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Synchronization Characterization of DC Microgrid Converter Output Voltage and Improved Adaptive Synchronization Control Methods
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作者 Wei Chen Xin Gao +2 位作者 Zhanhong Wei Xusheng Yang Zhao Li 《Energy Engineering》 2025年第2期805-821,共17页
This paper deeply introduces a brand-new research method for the synchronous characteristics of DC microgrid bus voltage and an improved synchronous control strategy.This method mainly targets the problem of bus volta... This paper deeply introduces a brand-new research method for the synchronous characteristics of DC microgrid bus voltage and an improved synchronous control strategy.This method mainly targets the problem of bus voltage oscillation caused by the bifurcation behavior of DC microgrid converters.Firstly,the article elaborately establishes a mathematical model of a single distributed power source with hierarchical control.On this basis,a smallworld network model that can better adapt to the topology structure of DC microgrids is further constructed.Then,a voltage synchronization analysis method based on the main stability function is proposed,and the synchronous characteristics of DC bus voltage are deeply studied by analyzing the size of the minimum non-zero eigenvalue.In view of the situation that the line coupling strength between distributed power sources is insufficient to achieve bus voltage synchronization,this paper innovatively proposes a new improved adaptive controller to effectively control voltage synchronization.And the convergence of the designed controller is strictly proved by using Lyapunov’s stability theorem.Finally,the effectiveness and feasibility of the designed controller in this paper are fully verified through detailed simulation experiments.After comparative analysis with the traditional adaptive controller,it is found that the newly designed controller can make the bus voltages of each distributed power source achieve synchronization more quickly,and is significantly superior to the traditional adaptive controller in terms of anti-interference performance. 展开更多
关键词 dc microgrid BIFURCATION small-world network voltage synchronization improved adaptive control
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Coordinated control strategy for multi-DG DC microgrid based on two-layer fuzzy neural network
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作者 Hao Pan Limin Jia 《Global Energy Interconnection》 2025年第5期732-746,共15页
Conventional coordinated control strategies for DC bus voltage signal(DBS)in islanded DC microgrids(IDCMGs)struggle with coordinating multiple distributed generators(DGs)and cannot effectively incorporate state of cha... Conventional coordinated control strategies for DC bus voltage signal(DBS)in islanded DC microgrids(IDCMGs)struggle with coordinating multiple distributed generators(DGs)and cannot effectively incorporate state of charge(SOC)information of the energy storage system,thereby reducing the system flexibility.In this study,we propose an adaptive coordinated control strategy that employs a two-layer fuzzy neural network controller(FNNC)to adapt to varying operating conditions in an IDCMG with multiple PV and battery energy storage system(BESS)units.The first-layer FNNC generates optimal operating mode commands for each DG,thereby avoiding the requirement for complex operating modes based on SOC segmentation.An optimal switching sequence logic prioritizes the most appropriate units during mode transitions.The second-layer FNNC dynamically adjusts the droop power to overcome power distribution challenges among DG groups.This helps in preventing the PV power from exceeding the limits and mitigating the risk of BESS overcharging or over-discharging.The simulation results indicate that the proposed strategy enhances the coordinated operation of multi-DG IDCMGs,thereby ensuring the efficient and safe utilization of PV and BESS. 展开更多
关键词 dc microgrid Distributed generation Droop control Fuzzy neural network Coordinated control
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Signal processing and machine learning techniques in DC microgrids:a review
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作者 Kanche Anjaiah Jonnalagadda Divya +1 位作者 Eluri N.V.D.V.Prasad Renu Sharma 《Global Energy Interconnection》 2025年第4期598-624,共27页
Low-voltage direct current(DC)microgrids have recently emerged as a promising and viable alternative to traditional alternating cur-rent(AC)microgrids,offering numerous advantages.Consequently,researchers are explorin... Low-voltage direct current(DC)microgrids have recently emerged as a promising and viable alternative to traditional alternating cur-rent(AC)microgrids,offering numerous advantages.Consequently,researchers are exploring the potential of DC microgrids across var-ious configurations.However,despite the sustainability and accuracy offered by DC microgrids,they pose various challenges when integrated into modern power distribution systems.Among these challenges,fault diagnosis holds significant importance.Rapid fault detection in DC microgrids is essential to maintain stability and ensure an uninterrupted power supply to critical loads.A primary chal-lenge is the lack of standards and guidelines for the protection and safety of DC microgrids,including fault detection,location,and clear-ing procedures for both grid-connected and islanded modes.In response,this study presents a brief overview of various approaches for protecting DC microgrids. 展开更多
关键词 dc microgrids Mathematical approach Signal processing technique Machine learning technique Hybrid model DETECTION
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微网储能侧DC-DC变换器的强化学习自抗扰控制策略 被引量:1
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作者 马幼捷 刘熠铭 +3 位作者 周雪松 王博 陶珑 问虎龙 《太阳能学报》 北大核心 2025年第3期63-72,共10页
直流微电网电压稳定性研究是新型电力系统面临的关键问题。针对微电网系统中直流母线电压波动大和抗干扰能力弱等缺陷,该文提出一种由Q-learning算法赋能的DC-DC变换器自抗扰控制策略。通过引入线性扩张状态观测器,实现对模型内部摄动... 直流微电网电压稳定性研究是新型电力系统面临的关键问题。针对微电网系统中直流母线电压波动大和抗干扰能力弱等缺陷,该文提出一种由Q-learning算法赋能的DC-DC变换器自抗扰控制策略。通过引入线性扩张状态观测器,实现对模型内部摄动与外部扰动量的精确估计与补偿,利用Q-learning算法实现控制策略参数自适应优化,从而更高效地维持输出电压稳定。基于理论分析,推导范数意义下的Q-learning算法收敛性,并运用Lyapunov理论判据证明线性自抗扰的稳定性。最后,通过仿真对比该文提出的控制策略、线性自抗扰控制与双闭环PI控制在不同工况下的结果,充分验证该策略在提升DC-DC变换器抗扰能力和鲁棒水平的高效性与优越性。 展开更多
关键词 微电网 dc-dc变换器 自抗扰控制 Q-learning算法 Lyapunov判据
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基于超螺旋滑模控制的双有源桥DC-DC变换器电流应力优化控制
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作者 王盼 朱继赜 +3 位作者 叶高翔 黄思雨 阳磊 徐虎 《高电压技术》 北大核心 2025年第3期1295-1306,共12页
随着高比例新能源的接入,直流微电网系统中双有源桥DC-DC变换器,针对系统扰动时的电压波动、动态响应慢及效率降低等问题有待优化。该文在扩展移相下提出一种融合滑模控制和最小化电流应力的优化控制策略,提升效率的同时改善系统动态响... 随着高比例新能源的接入,直流微电网系统中双有源桥DC-DC变换器,针对系统扰动时的电压波动、动态响应慢及效率降低等问题有待优化。该文在扩展移相下提出一种融合滑模控制和最小化电流应力的优化控制策略,提升效率的同时改善系统动态响应性能。鉴于传统滑模控制的抖振现象,采用超螺旋滑模算法去消除该现象,提高系统控制精度及性能。该文进行了仿真,同时设计并搭建了实验平台,实验结果表明:在输入电压突变、负载切换、参考电压改变时,控制系统均具有良好的动态、稳态性能,同时能有效减小电流应力,实现系统的多目标优化。仿真与实验验证了所提控制策略的可行性和有效性。 展开更多
关键词 直流微电网 双有源桥dc-dc变换器 扩展移相 超螺旋滑模控制 电流应力
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Distributed Periodic Event-Triggered Optimal Control of DC Microgrids Based on Virtual Incremental Cost 被引量:7
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作者 Jiangkai Peng Bo Fan +2 位作者 Zhenghong Tu Wei Zhang Wenxin Liu 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2022年第4期624-634,共11页
This article presents a distributed periodic eventtriggered(PET)optimal control scheme to achieve generation cost minimization and average bus voltage regulation in DC microgrids.In order to accommodate the generation... This article presents a distributed periodic eventtriggered(PET)optimal control scheme to achieve generation cost minimization and average bus voltage regulation in DC microgrids.In order to accommodate the generation constraints of the distributed generators(DGs),a virtual incremental cost is firstly designed,based on which an optimality condition is derived to facilitate the control design.To meet the discrete-time(DT)nature of modern control systems,the optimal controller is directly developed in the DT domain.Afterward,to reduce the communication requirement among the controllers,a distributed event-triggered mechanism is introduced for the DT optimal controller.The event-triggered condition is detected periodically and therefore naturally avoids the Zeno phenomenon.The closed-loop system stability is proved by the Lyapunov synthesis for switched systems.The generation cost minimization and average bus voltage regulation are obtained at the equilibrium point.Finally,switch-level microgrid simulations validate the performance of the proposed optimal controller. 展开更多
关键词 Bus voltage regulation dc microgrids event-triggered control distributed optimal control generation cost minimization
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A Grid Interface Current Control Strategy for DC Microgrids 被引量:13
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作者 Muhannad Alshareef Zhengyu Lin +1 位作者 Fulong Li Fei Wang 《CES Transactions on Electrical Machines and Systems》 CSCD 2021年第3期249-256,共8页
In this paper,a grid interface current control strategy is presented for a DC microgrid,which aims to reduce the disturbance from PV generation and the load variation to the main grid without a grid interface converte... In this paper,a grid interface current control strategy is presented for a DC microgrid,which aims to reduce the disturbance from PV generation and the load variation to the main grid without a grid interface converter.The grid interface current is directly controlled by a battery DC-DC converter within the DC microgrid.Based on a comprehensive analysis of the battery DC-DC converter and interface current control,the control system has been mathematically modelled.This enabled two transfer functions to be derived that reflect the dynamic response of the inductor current to the duty cycle variation(inner loop),and the dynamic response of the grid interface current to the inductor current variation(outer loop).Experimental study has been done to assess the effectiveness of the proposed control strategy.The experimental results indicate that the proposed control strategy has a good performance to control the grid interface current without an interface converter,regardless the variations of both PV and the load conditions. 展开更多
关键词 BATTERY dc microgrid dc-dc converter photovoltaic(PV)system
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Adaptive Decentralized Output-Constrained Control of Single-Bus DC Microgrids 被引量:6
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作者 Jiangkai Peng Bo Fan +2 位作者 Jiajun Duan Qinmin Yang Wenxin Liu 《IEEE/CAA Journal of Automatica Sinica》 EI CSCD 2019年第2期424-432,共9页
A single-bus DC microgrid can represent a wide range of applications.Control objectives of such systems include high-performance bus voltage regulation and proper load sharing among multiple distributed generators(DGs... A single-bus DC microgrid can represent a wide range of applications.Control objectives of such systems include high-performance bus voltage regulation and proper load sharing among multiple distributed generators(DGs)under various operating conditions.This paper presents a novel decentralized control algorithm that can guarantee both the transient voltage control performance and realize the predefined load sharing percentages.First,the output-constrained control problem is transformed into an equivalent unconstrained one.Second,a two-step backstepping control algorithm is designed based on the transformed model for bus-voltage regulation.Since the overall control effort can be split proportionally and calculated with locally-measurable signals,decentralized load sharing can be realized.The control design requires neither accurate parameters of the output filters nor load measurement.The stability of the transformed systems under the proposed control algorithm can indirectly guarantee the transient bus voltage performance of the original system.Additionally,the high-performance control design is robust,flexible,and reliable.Switch-level simulations under both normal and fault operating conditions demonstrate the effectiveness of the proposed algorithm. 展开更多
关键词 dc microgrids decentralized control paralleled converters output constraint
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Control-Based Stabilization of DC Microgrid for More Electric Aircraft 被引量:2
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作者 YANG Jiajun BUTICCHI Giampaolo +3 位作者 GU Chunyang WHEELER Pat ZHANG He GERADA Chris 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第5期737-746,共10页
Electrifying the on-board subsystems of aircraft becomes an inevitable process as being faced with the environmental pollution,along with the proposed concept called more electric aircraft(MEA).With the increasing num... Electrifying the on-board subsystems of aircraft becomes an inevitable process as being faced with the environmental pollution,along with the proposed concept called more electric aircraft(MEA).With the increasing number of on-board power electronic based devices,the distribution system of the aircraft can be regarded as an onboard microgrid.As it is known that the load power electronic converters can exhibit constant power load(CPL)characteristics and reduce the system stability,it is necessary to accurately predict and enhance the system stability in designing process.This paper firstly analyzes the stability of an on-board DC microgrid with the presence of CPL.Then,discusses the reasons behind instability and proposes a control strategy to enhance system stability.Finally,the simulation results are worked out to validate the analysis and the effect of the proposed control strategy. 展开更多
关键词 dc microgrid stability analysis impedance model constant power load more electric aircraft dual active bridge converter permanent magnet synchronous generator
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DC microgrid stability control with constant power load:a review 被引量:1
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作者 LI Xin ZOU Junnan LIU Jinhui 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2024年第4期532-546,共15页
The DC microgrid has the advantages of high energy conversion efficiency,high energy transmission density,no reactive power flow,and grid-connected synchronization.It is an essential component of the future intelligen... The DC microgrid has the advantages of high energy conversion efficiency,high energy transmission density,no reactive power flow,and grid-connected synchronization.It is an essential component of the future intelligent power distribution system.Constant power load(CPL)will degrade the stability of the DC microgrid and cause system voltage oscillation due to its negative resistance characteristics.As a result,the stability of DC microgrids with CPL has become a problem.At present,the research on the stability of DC microgrid is mainly focused on unipolar DC microgrid,while the research on bipolar DC microgrid lacks systematic discussion.The stability of DC microgrid using CPL was studied first,and then the current stability criteria of DC microgrid were summarized,and its research trend was analyzed.On this basis,aiming at the stability problem caused by CPL,the existing control methods were summarized from the perspective of source converter output impedance and load converter input impedance,and the current control methods were outlined as active and passive control methods.Lastly,the research path of bipolar DC microgrid stability with CPL was prospected. 展开更多
关键词 constant power load(CPL) dc microgrid voltage balancer stability criterion cascaded system virtual resistance
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Research on Virtual DC Generator-Based Control Strategy of DCMicrogrid with Photovoltaic and Energy Storage 被引量:1
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作者 Feng Zhao Chengrui Xiao +1 位作者 Xiaoqiang Chen Ying Wang 《Energy Engineering》 EI 2023年第6期1353-1370,共18页
With the penetration of a large number of photovoltaic power generation units and power electronic converters,the DC microgrid shows low inertia characteristics,which might affect the stable operation of the microgrid... With the penetration of a large number of photovoltaic power generation units and power electronic converters,the DC microgrid shows low inertia characteristics,which might affect the stable operation of the microgrid in extreme cases.In order to enhance the“flexible features”of the interface converter connected to the DC bus,a control strategy of DCmicrogrid with photovoltaic and energy storage based on the virtual DC generator(VDCG)is proposed in this paper.The interface converters of the photovoltaic power generation system and the energy storage system simulates the inertia and damping characteristics of the DC generator to improve the stability of the DC bus voltage.The impedance ratio of DC microgrid was obtained by establishing the small-signal model of photovoltaic power generation system and energy storage system,and the Nyquist curves was applied to analyze the small-signal stability of the system.Finally,the simulation results were verified with MATLAB/Simulink.The results show that the proposed control strategy can slow down the fluctuation of bus voltage under the conditions of photovoltaic power fluctuation and load mutation,thus enhancing the system stability. 展开更多
关键词 dc microgrid with photovoltaic and energy storage virtual dc generator the low inertia characteristics smallsignal model impedance ratio
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一种非隔离型双极性输出DC-DC变换器合成方法 被引量:1
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作者 周明珠 刘超 +2 位作者 庄一展 毛行奎 张艺明 《电工技术学报》 北大核心 2025年第12期3953-3963,共11页
双极性直流微电网系统因其高效和可靠的优势,常作为连接各种可再生能源和新兴负载的解决方案。该文提出一种非隔离型双极性输出DC-DC变换器合成方法,并在传统变换器的基础上推演出一系列双极性输出DC-DC变换器拓扑。通过在Boost双极性输... 双极性直流微电网系统因其高效和可靠的优势,常作为连接各种可再生能源和新兴负载的解决方案。该文提出一种非隔离型双极性输出DC-DC变换器合成方法,并在传统变换器的基础上推演出一系列双极性输出DC-DC变换器拓扑。通过在Boost双极性输出DC-DC变换器上引入耦合电感和开关电容升压技术,提出一种双极性输出高增益DC-DC变换器。所提变换器具有低输入电流纹波、高电压增益、开关管电压应力低的优势,可以通过占空比和耦合电感匝比灵活调节双极性输出电压。该文给出了变换器结构的详细推演过程,并进行了模态分析、电压电流应力推导和稳态性能对比。最后,为了验证所提变换器的可行性,搭建一台200 W的实验样机,输出电压分别为190、−190和380 V,变换器在满载效率为95.5%。 展开更多
关键词 双极性直流微电网 dc-dc 变换器 耦合电感 高电压增益 低输入电流纹波
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Optimal Cooperative Secondary Control for Islanded DC Microgrids via a Fully Actuated Approach
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作者 Yi Yu Guo-Ping Liu +1 位作者 Yi Huang Peng Shi 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2024年第2期405-417,共13页
DC-DC converter-based multi-bus DC microgrids(MGs) in series have received much attention, where the conflict between voltage recovery and current balancing has been a hot topic. The lack of models that accurately por... DC-DC converter-based multi-bus DC microgrids(MGs) in series have received much attention, where the conflict between voltage recovery and current balancing has been a hot topic. The lack of models that accurately portray the electrical characteristics of actual MGs while is controller design-friendly has kept the issue active. To this end, this paper establishes a large-signal model containing the comprehensive dynamical behavior of the DC MGs based on the theory of high-order fully actuated systems, and proposes distributed optimal control based on this. The proposed secondary control method can achieve the two goals of voltage recovery and current sharing for multi-bus DC MGs. Additionally, the simple structure of the proposed approach is similar to one based on droop control, which allows this control technique to be easily implemented in a variety of modern microgrids with different configurations. In contrast to existing studies, the process of controller design in this paper is closely tied to the actual dynamics of the MGs. It is a prominent feature that enables engineers to customize the performance metrics of the system. In addition, the analysis of the stability of the closed-loop DC microgrid system, as well as the optimality and consensus of current sharing are given. Finally, a scaled-down solar and battery-based microgrid prototype with maximum power point tracking controller is developed in the laboratory to experimentally test the efficacy of the proposed control method. 展开更多
关键词 dc microgrids distributed control high-order fully actuated system approach linear quadratic regulator microgrid modeling secondary control
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Attack-resilient control for converter-based DC microgrids
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作者 Sen Tan Juan C.Vasquez Josep M.Guerrero 《Global Energy Interconnection》 EI CSCD 2023年第6期751-757,共7页
In light of the growing integration of renewable energy sources in power systems,the adoption of DC microgrids has become increasingly popular,due to its simple structure,having no frequency,power factor concerns.Howe... In light of the growing integration of renewable energy sources in power systems,the adoption of DC microgrids has become increasingly popular,due to its simple structure,having no frequency,power factor concerns.However,the dependence of DC microgrids on cyber-networks also makes them susceptible to cyber-attacks.Potential cyberattacks can disrupt power system facilities and result in significant economic and loss of life.To address this concern,this paper presents an attack-resilient control strategy for microgrids to ensure voltage regulation and power sharing with stable operation under cyber-attack on the actuators.This paper first formulates the cyber-security problem considering a distributed generation based microgrid using the converter model,after which an attack-resilient control is proposed to eliminate the actuator attack impact on the system.Steady state analysis and root locus validation illustrate the feasibility of the proposed method.The effectiveness of the proposed control scheme is demonstrated through simulation results. 展开更多
关键词 Cyber-attacks dc microgrids Resilient control
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Research on the Stability Analysis Method of DC Microgrid Based on Bifurcation and Strobe Theory
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作者 Wei Chen Nan Qiu Xusheng Yang 《Energy Engineering》 EI 2024年第4期987-1005,共19页
During the operation of a DC microgrid,the nonlinearity and low damping characteristics of the DC bus make it prone to oscillatory instability.In this paper,we first establish a discrete nonlinear system dynamic model... During the operation of a DC microgrid,the nonlinearity and low damping characteristics of the DC bus make it prone to oscillatory instability.In this paper,we first establish a discrete nonlinear system dynamic model of a DC microgrid,study the effects of the converter sag coefficient,input voltage,and load resistance on the microgrid stability,and reveal the oscillation mechanism of a DC microgrid caused by a single source.Then,a DC microgrid stability analysis method based on the combination of bifurcation and strobe is used to analyze how the aforementioned parameters influence the oscillation characteristics of the system.Finally,the stability region of the system is obtained by the Jacobi matrix eigenvalue method.Grid simulation verifies the feasibility and effectiveness of the proposed method. 展开更多
关键词 dc microgrid BIFURCATION nonlinear dynamics stability analysis oscillation characteristics
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Performance Analysis of Grid Connected and Islanded Modes of AC/DC Microgrid for Residential Home Cluster
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作者 Ahmed M. Othman Hossam A. Gabbar Negar Honarmand 《Intelligent Control and Automation》 2015年第4期249-270,共22页
This paper presents performance analysis on hybrid AC/DC microgrid networks for residential home cluster. The design of the proposed microgrid includes comprehensive types of Distributed Generators (DGs) as hybrid pow... This paper presents performance analysis on hybrid AC/DC microgrid networks for residential home cluster. The design of the proposed microgrid includes comprehensive types of Distributed Generators (DGs) as hybrid power sources (wind, Photovoltaic (PV) solar cell, battery, fuel cell). Details about each DG dynamic modeling are presented and discussed. The customers in home cluster can be connected in both of the operating modes: islanded to the microgrid or connected to utility grid. Each DG has appended control system with its modeling that will be discussed to control DG performance. The wind turbine will be controlled by AC control system within three sub-control systems: 1) speed regulator and pitch control, 2) rotor side converter control, and 3) grid side converter control. The AC control structure is based on PLL, current regulator and voltage booster converter with using of photovoltaic Voltage Source Converter (VSC) and inverters to connect to the grid. The DC control system is mainly based on Maximum Power Point Tracking (MPPT) controller and boost converter connected to the PV array block and in order to control the system. The case study is used to analyze the performance of the proposed microgrid. The buses voltages, active power and reactive power responses are presented in both of grid-connected and islanded modes. In addition, the power factor, Total Harmonic Distortion (THD) and modulation index are calculated. 展开更多
关键词 microgrid PHOTOVOLTAIC Systems WIND Power Generation Hybrid AC/dc Networks
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Automatic SOC Equalization Strategy of Energy Storage Units with DC Microgrid Bus Voltage Support
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作者 Jingjing Tian Shenglin Mo +1 位作者 Feng Zhao Xiaoqiang Chen 《Energy Engineering》 EI 2024年第2期439-459,共21页
In this paper,an improved sag control strategy based on automatic SOC equalization is proposed to solve the problems of slow SOC equalization and excessive bus voltage fluctuation amplitude and offset caused by load a... In this paper,an improved sag control strategy based on automatic SOC equalization is proposed to solve the problems of slow SOC equalization and excessive bus voltage fluctuation amplitude and offset caused by load and PV power variations in a stand-alone DC microgrid.The strategy includes primary and secondary control.Among them,the primary control suppresses the DC microgrid voltage fluctuation through the I and II section control,and the secondary control aims to correct the P-U curve of the energy storage system and the PV system,thus reducing the steady-state bus voltage excursion.The simulation results demonstrate that the proposed control strategy effectively achieves SOC balancing and enhances the immunity of bus voltage.The proposed strategy improves the voltage fluctuation suppression ability by approximately 39.4%and 43.1%under the PV power and load power fluctuation conditions,respectively.Furthermore,the steady-state deviation of the bus voltage,△U_(dc) is only 0.01–0.1 V,ensuring stable operation of the DC microgrid in fluctuating power environments. 展开更多
关键词 Automatic equalization independent dc microgrid improve droop control secondary control state of charge
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直流微电网双向DC-DC变换器的自耦PI控制方法
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作者 唐钰淇 曾喆昭 卢元煦 《兵器装备工程学报》 北大核心 2025年第4期200-207,共8页
针对分布式电源功率波动与负载扰动引起母线电压波动问题,以直流微电网储能单元双向DC-DC变换器为研究对象,提出一种基于自耦PID控制理论的自耦PI控制策略。该方法引入一个虚拟电流控制量,并将电压通道和电流通道的内部动态与外部扰动... 针对分布式电源功率波动与负载扰动引起母线电压波动问题,以直流微电网储能单元双向DC-DC变换器为研究对象,提出一种基于自耦PID控制理论的自耦PI控制策略。该方法引入一个虚拟电流控制量,并将电压通道和电流通道的内部动态与外部扰动分别定义为两个总扰动,从而将直流微电网系统分解为外环电压控制与内环电流控制,再根据自耦PID控制理论思想,分别设计内外环的自耦PI控制器。仿真结果表明了该控制方法可以实现对直流微电网储能系统的有效控制,不仅具有快的响应速度,良好的抗扰动能力,而且在光伏单元输出功率波动、负载波动以及电容与电感参数波动等情况下,都具有良好的鲁棒性。 展开更多
关键词 直流微电网 双向dc-dc变换器 母线电压 自耦PID控制 速度因子
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一种三绕组耦合电感双极性输出高增益DC-DC变换器
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作者 陈献君 周明珠 +2 位作者 商运辉 毛行奎 张艺明 《仪器仪表学报》 北大核心 2025年第5期146-159,共14页
双极性直流微电网系统是一种高可靠性、高灵活性和高效率的电力供应创新架构。通过结合前沿成果和对双极性输出的三电平Boost变换器拓扑结构中加入耦合电感线圈并集成开关电容升压机制,该研究提出一种具有低输入电流纹波和开关器件应力... 双极性直流微电网系统是一种高可靠性、高灵活性和高效率的电力供应创新架构。通过结合前沿成果和对双极性输出的三电平Boost变换器拓扑结构中加入耦合电感线圈并集成开关电容升压机制,该研究提出一种具有低输入电流纹波和开关器件应力小等优点的三绕组耦合电感的双极性输出高增益DC-DC变换器,可通过开关管的导通时间和耦合电感匝比对变换器的输出电压进行调节。该研究深入探讨该变换器的拓扑结构推演过程、工作原理及其工作模态,对变换器的电压增益和各元器件的电压和电流应力进行理论推导与数值计算,同时对其进行了效率分析和与其他高增益DC-DC变换器之间的电路性能比较。最终搭建了用于验证该变换器工作性能的工频为50 kHz,输入功率为200 W,输入电压为28 V,输出电压分别为190 V和-190 V的实验样机,并且根据输入电流纹波比选取合适的输入电感。实验在满载(200 W)的条件下,进行了输入电压24、28和32 V升至输出电压380 V的全面测试,并展示了它们的输入电流和输出电压波形图。当实验在半载和满载条件进行时,变换器的效率为95.65%和93.63%,这些实验结论表明该变换器所具备的特性为其在高频高效工作状态下运行创造了有利条件,在电力行业具有广泛的应用空间和重大的研究价值。 展开更多
关键词 双极性直流微电网 三绕组耦合电感 dc-dc变换器 高电压增益 低输入电流纹波
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H_∞ Robust Control of DC-AC Interfaced Microsource in Microgrids
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作者 Chun-Xia Dou Fang Zhao +1 位作者 Xing-Bei Jia Dong-Le Liu 《International Journal of Automation and computing》 EI CSCD 2013年第1期73-78,共6页
This paper focuses on the direct current-alternating current (DC-AC) interfaced microsource based H∞ robust control strategies in microgrids. It presents detail of a DC-AC interfaced microsource model which is conn... This paper focuses on the direct current-alternating current (DC-AC) interfaced microsource based H∞ robust control strategies in microgrids. It presents detail of a DC-AC interfaced microsource model which is connected to the power grid through a controllable switch. A double loop current-regulated voltage control scheme for the DC-AC interface is designed. In the case of the load disturbance and the model uncertainties, the inner voltage and current loop are produced based on the H∞ robust control strategies. The outer power loop uses the droop characteristic controller. Finally, the scheme is simulated using the Matlab/Simulink. The simulation results demonstrate that DC-AC interfaced microsource system can supply high quality power. Also, the proposed control scheme can make the system switch smoothly between the isolated mode and grid-connected mode. 更多 展开更多
关键词 microgrid dc-AC interfaced microsource H∞ robust control f-v droop characteristic smooth switching
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