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优秀论论及对应源码。电力系统配电网的无功优化规划是保证配电网安全、经济运行的一项有效手段,是降低网损、提高电压质量的重要措施。因此,电力系统配电网无功优化规划问题的研究,既具有理论意义,又具有工程实际应用价值。配电系统最优规划问题是一个复杂的非线性组合优化问题,至今未得到很好的解决。Tabu搜索(TS—Tabu search)算法是近年来出现的用于求解组合优化问题的一种高效的启发式搜索技术。本文采用固定并联电容器作为研究对象对系统进行无功补偿,并利用智能优化方法得到使配电网损耗降低最大对应的最优
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Abstract—In this paper a current reference generation
method for a voltage source shunt active power filter is
examined. The proposed method improves the harmonic
filtering by compensating the delays in the system. In
stationary operating poi
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用51驱动CS5463 可以测量各种参数 -The CS5463 is an integrated power measurement
device which combines two ΔΣ
analog-to-digital converters, power calculation
engine, energy-to-frequency converter, and a
serial interface on a single chip. It is designed to
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cs5463英文翻译成中文的 格式和英文格式是一样的。-The CS5463 is an integrated power measurement
device which combines two ΔΣ
analog-to-digital converters, power calculation
engine, energy-to-frequency converter, and a
serial interface on a single chip. It is desig
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shunt active filter for decreasing the harmonics and reactive power compensation and for voltage instability
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电力系统无功补偿装置的MATLAB仿真,包含并联型SVC和串联型TCSC-Reactive power compensation device MATLAB simulation of power system , including the shunt SVC and series TCSC
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Control strategies for extracting the three-phase reference currents for shunt active power filters are compared, uating their performance under different source conditions with PI and Fuzzy Controllers in MATLAB/Simulink environment When the supply
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Under partially shaded conditions, series connection
of photovoltaic (PV)modules results in the flow of lowest current in
the string corresponding to the most shaded module, reducing the
overall power output. Power output can be maximized by in
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Compensation of Source Current Harmonics Using Shunt Active
Filters
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Compensation of Source Current Harmonics Using Shunt Active Filters
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In distribution systems, the load has been a sudden
increase or decreases and it is like as nonlinear loads so the
load draw non-sinusoidal currents the AC mains and
causes the load harmonics and reactive power, and excessive
neutral currents
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