一种适应动态负载的涡轮发电装置转速控制方法

By adopting a turbine generator speed feedforward control method adapted to dynamic loads and a stepped electronic load dynamic adjustment method, the incompatibility problem of the random and highly dynamic power consumption characteristics of the electronic pod with the system was solved, achieving fast and stable speed control and improving system stability.

CN117365676BActive Publication Date: 2026-07-17SOUTHWEST CHINA RES INST OF ELECTRONICS EQUIP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SOUTHWEST CHINA RES INST OF ELECTRONICS EQUIP
Filing Date
2023-08-10
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The power consumption of the electronic pod exhibits random and highly dynamic characteristics, leading to compatibility issues with the power supply and distribution system of the carrier platform. Existing control methods cannot adapt to dynamic loads, affecting system stability and performance.

Method used

A feedforward control method for turbine generator speed adapted to dynamic load and a stepped electronic load dynamic adjustment method are adopted to monitor the load status in real time, dynamically adjust the target speed, and achieve rapid and stable control of turbine generator through a flow regulation device.

Benefits of technology

It achieves rapid and stable control of the turbine generator speed, reduces the transient impact amplitude of dynamic load on the system, and improves system stability.

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Abstract

本发明提供一种适应动态负载的涡轮发电装置转速控制方法,包括:采用适应动态负载的涡轮发电装置转速前馈控制方法与基于电子负载工作模式的动态目标转速求解方法,实现流量调节装置的前馈控制,进而实现涡轮发电装置转速前馈控制;采用阶梯式电子负载动态调节方法,对电子负载进行功率切换控制。本发明能够实现涡轮发电装置转速的快速、稳定控制,并有效降低电子负载大动态随机变化对涡轮发电装置的瞬态冲击幅值,提高系统稳定性。
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