Comprehensive optimization framework for transmission expansion planning with fractional frequency transmission system

Author:

Cai Zhongqi1,Wang Xiuli2,Yang Kun1,Peng Sui3,Hu Zhaoqin2ORCID,Zhang Likai2,Zhao Boyang2

Affiliation:

1. Zhuhai Power Supply Bureau of Guangdong Province Zhuhai Guangdong People's Republic of China

2. School of Electrical Engineering Xi'an Jiaotong University Xi'an Shaanxi People's Republic of China

3. Grid Planning & Research Center of Guangdong Power Grid Company Guangzhou Guangdong People's Republic of China

Abstract

AbstractThe Fractional Frequency Transmission System (FFTS) operates with low frequency to decrease the electrical length of AC transmission lines, consequently enhancing transmission capacity. The integration of renewable energy sources via FFTS will significantly impact power system planning. This paper presents a Fractional Frequency Transmission Expansion Planning (FF‐TEP) model, which considers the interaction between FFTS and the industrial‐frequency power grid. This model addresses the challenges posed by the integration of offshore wind power through FFTS, and takes several key factors into account, including the active power coupling of Modular Multilevel Matrix Converter (M3C), inverter capacity, and converter transformer capacity. To address the non‐convexity caused by AC power flow, this paper introduces a Genetic‐Particle Swarm Optimization algorithm (G‐PSO) with dynamic penalties tailored to the M3C structure. This approach incorporates both crossover and mutation operators from Genetic Algorithms (GA) into Particle Swarm Optimization (PSO). The penalty function dynamically adapts according to the M3C structure, resulting in improved global optimization while maintaining computational efficiency. The results of two case studies demonstrate that FFTS can significantly enhance transmission capacity while reducing cable charging power. This reduces investment costs and decreases voltage offset issues.

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Control and Systems Engineering

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