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An Adaptive Event-Triggered Communication-Based Distributed Secondary Control for DC Microgrids

机译:基于自适应事件触发通信的直流微网分布式二次控制

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This paper proposes an adaptive event-triggered communication-assisted distributed secondary cooperative control strategy using a parameter projection law-based estimate of states to reduce communication burden. It overcomes the drawbacks of operating in an open loop manner between two triggering time instants in traditional zero-order hold-based event triggering schemes using a full state feedback control strategy to update the control input simultaneously. Moreover, real-time precision of information and model uncertainties is well dealt owing to the adaptive mechanism via an event-triggering condition designed using the Lyapunov technique to ensure the stability of the system. This strategy is used in tandem to achieve global average voltage regulation and proportionate load sharing in dc microgrids for various disturbances without sacrificing system performance. The proposed control strategy is simulated in MATLAB/Simulink environment and tested on a 500-W FPGA-based experimental prototype to validate the control approach under different scenarios.
机译:提出了一种基于事件投影的状态估计的自适应事件触发通信辅助分布式二次协同控制策略,以减轻通信负担。它克服了使用全状态反馈控制策略同时更新控制输入的传统基于零阶保持的事件触发方案中两个触发时刻之间以开环方式工作的缺点。此外,由于自适应机制通过使用Lyapunov技术设计的事件触发条件来确保系统的稳定性,因此信息和模型不确定性的实时精度得到了很好的解决。串联使用此策略可实现全局平均电压调节,并在不牺牲系统性能的情况下针对各种干扰在dc微电网中按比例分配负载。所提出的控制策略在MATLAB / Simulink环境中进行了仿真,并在基于500W FPGA的实验原型上进行了测试,以验证不同情况下的控制方法。

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