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Very Fast Load Flow Calculation Using Fast-Decoupled Reactive Power Compensation Method for Radial Active Distribution Networks in Smart Grid Environment Based on Zooming Algorithm 基于缩放算法的智能电网环境下径向有功配电网快速解耦无功补偿方法的快速潮流计算
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.412
O. Honarfar, A. Karimi
Distribution load flow (DLF) calculation is one of the most important tools in distribution networks. DLF tools must be able to perform fast calculations in real-time studies at the presence of distributed generators (DGs) in a smart grid environment even in conditions of change in the network topology. In this paper, a new method for DLF in radial active distribution networks is proposed. The method performs a very fast DLF using zooming algorithm associated with a fast-decoupled reactive power compensation (ZAFDRC) technique, not in all of the buses of the grid, causes to reduce the solution time, which is the most important issue in the real-time studies. The proposed method is based on the zooming algorithm and does not require to calculate the bus-injection to branch-current (BIBC) matrix which reduces the computational burden and helps to decrease the solution time. The method is tested on the IEEE 69-bus systems as a balanced network and the IEEE 123-bus as a very unbalanced system. The results confirm the high accuracy and high speed of the proposed method.
配电网潮流计算是配电网中最重要的工具之一。DLF工具必须能够在智能电网环境中,即使在网络拓扑发生变化的情况下,在分布式发电机(DG)存在的情况下进行实时研究中的快速计算。本文提出了一种径向有源配电网DLF的新方法。该方法使用与快速解耦无功功率补偿(ZAFDRC)技术相关的缩放算法执行非常快速的DLF,而不是在电网的所有总线中,这导致了解决时间的减少,这是实时研究中最重要的问题。该方法基于缩放算法,不需要计算母线注入到支路电流(BIBC)矩阵,减少了计算负担,有助于缩短求解时间。该方法在作为平衡网络的IEEE 69总线系统和作为非常不平衡系统的IEEE 123总线系统上进行了测试。结果证实了该方法的高精度和高速度。
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引用次数: 0
Optimal Placement and Sizing of Multiple Renewable Distributed Generation Units Considering Load Variations Via Dragonfly Optimization Algorithm 基于Dragonfly优化算法的考虑负荷变化的多个可再生分布式发电机组的优化布置和规模
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.353
A. Boukaroura, L. Slimani, T. Bouktir
The progression towards smart grids, integrating renewable energy resources, has increased the integration of distributed generators (DGs) into power distribution networks. However, several economic and technical challenges can result from the unsuitable incorporation of DGs in existing distribution networks. Therefore, optimal placement and sizing of DGs are of paramount importance to improve the performance of distribution systems in terms of power loss reduction, voltage profile, and voltage stability enhancement. This paper proposes a methodology based on Dragonfly Optimization Algorithm (DA) for optimal allocation and sizing of DG units in distribution networks to minimize power losses considering variations of load demand profile. Load variations are represented as lower and upper bounds around base levels. Efficiency of the proposed method is demonstrated on IEEE 33-bus and IEEE 69-bus radial distribution test networks. The results show the performance of this method over other existing methods in the literature.
智能电网的发展,整合可再生能源资源,增加了分布式发电机(DG)与配电网的整合。然而,现有配电网络中不适当地纳入DG可能会带来一些经济和技术挑战。因此,DG的最佳布置和尺寸对于提高配电系统在降低功率损耗、电压分布和提高电压稳定性方面的性能至关重要。本文提出了一种基于Dragonfly优化算法(DA)的配电网DG机组优化分配和规模确定方法,以在考虑负荷需求变化的情况下最大限度地减少功率损失。荷载变化表示为基准标高周围的下限和上限。在IEEE 33总线和IEEE 69总线径向分布测试网络上验证了该方法的有效性。结果表明,该方法优于文献中其他现有方法。
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引用次数: 4
A New Approach for Voltage Balancing and Appropriate Power-Sharing in Autonomous Microgrids 自主微电网电压平衡与合理电力共享的新方法
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.269
M. Norianfar, S. Karimi, H. M. Cheshmehbeigi
This paper suggests a new control method to modify the virtual impedance performance in unbalanced conditions. The proposed method compensates the voltage drop that occurred due to the virtual impedance and adjusts the voltage of the point of common coupling at a desirable level. To compensate the voltage drop, the reference voltage in the droop control varies according to the proposed algorithm. Moreover, a modified decoupled double synchronous reference frame is introduced to achieve appropriate active and reactive power sharing and voltage balancing, simultaneously. Finally, the simulation results in MATLAB/Simulink are provided to validate the accuracy and effectiveness of the proposed approach.
本文提出了一种新的控制方法来改变不平衡条件下的虚阻抗性能。该方法补偿了由于虚阻抗引起的电压降,并将共耦合点的电压调整到理想的水平。为了补偿电压降,电压降控制中的参考电压根据所提出的算法而变化。在此基础上,引入了一种改进的解耦双同步参考框架,实现了有功和无功的合理分担和电压平衡。最后,给出了MATLAB/Simulink中的仿真结果,验证了所提方法的准确性和有效性。
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引用次数: 1
Stochastic Joint Optimal Distributed Generation Scheduling and Distribution Feeder Reconfiguration of Microgrids Considering Uncertainties Modeled by Copula-Based Method 基于Copula方法的不确定微电网随机联合最优分布式发电调度和馈线重构
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.371
M. Khajevand, A. Fakharian, M. Sedighizadeh
Using distributed generations (DGs) with optimal scheduling and optimal distribution feeder reconfiguration (DFR) are two aspects that can improve efficiency as well as technical and economic features of microgrids (MGs). This work presents a stochastic copula scenario-based framework to jointly carry out optimal scheduling of DGs and DFR. This framework takes into account non-dispatchable and dispatchable DGs. In this paper, the dispatchable DG is a fuel cell unit and the non-dispatchable DGs with stochastic generation are wind turbines and photovoltaic cells. The uncertainties of wind turbine and photovoltaic generations, as well as electrical demand, are formulated by a copula-based method. The generation of scenarios is carried out by the scenario tree method and representative scenarios are nominated with scenario reduction techniques. To obtain a weighted solution among the various solutions made by several scenarios, the average stochastic output (ASO) index is used.  The objective functions are minimization of the operational cost of the MG, minimization of active power loss, maximization of voltage stability index, and minimization of emissions. The best-compromised solution is then chosen by using the fuzzy technique. The capability of the proposed model is investigated on a 33-bus MG. The simulation results show the efficiency of the proposed model to optimize objective functions, while the constraints are satisfied.
采用最优调度的分布式发电机组和最优配电馈线重构是提高微电网效率和技术经济性能的两个方面。本文提出了一种基于随机copula场景的框架来共同实现DGs和DFR的最优调度。该框架考虑了不可调度和可调度的dg。本文中,可调度DG为燃料电池单元,不可调度DG为风力发电机组和光伏电池。风电机组和光伏发电机组的不确定性,以及电力需求的不确定性,用一种基于copula的方法来表述。采用场景树方法生成场景,并采用场景约简技术命名具有代表性的场景。为了在不同情况下的不同解中求得一个加权解,使用了平均随机输出(ASO)指数。目标函数是MG的运行成本最小化、有功功率损耗最小化、电压稳定指数最大化和排放最小化。然后使用模糊技术选择折衷的最佳解决方案。在一辆33总线的MG上对该模型的性能进行了测试。仿真结果表明,该模型在满足约束条件的情况下,能够有效地优化目标函数。
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引用次数: 3
Fault Location in Active Distribution Networks Using Improved Whale Optimization Algorithm 基于改进Whale优化算法的有源配电网故障定位
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.302
A. Bahmanyar, H. Borhani-Bahabadi, S. Jamali
To realize the self-healing concept of smart grids, an accurate and reliable fault locator is a prerequisite. This paper presents a new fault location method for active power distribution networks which is based on measured voltage sag and use of whale optimization algorithm (WOA). The fault induced voltage sag depends on the fault location and resistance. Therefore, the fault location can be found by investigation of voltage sags recorded throughout the distribution network. However, this approach requires a considerable effort to check all possible fault location and resistance values to find the correct solution. In this paper, an improved version of the WOA is proposed to find the fault location as an optimization problem. This optimization technique employs a number of agents (whales) to search for a bunch of fish in the optimal position, i.e. the fault location and its resistance. The method is applicable to different distribution network configurations. The accuracy of the method is verified by simulation tests on a distribution feeder and comparative analysis with two other deterministic methods reported in the literature. The simulation results indicate that the proposed optimized method gives more accurate and reliable results.
要实现智能电网的自我修复概念,准确可靠的故障定位器是前提。本文提出了一种新的有源配电网故障定位方法,该方法基于实测电压暂降和鲸鱼优化算法(WOA)。故障引起的电压暂降取决于故障位置和电阻。因此,可以通过调查整个配电网中记录的电压骤降来找到故障位置。然而,这种方法需要付出相当大的努力来检查所有可能的故障位置和电阻值,以找到正确的解决方案。本文提出了一种改进的WOA,将故障定位作为一个优化问题。这种优化技术使用许多代理(鲸鱼)来搜索处于最佳位置的一群鱼,即故障位置及其电阻。该方法适用于不同的配电网配置。通过对配电馈线的模拟测试以及与文献中报道的其他两种确定性方法的比较分析,验证了该方法的准确性。仿真结果表明,所提出的优化方法给出了更准确可靠的结果。
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引用次数: 1
Increasing the Capacity and PSNR in Blind Watermarking Resist Against Cropping Attacks 提高盲水印抗裁剪攻击的容量和信噪比
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.259
A. Amiri, S. Mirzakuchaki
Watermarking has increased dramatically in recent years in the Internet and digital media. Watermarking is one of the powerful tools to protect copyright. Local image features have been widely used in watermarking techniques based on feature points. In various papers, the invariance feature has been used to obtain the robustness against attacks. The purpose of this research was based on local feature-based stability as the second-generation of watermarking due to invariance feature to achieve robustness against attacks. In the proposed algorithm, initially, the points were identified by the proposed function in the extraction and Harris and Surf algorithms. Then, an optimal selection process, formulated in the form of a Knapsack problem. That the Knapsack problem algorithm selects non-overlapping areas as they are more robust to embed watermark bits. The results are compared with each of the mentioned feature extraction algorithms and finally, we use the OPAP algorithm to increase the amount of PSNR. The evaluation of the results is based on most of the StirMark criterion.
近年来,在互联网和数字媒体中,水印的应用急剧增加。水印是保护版权的有力工具之一。局部图像特征在基于特征点的水印技术中得到了广泛的应用。在各种论文中,不变性特征被用来获得抗攻击的鲁棒性。本研究的目的是基于局部特征的稳定性作为第二代水印的不变性特征来实现对攻击的鲁棒性。在本文提出的算法中,首先利用所提出的提取函数和Harris和Surf算法对点进行识别。然后,一个最优选择过程,以背包问题的形式公式化。背包问题算法选择非重叠区域,因为它们对嵌入水印比特的鲁棒性更强。将结果与上述每种特征提取算法进行比较,最后使用OPAP算法来提高PSNR。结果的评价是基于大多数的StirMark标准。
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引用次数: 1
Optimization of Specific Power of Surface Mounted Axial Flux Permanent Magnet Brushless DC Motor for Electrical Vehicle Application 电动汽车用表面安装轴流永磁无刷直流电动机比功率的优化
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.363
A. N. Patel, B. Suthar
Optimization of specific power of axial flux permanent magnet brushless DC (PMBLDC) motor based on genetic algorithm optimization technique for an electric vehicle application is presented. Double rotor sandwiched stator topology of axial flux permanent magnet brushless DC motor is selected considering its best suitability in electric vehicle applications. Rating of electric motor is determined based on vehicular dynamics and application needs. Double rotor sandwiched stator axial flux PMBLDC motor is designed considering various assumed design variables. Initially designed axial flux PMBLDC motor is considered as a reference motor for further analysis. Optimization of the specific power of electric motor for electric vehicle applications is a very important design issue. The Genetic Algorithm (GA) based optimization technique is proposed for optimization of specific power of axial flux permanent magnet brushless DC motor. Optimization with an objective of maximum specific power with the same torque rating is performed. Three-dimensional finite element analysis is performed to validate the proposed GA based specific power optimization. Close agreement between results obtained from finite element analysis and analytical design establishes the correctness of the proposed optimization technique. The performance of the improved motor is compared with the initially designed reference motor. It is analyzed that the specific power of axial flux PMBLDC motor is enhanced effectively with the application of GA based design optimization technique.
针对电动汽车应用,提出了基于遗传算法优化技术的轴流永磁无刷直流电动机比功率优化方法。考虑到轴向磁通永磁无刷直流电机在电动汽车应用中的最佳适用性,选择了双转子夹定子拓扑结构。电动机的额定值是根据车辆动力学和应用需求确定的。考虑各种设计变量,设计了双转子夹定子轴流永磁无刷直流电机。初步设计的轴流永磁无刷直流电机作为进一步分析的参考电机。电动汽车应用中电动机比功率的优化是一个非常重要的设计问题。针对轴流永磁无刷直流电动机的比功率优化问题,提出了基于遗传算法的优化技术。以具有相同额定转矩的最大比功率为目标进行优化。通过三维有限元分析验证了所提出的基于遗传算法的比功率优化方法。有限元分析和分析设计结果之间的密切一致性证明了所提出的优化技术的正确性。将改进后的电机的性能与最初设计的参考电机进行了比较。分析了基于遗传算法的永磁无刷直流电机设计优化技术的应用,有效地提高了电机的比功率。
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引用次数: 1
Optimal Multiple FCLs Allocation Considering DG Penetration in Meshed Network With Multi-Level Voltages 考虑DG渗透的多级电压网状网络中多个fcl的最优分配
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.336
M. Hosseinpour, J. Sadeh
Increasing the short circuit current due to the penetration of distributed generations (DGs) in various voltage levels and meshed topology is a basic problem in power systems. Using fault current limiter (FCL) is an efficient approach to mitigate the exceeded short circuit levels. In this paper, a new approach is presented for multiple FCLs locating to decrease short circuit levels in meshed networks with several subsystems and multi-level voltages. Modified hybrid genetic algorithm (GA) and sensitivity analysis (SA) are used to determine the type, number, location, and voltage level of FCLs. Also, an effective sensitivity index is proposed, which can reduce the search space for optimal allocation. This method suggests the optimal allocation with the least investment cost in multi-level voltages networks according to the FCL costs. The proposed method is evaluated in the IEEE 30-bus, 57-bus, and 300-bus test systems. Numerical results indicate the accuracy and efficiency of the proposed method.
分布式电源(dg)在不同电压水平和网格拓扑下的渗透导致的短路电流增大是电力系统中的一个基本问题。采用故障限流器(FCL)是缓解超短路电平的有效方法。本文提出了一种多fcl定位的新方法,以降低由多个子系统和多级电压组成的网状网络中的短路电平。采用改进的混合遗传算法(GA)和灵敏度分析(SA)确定fcl的类型、数量、位置和电压水平。同时,提出了一种有效的灵敏度指标,减少了优化分配的搜索空间。该方法提出了在多级电压网络中,根据整柜成本进行投资成本最小的最优分配。该方法在IEEE 30总线、57总线和300总线测试系统中进行了评估。数值结果表明了该方法的准确性和有效性。
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引用次数: 2
Stochastic Optimal Scheduling of Microgrids Considering Demand Response and Commercial Parking Lot by AUGMECON Method AUGMECON方法在考虑需求响应和商业停车场的微电网随机优化调度中的应用
Q3 Energy Pub Date : 2020-09-10 DOI: 10.22068/IJEEE.16.3.393
M. Sedighizadeh, S. M. Z. Alavi, A. Mohammadpour
Regarding the advances in technology and anxieties around high and growing prices of fossil fuels, government incentives increase to produce cleaner and sustainable energy through distributed generations. This makes trends in the using microgrids which consist of electric demands and different distributed generations and energy storage systems. The optimum operation of microgrids with considering demand-side management increases efficiency and reliability and maximize the advantages of using distributed generations. In this paper, the optimal operation scheduling and unit commitment of generation units installed in a microgrid are investigated. The microgrid consists of technologies based on natural gas that are microturbine and phosphoric acid fuel cell and technologies based on renewable energy, including wind turbine and photovoltaic unit along with battery energy storage system and plug-in electric vehicle commercial parking lot. The goal of the paper is to solve a multi-objective problem of maximizing revenues of microgrid operator and minimizing emissions. This paper uses an augmented epsilon constraint method for solving the multi-objective problem in a stochastic framework and also implements a fuzzy-based decision-maker for choosing the suitable optimal solution amid Pareto front solutions. This new model implements the three type of the price-based and incentive-based demand response program. It also considers the generation reserve in order to enhance the flexibility of operations. The presented model is tested on a microgrid and the results demonstrate the efficacy of the proposed model economically and environmentally compared to other methods.
关于技术的进步和对化石燃料价格高企和不断上涨的担忧,政府加大了通过分布式发电生产更清洁和可持续能源的激励力度。这就形成了使用微电网的趋势,微电网由电力需求和不同的分布式发电和储能系统组成。考虑需求侧管理的微电网优化运行提高了效率和可靠性,并最大限度地发挥了使用分布式发电的优势。本文研究了微电网中发电机组的最优运行调度和机组组合。微电网包括基于天然气的微型涡轮机和磷酸燃料电池技术,以及基于可再生能源的技术,包括风力涡轮机和光伏机组,以及电池储能系统和插电式电动汽车商业停车场。本文的目标是解决微电网运营商收入最大化和排放最小化的多目标问题。本文使用增广ε约束方法来解决随机框架中的多目标问题,并实现了一个基于模糊的决策器来在Pareto前沿解中选择合适的最优解。这个新模型实现了基于价格和基于激励的三种需求响应方案。它还考虑了发电储备,以提高运营的灵活性。该模型在微电网上进行了测试,结果表明,与其他方法相比,该模型在经济和环境方面都是有效的。
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引用次数: 10
Biologically Inspired Four Elements Compact Antenna Arrays With Enhanced Sensitivity for Direction of Arrival Estimation 具有增强灵敏度的生物启发四元件紧凑天线阵列的到达方向估计
Q3 Energy Pub Date : 2020-06-10 DOI: 10.22068/IJEEE.16.2.130
A. Jelodar, M. Soleimani, S. Sedighy
A new four elements compact antenna array is presented and discussed to achieve enhanced phase resolution without sacrificing the array output power. This structure inspired by the Ormia Ochracea’s coupled ears. The analogy between this insect acute directional hearing capabilities and the electrically compact antenna array is used to enhance the array sensitivity to direction of arrival estimation of an electromagnetic wave. This four elements biomimetic compact array is composed of four strongly coupled antenna elements and two external coupling networks which are designed to enhance the phase resolutions between all antenna element outputs without decrease in the array output power. In other words, this four elements compact array extracts the same power level from the incident EM wave compared with regular array, while the output phase sensitivity is significantly enhanced. The simulation results confirm the advantages of this new compact array compared with the previously reported ones in the literature.
在不牺牲阵列输出功率的前提下,提出并讨论了一种新型的四元紧凑型天线阵列。这个结构的灵感来自奥克拉马的双耳。利用这种昆虫的灵敏定向听觉能力与电紧凑型天线阵列之间的相似性来提高阵列对电磁波到达方向估计的灵敏度。该四元仿生紧凑型阵列由四个强耦合天线单元和两个外部耦合网络组成,旨在提高所有天线单元输出之间的相位分辨率,同时不降低阵列输出功率。也就是说,与常规阵列相比,该四元紧凑型阵列从入射电磁波中提取出相同的功率电平,而输出相敏性显著增强。仿真结果证实了这种新型紧凑阵列与以往文献报道的阵列相比的优势。
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引用次数: 1
期刊
Iranian Journal of Electrical and Electronic Engineering
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