用于城市核心区供电的直流网络运行模式与控制策略研究

项目来源

国家自然科学基金(NSFC)

项目主持人

李可军

项目受资助机构

山东大学

项目编号

51777116

立项年度

2017

立项时间

未公开

项目级别

国家级

研究期限

未知 / 未知

受资助金额

55.00万元

学科

工程与材料科学-电气科学与工程-电力系统与综合能源

学科代码

E-E07-E0704

基金类别

面上项目

关键词

运行模式 ; 分级分层 ; 城市电网 ; 直流网络 ; 控制策略 ; Urban Power Grid ; DC Network ; Multi-Level Voltage&Hierarchical Control ; Operation Mode ; Control Strategy

参与者

田立军;娄杰;孙凯祺;王卓迪;刘智杰;王景山;王美岩;郭靖

参与机构

山东大学

项目标书摘要:伴随着城市电网规模的扩大,以及用户对供电质量和可靠性要求的不断提高,城市核心区供电正面临诸多问题。基于电压源型换流器的柔性直流以其独特的技术优势成为解决此类问题的有效手段之一。同交流电网发展类似,为提高运行可靠性和调度灵活性,城市电网中的双端或多端柔性直流将逐步互联为多电压等级的直流网络。城市直流网络在结构和控制上具有“分级分层”的特点,其结构的多元性以及协调控制的复杂性对未来城市电网的安全稳定运行提出新的挑战。本项目拟在研究城市多端柔性直流协调控制与优化运行的基础上,通过分析城市直流应用特点,构建城市直流网络,研究其运行模式及控制策略。据此,提出考虑交流电网运行需求及安全稳定要求的城市直流网络控制策略,实现城市直流网络的协调控制及优化运行。精确合理的直流场景模型是基础,控制策略是主体,仿真验证是手段,把握整体、理顺层次、逐次推进。

Application Abstract: With the enlargement of urban power grid(UPG),as well as the increasing requirements on the quality and reliability of power supply,the power supply of urban core area is facing a lot of problems.High voltage direct current based on voltage source converter(VSC-HVDC)is a good choice to solve those problems for its technical advantages.In the future,the existing two-terminal or multi-terminal direct current(MTDC)system,similar to the AC grid,will turn into multi-voltage-level DC network.The urban DC network is multi-level in voltage and hierarchical in control,and it’s a new challenge for future UPG to keep safe and stable,due to the pluralistic structure of urban DC network and complexity of coordinated control system.A structure of urban DC network,which is adapted to the development of UPG,is proposed in this project.The characteristics of the urban DC network are analyzed based on the coordinated control and optimal operation technology of urban VSC-MTDC.Meanwhile,the operation mode and control strategy of urban DC network is studied.According to the above,the control strategy of urban DC network is established considering the demands of AC grid to be operated in safety and stability.Furthermore,the coordinated control strategy and optimal operation method is accomplished.Accurate DC scene modeling is the basis;Control strategy is the body;Simulation is the tool.Grasp the whole;Classify the levels;Push the sequences.

项目受资助省

山东省

项目结题报告(全文)

随着社会经济发展和城市化进程的不断推进,城市核心区供电正面临着关键节点短路电流超标等问题。基于柔性直流技术,在原有城市网架基础上嵌入连接不同区域城市电网的多条双端或多端直流线路,从而组成城市直流网络,是解决城市电网严峻形势的有效手段之一。本项目围绕用于城市核心区供电的直流网络运行模式与控制策略开展研究,主要包括以下三个部分:城市多端柔性直流协调控制与优化运行技术研究、城市直流网络构建与运行模式研究、城市多端柔性直流协调控制与优化运行技术研究,研究内容已涵盖基金申请书所列内容,取得的主要研究成果如下:1围绕城市多端柔性直流协调控制与优化运行技术研究,提出了应用于城市电网的多端柔性直流输电系统的控制系统架构及两种协调控制模式;提出了一种考虑模式切换的无功支撑策略;基于动态下垂系数和模型预测控制策略,提出了城市电网的暂态电压安全水平提升方法。2围绕城市直流网络构建与运行模式研究,提出了用于城市核心区供电的直流网络架构并归纳总结了适用于城市直流网络的直流电压等级,为城市直流网络运行提供基础;提出了适用于城市直流网络换流站的广义稳态分析模型;提出了城市直流网络典型运行模式;搭建了“多电压等级直流系统动模实验平台”。3围绕城市直流网络分层控制体系研究,基于分层控制理念提出三种典型控制策略,保障多电压等级城市直流网络的稳定运行;提出了协调多电压等级城市直流网络DC/DC变换器运行的控制策略;提出针对特定故障类型的紧急调控策略,建立了考虑不同运行工况和运行目标的城市直流网络分层控制体系。基金项目执行期间,共发表SCI/EI收录相关学术论文16篇,撰写学术专著1本,授权发明专利3项,参与制定国家标准1项,培养博士生3人、硕士生6人。项目研究成果可为城市直流电网建设和安全运行提供理论依据和技术支持。

  • 排序方式:
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  • 1.Evaluating the Over-Modulation Risk of Modular Multilevel Converters by Using Dynamic Modulation Ratio

    • 关键词:
    • Modular multilevel converter (MMC); modulation ratio; over-modulationrisk; parameter design; steady-state analysis;HYBRID
    • Liu, Zhijie;Li, Ke-Jun;Guo, Zhonglin;Wang, Jinyu;Qian, Jianhang
    • 《IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS》
    • 2022年
    • 10卷
    • 6期
    • 期刊

    Since the over-modulation can lead to the unstable operation of converters, the over-modulation risk evaluation is important in the circuit parameter selection, operating region design, and so forth. However, the wildly used evaluation method of modular multilevel converters (MMCs) comes from two-level converters; and the article found that its obtained result is not always accurate for MMCs because four assumptions will be introduced when the conventional modulation ratio (CMR) is used as the indicator. To solve the problem, a new concept, namely dynamic modulation ratio (DMR), is proposed. Comparing with the CMR, the DMR can dynamically change according to the variation of operating conditions and can reflect the modulation characteristics more accurately. Quantitative comparisons are carried out between the CMR-based and the DMR-based evaluation methods in various operating conditions. The comparisons show that the CMR-based method is only accurate under a few situations for MMCs, and the obtained operating region of MMCs is not optimal when the CMR is used as the indicator in the parameter design of MMCs. In contrast, the DMR-based evaluation method is high-accurate under all situations. Finally, experiments are carried out in a down-scaled MMC prototype for further validating the method.

    ...
  • 2.A side-effect-free method of reducing capacitance requirement for modular multilevel converters

    • 关键词:
    • HVDC power transmission;Power converters;% reductions;'current;Capacitor voltages;Dc signals;Modulars;Multilevel converter;Reduction method;Side effect;Side effect free methods;Submodules
    • Liu, Zhijie;Li, Kejun;Wang, Jinyu;Li, Liangzi
    • 《High Voltage》
    • 2022年
    • 7卷
    • 3期
    • 期刊

    In modular multilevel converters (MMCs), the huge capacitor almost takes over half of the cost and weight of a submodule; as a result, the capacitance requirement reduction has attracted wide attention for using smaller capacitors. However, the existing methods have side effects, such as increasing the arm current and adding additional semiconductors, which restrict their practical applications. Thus, a side-effect-free capacitance requirement reduction (CRR) method is proposed in this paper. In the method, the capacitor voltage can be decreased by injecting a specific dc signal into the original control system; and the specific dc signal is outputted from the proposed CRR controller according to the transmitted power of the MMC. For ensuring the safe operation, the extent to which the capacitor voltage can be reduced is also studied; and an optimisation model is presented to obtain the minimum allowed capacitor voltage and the safety domain of CRR. The effectiveness of the proposed method is proved by both simulation and experiment. The results show that the capacitance requirement can be reduced by 32.4% without neither increasing the arm current nor adding additional semiconductors.
    © 2021 The Authors. High Voltage published by John Wiley & Sons Ltd on behalf of The Institution of Engineering and Technology and China Electric Power Research Institute.

    ...
  • 3.Frequency Injection Based HVDC Attack-Defense Control Via Squeeze-Excitation Double CNN

    • 关键词:
    • Network security;HVDC power transmission;Energy security;Frequency domain analysis;Neural networks;Energy policy;Ancillary service;Bulk power transmissions;Detection methods;False data injection attacks;Frequency deviation;High voltage direct current;Local Outlier Factor;Time and frequency domains
    • Sun, Kaiqi;Qiu, Wei;Yao, Wenxuan;You, Shutang;Yin, He;Liu, Yilu
    • 《IEEE Transactions on Power Systems》
    • 2021年
    • 36卷
    • 6期
    • 期刊

    Due to the independent controllability and fast power regulation capability, the High Voltage Direct Current (HVDC) system could be a prospective technology to provide multiple ancillary services to the system besides conventional bulk power transmission. However, with the increase of False Data Injection Attacks (FDIAs) on PMU data, the HVDC system could have the wrong response once the collected data that the HVDC system relied on is attacked, thus threatening the system operating security. How to ensure the security of the PMU-based HVDC ancillary service control become an urgent issue. To mitigate the risk, this paper proposed an HVDC attack-defense control based on the FDIAs detection method. Firstly, the Squeeze-Excitation based Double Convolutional Neural Networks (SE-DCNN) is proposed to realize fast identification of the attacking frequency type based on the time and frequency domain signals. The duration time of FDIAs is detected by the local outlier factor. Then, utilizing the results from SE-DCNN, HVDC ancillary service control framework is reorganized and an HVDC attack defense control is proposed for suppressing the potential influence of various types of FDIAs on the HVDC system ancillary service. Different experiments results demonstrate that the proposed method has the ability to significantly mitigate the frequency deviation and oscillation under the FDIA.
    © 1969-2012 IEEE.

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  • 4.Grounding Fault Model of Low Voltage Direct Current Supply and Utilization System for Analyzing the System Grounding Fault Characteristics

    • 《SYMMETRY-BASEL》
    • 2021年
    • 13卷
    • 10期
    • 期刊

    Grounding fault analysis is of vital importance for low voltage direct current (LVDC) supply and utilization systems. However, the existing DC grounding fault model is inappropriate for LVDC supply and utilization system. In order to provide an appropriate assessment model for the DC grounding fault impact on the LVDC supply and utilization system, an LVDC supply and utilization system grounding fault model is proposed in this paper. Firstly, the model is derived by utilizing capacitor current and voltage as the system state variable, which considers the impact of the converter switch state on the topology of the fault circuit. The variation of system state parameters under various fault conditions can be easily obtained by inputting system state data in normal conditions as the initial value. Then, a model solution algorithm for the proposed model is utilized to calculated the maximum fault current, the system maximum fault current with different grounding resistance is simple to acquired based on the solution algorithm. The calculation results demonstrate that grounding resistance and structure of LVDC supply and utilization system have remarkable impacts on the transient current. The effectiveness of the proposed model is verified in PSCAD/EMTDC. The simulation results indicate that the proposed method is appropriate for the system fault analysis under various fault conditions with different grounding resistance and the proposed model can offer theoretical guidance for system fault protection.

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  • 5.of translation:面向快速频率响应系统的网络攻击防御控制策略

    • Sun, Kaiqi ; Qiu, Wei ; Li, Kejun ; Yao, Wenxuan ; Liu, Yilu
    • 《Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering》
    • 2021年
    • 41卷
    • 16期
    • 期刊

    To solve the wrong response of the fast frequency response(FFR) control system under the cyber attack so that enhancing the system security, in this paper, a FFR cyber attack defense control strategy considering with the network-based false data injection(NFDI) attack was proposed. This strategy first performs time-frequency analysis on NFDI attack using continuous wavelet transform, then the attack-based shuffle convolutional neural networks(ASCNN) was proposed to detect the NFDI attack. Based on the detected results and the end time of the cyber attack, a novel FFR cyber attack defense control strategy was developed to reduce the influence caused by FFR wrong response while recovering FFR wrong response. The experiment based on the actual frequency data and the PSCAD simulation indicates that the proposed strategies could detect the cyber attack in a short time and realize effective FFR output regulation so that enhancing the system operating. © 2021 Chin. Soc. for Elec. Eng.

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  • 6.基于模型预测的微电网频率协调控制策略

    • 关键词:
    • 微电网;频率波动;风力发电机;模型预测控制;插电式混合动力汽车
    • 张坤平;郝琳
    • 《系统仿真学报》
    • 2021年
    • 03期
    • 期刊

    针对风力发电接入微电网后产生的频率波动问题,提出了一种基于模型预测控制(model predictive control,MPC)的微电网频率协调控制策略,将风机和插电式混合动力汽车(plug-in hybrid electric vehicle,PHEV)纳入频率控制体系,通过对风机的浆距角与PHEV的充放电进行控制,来调节电网频率,对微电网的调频资源进行补充。对WTG桨距角控制系统与PHEV功率控制系统进行建模,阐述其控制原理。为了防止在调频过程中过多地使用PHEV,引入模型预测控制(model predictive control,MPC)理论,设计2个独立的MPC控制器来分别控制桨距角和PHEV功率输出。在MATLAB/simulink平台上验证了所提策略的有效性。结果表明:所提策略可以有效减小微电网的频率偏差和大型微电网中PHEV的用量,相比于传统PID控制具有更快的响应特性。

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  • 7.Optimization of Multi-Energy Microgrid Operation in the Presence of PV, Heterogeneous Energy Storage and Integrated Demand Response

    • 关键词:
    • multi-energy microgrid; PV; uncertainty; integrated demand response;heterogeneous;OPTIMAL CONFIGURATION; FLEXIBILITY; MANAGEMENT; POWER; HUB; WIND
    • Wang, Jingshan;Li, Ke-Jun;Liang, Yongliang;Javid, Zahid
    • 《APPLIED SCIENCES-BASEL》
    • 2021年
    • 11卷
    • 3期
    • 期刊

    In this paper, a model is proposed for the optimal operation of multi-energy microgrids (MEMGs) in the presence of solar photovoltaics (PV), heterogeneous energy storage (HES) and integrated demand response (IDR), considering technical and economic ties among the resources. Uncertainty of solar power as well as the flexibility of electrical, cooling and heat load demand are taken into account. A p-efficient point method is applied to compute PV power at different confidence levels based on historical data. This method converts the uncertain PV energy from stochastic to deterministic to be included in the optimization model. The concept of demand response is extended and mathematically modeled using a linear function based on the quantized flexibility interval of multi-energy load demand. As a result, the overall model is formulated as a mixed-integer linear program, which can be effectively solved by the commercial solvers. The proposed model is implemented on two typical summer and winter days for various cases. Results of case studies show the important benefits for maximum PV utilization, energy efficiency and economic system operation. Moreover, the influence of the different confidence levels of PV power and effectiveness of IDR in the stochastic circumstances are addressed in the optimization-based operation.

    ...
  • 8.Coordinated Control Strategy of CU-MTDC under Abnormal Conditions Considering Power Supply Security

    • 关键词:
    • coastal urban multi-terminal DC (CU-MTDC); power supply security;offshore wind farm; coordinated control strategy under abnormalconditions; dynamic priority control
    • Wang, Zhuodi;Li, Kejun;Liang, Jun;Sun, Kaiqi;Wang, Jinyu;Liu, Zhijie
    • 《APPLIED SCIENCES-BASEL》
    • 2021年
    • 11卷
    • 4期
    • 期刊

    The coastal urban multi-terminal DC (CU-MTDC) is a prospective solution for enhancing the power supply security of the coastal urban power (CUP) grid and integrating the large-scale offshore wind farm. However, the large DC disturbances may significantly impact the CUP power supply security. The existing DC unbalanced power distribution methods are difficult to be applied in the CU-MTDC because of the complicated optimization process and the expansion of the influence range of a DC fault. To solve the above problems, this paper proposes a coordinated control strategy of CU-MTDC under abnormal conditions. First, calculation principles for the active power reference of center coastal urban power (CCUP) grid converters are proposed. Second, a DC unbalanced power coordinated distribution strategy under abnormal conditions is used based on the dynamic priority control to ensure power supply security of the critical AC lines. Third, the controller parameters of CCUP grid converters are calculated. Through a simple control process, the number of the regulation converters is dynamically scheduled according to the DC unbalanced power. The DC fault influence range on the urban power grid can be limited in a sufficiently small area. Simulation verified the effectiveness of the proposed control strategy.

    ...
  • 9.General Model of Modular Multilevel Converter for Analyzing the Steady-State Performance Optimization

    • 关键词:
    • Circulating current injection steady-state performance; generalsteady-state model; modular multilevel converter (MMC); optimizingmethod;CAPACITOR VOLTAGE; INJECTION; SELECTION
    • Liu, Zhijie;Li, Ke-Jun;Wang, Jinyu;Liu, Wentao;Javid, Zahid;Wang, Zhuo-di
    • 《IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS》
    • 2021年
    • 68卷
    • 2期
    • 期刊

    The steady-state performance of modular multilevel converter (MMC) can be optimized by the following methods: circulating current injection, third-harmonic signal injection, and average capacitor voltage control. However, most of the papers, due to the deficiencies of their MMC models, are limited to the study of adopting just one method and only optimizing a single-aspect of the performance. Thus, this article proposes a general MMC model for the comprehensive study of the steady-state performance optimization. The general model is built based on an equilibrium equation between the internal quantities and the external quantities of the MMC. This general model is capable of analyzing the optimization where the optimizing methods are combined and used to improve the multiaspect performance of the MMC. In addition, more influence factors are taken into account; hence, the calculation error can be smaller than 1% and even the minor effect of each optimizing method can be reflected. The proposed model is compared with traditional models; and it is found that both dc and fundamental components in modulation signals will be affected by the injected circulating current, rather than the constant values in the traditional models. Finally, the proposed MMC model is verified by both simulation and experiment.

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  • 10.面向快速频率响应系统的网络攻击防御控制策略

    • 关键词:
    • 广域测量系统;快速频率响应;攻击重组卷积神经网络;网络攻击防御控制
    • 孙凯祺;邱伟;李可军;姚文轩;刘奕路
    • 《中国电机工程学报》
    • 2021年
    • 16期
    • 期刊

    针对广域测量系统中的测量数据受到攻击时,快速频率响应(fast frequency response,FFR)控制系统被欺骗而生成错误控制命令进而危害电网安全的问题,该文提出一种面向虚假数据注入攻击的新型FFR网络安全防御控制策略。该策略首先利用连续

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