并网fc -电池-波能量转换永磁直驱直线发电机能量管理系统优化控制

Adel Elgammal, Curtis Boodoo
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引用次数: 0

摘要

提出了波浪能转换系统(WECS)的控制策略,以保证系统在波浪资源波动情况下的最佳运行状态。建议的系统包括基于MOPSO的MPC方法,在升沉中振荡的点吸收器WEC,用于电网连接的背靠背功率转换器和线性永磁发电机。尽管模型预测控制具有优势,但包括开关频率变化、稳态误差、高处理成本和受限预测范围在内的问题仍然存在。本文提出了一种将开关控制动作纳入成本函数的方法,同时保持模型预测控制的有限性质来处理开关频率问题。为了最大限度地减少开关频率变化,同时也解决其他控制目标,如调节直流连接电压和控制有功和无功功率的流动,开关控制权重因子被优化。为了提高电能质量,一个基于燃料电池的短期能量存储系统也被包括在背靠背转换器之间的直流连接中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Energy Management System Control of Permanent Magnet Direct Drive Linear Generator for Grid-Connected FC-Battery-Wave Energy Conversion
The Wave Energy Conversion System (WECS) control strategy is presented in this study to make sure the system operates at its best under fluctuating wave resource situations. The suggested system consists of a MOPSO based MPC approach, a point absorber WEC oscillating in heave, back-to-back power converter for grid connections, and a linear permanent magnet generator. Despite the benefits of model predictive control, problems including switching frequency variations, steady-state errors, high processing costs, and constrained prediction horizons continue to exist. The article presents a method that incorporates the switching control action into the cost function while maintaining the finite nature of a model predictive control to handle the switching frequency issue. In order to minimise switching frequency variations while also addressing other control goals, such as regulating the direct current linked voltage and controlling the flow of active and reactive power, the switching control weight factors are optimised. In order to increase power quality, a fuel cell-based short-term energy storage system is also included to direct current link between the back-to-back converters.
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