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Buildings' Power Quality Regulator Based on Advanced Static Var Generator

机译:基于高级静态无功发生器的建筑物电能质量调节器

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Widespread applications of power electronic-based loads and single phase loads in buildings, such as PCs, TVs, printers, air-conditioners, refrigerators, elevator, etc., cause serious power quality problems, such as reactive power, unbalance current, and harmonic current. To deal with the unbalance and non-linear loads in buildings, this paper developed an advanced SVG (Static Var Generator), which is based on improved TTA (Time-domain Transform Algorithm) current detection method. First, the basic operation principle and steadiness characteristic of the device are discussed, then the improved TTA is proposed further and applied into three-phase four-wire power system. The main circuit topology is the four-leg configuration to eliminate exactly the zero sequence current. Dual-DSP strategy is adopted to increase the control speed and precision. At last, some experimental and locale running results are obtained. The results show that this SVG has the perfect performance, not only largely decreases the THD, which will meet the IEEE-519 standard recommendations on harmonic levels, but also effectively compensates the reactive and unbalance current.
机译:电力电子负载和单相负载在建筑物中的广泛应用,例如PC,电视,打印机,空调,冰箱,电梯等,会导致严重的电能质量问题,例如无功功率,不平衡电流和谐波当前。为了应对建筑物中的不平衡和非线性负载,本文基于改进的时域变换算法(TTA)电流检测方法,开发了一种先进的SVG(静态无功发生器)。首先讨论了该装置的基本工作原理和稳定性,然后进一步提出了改进的TTA,并将其应用于三相四线电力系统。主电路拓扑为四脚配置,可精确消除零序电流。采用双DSP策略以提高控制速度和精度。最后,获得了一些实验和现场运行结果。结果表明,这种SVG具有完美的性能,不仅大大降低了THD,可以满足IEEE-519标准关于谐波水平的建议,而且还可以有效补偿无功和不平衡电流。

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