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首页> 外文期刊>Electric Power Components and Systems >Integrated Volt-VAr Optimization with Distributed Energy Sources to Minimize Substation Energy in Distribution System
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Integrated Volt-VAr Optimization with Distributed Energy Sources to Minimize Substation Energy in Distribution System

机译:集成Volt-VAr优化与分布式能源,以最大限度地降低配电系统中的变电站能量

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Volt-VAr optimization (VVO) is the tool which improves the efficiency of the distribution system by coordinating the voltage and reactive power. Due to voltage-dependence of loads, both real and reactive power will be affected by variation in voltage. Consequently, rather than minimizing active energy of the system, the focus of this article to reduce the daily apparent energy of the substation using VVO. In this, on load tap changers (OLTC), and voltage regulators (VRs) are used for voltage optimization, whereas capacitor banks (CBs) inject reactive power (VAr) into the system provided operational and system constraints satisfied. This study focuses on minimization of substation apparent energy (kVAh) by the optimal scheduling of OLTC, VRs, and CBs. The photo-voltaic (PV) and wind turbine (WT) generators are also assumed to be connected in the distribution system. Moreover, this study is extended to consider the effect of harmonics in the load current for associated loads. All the simulations are performed on modified IEEE 33-bus and IEEE 123-bus radial distribution systems. More savings in terms of substation kVAh are accomplished when DGs are connected into the system. Reductions up to 20% in substation kVAh and 37% in energy losses have been achieved.
机译:Volt-VAr优化(VVO)是通过协调电压和无功功率来提高配电系统效率的工具。由于负载的电压依赖性,有功功率和无功功率都会受到电压变化的影响。因此,本文的重点不是减少系统的有功电能,而是减少使用VVO的变电站的日常视在电能。在这种情况下,使用有载分接开关(OLTC)和稳压器(VR)进行电压优化,而电容器组(CB)将无功功率(VAr)注入到系统中,前提是要满足运行和系统约束条件。这项研究的重点是通过OLTC,VR和CB的最佳调度来最小化变电站视在能量(kVAh)。光伏(PV)发电机和风力涡轮机(WT)发电机也被假定连接在配电系统中。此外,该研究扩展为考虑谐波在负载电流中对相关负载的影响。所有仿真都在改良的IEEE 33总线和IEEE 123总线径向分配系统上执行。将DG连接到系统后,可实现更多的变电站kVAh节省。变电站的kVAh降低了20%,能量损失降低了37%。

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