微电网

  • 网络Microgrids;Microgrid;micro grid;micro-grid
微电网微电网
  1. 基于多微电网间的能量流动特性,建立系统的能量管理模型。

    Based on energy flow among microgrids , model description is established .

  2. 含储能装置的直流微电网控制系统研究

    Research on Direct Current Microgrids Control System with Batteries

  3. multiagent系统在微电网协调控制中的应用研究

    Research on the Application of Multi Agent System in Microgrid Coordination Control

  4. 对此,本文以微电网作为载体,来研究多Agent系统在微电网上的控制性能。

    In this paper , it takes micro-grid as a carrier in order to study the control performance of Multi-agent system .

  5. DVR和逆变式微电源配合补偿微电网中电压暂降问题的研究

    Compensating Voltage Sags in Microgrid Using Dynamic Voltage Restorer and Inverter Microsource

  6. 边界控制方法在DVR样机研制中的应用DVR和逆变式微电源配合补偿微电网中电压暂降问题的研究

    Boundary Control of Dynamic Voltage Restorers Compensating Voltage Sags in Microgrid Using Dynamic Voltage Restorer and Inverter Microsource

  7. 仿真结果表明,SCES可以有效地解决微电网的电能质量问题。

    Simulations results demonstrate that SCES can improve the power quality of microgrid effectively .

  8. 通过遗传算法(GA)优化,实现微电网内发电成本进行优化控制,以达到满足负荷需求情况下的最小发电成本的目的。

    Optimizing by genetic algorithm ( GA ), the cost of power generation within the microgrid achieve the purpose of optimal control and the minimum cost of power generation meet the load demand .

  9. 本文主要对Internet相关技术与微电网控制系统的结合进行了研究,设计开发了基于B/S模式的微电网能量管理软件。

    Combining the internet-related technology with the microgrid control system , in this paper the energy management system of the microgrid is designed and developed based on the B / S mode . Firstly , the EMS basic function and traditional C / S drawbacks are introduced .

  10. 此外,本文提出了以上级电网Agent、微电网Agent、元件Agent组成的三层多代理控制系统,并对底层Agent控制方式在含储能的微电网中的应用进行了设计和仿真验证。

    In addition , the three stage multi-agent control system consisting of main grid agent , Micro-grid agent and component agent was proposed in this paper , and design the control mode of component agent , then simulate to validate it in Micro-gird with energy storage .

  11. 能量管理系统(EMS)作为微型电网控制系统的核心技术之一,主要实现对微电网运行状态的监测、控制和优化。

    As one core technology of the microgrid control system , the main achievement of the Energy Management System ( EMS ) is to monitor , control and optimize the microgrid operating parameters .

  12. 微电网将分布式电源DG、负荷、储能单元及控制装置组合成一个单一可控的系统,既可与大电网并联运行,也可在大电网故障时孤岛运行。

    Micro-grid combines distributed sources , loads , energy storage units and control devices into a single manageable system , which can both operate in grid-connected mode and islanding mode .

  13. 本文研究了CIM在微电网中的应用,用以解决微电网EMS和微电网内部控制系统之间、微电网EMS和其他系统之间信息的无缝集成问题。

    In this paper , we shall study the application of CIM for Microgrid in order to solve the information seamless integration problem for Microgrid EMS and Microgrid other control system , Microgrid EMS and other systems .

  14. 本文在分析了孤岛模式下微电网存在电能质量问题的基础上,提出了采用APF和SVC综合补偿系统改善孤岛运行时微电网的电能质量。

    Based on analyzing the power quality problems of the microgrid in the island mode , this paper proposes a combined system constructed by APF and SVC to enhance the power quality of the island microgrid .

  15. 论文提出了一种基于同步发电机数学模型的微电网逆变电源,在此基础上设计了微网系统逆变电源的组网协调控制方法,并使用Matlab仿真软件验证理论分析的正确性。

    In this paper , a new inverter based on a mathematical model of synchronous generator is presented , and on this basis , the coordination control method of inverter is designed , and the Matlab simulation software is used to verify the correctness of the analysis .

  16. 为了充分发挥分布式电源的作用,可将若干分布式电源、储能系统和负载等连接在一起,构成微电网(Microgrid)。

    In order to take full use of the distributed power , a number of Distributed Resources ( DRs ), energy storage systems and loads were connected to constitute a micro-grid ( Microgrid ) .

  17. 由于简单Petri网的模拟能力不强,所建立的Petri网模型对电网的结构依赖性很强,并不适用于运行方式灵活、拓扑结构多样化的微电网。

    As the simulation of the simple Petri nets is not strong , the model based on Petri nets has a strong dependence on the structure of the grid . Therefore , it is fit for Micro-grid , which could work in flexible operation mode .

  18. 然后,针对微电网孤岛运行和并网运行两种模式,采用传统PID控制分别设计了控制系统,进行了相关参数的选取,包括滤波参数的选取、隔离变压器的选取以及PI控制参数的设计。

    Then , in view of the microgrid islanding and grid-connected mode , this thesis uses the traditional PID control to design the control system , including the selection of the filter parameters and the isolation transformer , and the design of the PI control parameters , respectively .

  19. 本文在对比多种锁相技术的基础上,针对微电网系统中可能出现的不平衡情况,研究三相软件锁相技术在三相电压型PWM变换器恒功率控制中的应用。

    In view of imbalance of three phase voltages that may be emerged in microgrid , and . based on the comparison with a variety of phase locked loops , the application of the three-phase software phase locked loop technology used in three-phase voltage source PWM converter was researched .

  20. 提出了应用于微电网的SCES,分析了SCES的基本结构,建立适用的控制模型,并针对不同应用场合进行了仿真试验。

    SCES applied to microgrid is proposed in this paper . The main structure of SCES is introduced ; effective control model is built and simulation experiment are carried out in different applications .

  21. 分布式发电中微电网技术控制策略研究

    Research on Control Strategy of Micro-grid Technology in Distributed Power System

  22. 微电网中的电源是以新能源为主的多种能源形式。

    Micro-grid has variety of energy forms based on new energy .

  23. 基于电压源逆变器的微电网控制策略

    Study on the control strategies of voltage source inverter in micro-grid

  24. 基于改进下垂法的微电网逆变器并联控制技术

    Paralleling Control Technique of Microgrid Inverters Based on Improved Droop Method

  25. 本论文的研究主要是围绕着微电网的控制问题而展开的。

    This thesis research concentrates on the control of microgrid and expanded .

  26. 能量缓冲器及其在微电网控制中的应用

    Electric Power Energy Buffer and Its Application in Microgrid Control

  27. 微电网是组织和利用可再生能源发电的重要途径之一。

    Microgrid is an important way of organization and use new energy .

  28. 微电网中变流器控制策略的多目标优化

    Multi-Objective Optimal Control Strategy of Converter in a Microgrid System

  29. 适用于微电网的逆变电源并联组网控制技术研究

    Research on the Control Technology of Parallel Inverter in Microgrid

  30. 含小型冷热电联产的微电网系统经济运行

    Research on Economical Operation of Micro-grid System with Small-sized CCHP