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Reverse Droop Control-based Smooth Transfer Strategy for Interface Converters in Hybrid AC/DC Distribution Networks
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作者 Wenyuan Cao Minxiao Han +4 位作者 Xiangkun Meng Wenqiang Xie Zmarrak Wali Khan Josep M.Guerrero Gibran David Agundis Tinajero 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2023年第1期122-134,共13页
Hybrid AC/DC distribution networks are promising candidates for future applications due to their rapid advancement in power electronics technology.They use interface converters(IFCs)to link DC and AC distribution netw... Hybrid AC/DC distribution networks are promising candidates for future applications due to their rapid advancement in power electronics technology.They use interface converters(IFCs)to link DC and AC distribution networks.However,the networks possess drawbacks with AC voltage and frequency offsets when transferring from grid-tied to islanding modes.To address these problems,this paper proposes a simple but effective strategy based on the reverse droop method.Initially,the power balance equation of the distribution system is derived,which reveals that the cause of voltage and frequency offsets is the mismatch between the IFC output power and the rated load power.Then,the reverse droop control is introduced into the IFC controller.By using a voltage-active power/frequency-reactive power(U-P/f-Q)reverse droop loop,the IFC output power enables adaptive tracking of the rated load power.Therefore,the AC voltage offset and frequency offset are suppressed during the transfer process of operational modes.In addition,the universal parameter design method is discussed based on the stability limitations of the control system and the voltage quality requirements of AC critical loads.Finally,simulation and experimental results clearly validate the proposed control strategy and parameter design method. 展开更多
关键词 Adaptive adjustment hybrid ac/dc distribution network interface converters parameter design method reverse droop control
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Research on power electronic transformer applied in AC/DC hybrid distribution networks 被引量:15
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作者 Yiqun Miao Jieying Song +6 位作者 Haijun Liu Zhengang Lu Shufan Chen Chun Ding Tianzhi Cao Linhai Cai Yuzhong Gong 《Global Energy Interconnection》 2018年第3期396-403,共8页
The AC/DC hybrid distribution network is one of the trends in distribution network development, which poses great challenges to the traditional distribution transformer. In this paper, a new topology suitable for AC/D... The AC/DC hybrid distribution network is one of the trends in distribution network development, which poses great challenges to the traditional distribution transformer. In this paper, a new topology suitable for AC/DC hybrid distribution network is put forward according to the demands of power grid, with advantages of accepting DG and DC loads, while clearing DC fault by blocking the clamping double sub-module(CDSM) of input stage. Then, this paper shows the typical structure of AC/DC distribution network that is hand in hand. Based on the new topology, this paper designs the control and modulation strategies of each stage, where the outer loop controller of input stage is emphasized for its twocontrol mode. At last, the rationality of new topology and the validity of control strategies are verified by the steady and dynamic state simulation. At the same time, the simulation results highlight the role of PET in energy regulation. 展开更多
关键词 ac/dc hybrid distribution network Power electronic transformer(PET) Clamping double sub-module(CDSM) Energy router
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Research on Scheduling Strategy of Flexible Interconnection Distribution Network Considering Distributed Photovoltaic and Hydrogen Energy Storage
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作者 Yang Li Jianjun Zhao +2 位作者 Xiaolong Yang He Wang Yuyan Wang 《Energy Engineering》 EI 2024年第5期1263-1289,共27页
Distributed photovoltaic(PV)is one of the important power sources for building a new power system with new energy as the main body.The rapid development of distributed PV has brought new challenges to the operation of... Distributed photovoltaic(PV)is one of the important power sources for building a new power system with new energy as the main body.The rapid development of distributed PV has brought new challenges to the operation of distribution networks.In order to improve the absorption ability of large-scale distributed PV access to the distribution network,the AC/DC hybrid distribution network is constructed based on flexible interconnection technology,and a coordinated scheduling strategy model of hydrogen energy storage(HS)and distributed PV is established.Firstly,the mathematical model of distributed PV and HS system is established,and a comprehensive energy storage system combining seasonal hydrogen energy storage(SHS)and battery(BT)is proposed.Then,a flexible interconnected distribution network scheduling optimization model is established to minimize the total active power loss,voltage deviation and system operating cost.Finally,simulation analysis is carried out on the improved IEEE33 node,the NSGA-II algorithm is used to solve specific examples,and the optimal scheduling results of the comprehensive economy and power quality of the distribution network are obtained.Compared with the method that does not consider HS and flexible interconnection technology,the network loss and voltage deviation of this method are lower,and the total system cost can be reduced by 3.55%,which verifies the effectiveness of the proposed method. 展开更多
关键词 Seasonal hydrogen storage flexible interconnection ac/dc distribution network photovoltaic absorption scheduling strategy
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Two-stage Optimal Dispatching of AC/DC Hybrid Active Distribution Systems Considering Network Flexibility 被引量:8
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作者 Yi Su Jiashen Teh 《Journal of Modern Power Systems and Clean Energy》 SCIE EI CSCD 2023年第1期52-65,共14页
The increasing flexibility of active distribution systems(ADSs)coupled with the high penetration of renewable distributed generators(RDGs)leads to the increase of the complexity.It is of practical significance to achi... The increasing flexibility of active distribution systems(ADSs)coupled with the high penetration of renewable distributed generators(RDGs)leads to the increase of the complexity.It is of practical significance to achieve the largest amount of RDG penetration in ADSs and maintain the optimal operation.This study establishes an alternating current(AC)/direct current(DC)hybrid ADS model that considers the dynamic thermal rating,soft open point,and distribution network reconfiguration(DNR).Moreover,it transforms the optimal dispatching into a second-order cone programming problem.Considering the different control time scales of dispatchable resources,the following two-stage dispatching framework is proposed.d dispatch uses hourly input data with the goal(1)The day-ahea of minimizing the grid loss and RDG dropout.It obtains the optimal 24-hour schedule to determine the dispatching plans for DNR and the energy storage system.(2)The intraday dispatch uses 15-min input data for 1-hour rolling-plan dispatch but only executes the first 15 min of dispatching.To eliminate error between the actual operation and dispatching plan,the first 15 min is divided into three 5-min step-by-step executions.The goal of each step is to trace the tie-line power of the intraday rolling-plan dispatch to the greatest extent at the minimum cost.The measured data are used as feedback input for the rolling-plan dispatch after each step is executed.A case study shows that the comprehensive cooperative ADS model can release the line capacity,reduce losses,and improve the penetration rate of RDGs.Further,the two-stage dispatching framework can handle source-load fluctuations and enhance system stability. 展开更多
关键词 Two-stage dispatching network flexibility renewable distributed generator second-order cone programming(SOCP) alternating current(ac)/direct current(dc)hybrid active distribution system
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Coordinated voltage regulation of hybrid AC/DC medium voltage distribution networks 被引量:4
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作者 Lu ZHANG Ying CHEN +2 位作者 Chen SHEN Wei TANG Jun LIANG 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2018年第3期463-472,共10页
In a hybrid AC/DC medium voltage distribution network, distributed generations(DGs), energy storage systems(ESSs), and the voltage source converters(VSCs)between AC and DC lines, have the ability to regulate node volt... In a hybrid AC/DC medium voltage distribution network, distributed generations(DGs), energy storage systems(ESSs), and the voltage source converters(VSCs)between AC and DC lines, have the ability to regulate node voltages in real-time. However, the voltage regulation abilities of above devices are limited by their ratings. And the voltage regulation efficiencies of these devices are also different. Besides, due to high r/x ratio, node voltages are influenced by both real and reactive power. In order to achieve the coordinated voltage regulation in a hybrid AC/DC distribution network, a priority-based real-time control strategy is proposed based on the voltage control effect of real and reactive power adjustment. The equivalence of real and reactive power adjustment on voltage control is considered in control area partition optimization, in which regulation efficiency and capability are taken as objectives.In order to accommodate more DGs, the coordination of controllable devices is achieved according to voltage sensitivities. Simulations studies are performed to verify the proposed method. 展开更多
关键词 hybrid ac/dc distribution network VOLTAGE control PARTITION Power system
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Battery Storage Configuration of AC/DC Hybrid Distribution Networks 被引量:2
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作者 He Meng Hongjie Jia +2 位作者 Tao Xu Wei Wei Xiaoyu Wang 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2023年第3期859-872,共14页
The upscaling requirements of energy transition highlight the urgent need for ramping up renewables and boosting system efficiencies.However,the stochastic nature of excessive renewable energy resources has challenged... The upscaling requirements of energy transition highlight the urgent need for ramping up renewables and boosting system efficiencies.However,the stochastic nature of excessive renewable energy resources has challenged stable and efficient operation of the power system.Battery energy storage systems(BESSs)have been identified as critical to mitigate random fluctuations,unnecessary green energy curtailment and load shedding with rapid response and flexible connection.On the other hand,an AC/DC hybrid distribution system can offer merged benefits in both AC and DC subsystems without additional losses during AC/DC power conversion.Therefore,configuring BESSs on an AC/DC distribution system is wellpositioned to meet challenges brought by carbon reductions in an efficient way.A bi-level optimization model of BESS capacity allocation for AC/DC hybrid distribution systems,considering the flexibility of voltage source converters(VSCs)and power conversion systems(PCSs),has been established in this paper to address the techno-economic issues that hindered wide implementation.The large-scale nonlinear programming problem has been solved utilizing a genetic algorithm combined with second-order cone programming.Rationality and effectiveness of the model have been verified by setting different scenarios through case studies.Simulation results have demonstrated the coordinated operation of BESS and AC/DC hybrid systems can effectively suppress voltage fluctuations and improve the cost-benefit of BESSs from a life cycle angle. 展开更多
关键词 ac/dc hybrid distribution network arbitrage revenue battery energy storage system life cycle cost voltage source converter
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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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含DG的交直流不平衡配电系统暂态电压稳定性分析
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作者 徐艳春 王霖 +2 位作者 张涛 王凌云 MI Lu 《电力自动化设备》 北大核心 2025年第1期33-41,共9页
分布式电源(DG)以及大量恒功率直流负荷接入交直流配电系统使得母线暂态电压表现出正负极耦合且多波动的特性,现有暂态电压稳定性评估方法准确率低且适用性较差。推导分析了双极交直流配电系统直流侧线路、负荷参数不平衡时影响系统母... 分布式电源(DG)以及大量恒功率直流负荷接入交直流配电系统使得母线暂态电压表现出正负极耦合且多波动的特性,现有暂态电压稳定性评估方法准确率低且适用性较差。推导分析了双极交直流配电系统直流侧线路、负荷参数不平衡时影响系统母线暂态电压稳定的因素。基于二元表判据思想,提出一种改进的自适应母线暂态电压稳定性评估指标。针对参数不平衡时含DG的双极交直流配电系统,引入稳定性保持因子,提出母线与系统的暂态电压稳定裕度计算方法。基于所提方法利用MATLAB/Simulink仿真平台在改进的IEEE 33节点与IEEE 69节点双极交直流配电系统中量化影响系统暂态电压稳定性的因素,并对比验证了所提指标的有效性和优越性。 展开更多
关键词 暂态电压稳定性 交直流系统 不平衡配电系统 直流故障分析
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构网型单元异常下的孤岛交直流混合微电网群分布式协同控制策略
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作者 贾宏杰 张育炜 +3 位作者 肖迁 穆云飞 金昱 陆文标 《天津大学学报(自然科学与工程技术版)》 北大核心 2025年第3期221-236,共16页
当构网型单元处于限功率运行与故障等工况下,传统孤岛交直流混合微电网群分布式协同控制方法易造成交流子微网母线电压与频率失去支撑,进而导致系统失稳.为解决上述问题,本文提出了一种面向构网型单元限功率运行与故障工况的孤岛交直流... 当构网型单元处于限功率运行与故障等工况下,传统孤岛交直流混合微电网群分布式协同控制方法易造成交流子微网母线电压与频率失去支撑,进而导致系统失稳.为解决上述问题,本文提出了一种面向构网型单元限功率运行与故障工况的孤岛交直流混合微电网群分布式协同控制策略.当子微网构网型单元处于限功率运行或故障工况时,首先,在构网型单元异常子微网变换器控制层,构网型单元将输出功率钳位于最大值或退出运行,跟网型单元通过与互联变换器进行二次协同控制,实现功率的合理分配;其次,在网间互联变换器控制层,与构网型单元异常子微网相连的互联变换器转为构网型控制模式,为构网型单元异常子微网提供母线电压与频率支撑,其余互联变换器按照正常子微网自身剩余容量分担构网型单元异常子微网所需的支撑功率.多工况下的仿真结果表明,当负荷连续增加,构网型单元处于限功率运行工况时,所提分布式协同控制策略可通过网间互联变换器的变模式运行,实现构网型单元异常子微网交流母线电压与频率的快速恢复、跟网型单元输出功率的精准分配;当构网型单元处于故障工况时,所提分布式协同控制策略可以有效解决构网型单元异常子微网因交流母线电压与频率失去支撑导致的失稳问题. 展开更多
关键词 孤岛交直流混合微电网群 分布式协同控制 构网型单元 异常运行工况 电压与频率支撑 功率分配
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The Averaged-value Model of a Flexible Power Electronics Based Substation in Hybrid AC/DC Distribution Systems 被引量:4
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作者 Hong Liu Zhanfeng Deng +5 位作者 Xialin Li Li Guo Di Huang Shouqiang Fu Xiangyu Chen Chengshan Wang 《CSEE Journal of Power and Energy Systems》 SCIE EI CSCD 2022年第2期452-464,共13页
The concept of a flexible power electronics substation(FPES)was first applied in the Zhangbei DC distribution network demonstration project.As a multi-port power electronics transformer(PET)with different AC and DC vo... The concept of a flexible power electronics substation(FPES)was first applied in the Zhangbei DC distribution network demonstration project.As a multi-port power electronics transformer(PET)with different AC and DC voltage levels,the FPES has adopted a novel topology integrating modular multilevel converter(MMC)and four-winding medium frequency transformer(FWMFT)based multiport DC-DC converter,which can significantly reduce capacitance in each sub-module(SM)of a MMC and also save space and cost.In this paper,in order to accelerate speed of electromagnetic transient(EMT)simulations of FPES based hybrid AC/DC distribution systems,an averaged-value model(AVM)is proposed for efficient and accurate representation of FPES.Assume that all SM capacitor voltages are perfectly balanced in the MMC,then the MMC behavior can be modeled using controlled voltage sources based on modulation voltages from control systems.In terms of the averaged current transfer characteristics among the windings of the FWMFT,we consider that all multiport DC-DC converters are controlled with the same dynamics,a lumped averaged model using controlled current and voltage sources has been developed for these four-port DC-DC converters connected to the upper or lower arms of the MMC.The presented FPES AVM model has been tested and validated by comparison with a detailed IGBT-based EMT model.Results show that the AVM is significantly more efficient while maintaining its accuracy in an EMT simulation. 展开更多
关键词 Averaged-value model(AVM) flexible power electronics substation(FPES) four-winding medium frequency transformer(FWMFT) hybrid ac/dc distribution systems modular multilevel converter(MMC) multiport dc-dc converter
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基于直挂储能控制的煤矿交直流混合配电网电压波动抑制研究 被引量:1
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作者 史小军 于铄航 +1 位作者 王伟 公铮 《工矿自动化》 北大核心 2025年第1期78-84,94,共8页
针对煤矿交直流混合配电网中因负载变化造成的直流母线电压波动问题,通常在直流母线处设置储能装置予以解决。现有的储能装置控制策略使得装置负担过重,且未考虑其荷电状态。针对煤矿交直流混合配电网的直流侧直挂储能拓扑,提出一种抑... 针对煤矿交直流混合配电网中因负载变化造成的直流母线电压波动问题,通常在直流母线处设置储能装置予以解决。现有的储能装置控制策略使得装置负担过重,且未考虑其荷电状态。针对煤矿交直流混合配电网的直流侧直挂储能拓扑,提出一种抑制母线电压波动的储能装置控制策略。经分析确定直挂储能装置工作于定功率模式,通过加入母线电压反馈进而调整储能装置出力的方式改进传统定功率控制策略,从而减小系统的不平衡功率;采用载波移相调制策略,以降低电流纹波;以荷电状态为对象进行排序均压,保证各储能子模块均匀充放电。在PSCAD/EMTDC中搭建煤矿交直流混合配电网仿真模型并进行实验,结果表明:在切除电动机或纯阻性负载突变情况下,母线电压波动率分别减小约70%和90%,验证了该控制策略可有效抑制母线电压波动,且蓄电池充放电速率为0.628C,满足快速响应要求。在实时数字仿真实验平台中进行硬件在环实验,结果与仿真结果一致,进一步验证了该控制策略的有效性。 展开更多
关键词 煤矿供电系统 交直流混合配电网 直挂储能 电压波动抑制 定功率控制 载波移相调制 荷电状态
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考虑经济性与韧性均衡的交直流混合配电网协调规划
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作者 马梓耀 张博 +3 位作者 张璐 王照琪 唐巍 陈甜甜 《电力系统自动化》 北大核心 2025年第6期78-87,共10页
新型源荷广泛接入使交直流混合配电网成为未来配电系统发展的新形态,通过电力电子设备实现网络柔性互联、功率互济能够有效提升配电网韧性和减少极端灾害带来的巨大停电损失。针对由于维度、量级和尺度不同导致配电网经济性和韧性在规... 新型源荷广泛接入使交直流混合配电网成为未来配电系统发展的新形态,通过电力电子设备实现网络柔性互联、功率互济能够有效提升配电网韧性和减少极端灾害带来的巨大停电损失。针对由于维度、量级和尺度不同导致配电网经济性和韧性在规划模型中难以均衡的问题,提出一种基于纳什谈判的交直流混合配电网协调规划方法。首先,分析常态运行和极端灾害两种场景下直流网络对于经济性和韧性的影响;其次,刻画经济性和韧性指标并提出基于纳什均衡的经济性和韧性均衡方法;最后,以均衡后的经济性和韧性为目标函数,建立交直流混合配电网网架优化规划模型并进行求解。采用实际算例对所提方法进行仿真分析和对比验证。算例结果表明,所提方法能够充分发挥直流网络灵活互联优势,实现精准投资并提升配电网韧性。 展开更多
关键词 交直流混合配电网 韧性 经济性 博弈论 纳什均衡 网架规划
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基于直接式AC/AC变换的单相混合式配电变压器及其松弛二端口网络建模 被引量:5
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作者 王艺博 蔡国伟 +3 位作者 刘闯 郭东波 张瀚文 朱炳达 《电网技术》 EI CSCD 北大核心 2020年第8期3029-3037,共9页
针对配电网中的电压波动问题,提出了一种由传统工频变压器与电力电子变换器组合而成的混合式配电变压器(hybrid distribution transformer,HDT)。首先,在不同HDT拓扑分析的基础上,选取了具有一定结构优势的双极性直接式AC/AC变换器(bipo... 针对配电网中的电压波动问题,提出了一种由传统工频变压器与电力电子变换器组合而成的混合式配电变压器(hybrid distribution transformer,HDT)。首先,在不同HDT拓扑分析的基础上,选取了具有一定结构优势的双极性直接式AC/AC变换器(bipolardirectAC/ACconverter,BD-AC)作为HDT的电力电子组成部分;其次,对HDT的拓扑结构与运行原理进行了分析并提出了相应的控制策略;再次,基于状态空间平均法构建了HDT的状态空间平均模型,并以松弛二端口网络理论为依托,对HDT的系统特性进行了理论分析;最后,通过搭建仿真系统验证了理论分析的合理性与有效性。 展开更多
关键词 电压柔性调控 混合配电变压器 拓扑结构 直接式ac/ac变换器 松弛二端口网络 状态空间平均模型
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考虑频率与电压越限风险的孤岛微电网群分层协调控制策略
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作者 张育炜 肖迁 +3 位作者 穆云飞 贾宏杰 金昱 陆文标 《电力系统自动化》 北大核心 2025年第5期99-108,共10页
孤岛交直流混合微电网群多采用子微网功率按比例分配方法,其在重负荷接入下面临频率与直流母线电压的越限风险。为解决上述问题,提出了一种分层协调控制策略。首先,构建一种分层控制架构;其次,在微电网群控制层,提出一种基于子微网极限... 孤岛交直流混合微电网群多采用子微网功率按比例分配方法,其在重负荷接入下面临频率与直流母线电压的越限风险。为解决上述问题,提出了一种分层协调控制策略。首先,构建一种分层控制架构;其次,在微电网群控制层,提出一种基于子微网极限功率点钳位的微电网群互联变换器功率分配方法,当重负荷接入时,有越限风险的子微网功率钳位于其阈值,保证频率与电压稳态不越限;再次,在子微网控制层,设计一种基于频率与电压微分前馈补偿的子微网瞬时功率控制方法,进一步保证频率与电压动态不越限。基于此,通过建立系统的小信号模型分析关键参数对稳定性的影响,并给出参数的设计过程。最后,多工况下的仿真算例验证了所提方法的有效性与优越性。 展开更多
关键词 交直流混合微电网 频率越限风险 电压越限风险 分层协调控制 功率分配 小信号模型
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基于直流环节互联的配电网重构技术研究现状及展望
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作者 段晓曼 袁旭峰 +2 位作者 熊炜 郑华俊 陆之洋 《电力科学与工程》 2025年第1期1-12,共12页
在“碳达峰、碳中和”背景下,大量分布式电源、电力电子设备接入到电网中,使网络结构面临复杂化,故需要寻求更优的配电网重构方案。为满足直流环节互联配电网可控需求,使网架拓扑结构与系统运行紧密耦合,进而实现组网灵活运行是现阶段... 在“碳达峰、碳中和”背景下,大量分布式电源、电力电子设备接入到电网中,使网络结构面临复杂化,故需要寻求更优的配电网重构方案。为满足直流环节互联配电网可控需求,使网架拓扑结构与系统运行紧密耦合,进而实现组网灵活运行是现阶段研究重点。首先,对基于直流环节互联的交直流混合配电网展开分析;然后对考虑优化运行和故障恢复的几种常用的配电网目标函数及约束条件做了进一步讨论,并从经典算法、启发式算法、其他算法3方面探讨了其在直流环节互联配电网重构中的应用;总结了基于直流环节互联的配电网重构在优化运行和故障恢复面临的一系列挑战和技术需求;最后,展望了基于直流环节互联的配电网重构未来发展方向并给出了建议。 展开更多
关键词 直流环节互联 交直流混合配电网 配电网重构 优化运行 故障恢复
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计及需求响应和分布鲁棒博弈的交直流配电网低碳运行管控
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作者 肖文乔 刘继春 《电测与仪表》 北大核心 2025年第3期157-166,共10页
交直流混合配电网由于其灵活可控和直流源荷友好接入性等优点受到广泛研究,此外需求侧柔性资源的增加使得对需求响应的高效利用更加多元。基于此,文章提出考虑多类型需求响应的交直流混合配电网低碳运行管控策略,将电网公司作为领导者,... 交直流混合配电网由于其灵活可控和直流源荷友好接入性等优点受到广泛研究,此外需求侧柔性资源的增加使得对需求响应的高效利用更加多元。基于此,文章提出考虑多类型需求响应的交直流混合配电网低碳运行管控策略,将电网公司作为领导者,负荷聚合商和电动汽车代理商作为跟随者,建立考虑光伏不确定性的主从博弈模型。在该模型中,电网公司以运营利润最大化和CO_(2)排放量最小化为目标,并考虑光伏出力不确定性,构建交直流混合配电网的分布鲁棒优化模型;跟随者以自身收益最大化为目标响应实时电价,调整用户负荷削减功率和电动汽车充电功率。采用KKT(karush-kuhn-tucher)条件把跟随者模型等效为领导者模型的均衡约束,将双层互动博弈模型转化为单层的分布鲁棒优化模型,采用CCG(column and constraint genera-tion)算法分解模型为主、子问题进行求解。仿真结果表明所提模型能够实现配电网的低碳经济运行。 展开更多
关键词 交直流混合配电网 需求响应 分布鲁棒博弈 低碳运行
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考虑多配电网功率互济的交直流混联配电网灾后抢修策略
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作者 常康 郁琛 +3 位作者 谢云云 燕子敖 蔡胜 张玉坪 《电力自动化设备》 北大核心 2025年第3期194-200,共7页
传统的配电网灾害抢修策略主要利用配电网的内部资源,无法考虑多个配电网间的功率互济和协同恢复。考虑到交直流混联配电网能够通过交直流混联的拓扑结构实现功率互济,建立交直流混联配电网的抢修决策模型,通过协调抢修队、线路开关、... 传统的配电网灾害抢修策略主要利用配电网的内部资源,无法考虑多个配电网间的功率互济和协同恢复。考虑到交直流混联配电网能够通过交直流混联的拓扑结构实现功率互济,建立交直流混联配电网的抢修决策模型,通过协调抢修队、线路开关、分布式电源、电压源换流器,最大限度地提高交直流混联配电网的负荷恢复量。对模型中存在的非线性约束进行线性化处理,将优化问题转化为可快速求解的混合整数模型,并采用CPLEX求解器求解最优抢修策略。基于IEEE 14节点系统建立一个交直流混联配电网并进行仿真分析,结果验证了所提抢修策略的有效性。 展开更多
关键词 交直流混联配电网 自然灾害 弹性运行 抢修策略 负荷恢复
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考虑智能软开关的交直流混联配电网分布式优化
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作者 綦龙飞 杨镜非 肇嘉毅 《电力系统及其自动化学报》 北大核心 2025年第3期75-83,共9页
为实现交直流混联配电网的高效运行,提出一种考虑智能软开关的交直流混联配电网分布式优化方法。首先,对交直流混联配电网进行合理分区,并以不同分区内网损最小、智能软开关损耗最小及分布式电源有功功率削减量最小为目标,并建立各个分... 为实现交直流混联配电网的高效运行,提出一种考虑智能软开关的交直流混联配电网分布式优化方法。首先,对交直流混联配电网进行合理分区,并以不同分区内网损最小、智能软开关损耗最小及分布式电源有功功率削减量最小为目标,并建立各个分区的子优化模型。然后,已优化集群向待优化集群传递部分边界信息,采用改进的交替方向乘子法协调求解各个区域的子模型,经过迭代计算后得到最优解,实现交直流混联配电网区间解耦和各分区分布式优化。最后,采用改进的IEEE123节点算例分析验证模型的有效性和可行性,结果表明,所提方法提高了交直流混联配电网运行经济性,降低了配电网损耗及缓解电压越限问题。 展开更多
关键词 智能软开关 交直流混联配电网 分布式电源 分布式优化 交替方向乘子法
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分层协同的交直流混合配电网优化运行
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作者 成龙 李国庆 +2 位作者 陈宇航 王翀 王振浩 《电网技术》 北大核心 2025年第3期1197-1206,I0088,I0089,共12页
为应对由高比例分布式电源(distributed generation,DG)出力强随机性引起的电压波动越限,并降低系统的运行损耗,提出集中-就地分层协同的交直流混合配电网优化运行模型,通过充分挖掘系统中光伏(photovoltaic,PV)并网逆变器和直流组网电... 为应对由高比例分布式电源(distributed generation,DG)出力强随机性引起的电压波动越限,并降低系统的运行损耗,提出集中-就地分层协同的交直流混合配电网优化运行模型,通过充分挖掘系统中光伏(photovoltaic,PV)并网逆变器和直流组网电压源型变流器(voltage source converter,VSC)的容量与功率/电压调控能力,实现以最小化运行有功损耗和节点电压偏差为目标的系统优化运行。所提模型对光伏逆变器参与集中调控的初始无功设定点,以及光伏逆变器和VSC在就地控制阶段的预设下垂函数进行同时优化,以实现光伏和负荷功率随机变化下集中和就地控制层之间的协同调控。以不确定性概率分布描述光伏和负荷功率的典型场景,并结合二阶锥凸松弛和线性化实现对所提随机优化模型的转化与求解。最后,通过改进的IEEE 33节点交直流混合配电网测试算例,验证了所提分层协同优化运行模型的有效性和优越性。 展开更多
关键词 交直流混合配电网 优化运行 集中-就地协同控制 分段下垂控制 不确定性场景建模
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基于交替迭代法的MMC-MTDC交直流混合系统的潮流分析 被引量:6
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作者 张明光 蔡云 丁晶晶 《兰州理工大学学报》 CAS 北大核心 2019年第6期91-98,共8页
为解决大规模新型可再生能源的并网和消纳问题,多端柔性交、直流混合输电系统成为近年来研究的热点,且潮流计算分析又是研究其稳定控制及故障分析的基础.对此,建立了基于模块化多电平换流器的多端直流输电系统(MMC-MTDC)的稳态潮流计算... 为解决大规模新型可再生能源的并网和消纳问题,多端柔性交、直流混合输电系统成为近年来研究的热点,且潮流计算分析又是研究其稳定控制及故障分析的基础.对此,建立了基于模块化多电平换流器的多端直流输电系统(MMC-MTDC)的稳态潮流计算数学模型,提出了MMC-MTDC交直流混合系统潮流计算的交替迭代求解法,对交流子系统采用传统的牛顿-拉夫逊计算方法,对直流子系统则采用节点阻抗矩阵形式的Gauss-Seidel方法.最后,在MATLAB软件平台编写交替迭代算法程序,以改进的IEEE 9和IEEE 22节点且包含三端MMC-MTDC的交直流混合系统为例进行仿真计算,结果表明所提出的交替迭代求解法具有收敛速度快、准确性高的优点. 展开更多
关键词 MMC-MTdc 多端交、直流混合网 潮流计算 交替迭代算法
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