This section proposes an adaptive droop control strategy based on multi-agent consensus, utilizing distributed communication among intelligent agents, to address the issues of frequency and voltage deviation, system stability, and power allocation accuracy in traditional droop control. Based on traditional droop control, a second-order dynamic model for active power allocation, active frequency, and reactive voltage is established. Based on considering communication delay, applying leaderless consistency control to the active output of distributed power sources meets the requirements of traditional droop control.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Adaptive Adjustment Technology for Distributed Energy Grid Clusters

  • Tianguang Lu,
  • Ming Yang,
  • Yu Guo,
  • Qian Ai,
  • Ran Hao

摘要

This section proposes an adaptive droop control strategy based on multi-agent consensus, utilizing distributed communication among intelligent agents, to address the issues of frequency and voltage deviation, system stability, and power allocation accuracy in traditional droop control. Based on traditional droop control, a second-order dynamic model for active power allocation, active frequency, and reactive voltage is established. Based on considering communication delay, applying leaderless consistency control to the active output of distributed power sources meets the requirements of traditional droop control.