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Optimal Operation of Microgrids-A Survey 微电网优化运行研究
Pub Date : 2018-06-06 DOI: 10.11591/ijape.v7.i2.pp%p
N. Karthik, A. Parvathy, R. Arul
The term microgrid refers to small-scale power grid that can operate autonomously or in concurrence with the area’s main  electrical grid . The intermittent characteristic of DGs which defies the power quality and voltage manifests the requirement for new planning and operation approaches for microgrids. Consequently, conventional optimization methods in new power systems have been critically biased all through the previous decade. One of the main technological and inexpensive tools in this regard is the optimal generation scheduling of microgrid. As a primary optimization tool in the planning and operation fields, optimal operation has an undeniable part in the power system. This paper reviews and evaluates the optimal operation approaches mostly related to microgrids. In this work, the foremost optimal generation scheduling approaches are compared in terms of their objective functions, techniques and constraints. To conclude, a few fundamental challenges occurring from the latest optimal generation scheduling techniques in microgrids are addressed.
“微电网”一词指的是可以自主运行或与该地区的主电网并行运行的小型电网。微电网不受电能质量和电压影响的间歇性特性,体现了对微电网新规划和运行方式的要求。因此,在过去的十年中,新电力系统的传统优化方法一直存在严重偏差。微电网最优发电调度是解决这一问题的主要技术手段之一。作为规划和运行领域的主要优化工具,优化运行在电力系统中有着不可否认的作用。本文主要对与微电网相关的优化运行方法进行了综述和评价。在本工作中,比较了最优发电调度方法的目标函数、技术和约束条件。综上所述,本文解决了微电网中最新的最优发电调度技术所面临的一些基本挑战。
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引用次数: 5
Hybrid System Power Generation'wind-photovoltaic' Connected to the Electrical Network 220 kV 混合系统发电“风力光伏”并网220千伏
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP10-17
Mida Dris, B. Djilani
Renewable energy have the potential to generate electricity cleanly without pollution and a lesser dependence of resources for this production of electric power by these systems sources such as solar, wind, hydro, geothermal and biomass instead anti-environmental conventional systems such as gas, coal and oil is a remarkable idea but not frequent in Algeria. Our research focuses on the study of a hybrid energy system (Photovoltaic-Wind), connected to the Electrical Network 220 kV and this by tracking the maximum power point (MPPT) for two energy sources. For this, methods based on optimization algorithms were used side PV array and Wind turbine. With regard to the wind turbine, optimization was based on an analytical approach method. The Matlab/Simulink  is used for simulated power output from Hybrid System, power delivered to or from grid and phase voltage of the inverter leg
可再生能源具有清洁无污染发电的潜力,并且这些系统对太阳能、风能、水力、地热和生物质能等资源的依赖程度较低,而不是反环境的传统系统,如天然气、煤炭和石油,这是一个了不起的想法,但在阿尔及利亚并不常见。我们的研究重点是研究一个混合能源系统(光伏-风能),连接到220千伏的电网,并通过跟踪两种能源的最大功率点(MPPT)。为此,采用基于优化算法的方法对侧光伏阵列和风力发电机组进行优化。对于风力机,采用解析法进行优化。Matlab/Simulink用于模拟混合动力系统的输出功率、输电网的功率和逆变器腿的相电压
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引用次数: 1
Localized Transient Stability (LTS) Method for Real-time Localized Control 实时局部控制的局部暂态稳定(LTS)方法
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP73-86
A. M. Miah
Very recently, a new methodology was introduced solely for the purpose of real-time localized control of transient stability. The proposed new method is based on the localized transient stability of a power system. This is completely a new idea in transient stability. In this method, the post-fault power system is represented by a two-generator localized power system at the site of each individual generator. If each of these localized power systems reaches its respective stable equilibrium, then the full power system also reaches its stable equilibrium. Therefore, in terms of real-time localized control of transient stability, if each of the localized power systems is driven to its respective stable equilibrium by local control actions with local computations using the locally measured data, then the full power system is driven to its stable equilibrium. Thus the method can be easily implemented for real-time localized control of transient stability. In this paper, the details of the mathematical formulations are presented. Some interesting test results on the well-known New England 39-bus 10-generator system are also presented in this paper to demonstrate the potential of the proposed method for use in real-time localized control of transient stability.
最近,一种新的方法被引入,专门用于暂态稳定性的实时局部控制。提出的新方法是基于电力系统的局部暂态稳定。这是暂态稳定性的一个全新概念。在该方法中,故障后的电力系统由每台单独发电机所在位置的双发电机局域电力系统表示。如果每一个局域电力系统都达到了各自的稳定平衡,那么整个电力系统也达到了稳定平衡。因此,在暂态稳定的实时局部控制中,如果利用局部实测数据进行局部计算,通过局部控制动作将各局部电力系统驱动到各自的稳定平衡,则将整个电力系统驱动到稳定平衡。因此,该方法易于实现暂态稳定的实时局部控制。本文给出了具体的数学公式。本文还介绍了在新英格兰著名的39总线10发电机系统上的一些有趣的测试结果,以证明所提出的方法用于暂态稳定实时局部控制的潜力。
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引用次数: 3
Analysis of Various Carriers Overlapping PWM Strategies for a Single Phase Ternary Multilevel Inverter 单相三元多电平逆变器各种载波重叠PWM策略分析
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP27-39
C. Balamurugan, R. Bensraj
Multilevel inverters are used in power conversion system due to improved voltage and current waveforms. This paper presents the comparison of various Carrier Overlapping Pulse Width Modulation (COPWM) Strategies for the three phase Cascaded Multi Level Inverter (CMLI). Various new schemes adopting the constant switching frequency and also variable switching frequency multicarrier control freedom degree combination concepts are developed and simulated for the chosen three phase CMLI. A single phase CMLI is controlled in this paper with Sinusoidal PWM (SPWM) reference along with Carrier Overlapping (CO) techniques and simulation is performed using MATLAB-SIMULINK. The variation of fundamental RMS output voltage and total harmonic distortion is observed for various carrier overlapping techniques. Among the various equal amplitude and unequal amplitude carriers carrier overlapping techniques such as COPWM-A, COPWM-B and COPWM-C, It is observed from Table 4 that all PWM method provides output with relative low distortion for equal amplitude carriers. If equal voltage sources are chosen then the THD will be less in the case of unequal amplitude carriers. But for the unequal voltage sources the THD is more in the case of unequal amplitude carriers.  It is observed from simulation results that (Table-5) almost in all the strategies unequal amplitude carriers gives more fundamental RMS values compared to equal amplitude carriers. It is seen from table 6 that peak voltage is more in the case of unequal amplitude carriers compared to equal amplitude carriers. It is observed from the table 7 that dc components are less in both equal and unequal amplitude carriers.
由于改善了电压和电流波形,多电平逆变器被用于功率转换系统。本文比较了用于三相级联多电平逆变器(CMLI)的各种载波重叠脉宽调制(COPWM)策略。针对所选的三相CMLI,提出了采用恒开关频率和变开关频率多载波控制自由度组合概念的各种新方案,并进行了仿真。本文以正弦PWM (SPWM)为参考,结合载波重叠(CO)技术对单相CMLI进行了控制,并利用MATLAB-SIMULINK进行了仿真。观察了不同载波重叠技术下基频均方根输出电压和总谐波畸变的变化。在COPWM-A、COPWM-B和COPWM-C等多种等幅和不等幅载波载波重叠技术中,从表4中可以看出,所有PWM方法都为等幅载波提供了相对低失真的输出。如果选择相等的电压源,那么在不相等振幅载波的情况下,THD会更小。但对于不均匀电压源,在不均匀载波的情况下,THD更多。从仿真结果中可以看出(表5),几乎在所有的策略中,不等幅载波比等幅载波给出了更基本的均方根值。从表6中可以看出,与等幅载波相比,不等幅载波的峰值电压更多。从表7中可以看出,在等幅和不等幅载波中,直流分量都较小。
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引用次数: 6
A Fault Detection Technique for Series-Compensated Lines by TCSC during Power Swing 功率摆动时串联补偿线路的TCSC故障检测技术
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP40-51
S. Rezaei, M. Khederzadeh, M. Gandomkar
The performance of a distance relay is very susceptible to power swing. In order to avoid generating unwanted trip in such condition, a power swing block function (PSB) is used in distance relays. However, if a fault occurs in power swing condition, the relay should distinguish the fault from power swing and generate trip rapidly. Detection a fault in a series-compensated line by Series Capacitor (SC) during the power swing is more complicated than in an uncompensated line due to complex transients generated by series capacitor and the Metal–Oxide Varistor (MOV) operation. In a series-compensated line by TCSC, it is further complicated due to nonlinear variation of compensation level during power swing and fault, moreover, non-unique application mode of TCSC for different faults which is dependent on fault current. This paper examines a method based on negative sequence current to detecting all types of fault during power swing in a series-compensated line by TCSC. The method is tested for different TCSC-compensated power systems include SMIB and 9-bus 3-machine systems. Different types of faults, i.e., symmetrical, asymmetrical and high resistance faults occurring during a power swing are simulated by MATLAB/SIMULINK to examine the algorithm.
距离继电器的性能很容易受到功率摆动的影响。为了避免在这种情况下产生不必要的跳闸,在距离继电器中使用功率摆动块功能(PSB)。但是,如果在功率摆动情况下发生故障,继电器应将故障与功率摆动区分开来,并迅速产生跳闸。由于串联电容和金属氧化物压敏电阻(MOV)的工作产生了复杂的瞬变,因此在功率摆幅时用串联电容(SC)检测串联补偿线路的故障比在无补偿线路中检测故障要复杂得多。在TCSC串联补偿线路中,由于功率摆幅和故障时补偿水平的非线性变化,以及TCSC对不同故障的非唯一应用方式依赖于故障电流,使其更加复杂。本文研究了一种利用负序电流检测串联补偿线路中各种功率摆动故障的方法。该方法在SMIB和9总线3机系统等不同的tcsc补偿电力系统中进行了测试。利用MATLAB/SIMULINK对功率摆幅过程中出现的对称、不对称、高阻等不同类型的故障进行了仿真,验证了算法的有效性。
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引用次数: 2
Vector Control of VSC HVDC System under Single Line to Ground Fault Condition 单线接地故障条件下VSC直流系统的矢量控制
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP59-64
P. K. Rath, K. C. Bhuyan
This paper proposes a model of a VSC (voltage source converter) based Back to Back HVDC system and its control technique under fault condition. From the mathematical model of the system relationship between the controlling and the controlled variables is determined to control the system parameters. An appropriate vector control technique is used to control active and reactive power and to maintain DC link voltage. The proposed controlling unit consists of outer control loop and inner control loop which effectively damped out the system oscillation and maintains the system stability. The validity of the model and the feasibility of the control method have been proved by the simulation results. In this paper the system performance is studied under fault condition is studied.
提出了一种基于电压源变换器的背靠背直流系统模型及其故障控制技术。从系统的数学模型中确定被控变量与被控变量之间的关系,从而确定控制系统的参数。采用适当的矢量控制技术来控制有功和无功功率,并保持直流链路电压。所提出的控制单元由外控制环和内控制环组成,有效地抑制了系统的振荡,保持了系统的稳定性。仿真结果验证了模型的有效性和控制方法的可行性。本文对故障条件下的系统性能进行了研究。
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引用次数: 3
Electrostatic Field Calculations for Liquid Nitrogen Gaps Assuming a Decisive Field Factor 假设决定性电场因子的液氮间隙静电场计算
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP65-72
S. Fink
Volume effect on breakdown voltage is well known in high voltage engineering. The breakdown voltage behavior of liquid nitrogen depending on a high field volume had been quantitatively described for gap lengths up to 20 mm. Breakdown curves for longer gap lengths up to 96 mm derived from measurements with a facility “Fatelini 2” show oscillations and partly low withstand voltages. Electrostatic field calculation for such long gaps shows remarkable high field volume differences between a model for ideal sphere and models including fixation rods. Calculation for the used setup does not show monotonically increasing high field volume depending on gap length but a maximum around 60 mm which can explain the special breakdown behavior in a “mid range” gap length. Further high field calculations were done for not yet used setups in order to make considerations, e.g. for the influence of cryostat material or diameter.
在高压工程中,体积效应对击穿电压的影响是众所周知的。液氮的击穿电压行为依赖于高场体积已经定量描述的间隙长度高达20毫米。从“Fatelini 2”设备测量得出的长达96毫米的较长间隙的击穿曲线显示振荡和部分低耐压。对这种长间隙的静电场计算表明,理想球模型与含固定棒模型的场体积差异很大。对所用装置的计算并没有显示出高场体积随间隙长度的单调增加,而是显示出最大在60 mm左右,这可以解释在“中程”间隙长度下的特殊击穿行为。为了考虑低温恒温器材料或直径的影响,对尚未使用的装置进行了进一步的高场计算。
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引用次数: 1
Ecological and Economical Friendly Analysis of A Hybrid Solar-Grid-Diesel Connected Power Generation System 一种太阳能-柴油混合发电系统的生态经济分析
Pub Date : 2018-04-01 DOI: 10.11591/ijape.v7.i1.pp1-9
Rafat Qonain, M. Rafi, Imran Khan, Shivley Sageer
This paper presents Importance of hybrid power system. This paper depicts model and simulation of a renewable energy based hybrid power system for improving power quality because optimal utilization of primary energy sources will increase the level of supply reliability. The combination of Grid, Photo Voltaic (PV) Array System, and Diesel generator systems are used for power generation. Due to variation in output power of solar panel, Diesel engine is also coupled to ensure reliable supply under all conditions. The results shows that the proposed hybrid power system can effectively manage the optimal utilization of primary energy sources and improves the power quality in an islanding as well as grid connected mode.
本文阐述了混合动力系统的重要性。本文描述了一种基于可再生能源的混合电力系统的模型和仿真,以改善电能质量,因为一次能源的优化利用将提高供电可靠性水平。采用电网、光伏阵列系统和柴油发电系统相结合的方式发电。由于太阳能电池板输出功率的变化,还耦合了柴油发动机,以确保在任何情况下可靠供电。结果表明,所提出的混合电力系统可以有效地管理一次能源的优化利用,并改善孤岛和并网模式下的电能质量。
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引用次数: 2
Three Area Power System Load Frequency Control Using Fuzzy Logic Controller 基于模糊控制器的三区电力系统负荷频率控制
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP18-26
C. Balamurugan
System frequency is one of the most important parameters of a power system. Du to generation-load mismatches, the system frequency can vary over a small range. When the power consumed by loads and overall losses is greater than the generated power, the operating frequency of the system will decrease, resulting in a situation known as the under frequency condition. In some other case, if some of the loads in a system are disconnected from the system suddenly, or lost, it leads to a condition called as the over frequency condition. This condition is char acterized by greater input power than the consumed power by the loads. The rest of the loads in the system will absorb the extra power and the generator inertia, leading to an increase in the system frequency. In both the cases, the system frequency fluctuates from the power system’s limited frequency range, further leading to tripping off of the substation and further collapsing of the entire system. The paper describes a new method employing a smart meter to monitor and control the power system frequency which changes according to the loading conditions in the system, whether under load condition or overload condition.
系统频率是电力系统最重要的参数之一。由于发电负荷不匹配,系统频率可以在很小的范围内变化。当负载消耗的功率和总损耗大于系统产生的功率时,系统的工作频率就会降低,从而出现低频状态。在其他情况下,如果系统中的一些负载突然与系统断开连接或丢失,则会导致称为过频条件的情况。这种情况的特点是输入功率大于负载消耗的功率。系统中的其余负载将吸收额外的功率和发电机惯性,导致系统频率增加。在这两种情况下,系统频率都在电力系统的有限频率范围内波动,进一步导致变电站跳闸,进而导致整个系统崩溃。本文介绍了一种利用智能电表监测和控制电力系统频率的新方法,无论是在负荷状态下还是在过载状态下,电力系统的频率都是根据负荷情况而变化的。
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引用次数: 5
Netload-constrained Unit Commitment Considering Increasing Renewable Energy Penetration Levels: Impact of Generation Schedules and Operational Cost 考虑提高可再生能源渗透水平的电网约束单元承诺:发电计划和运行成本的影响
Pub Date : 2018-04-01 DOI: 10.11591/IJAPE.V7.I1.PP87-98
S. Abujarad, M. Mustafa, J. J. Jamian, A. M. Abdilahi, N. Zareen
In the context of low carbon power systems, the penetration levels of Renewable Energy Sources (RES) are expected to increase dramatically. In this regard, this paper investigates the maximum RES penetration level constrained by net load while considering an inflexible Unit Commitment (UC) model. To solve the UC problem, an enhanced priority list (EPL) based method is developed. In the proposed method, the plants were activated sequentially based on the operational price. The system constraint violations were repeatedly corrected until all system constraints (such as net load and spinning reserves) were satisfied. The proposed EPL method was efficient to achieve a near optimal solution under high shares of RES. Furthermore, the research work investigates three different scenarios representing penetration levels of 10% solar-only, 14.5% wind-only and 27.5% mixture of both solar and wind. The impact of each penetration level on the system scheduling and operational cost were analyzed in detail. The analysis presented shows that a potential operational cost savings of 21.6 $/MW, 20 $/MW and 11.1 $/MW is feasible under each of the represented scenarios, respectively.
在低碳电力系统的背景下,可再生能源(RES)的渗透水平有望大幅提高。在这方面,本文研究了在考虑非灵活单元承诺(UC)模型的情况下,受净负荷约束的最大RES渗透水平。为了解决UC问题,提出了一种基于增强优先级列表(EPL)的方法。在该方法中,根据运行价格顺序激活电厂。反复纠正系统约束违规,直到满足所有系统约束(如净负荷和旋转储备)。在高res份额下,EPL方法可以有效地获得接近最优解。此外,研究工作还研究了三种不同的场景,分别代表10%的太阳能,14.5%的风能和27.5%的太阳能和风能混合的渗透率水平。详细分析了各个渗透等级对系统调度和运行成本的影响。所提出的分析表明,在每种所代表的方案下,分别可以节省21.6美元/兆瓦、20美元/兆瓦和11.1美元/兆瓦的潜在运营成本。
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引用次数: 1
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International Journal of Applied Power Engineering
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