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Wiring a Wider Region The ASEAN Power Grid is shifting from bilateral links to a multilateral network,advancing regional cooperation and green energy integration
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作者 Guo Zixuan Xing Yunfei Qin Yun 《China Report ASEAN》 2026年第2期48-49,共2页
In December 2025,the ASEAN Centre for Energy(ACE)convened the third ASEAN Power Grid Partnership Meeting,bringing partners together for consultations on key issues.After more than two decades of planning and explorati... In December 2025,the ASEAN Centre for Energy(ACE)convened the third ASEAN Power Grid Partnership Meeting,bringing partners together for consultations on key issues.After more than two decades of planning and exploration,the ASEAN Power Grid is now entering a new phase—shifting from predominantly bilateral,one-way connections toward a multilateral,multidirectional network. 展开更多
关键词 multilateral network green energy integration ASEAN power grid regional cooperation
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A review of hydrogen production and storage technologies for power system integration and applications
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作者 Ibrahim B.Mansir Paul C.Okonkwo Talal F.Qahtan 《Global Energy Interconnection》 2026年第1期83-107,共25页
The fast-changing trajectory of energy systems toward renewables requires flexible,low-emission technologies that can buffer supply intermittently and offer large-scale energy storage systems.Moreso,hydrogen is increa... The fast-changing trajectory of energy systems toward renewables requires flexible,low-emission technologies that can buffer supply intermittently and offer large-scale energy storage systems.Moreso,hydrogen is increasingly viewed as a multi-scale flexibility resource capable of supporting deep decarbonization in renewable-dominated power systems,yet existing reviews often treat production,storage,and conversion technologies in isolation.Hydrogen offers the ability to convert,store and reconvert energy on various timescales.This review critically analyses the current literature of hydrogen production and storage in relation to power systems integration,synthesizing technical,economic and operational advances.The study synthesizes recent advances in electrolysis,particularly PEM and high-temperature SOEC systems,together with emerging PEC routes,biomass-to-hydrogen processes,and long-duration storage technologies.It considers,for storage,the performance and maturity of compressed gas,liquid hydrogen,metal and complex hydrides,liquid organic hydrogen carriers,and geological formations.Integration studies show that the value of hydrogen is enhanced as the share of renewables increases,providing seasonal storage,grid balancing,and sector coupling via power-to-hydrogen-to-power configurations.Yet technical,economic and other hurdles such as conversion losses,infrastructure requirements,and safety considerations are still holding back widespread implementation.The review also underlines the value of policy frameworks,such as country-level hydrogen strategies,carbon pricing,tax incentives,and harmonized safety standards to speed up adoption and reduce barriers to costs.The review synthesizes offer planners,operators,and policymakers a clear roadmap for aligning hydrogen deployment strategies with evolving technical requirements and high-renewable power-system conditions.By summarizing what is known and discussing opportunities for the future,this review is intended to be a roadmap towards maximizing hydrogen in reaching a flexible,resilient and carbon free power system. 展开更多
关键词 Green hydrogen ELECTROLYSIS PHOTOELECTROCHEMICAL Biomass reforming grid integration Policy frameworks
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Expeditionplus:The application of a gridded system in the integration of multidimensional environmental factors
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作者 Xinyuan Kuai Quansheng Fu +1 位作者 Hang Sun Tao Deng 《Plant Diversity》 2025年第4期702-708,共7页
The study of plant diversity is often hindered by the challenge of integrating data from different sources and different data types.A standardized data system would facilitate detailed exploration of plant distributio... The study of plant diversity is often hindered by the challenge of integrating data from different sources and different data types.A standardized data system would facilitate detailed exploration of plant distribution patterns and dynamics for botanists,ecologists,conservation biologists,and biogeographers.This study proposes a gridded vector data integration method,combining grid-based techniques with vectorization to integrate diverse data types from multiple sources into grids of the same scale.Here we demonstrate the methodology by creating a comprehensive 1°×1°database of western China that includes plant distribution information and environmental factor data.This approach addresses the need for a standardized data system to facilitate exploration of plant distribution patterns and dynamic changes in the region. 展开更多
关键词 gridded system Data integration Multidimensional environmental factors Western China GIS Plant distribution
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Integrated Equipment with Functions of Current Flow Control and Fault Isolation for Multiterminal DC Grids 被引量:1
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作者 Shuo Zhang Guibin Zou 《Energy Engineering》 EI 2025年第1期85-99,共15页
The multi-terminal direct current(DC)grid has extinctive superiorities over the traditional alternating current system in integrating large-scale renewable energy.Both the DC circuit breaker(DCCB)and the current flow ... The multi-terminal direct current(DC)grid has extinctive superiorities over the traditional alternating current system in integrating large-scale renewable energy.Both the DC circuit breaker(DCCB)and the current flow controller(CFC)are demanded to ensure the multiterminal DC grid to operates reliably and flexibly.However,since the CFC and the DCCB are all based on fully controlled semiconductor switches(e.g.,insulated gate bipolar transistor,integrated gate commutated thyristor,etc.),their separation configuration in the multiterminal DC grid will lead to unaffordable implementation costs and conduction power losses.To solve these problems,integrated equipment with both current flow control and fault isolation abilities is proposed,which shares the expensive and duplicated components of CFCs and DCCBs among adjacent lines.In addition,the complicated coordination control of CFCs and DCCBs can be avoided by adopting the integrated equipment in themultiterminal DC grid.In order to examine the current flow control and fault isolation abilities of the integrated equipment,the simulation model of a specific meshed four-terminal DC grid is constructed in the PSCAD/EMTDC software.Finally,the comparison between the integrated equipment and the separate solution is presented a specific result or conclusion needs to be added to the abstract. 展开更多
关键词 integrated equipment multiterminal direct current grid current flow control fault isolation
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Data Integration Strategy for Database Grids Based on P2P Framework 被引量:1
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作者 WANG Guangqi SHEN Derong YU Ge ZHOU Wensheng LI Meifang 《Wuhan University Journal of Natural Sciences》 CAS 2006年第5期1182-1186,共5页
The differences between the data integration of a dynamic database grid (DBG) and that of a distributed database system are analyzed, and three kinds of data integration strategies are given on the background of DBG... The differences between the data integration of a dynamic database grid (DBG) and that of a distributed database system are analyzed, and three kinds of data integration strategies are given on the background of DBG based on Peer to Peer (P2P) framework, including the centralized data integration (CDI) strategy, the distributed data integration (DDI) strategy and the filter-based data integration (FDDI) strategy. CDI calls all the database grid services (DGSs) at a single node, DDI disperses the DGSs to multiple nodes, while FDDI schedules the data integration nodes based on filtering the keywords returned from DGSs. The performance of these three integration strategies are compared with and analyzed by simulation experiments. FDDI is more evident for filtering the keywords with data redundancy increasing. Through the reduction of large amount of data transportation, it effectively shortens the executing time for the task and improves its efficiency. 展开更多
关键词 database grid dada integration Peer to Peer (P2P)
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Two-Hop Delay-Aware Energy Efficiency Resource Allocation in Space-Air-Ground Integrated Smart Grid Network
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作者 Qinghai Ou Min Yang +1 位作者 Jingcai Kong Yang Yang 《Computers, Materials & Continua》 2025年第5期2429-2447,共19页
The lack of communication infrastructure in remote regions presents significant obstacles to gathering data from smart power sensors(SPSs)in smart grid networks.In such cases,a space-air-ground integrated network serv... The lack of communication infrastructure in remote regions presents significant obstacles to gathering data from smart power sensors(SPSs)in smart grid networks.In such cases,a space-air-ground integrated network serves as an effective emergency solution.This study addresses the challenge of optimizing the energy efficiency of data transmission fromSPSs to low Earth orbit(LEO)satellites through unmanned aerial vehicles(UAVs),considering both effective capacity and fronthaul link capacity constraints.Due to the non-convex nature of the problem,the objective function is reformulated,and a delay-aware energy-efficient power allocation and UAV trajectory design(DEPATD)algorithm is proposed as a two-loop approach.Since the inner loop remains non-convex,the block coordinate descent(BCD)method is employed to decompose it into three subproblems:power allocation for SPSs,power allocation for UAVs,and UAV trajectory design.The first two subproblems are solved using the Lagrangian dual method,while the third is addressed with the successive convex approximation(SCA)technique.By iteratively solving these subproblems,an efficient algorithm is developed to resolve the inner loop issue.Simulation results demonstrate that the energy efficiency of the proposed DEPATD algorithm improves by 4.02% compared to the benchmark algorithm when the maximum transmission power of the SPSs increases from 0.1 to 0.45W. 展开更多
关键词 Energy efficiency effective capacity delay requirement power allocation smart grid space-air-ground integrated network
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A Derivative-Free Optimization Algorithm Using Sparse Grid Integration
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作者 Shengyuan Chen Xiaogang Wang 《American Journal of Computational Mathematics》 2013年第1期16-26,共11页
We present a new derivative-free optimization algorithm based on the sparse grid numerical integration. The algorithm applies to a smooth nonlinear objective function where calculating its gradient is impossible and e... We present a new derivative-free optimization algorithm based on the sparse grid numerical integration. The algorithm applies to a smooth nonlinear objective function where calculating its gradient is impossible and evaluating its value is also very expensive. The new algorithm has: 1) a unique starting point strategy;2) an effective global search heuristic;and 3) consistent local convergence. These are achieved through a uniform use of sparse grid numerical integration. Numerical experiment result indicates that the algorithm is accurate and efficient, and benchmarks favourably against several state-of-art derivative free algorithms. 展开更多
关键词 Nonlinear Programming DERIVATIVE Free Optimization Sparse grid Numerical integration CONDITIONAL MOMENT
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Impact of interconnections and renewable energy integration on the Philippine-Sabah Power Grid systems
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作者 Tristan G.Magallones,Jr. Jai Govind Singh 《Global Energy Interconnection》 EI CSCD 2023年第3期253-272,共20页
This study presents a comprehensive impact analysis of the rotor angle stability of a proposed international connection between the Philippines and Sabah,Malaysia,as part of the Association of Southeast Asian Nations(... This study presents a comprehensive impact analysis of the rotor angle stability of a proposed international connection between the Philippines and Sabah,Malaysia,as part of the Association of Southeast Asian Nations(ASEAN)Power Grid.This study focuses on modeling and evaluating the dynamic performance of the interconnected system,considering the high penetration of renewable sources.Power flow,small signal stability,and transient stability analyses were conducted to assess the ability of the proposed linked power system models to withstand small and large disturbances,utilizing the Power Systems Analysis Toolbox(PSAT)software in MATLAB.All components used in the model are documented in the PSAT library.Currently,there is a lack of publicly available studies regarding the implementation of this specific system.Additionally,the study investigates the behavior of a system with a high penetration of renewable energy sources.Based on the findings,this study concludes that a system is generally stable when interconnection is realized,given its appropriate location and dynamic component parameters.Furthermore,the critical eigenvalues of the system also exhibited improvement as the renewable energy sources were augmented. 展开更多
关键词 Modeling of ASEAN Power grid Rotor angle stability of asynchronous Philippine-Sabah interconnection in ASEAN Power grid The impact of renewable energy integration on Philippine-Sabah interconnection in ASEAN Power grid
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Renewable Energy Grid Integration Week 2022 October 10-14,Delft/The Hague,Netherlands
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《China Standardization》 2022年第4期51-51,共1页
The Renewable Energy Grid Integration Week 2022 will be held on October 10-14 in Delft/The Hague,Netherlands.Two symposiums and a workshop will be held during the event,including the 6th E-Mobility Power System Integr... The Renewable Energy Grid Integration Week 2022 will be held on October 10-14 in Delft/The Hague,Netherlands.Two symposiums and a workshop will be held during the event,including the 6th E-Mobility Power System Integration Symposium,the 1st Hydrogen Power System Integration Symposium and the 21st Wind&Solar Integration Workshop.These events are supported by IEC,the Energy Systems Integration Group(ESIG),the Renewables Grid Initiative and the International Battery&Energy Storage Alliance(IBESA). 展开更多
关键词 integration grid BATTERY
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Resources calculation of cobalt-rich crusts with the grid subdivision and integral method 被引量:2
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作者 WU Ziyin CHU Fengyou +2 位作者 MA Weilin LI Shoujun SHANG Jlhong 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2007年第5期43-53,共11页
On the basis of three geological models and several orebody boundaries, a method of grid subdivision and integral has been proposed to calculate and evaluate the resources of cobalt-rich crusts on the seamounts in the... On the basis of three geological models and several orebody boundaries, a method of grid subdivision and integral has been proposed to calculate and evaluate the resources of cobalt-rich crusts on the seamounts in the central Pacific Ocean. The formulas of this method are deduced and the interface of program module is designed. The method is carried out in the software "Auto mapping system of submarine topography and geomorphology MBChart". This method and program will possibly become a potential tool to calculate the resources of seamounts and determine the target diggings for China' s next Five-year Plan. 展开更多
关键词 cobalt-rich crusts resources calculation grid subdivision integral method
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Engineering practices for the integration of large-scale renewable energy VSC-HVDC systems 被引量:8
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作者 Yan Li Hongzhi Liu +1 位作者 Xiaojie Fan Xinshou Tian 《Global Energy Interconnection》 2020年第2期149-157,共9页
With the continuous development of power electronic devices,intelligent control systems,and other technologies,the voltage level and transmission capacity of voltage source converter (VSC)-high-voltage direct current ... With the continuous development of power electronic devices,intelligent control systems,and other technologies,the voltage level and transmission capacity of voltage source converter (VSC)-high-voltage direct current (HVDC) technology will continue to increase,while the system losses and costs will gradually decrease.Therefore,it can be foreseen that VSC-HVDC transmission technology will be more widely applied in future large-scale renewable energy development projects.Adopting VSC-HVDC transmission technology can be used to overcome issues encountered by large-scale renewable energy transmission and integration projects,such as a weak local power grid,lack of support for synchronous power supply,and insufficient accommodation capacity.However,this solution also faces many technical challenges because of the differences between renewable energy and traditional synchronous power generation systems.Based on actual engineering practices that are used worldwide,this article analyzes the technical challenges encountered by integrating large-scale renewable energy systems that adopt the use of VSC-HVDC technology,while aiming to provide support for future research and engineering projects related to VSC-HVDC-based large-scale renewable energy integration projects. 展开更多
关键词 VSC-HVDC Renewable energy integration DC grid Engineering practice
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Implementation of Dynamic Line Rating in a Sub-Transmission System for Wind Power Integration
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作者 Saifal Talpur Carl Johan Wallnerstrom +1 位作者 Patrik Hilber Christer Flood 《Smart Grid and Renewable Energy》 2015年第8期233-249,共17页
Based on conventional static line rating method, the actual current carrying capability of overhead conductors cannot be judged. Due to continuous increment in electricity demand and the difficulties associated with n... Based on conventional static line rating method, the actual current carrying capability of overhead conductors cannot be judged. Due to continuous increment in electricity demand and the difficulties associated with new line constructions, the overhead lines are therefore required to be rated based on a method that should establish their real-time capability in terms of electricity transmission. The method used to determine the real-time ampacity of overhead conductors not only can enhance their transmission capacity but can also help in allowing excessive renewable generation in the electricity network. In this research work, the issues related to analyzing an impact of wind power on periodical loading of overhead line as well as finding its static and dynamic ampacities with line current are investigated in detail. Moreover, the investigation related to finding a suitable location for the construction of a 60 MW wind farm is taken on board. Thereafter, the wind park is integrated with a regional grid, owned by Fortum Distribution AB. In addition to that, the electricity generated from the wind park is also calculated in this project. Later on, the work is devoted to finding the static and dynamic line ratings for “VL3” overhead conductor by using IEEE-738-2006 standard. Furthermore, the project also deals with finding the line current and making its comparison with maximum capacity of overhead conductor (VL3) for loading it in such a way that no any violation of safe ground clearance requirements is observed at all. Besides, the line current, knowing the conductor temperature when it transmits the required electricity in the presence of wind power generation is also an important factor to be taken into consideration. Therefore, based on real-time ambient conditions with actual line loading and with the help of IEEE-738-2006 standard, the conductor temperature is also calculated in this project. At the end, an economic analysis is performed to evaluate the financial advantages related to applying the dynamic line ratings approach in place of traditional static line ratings technique across an overhead conductor (VL3) and to know how much beneficial it is to temporarily postpone the rebuilding and/or construction of a new transmission line. Furthermore, an economic analysis related to wind power system is taken into consideration as well to get familiar with the costs related to building and connecting a 60 MW wind farm with the regional grid. 展开更多
关键词 Overhead Conductor STATIC and DYNAMIC Ampacities Real-Time Weather Conditions STATIC and DYNAMIC LINE RATING Techniques WIND Power integration Regional grid LINE Current. Conductor Temperature WIND Power ECONOMICS DYNAMIC LINE RATING ECONOMICS
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Smart Grid Innovations: Increasing Resilience, Security, and Sustainability in the Era of Energy Transition 被引量:1
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作者 Yixin Yu Yanli Liu Didi Yu 《Engineering》 2025年第8期1-2,共2页
The accelerating global energy transition,driven by climate imperatives and technological advancements,demands fundamen-tal transformations in power systems.Smart grids,characterized by cyber-physical integration,dist... The accelerating global energy transition,driven by climate imperatives and technological advancements,demands fundamen-tal transformations in power systems.Smart grids,characterized by cyber-physical integration,distributed renewable resources,and data-driven intelligence,have emerged as the backbone of this evolution.This convergence,however,introduces unprecedented complexities in resilience,security,stability,and market operation.This special issue presents five pivotal studies addressing these interconnected challenges,offering novel methodologies and insights to advance the efficiency,resilience,and sustainability of modern power systems. 展开更多
关键词 SECURITY SUSTAINABILITY global energy transitiondriven smart grids RESILIENCE distributed renewable resources renewable resourcesand cyber physical integration
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Parallel Reservoir Integrated Simulation Platform for One Million Grid Blocks Cases 被引量:1
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作者 Feng Pan Jianwen Cao 《通讯和计算机(中英文版)》 2005年第11期29-33,42,共6页
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Optimization Configuration Method for Grid-Side Grid-Forming Energy Storage System Based on Genetic Algorithm
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作者 Yuqian Qi Yanbo Che +2 位作者 Liangliang Liu Jiayu Ni Shangyuan Zhang 《Energy Engineering》 2025年第10期3999-4017,共19页
The process of including renewable energy sources in power networks is moving quickly,so the need for innovative configuration solutions for grid-side ESS has grown.Among the new methods presented in this paper is GA-... The process of including renewable energy sources in power networks is moving quickly,so the need for innovative configuration solutions for grid-side ESS has grown.Among the new methods presented in this paper is GA-OCESE,which stands for Genetic Algorithm-based Optimization Configuration for Energy Storage in Electric Networks.This is one of the methods suggested in this study,which aims to enhance the sizing,positioning,and operational characteristics of structured ESS under dynamic grid conditions.Particularly,the aim is to maximize efficiency.A multiobjective genetic algorithm,the GA-OCESE framework,considers all these factors simultaneously.Besides considering cost-efficiency,response time,and energy use,the system also considers all these elements simultaneously.This enables it to effectively react to load uncertainty and variations in inputs connected to renewable sources.Results of an experimental assessment conducted on a standardized grid simulation platform indicate that by increasing energy use efficiency by 17.6%and reducing peak-load effects by 22.3%,GA-OCESE outperforms previous heuristic-based methods.This was found by contrasting the outcomes of the assessment with those of the evaluation.The results of the assessment helped to reveal this.The proposed approach will provide utility operators and energy planners with a decision-making tool that is both scalable and adaptable.This technology is particularly well-suited for smart grids,microgrid systems,and power infrastructures that heavily rely on renewable energy.Every technical component has been carefully recorded to ensure accuracy,reproducibility,and relevance across all power systems engineering software uses.This was done to ensure the program’s relevance. 展开更多
关键词 Energy storage system(ESS) genetic algorithm(GA) grid optimization smart grid renewable energy integration multi-objective optimization
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Powering Artificial Intelligence:How Artificial Intelligence’s Massive Energy Demands Are Reshaping the Future of Smart Grid
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作者 Bahman Zohuri Farhang Mossavar-Rahmani Mehdi Abedi-Varaki 《Journal of Energy and Power Engineering》 2025年第3期91-99,共9页
The rapid evolution and expanding scale of AI(artificial intelligence)technologies exert unprecedented energy demands on global electrical grids.Powering computationally intensive tasks such as large-scale AI model tr... The rapid evolution and expanding scale of AI(artificial intelligence)technologies exert unprecedented energy demands on global electrical grids.Powering computationally intensive tasks such as large-scale AI model training and widespread real-time inference necessitates substantial electricity consumption,presenting a significant challenge to conventional power infrastructure.This paper examines the critical need for a fundamental shift towards smart energy grids in response to AI’s growing energy footprint.It delves into the symbiotic relationship wherein AI acts as a significant energy consumer while offering the intelligence required for dynamic load management,efficient integration of renewable energy sources,and optimized grid operations.We posit that advanced smart grids are indispensable for facilitating AI’s sustainable growth,underscoring this synergy as a pivotal advancement toward a resilient energy future. 展开更多
关键词 AI smart grid energy demand data centers load balancing renewable integration grid modernization deep learning power consumption real-time monitoring AI in energy systems
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Grid Convergence Property of Three-Dimensional Measurement-Integrated Simulation for Unsteady Flow behind a Square Cylinder with Karman Vortex Street
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作者 Takayuki Yamagata Toshiyuki Hayase 《Journal of Flow Control, Measurement & Visualization》 2016年第4期125-142,共18页
The purpose of this study was to clarify grid convergence property of three-dimensional measurement-integrated (3D-MI) simulation for a flow behind a square cylinder with Karman vortex street. Measurement-integrated (... The purpose of this study was to clarify grid convergence property of three-dimensional measurement-integrated (3D-MI) simulation for a flow behind a square cylinder with Karman vortex street. Measurement-integrated (MI) simulation is a kind of the observer in the dynamical system theory by using CFD scheme as a mathematical model of the system. In a former study, two-dimensional MI (2D-MI) simulation with a coarse grid system showed a fairly good result in comparison with a 2D ordinary (2D-O) simulation, but the results were degraded with grid refinement. In this study, 3D-MI simulation and three-dimensional ordinary (3D-O) simulation were performed with three grid systems of different grid resolutions, and their grid convergence properties were compared. As a result, all 3D-MI simulations reproduced the vortex shedding frequency identical to that of the experiment, and the flow fields obtained were very close, within 5% difference between the results, while the results of the 3D-O simulations showed variation of the solution under convergence. It is shown that the grid convergence property of 3D-MI simulation is monotonic and better than that of 3D-O simulation, whereas those of 2D-O and 2D-MI simulations for streamwise velocity fluctuation are divergent. The solution of 3D-MI simulation with a relatively coarse grid system properly reproduces the basic three-dimensional structure of the wake flow as well as the drag and lift coefficients. 展开更多
关键词 Measurement-integrated Simulation grid Convergence Square Cylinder Flow Measurement Numerical Simulation Pressure Measurement Flow Observer Karman Vortex
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基于SSMLE的跟-构网型变流器混合并网系统暂态电压稳定评估方法
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作者 王长江 尹浩帆 +3 位作者 姜涛 刘先超 李国庆 刘辉 《中国电机工程学报》 北大核心 2026年第3期875-886,I0002,共13页
跟-构网型(grid following and grid-forming,GFL-GFM)变流器混合并网系统中多类型控制策略及控制切换行为使电压响应特性复杂多变,难以快速、准确评估其暂态电压稳定状态。为此,该文提出一种基于切换系统最大李雅普诺夫指数(switching ... 跟-构网型(grid following and grid-forming,GFL-GFM)变流器混合并网系统中多类型控制策略及控制切换行为使电压响应特性复杂多变,难以快速、准确评估其暂态电压稳定状态。为此,该文提出一种基于切换系统最大李雅普诺夫指数(switching system maximum Lyapunov exponent,SSMLE)的跟-构网型变流器混合并网系统暂态电压稳定评估方法。首先,计及系统多运行状态和运行参数对暂态电压响应特性影响,建立混合并网系统不同运行工况下电压轨线变分方程;然后,在各运行状态下通过变分方程分段求解SSMLE,并采用切换补偿矩阵修正控制切换时刻积分终值矩阵偏差,提升电压稳定状态判别速度和准确度;其次,利用SSMLE分析系统关键参数对暂态电压稳定性的影响并确定暂态电压稳定参数域,可为调度人员获取系统运行状态、更新电压稳控策略提供参考;最后,通过GFL-GFM变流器混合并网系统和多机硬件在环仿真系统的仿真分析,验证所提方法的准确性和有效性。 展开更多
关键词 混合并网系统 最大李雅普诺夫指数 切换补偿 暂态电压稳定性
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基于MVO算法的新能源接入下的最优碳流及灵敏度分析
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作者 刘程子 沈周钰 +2 位作者 葛辉 杨艳 刘泽远 《电气工程学报》 北大核心 2026年第1期335-349,共15页
随着电力系统碳排放的不断增加,电力系统的低碳化改革势在必行。提出一种在新能源接入下的最优碳流计算方法,通过调节发电出力,将发电侧的碳排放量根据负荷节点和支路网损进行合理分摊,并建立新能源降碳数学模型,对新能源机组节能减排... 随着电力系统碳排放的不断增加,电力系统的低碳化改革势在必行。提出一种在新能源接入下的最优碳流计算方法,通过调节发电出力,将发电侧的碳排放量根据负荷节点和支路网损进行合理分摊,并建立新能源降碳数学模型,对新能源机组节能减排的具体贡献进行定量评估。首先分析光伏、风电并网的影响,优化碳流计算模型;其次建立以电网发电成本为优化目标的数学模型,进行优化并将结果作为最优碳流的约束条件;然后通过节点导纳矩阵将发电出力与碳流率进行映射,建立最优碳流计算模型,通过多元宇宙优化算法(Multi-verse optimization,MVO)进行优化并进行灵敏度分析,评估最优解的稳定性和可行性;最后以IEEE 30节点系统进行仿真分析,结果表明,MVO算法较传统的优化算法,能较快地在大规模最优碳流计算模型上实现收敛,具有更好的速度和精度,并且所提出的最优碳流模型在兼顾经济的同时,量化了新能源机组在降碳过程的贡献并降低了约23.41%的碳排放。 展开更多
关键词 新能源并网 碳流计算 碳流率 最优碳流 低碳经济 灵敏度分析
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基于风机减载与子模块电容能量协同的海上风电经MMC-HVDC并网系统低电压穿越控制
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作者 朱瑛 于世光 +3 位作者 唐程 周峰峰 王赫 洪伟 《电网技术》 北大核心 2026年第2期784-796,I0115,共14页
为解决基于模块化多电平换流器的柔性直流输电系统(modular multilevel converter based high voltage direct current,MMC-HVDC)在陆上交流电网故障时出现的盈余功率问题,首先计算验证了能量预警值的合理性,并设计了自适应动作能量值,... 为解决基于模块化多电平换流器的柔性直流输电系统(modular multilevel converter based high voltage direct current,MMC-HVDC)在陆上交流电网故障时出现的盈余功率问题,首先计算验证了能量预警值的合理性,并设计了自适应动作能量值,解决距离和控制转换时延造成子模块过电压的问题;然后分析网侧变流器(grid-side converter,GSC)在低压穿越期间的动态输出特性,提出了基于直流电压变化率反馈的海上换流站精准降压控制用以进行风机减载;最终通过整定协同控制的逻辑与控制参数,提出了一种基于风机精准减载与子模块电容能量协同控制的低电压故障穿越策略,解决故障期间系统能量裕度利用率低与耗能装置投资大的问题。在MATLAB/Simulink中搭建系统仿真模型验证方法有效性,并与现有方法比较。仿真结果表明,所提方法可显著减少甚至避免耗能装置的投入,且具有自适应性,可在不同故障工况下尽可能利用MMC-HVDC系统的能量裕度,尤其在故障程度较轻的工况下,能在故障消除时保留部分能量裕度,有效应对电压二次跌落,提高系统低压穿越能力。 展开更多
关键词 MMC-HVDC 海上风电并网 风机精准减载控制 子模块电容能量控制 协同控制 低电压穿越
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