly document violated buses, applied actions, outcomes, and verification checks.

Quick Start

Apply the mitigation sequence to the violated buses in the active study and re-solve to verify that voltages are restored within limits.

Frequently Asked Questions about voltage-violation-mitigation

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I mitigate voltage violations in power system contingency studies?

Voltage violation mitigation follows a prioritized sequence: verify violated buses, apply generator reactive support, adjust LTCs and shunt devices, execute switching actions, and document outcomes to restore voltages within operational limits.

What is the preferred action order for resolving power system voltage violations?

The preferred action order for voltage violations prioritizes adjusting generator reactive support first, followed by regulator settings, shunt capacitors and reactors, and finally topology switching to restore voltages safely.

Does this voltage mitigation approach work with PSLF and PowerWorld?

Yes, this voltage mitigation approach provides tool-specific guidance for PowerWorld, PSLF, PSSE, OpenDSS, pandapower, and PyPSA, covering implementation steps and re-solving instructions for both base-case and contingency analyses.

How do I handle high-voltage scenarios during contingency planning?

Handle high-voltage scenarios during contingency planning by applying targeted strategies for under- and over-voltage conditions, including adjusting LTC controls, switching capacitors and reactors, and modifying inverter controls.

What are the functional requirements for documenting voltage violation deliverables?

Deliverables for voltage violation mitigation require documenting the identified violated buses, the specific applied actions, the resulting outcomes, and the final verification checks confirming voltages are restored within limits.