• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Core Equipment in the Smart Energy Era: Power Electronic Transformer Solution for Power Generation

Rockwill
17yrs 700++ staff 108000m²+m² US$0+ China

​I. Background and Demand

With the rapid increase in renewable energy adoption, traditional electromagnetic transformers struggle to meet modern grids’ demands for flexibility, efficiency, and intelligence. The volatility and intermittency of wind and solar power pose severe challenges to grid stability, necessitating an innovative energy conversion hub capable of dynamic regulation and high-quality power output.

​II. Solution Overview

This solution employs ​all-solid-state Power Electronic Transformers (PETs)​ to replace conventional line-frequency transformers. Leveraging high-frequency power electronics, PETs enable voltage-level conversion and energy control with core advantages:

  • Flexible Power Conversion: Breaks the limitations of traditional transformers (voltage/current amplitude only) to achieve multi-dimensional control over frequency, phase, and power.
  • Dynamic Response: Millisecond-level adjustment speed effectively mitigates renewable energy fluctuations.
  • Smart Interface: Creates a digital bridge between power generation units and the grid.

​III. Core Technical Architecture

​1. Multi-Level Topology Optimization

Adopts an ​"AC-DC-AC" Three-Stage Conversion Architecture:

  • High-Frequency Rectification Stage: Uses MMC (Modular Multilevel Converter) topology to accommodate wide input voltage fluctuations.
  • Isolated DC-DC Stage: Implements Dual Active Bridge (DAB) structure for 10-20 kHz high-frequency isolation.
  • Smart Inversion Stage: Supports dynamic switching of grid-tie strategies (V/f control, PQ control).

​2. Key Component Selection

​Component

​Technology

​Advantages

Switching Devices

SiC MOSFET Modules

High-temperature resistance (>200°C), 40% loss reduction

Magnetic Core

Nanocrystalline Alloy

60% lower high-frequency losses, 3x power density

Capacitors

Metallized Polypropylene Film Caps

High voltage tolerance, long lifespan, low ESR

​3. Intelligent Control System

Real-time grid status monitoring enables:

  • Active voltage sag ride-through (LVRT/ZVRT)
  • Dynamic power flow adjustment for renewable fluctuations
  • Loss optimization algorithms

​IV. Key Benefits and Value

​Efficiency Gains

​Metric

​Traditional Trafo

​PET

​Improvement

Full-Load Efficiency

98.2%

99.1%

↑0.9%

20% Load Efficiency

96.5%

98.8%

↑2.3%

No-Load Losses

0.8%

0.15%

↓81%

​Functional Capabilities

  • Active Filtering: Suppresses 5th–50th harmonics (THD <1.5%)
  • Reactive Compensation: ±100% continuous capacity regulation
  • Fault Ride-Through: Zero-voltage ride-through (ZVRT) support
  • Black Start: Autonomous voltage/frequency stabilization in islanded mode

​V. Application Scenarios

​Scenario 1: Wind Farm Collector System

graph TB 

    WTG1[WTG1] --> PET1[10kV/35kV PET] 

    WTG2[WTG2] --> PET1 

    ... 

    PET1 -->|35kV DC Bus| Collector 

    Collector --> G[220kV Main Trafo] 

  • Solves: Collector line oscillations from cumulative turbine voltage swings
  • Results: 12% lower wind curtailment, 65% reduction in power fluctuation deviation

​Scenario 2: PV Plant Smart Step-Up Station

  • Modular PET clusters (1–2 MW/unit)
  • MPPT functionality enhances yield by 7–15% in partial shading
  • Nighttime operation as STATCOM for grid reactive support

​VI. Implementation Roadmap

  1. Pilot Phase: Deploy PETs at renewables plants with >10% voltage volatility (20% capacity).
  2. Hybrid Grid Stage: Hybrid Transformer System (HTS) with parallel PET-traditional operation.
  3. Full Replacement: PETs for all new projects; phased retrofits for existing plants.

​VII. Economic Analysis

Example: 100MW Wind Farm

​Item

​Traditional

​PET

​Annual Benefit

Capex

¥32M

¥38M

-¥6M

Annual Power Losses

¥2.88M

¥1.08M

+¥1.8M

O&M Costs

¥0.8M

¥0.45M

+¥0.35M

Reactive Savings

¥0.6M

+¥0.6M

Payback Period

<3 Years

 

Conclusion: PET solutions break traditional electromagnetic limitations, creating a next-generation power conversion platform for high-renewable grids. Their advantages in efficiency, grid support, and intelligence position them as a strategic technology for modern power systems.

08/05/2025
Recommended
Smart Meter Solution: Analysis of Core Functions and Application Scenarios
I. Solution OverviewAs a core terminal device for grid digitalization, smart meters integrate high-precision metering, bidirectional communication, and intelligent analysis to provide real-time data support for power systems.This solution, developed in accordance with international and domestic standards and integrated with advanced communication technologies, builds a secure and reliable smart metering system. It is designed to meet diverse needs across residential, commercial, industrial, and
Beyond Metering: How Smart Meters Create Multidimensional Value for the Grid, Enterprises, and Households
Amid the digital transformation of power grids and the construction of new power systems, smart meters have evolved from traditional electricity metering tools into intelligent terminal nodes integrating metering, communication, control, and analytics. This solution provides an in-depth analysis of the core functions, technical pathways, and diverse applications of smart meters, offering comprehensive value reference for various users.​I. Core Technological Foundation: High-Precision Metering an
Smart Meter Full-Scope Solution: Precise Cost Reduction and Efficiency Enhancement, Empowering Energy Digital Upgrade
Overview​With the deep integration of energy transition and the digital economy, traditional electricity management models can no longer meet the demands for precision, intelligence, and low-carbon development. This solution leverages advanced smart meters and IoT technologies to build a smart electricity management system covering various scenarios such as residential, commercial and industrial, distributed energy, and electric vehicle charging. It aims to improve energy efficiency, ensure safe
Big Data Analysis of Smart Meters: Value, Benefits, and Application Prospects
I.Introduction​​Background of Energy and Smart Grids​Since the 21st century, the increasing depletion of non-renewable energy sources and worsening ecological environmental pollution have made energy issues a critical constraint on the development of human society. As an efficient and clean secondary energy source, electricity holds a significant position in the energy structure. To meet the growing demand for electricity and adapt to the diverse requirements of power development, building a saf
Seed Inquiry
Download
Get the IEE Business Application
Use the IEE-Business app to find equipment, obtain solutions, connect with experts, and participate in industry collaboration anytime, anywhere—fully supporting the development of your power projects and business.