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Coordinated control of coastal multi-source multi-load system with desalination load: a review 被引量:3
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作者 Ming Zhong Lu Jin +3 位作者 Jiyu Xia Ling Cheng Peiyu Chen Rong Zeng 《Global Energy Interconnection》 2019年第4期300-309,共10页
Traditional seawater desalination requires high amounts of energy, with correspondingly high costs and limited benefits, hindering wider applications of the process. To further improve the comprehensive economic benef... Traditional seawater desalination requires high amounts of energy, with correspondingly high costs and limited benefits, hindering wider applications of the process. To further improve the comprehensive economic benefits of seawater desalination, the desalination load can be combined with renewable energy sources such as solar energy, wind energy, and ocean energy or with the power grid to ensure its effective regulation. Utilizing energy internet(EI) technology, energy balance demand of the regional power grid, and coordinated control between coastal multi-source multi-load and regional distribution network with desalination load is reviewed herein. Several key technologies, including coordinated control of coastal multi-source multi-load system with seawater desalination load, flexible interaction between seawater desalination and regional distribution network, and combined control of coastal multi-source multi-load storage system with seawater desalination load, are discussed in detail. Adoption of the flexible interaction between seawater desalination and regional distribution networks is beneficial for solving water resource problems, improving the ability to dissipate distributed renewable energy, balancing and increasing grid loads, improving the safety and economy of coastal power grids, and achieving coordinated and comprehensive application of power grids, renewable energy sources, and coastal loads. 展开更多
关键词 DESALINATION Distribution network power grids MULTI-SOURCE multi-load coordinateD control
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Coordinated voltage control of renewable energy power plants in weak sending-end power grid
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作者 Yongning Chi Weihao Li +1 位作者 Qiuwei Wu Chao Liu 《Global Energy Interconnection》 2020年第4期365-374,共10页
The utilization of renewable energy in sending-end power grids is increasing rapidly,which brings difficulties to voltage control.This paper proposes a coordinated voltage control strategy based on model predictive co... The utilization of renewable energy in sending-end power grids is increasing rapidly,which brings difficulties to voltage control.This paper proposes a coordinated voltage control strategy based on model predictive control(MPC)for the renewable energy power plants of wind and solar power connected to a weak sending-end power grid(WSPG).Wind turbine generators(WTGs),photovoltaic arrays(PVAs),and a static synchronous compensator are coordinated to maintain voltage within a feasible range during operation.This results in the full use of the reactive power capability of WTGs and PVAs.In addition,the impact of the active power outputs of WTGs and PVAs on voltage control are considered because of the high R/X ratio of a collector system.An analytical method is used for calculating sensitivity coefficients to improve computation efficiency.A renewable energy power plant with 80 WTGs and 20 PVAs connected to a WSPG is used to verify the proposed voltage control strategy.Case studies show that the coordinated voltage control strategy can achieve good voltage control performance,which improves the voltage quality of the entire power plant. 展开更多
关键词 coordinated voltage control Model predictive control(MPC) Renewable energy Weak sending-end power grid Wind turbine generators(WTGs) Photovoltaic arrays(PVAs) STATCOM
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New generation traction power supply system and its key technologies for electrified railways 被引量:6
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作者 Qunzhan Li 《Journal of Modern Transportation》 2015年第1期1-11,共11页
Unlike the traditional traction power supply system which enables the electrified railway traction sub- station to be connected to power grid in a way of phase rotation, a new generation traction power supply system w... Unlike the traditional traction power supply system which enables the electrified railway traction sub- station to be connected to power grid in a way of phase rotation, a new generation traction power supply system without phase splits is proposed in this paper. Three key techniques used in this system have been discussed. First, a combined co-phase traction power supply system is applied at traction substations for compensating negative sequence current and eliminating phase splits at exits of substations; design method and procedure for this system are presented. Second, a new bilateral traction power supply technology is proposed to eliminate the phase split at section post and reduce the influence of equalizing current on the power grid. Meanwhile, power factor should be adjusted to ensure a proper voltage level of the traction network. Third, a seg- mental power supply technology of traction network is used to divide the power supply arms into several segments, and the synchronous measurement and control technology is applied to diagnose faults and their locations quickly and accurately. Thus, the fault impact can be limited to a min- imum degree. In addition, the economy and reliability of the new generation traction power supply system are analyzed. 展开更多
关键词 New generation traction power supplysystem Combined co-phase power supply Bilateralpower supply Segmental power supply technology Synchronous measurement and control
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Difference between grid connections of large-scale wind power and conventional synchronous generation 被引量:7
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作者 Jie Li Chao Liu +2 位作者 Pengfei Zhang Yafeng Wang Jun Rong 《Global Energy Interconnection》 2020年第5期486-493,共8页
In China, regions with abundant wind energy resources are generally located at the end of power grids. The power grid architecture in these regions is typically not sufficiently strong, and the energy structure is rel... In China, regions with abundant wind energy resources are generally located at the end of power grids. The power grid architecture in these regions is typically not sufficiently strong, and the energy structure is relatively simple. Thus, connecting large-capacity wind power units complicates the peak load regulation and stable operation of the power grids in these regions. Most wind turbines use power electronic converter technology, which affects the safety and stability of the power grid differently compared with conventional synchronous generators. Furthermore, fluctuations in wind power cause fluctuations in the output of wind farms, making it difficult to create and implement suitable power generation plans for wind farms. The generation technology and grid connection scheme for wind power and conventional thermal power generation differ considerably. Moreover, the active and reactive power control abilities of wind turbines are weaker than those of thermal power units, necessitating additional equipment to control wind turbines. Hence, to address the aforementioned issues with large-scale wind power generation, this study analyzes the differences between the grid connection and collection strategies for wind power bases and thermal power plants. Based on this analysis, the differences in the power control modes of wind power and thermal power are further investigated. Finally, the stability of different control modes is analyzed through simulation. The findings can be beneficial for the planning and development of large-scale wind power generation farms. 展开更多
关键词 Large-scale wind power generation Conventional synchronous generators Grid connection scheme power control
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Coordinated control strategy for a PV-storage grid-connected system based on a virtual synchronous generator 被引量:4
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作者 Xing Zhang Qian Gao +3 位作者 Zixuan Guo Haizheng Zhang Ming Li Fei Li 《Global Energy Interconnection》 2020年第1期52-60,共9页
Due to the characteristics of intermittent photovoltaic power generation and power fluctuations in distributed photovoltaic power generation,photovoltaic grid-connected systems are usually equipped with energy storage... Due to the characteristics of intermittent photovoltaic power generation and power fluctuations in distributed photovoltaic power generation,photovoltaic grid-connected systems are usually equipped with energy storage units.Most of the structures combined with energy storage are used as the DC side.At the same time,virtual synchronous generators have been widely used in distributed power generation due to their inertial damping and frequency and voltage regulation.For the PV-storage grid-connected system based on virtual synchronous generators,the existing control strategy has unclear function allocation,fluctuations in photovoltaic inverter output power,and high requirements for coordinated control of PV arrays,energy storage units,and photovoltaic inverters,which make the control strategy more complicated.In order to solve the above problems,a control strategy for PV-storage grid-connected system based on a virtual synchronous generator is proposed.In this strategy,the energy storage unit implements maximum power point tracking,and the photovoltaic inverter implements a virtual synchronous generator algorithm,so that the functions implemented by each part of the system are clear,which reduces the requirements for coordinated control.At the same time,the smooth power command is used to suppress the fluctuation of the output power of the photovoltaic inverter.The simulation validates the effectiveness of the proposed method from three aspects:grid-connected operating conditions,frequency-modulated operating conditions,and illumination sudden-drop operating condition.Compared with the existing control strategies,the proposed method simplifies the control strategies and stabilizes the photovoltaic inverter fluctuation in the output power of the inverter. 展开更多
关键词 Photovoltaic power generation Energy STORAGE unit Virtual SYNCHRONOUS GENERATOR SMOOTH FLUCTUATION coordinateD control
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Multi-timescale robust dispatching for coordinated automatic generation control and energy storage 被引量:4
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作者 Yiran Ma Xueshan Han +1 位作者 Ming Yang Wei-Jen Lee 《Global Energy Interconnection》 2020年第4期355-364,共10页
The increasing penetration of renewable energy into power grids is reducing the regulation capacity of automatic generation control(AGC).Thus,there is an urgent demand to coordinate AGC units with active equipment suc... The increasing penetration of renewable energy into power grids is reducing the regulation capacity of automatic generation control(AGC).Thus,there is an urgent demand to coordinate AGC units with active equipment such as energy storage.Current dispatch decision-making methods often ignore the intermittent effects of renewable energy.This paper proposes a two-stage robust optimization model in which energy storage is used to compensate for the intermittency of renewable energy for the dispatch of AGC units.This model exploits the rapid adjustment capability of energy storage to compensate for the slow response speed of AGC units,improve the adjustment potential,and respond to the problems of intermittent power generation from renewable energy.A column and constraint generation algorithm is used to solve the model.In an example analysis,the proposed model was more robust than a model that did not consider energy storage at eliminating the effects of intermittency while offering clear improvements in economy and efficiency. 展开更多
关键词 Automatic generation control Energy storage Intermittency coordinated dispatching Robust optimization
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Enhancement of Distributed Generation by Using Custom Power Device
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作者 Kishor V.Bhadane M.S.Ballal R.M.Moharil 《Journal of Electronic Science and Technology》 CAS CSCD 2015年第3期246-254,共9页
Wind energy (WE) has become immensely popular for distributed generation (DG). This case presents the monitoring, modeling, control, and analysis of the two-level three-phase WE based DG system where the electric ... Wind energy (WE) has become immensely popular for distributed generation (DG). This case presents the monitoring, modeling, control, and analysis of the two-level three-phase WE based DG system where the electric grid interfacing custom power device (CPD) is controlled to perform the smart exchanging of electric power as per the Indian grid code. WE is connected to DC link of CPD for the grid integration purpose. The CPD based distributed static compensator, i.e. the distributed static synchronous compensator (DSTATCOM), is utilized for injecting the wind power to the point of common coupling (PCC) and also acts against the reactive power demand. The novel indirect current control scheme of DSTATCOM regulates the power import and export between the WE and the electric grid system. It also acts as a compensator and performs both the key features simultaneously. Hence, the penetration of additional generated WE power to the grid is increased by 20% to 25%. The burden of reactive power compensation from grid is reduced by DSTATCOM. The modeling and simulation are done in MATLAB. The results are validated and verified. 展开更多
关键词 Custom power device distributed generation (DG) distributed static synchronous compensator (DSTATCOM) indirect current control scheme reactive power
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A Fuzzy Logical MPPT Control Strategy for PMSG Wind Generation Systems
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作者 Xing-Peng Li Wen-Lu Fu +2 位作者 Qing-Jun Shi Jian-Bing Xu Quan-Yuan Jiang 《Journal of Electronic Science and Technology》 CAS 2013年第1期72-77,共6页
Making full use of wind power is one of the main purposes of the wind turbine generator control. Conventional hill climbing search (HCS) method can realize the maximum power point tracking (MPPT). However, the ste... Making full use of wind power is one of the main purposes of the wind turbine generator control. Conventional hill climbing search (HCS) method can realize the maximum power point tracking (MPPT). However, the step size of HCS method is constant so that it cannot consider both steady-state response and dynamic response. A fuzzy logical control (FLC) algorithm is proposed to solve this problem in this paper, which can track the maximum power point (MPP) quickly and smoothly. To evaluate MPPT algorithms, four performance indices are also proposed in this paper. They are the energy captured by wind turbine, the maximum power-point tracking time when wind speed changes slowly, the fluctuation magnitude of real power during steady state, and the energy captured by wind turbine when wind speed changes fast. Three cases are designed and simulated in MATLAB/Simulink respectively. The comparison of the three MPPT strategies concludes that the proposed fuzzy logical control algorithm is more superior to the conventional HCS algorithms. 展开更多
关键词 Fuzzy logical control hill climbing search maximum power point tracking permanent magnet synchronous generator wind generation system.
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Review on key technologies and typical applications of multi-station integrated energy systems 被引量:6
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作者 Zhenlan Dou Chunyan Zhang +4 位作者 Wei Wang Dan Wang Qiqi Zhang Yanxing Cai Ruitian Fan 《Global Energy Interconnection》 EI CAS CSCD 2022年第3期309-327,共19页
To realize the low-carbon development of power systems,digital transformation,and power marketization reform,the substation,data center,energy storage,photovoltaic,and charging stations are important components for th... To realize the low-carbon development of power systems,digital transformation,and power marketization reform,the substation,data center,energy storage,photovoltaic,and charging stations are important components for the construction of new infrastructure.The integration infrastructure represented by multi-station integrated energy systems(MSIESs)represents the development trend,and its connotation and denotation are not immutable.This study firstly analyzed the components of MSIESs and their sub-stations and overall characteristics,and proposed an overall architecture for MSIESs.Thereafter,this system was characterized in detail from three aspects:planning and design,operation control,and market operation.The planning and construction of MSIESs was analyzed from the aspects of planning and design process,typical fusion subsystems,supply and demand prediction,and capacity determination;the operational control of MSIESs was analyzed from the aspects of model construction,coordination control,and safety assessment.Moreover,the market operation of MSIESs was examined from the aspects of the business model and spot market.Furthermore,the technical development trend of MSIESs has been explored in this study. 展开更多
关键词 MSIESs New power system Digital transformation Planning and design coordinated control Electricity market
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Research on On-Line Coordinated Control Strategy to Improve the Voltage Vulnerability after Disturbance
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作者 Qun-Ying Liu Qi-Fang Liu +1 位作者 Deng Liu Yong-Feng Liao 《Journal of Electronic Science and Technology》 CAS 2014年第1期1-6,共6页
The on-line coordinated control strategy among multi-voltage controls is important to keep voltage security in post-fault systems. Based on the wide area measuring information, the energy function, which can qualify t... The on-line coordinated control strategy among multi-voltage controls is important to keep voltage security in post-fault systems. Based on the wide area measuring information, the energy function, which can qualify the impacts of the different control actions on voltage of different nodes, is proposed. And then, considering the impacts of different control actions on the node voltage being treated as a weight matrix, the energy margin is used as the objective function and the reactive power margin is innovatively used as the constraint to regulate the control actions globally according to the weight values. At last, the objective functions are solved to get the optimal global coordinated control strategies. The proposed method is identified in an IEEE-30 Bus system and the simulation results show that it effectively improves the voltage stability. 展开更多
关键词 Index Terms---coordinated controls energy margin reactive power margin voltage vulnerability.
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变速抽蓄机组有功分阶段多档位控制策略
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作者 贾思思 成昕雨 +2 位作者 郑建栋 王丹 毛承雄 《水电能源科学》 北大核心 2025年第1期182-186,共5页
变速抽蓄机组具有优越的快速有功支撑能力,是协助新能源消纳和保障新型电力系统安全稳定运行的重要手段,但其有功调节中存在功率响应差额问题以及励磁单元与调速器响应速度差异造成的功率失衡会导致转速反调波动,从而影响机组长期安全... 变速抽蓄机组具有优越的快速有功支撑能力,是协助新能源消纳和保障新型电力系统安全稳定运行的重要手段,但其有功调节中存在功率响应差额问题以及励磁单元与调速器响应速度差异造成的功率失衡会导致转速反调波动,从而影响机组长期安全稳定运行,而目前协调有功和转速的控制策略无法充分发挥变速抽蓄机组有功快速响应能力。为此,设计了有功参考值整定单元,解决了有功调节的差额问题;提出了有功分阶段多档位控制策略,考虑转速安全范围对有功进行分阶段控制,充分协调转速反调和有功快速调节之间的矛盾;基于Simulink仿真平台,验证了所提出的策略能有效提高有功调节精度,且可在抑制转速反调的基础上有效提升功率调节性能,有利于充分发挥变速抽蓄机组调频优势,保障机组长期安全稳定运行。 展开更多
关键词 变速抽蓄机组 快速有功调节 协调控制 交流励磁
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含源电网中复合储能式电子变压器声纹机械的协调控制
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作者 吴海涵 李俊妮 +2 位作者 王维佳 孙飞 宋彦 《储能科学与技术》 北大核心 2025年第2期714-716,共3页
随着电网技术的不断发展,含源电网中复合储能式电力电子变压器的应用日益广泛。然而,在实际运行中,储能式电力电子变压器面临着电网电压跌落或中断等挑战,这对其稳定性和电能质量提出了更高要求。本文综述了基于声纹识别的变压器协调控... 随着电网技术的不断发展,含源电网中复合储能式电力电子变压器的应用日益广泛。然而,在实际运行中,储能式电力电子变压器面临着电网电压跌落或中断等挑战,这对其稳定性和电能质量提出了更高要求。本文综述了基于声纹识别的变压器协调控制以及监控策略,首先分析了复合储能式电子变压器的原理结构组成以及当前环境下的技术特征;然后以此为基础,进一步探讨了声纹识别技术在储能电子变压器的应用实况,最后综述了声纹识别技术下的变压器协调控制与监控策略。希望可以为后续研究提供一定理论借鉴。 展开更多
关键词 含源电网 复合储能式电力电子变压器 声纹识别 协调控制
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基于电-甲醇混合储能系统的风光发电波动平抑控制策略
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作者 李文 卜凡鹏 +3 位作者 章康 张思瑞 张静 侯成龙 《太阳能学报》 北大核心 2025年第2期193-199,共7页
针对大规模风能以及太阳能等不可控新能源并网引起电力系统功率波动、峰谷落差大等问题,提出电-甲醇混合储能系统,通过电化学储能与电解CO_(2)制甲醇的甲醇储能相结合,在提高电力系统运行稳定性的同时,电解CO_(2)制甲醇,降低温室气体含... 针对大规模风能以及太阳能等不可控新能源并网引起电力系统功率波动、峰谷落差大等问题,提出电-甲醇混合储能系统,通过电化学储能与电解CO_(2)制甲醇的甲醇储能相结合,在提高电力系统运行稳定性的同时,电解CO_(2)制甲醇,降低温室气体含量。同时针对电力系统电压波动导致电解CO_(2)制甲醇效率低的问题,提出一种新型基于甲醇电解槽的轮值控制策略,通过优化电-甲醇混合储能系统的容量配置,使电站功率波动满足国家规定。 展开更多
关键词 电力系统 风能 太阳能 波动平抑 甲醇电解槽 混合储能 协调控制策略 容量配置
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基于虚拟阻抗-模糊算法的交直流微电网混合储能功率协调策略
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作者 赵永熹 高鹏超 范宏 《上海交通大学学报》 北大核心 2025年第3期388-399,共12页
交直流混合微电网中源荷两侧存在功率波动的问题,由蓄电池和超级电容器组成的混合储能接入微网可抑制功率波动,为此提出一种基于虚拟阻抗和模糊算法结合的交直流微电网混合储能功率协调策略.首先,通过复合虚拟阻抗实现混合储能的功率自... 交直流混合微电网中源荷两侧存在功率波动的问题,由蓄电池和超级电容器组成的混合储能接入微网可抑制功率波动,为此提出一种基于虚拟阻抗和模糊算法结合的交直流微电网混合储能功率协调策略.首先,通过复合虚拟阻抗实现混合储能的功率自主初次分配;其次,综合分析复合虚拟阻抗参数和滤波时间常数对功率分配的影响,提出一种功率分配调整方法并推导出模糊控制规则,利用模糊算法根据超级电容器荷电状态和所承担功率自适应优化混合储能的输出功率;再次,自适应调整交直流互联变换器中的功率来提升混合储能的调节能力.最后,通过MATLAB/Simulink仿真实验证明所提策略既能有效平抑源荷侧的功率波动,消除直流母线电压偏差,又能改善超级电容器过度充放的问题,从而延长设备的使用寿命. 展开更多
关键词 交直流混合微网 混合储能 复合虚拟阻抗 模糊控制 功率协调 互联变换器
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混合动力汽车中内燃机与电动机的协同控制策略探析
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作者 王贵杨 《内燃机与配件》 2025年第2期90-92,共3页
面对日益严峻的能源与环境压力,混合动力技术成为提高车辆能源利用率、降低排放的有效途径,内燃机与电动机的高效协同控制是实现混合动力汽车优势的关键。本文首先阐述了混合动力技术的重要意义,分析了内燃机与电动机协同控制存在的问题... 面对日益严峻的能源与环境压力,混合动力技术成为提高车辆能源利用率、降低排放的有效途径,内燃机与电动机的高效协同控制是实现混合动力汽车优势的关键。本文首先阐述了混合动力技术的重要意义,分析了内燃机与电动机协同控制存在的问题,利用基于优化理论的全局控制和基于规则的实时控制,提出了一系列内燃机与电动机协同控制优化策略。本研究对于进一步发挥内燃机与电动机协同控制优势,推动混合动力汽车技术升级和进一步应用具有重要意义。 展开更多
关键词 混合动力 协同控制 控制策略 优化理论 实时控制
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储能型光伏电站电池容量优化配置与协调控制研究
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作者 何琦 向嘉强 +2 位作者 郭振兴 周丰 魏继军 《科学技术创新》 2025年第7期221-224,共4页
本研究旨在优化储能型光伏电站电池容量配置与协调控制,通过分析光伏电站的结构设计、储能单元的容量配置及充放电策略以及电网和负荷单元的设计,构建了光伏储电站可靠性模型。通过对不同类型储能电池的性能参数进行分析和比较,提出了... 本研究旨在优化储能型光伏电站电池容量配置与协调控制,通过分析光伏电站的结构设计、储能单元的容量配置及充放电策略以及电网和负荷单元的设计,构建了光伏储电站可靠性模型。通过对不同类型储能电池的性能参数进行分析和比较,提出了科学合理的容量优化配置方案。此外,研究还探讨了多组混合储能系统的协调控制策略,设计了相应的事件触发函数和调节机制,以实现更高效的能量管理和提高系统运行的稳定性。研究结果表明,铅酸功率密度电池在当前技术条件下展现出最佳的性能表现,成为光伏储电站容量优化配置的理想选择。同时,优化后的控制策略显著提高了储能型光伏电站的整体性能,为未来类似系统的设计和运营提供了重要的参考依据。 展开更多
关键词 光伏电站 电池容量优化 协调控制
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基于子网和储能的交直流混合微电网功率协调控制
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作者 丁朝辉 邱增广 +3 位作者 周嫣蕾 朱燕妮 张涵璐 夏文彬 《分布式能源》 2025年第1期81-90,共10页
为解决交直流混合微电网单一储能形式无法满足各子网功率协调问题,提出一种考虑互联接口变换器(interlinking interface converter,IIC)及混合储能荷电状态(state of charge,SOC)变化的多模式功率协调控制策略。根据子网归一化电压频率... 为解决交直流混合微电网单一储能形式无法满足各子网功率协调问题,提出一种考虑互联接口变换器(interlinking interface converter,IIC)及混合储能荷电状态(state of charge,SOC)变化的多模式功率协调控制策略。根据子网归一化电压频率指标划分微电网的运行域,结合各子网功率状态及混合储能SOC,在不同工况下由IIC与储能双向接口变换器(bidirectional interface converter,BIC)配合进行功率传输,实现系统整体功率平衡并控制储能SOC在合理的范围内,提高了系统运行稳定性和可靠性。同时,超级电容及蓄电池形成的混合储能,不仅能充分发挥超级电容响应迅速的优势,还能减小过冲过放对蓄电池的影响。最后,在PSCAD环境下设计不同工作模式的网间功率互济场景,验证多模式功率协调控制策略的有效性。 展开更多
关键词 交直流混合微电网 功率协调控制 独立运行 功率互济 接口变换器
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一种OFDMA系统半静态干扰协调算法 被引量:1
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作者 白玉 冯春燕 张天魁 《无线电通信技术》 2009年第1期11-13,共3页
为了解决多小区OFDMA系统边缘用户受到严重的同频干扰问题,提出了一种基于小区边缘用户数的半静态干扰协调算法SICUN。该算法用小区边缘用户数指示小区边缘业务量的大小,结合特定的频率资源优先级规划方案以确定系统中小区中心、边缘用... 为了解决多小区OFDMA系统边缘用户受到严重的同频干扰问题,提出了一种基于小区边缘用户数的半静态干扰协调算法SICUN。该算法用小区边缘用户数指示小区边缘业务量的大小,结合特定的频率资源优先级规划方案以确定系统中小区中心、边缘用户的可用频率资源,在此基础上进行了补偿式功率控制。仿真结果表明:SICUN能在保证小区边缘用户性能的前提下,较大地提高系统整体性能。 展开更多
关键词 ofDMA 半静态干扰协调 频率资源优先级 补偿式功率控制
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基于RPC的光储接入牵引供电系统协调控制方法 被引量:2
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作者 陈维荣 王小雨 +4 位作者 韩莹 臧治 李奇 沈文杰 许程鹏 《西南交通大学学报》 EI CSCD 北大核心 2024年第1期1-10,共10页
为将光伏发电接入牵引供电系统进行有效利用,同时兼顾牵引供电系统电能质量改善及列车再生制动能量回收利用,提出了一种基于铁路功率调节器的光储系统接入牵引供电系统的协调控制方法.首先,搭建基于铁路功率调节器的光储系统接入牵引供... 为将光伏发电接入牵引供电系统进行有效利用,同时兼顾牵引供电系统电能质量改善及列车再生制动能量回收利用,提出了一种基于铁路功率调节器的光储系统接入牵引供电系统的协调控制方法.首先,搭建基于铁路功率调节器的光储系统接入牵引供电拓扑结构,并对其电能质量补偿机理进行理论分析;在此基础上,充分考虑光储系统的运行条件以及列车牵引、制动、空载或惰行工况,提出光储系统接入牵引供电的联合协调控制方法,实现了“光+储+荷”三者间的协调控制、牵引供电系统负序的动态补偿以及谐波的有效抑制;在RT-Lab实时仿真系统中建立了基于铁路功率调节器的光伏接入牵引供电系统仿真模型,并结合实际光照和牵引工况数据验证本文所提出的系统结构以及协调控制方法的有效性.结果表明:本文所提出的系统结构以及协调控制方法能够实现牵引供电系统中光储系统的有效接入,再生制动能量回收率提升至86.7%,功率因数提升6.4%,对谐波特别是高次谐波含有率有较大改善,满足光伏电能高效消纳及综合利用、电能质量动态综合补偿、再生制动能量回收多重需求. 展开更多
关键词 铁路功率调节器 光储发电系统 牵引供电系统 协调控制方法 电能质量 电能分配
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光伏储能侧接口变换器自适应协调自抗扰控制 被引量:1
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作者 马幼捷 庞笑琴 +3 位作者 周雪松 赵明 王博 李苏扬 《太阳能学报》 EI CAS CSCD 北大核心 2024年第11期636-646,共11页
为提高光伏储能系统的响应速度和抗干扰能力,以储能侧双向DC-DC变换器为研究对象,提出一种基于自适应规则的协调自抗扰稳压控制策略。首先,建立双闭环线性自抗扰控制(LADRC)结构,通过变化控制器参数初始值协调内外环间的影响程度。其次... 为提高光伏储能系统的响应速度和抗干扰能力,以储能侧双向DC-DC变换器为研究对象,提出一种基于自适应规则的协调自抗扰稳压控制策略。首先,建立双闭环线性自抗扰控制(LADRC)结构,通过变化控制器参数初始值协调内外环间的影响程度。其次,以规则设计作为参数优化机制对外环控制器参数进行在线自适应调整,进一步提升系统的快速性和准确性。仿真分析及实验结果表明,在保证系统稳定性及不改变调参复杂性的前提条件下,采用自适应协调自抗扰控制策略在信号跟踪性能、抗扰性能、抗噪性能上均优于传统控制策略。 展开更多
关键词 光伏发电 储能 DC-DC变换器 协调 自抗扰控制 自适应规则
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