Apparatus for effectively compensating three-phase unbalance load and reactive power
A compensation device and load balancing technology, which is applied in the direction of reactive power adjustment/elimination/compensation, reactive power compensation, multi-phase network asymmetry reduction, etc., can solve problems such as high cost, difficult to meet, and limited dynamic response speed of the device , to achieve the effect of low device cost, good versatility and simple circuit
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Embodiment 1
[0043] image 3 It is a schematic diagram of a more general specific embodiment of the present invention: it includes a cabinet and a main switch, three current sampling circuits, three voltage sampling circuits, a power controller, twelve fuses, A Δjx compensation unit, a Δl compensation unit, a Yxo compensation unit, a Yo compensation unit (in this example, the compensation device Q in all compensation units is a capacitor; all switches K, Ko and 1-3CJ are contacts and the voltage of its control coil is 220VAC). The current sampling is composed of three transformers LH1, LH2, and LH3 used to detect the three-phase load current, one end of which is respectively connected to the input ends 1, 2, and 3 of the power controller, and the other ends are connected together. , and then connected to the 0 terminal of the power controller. The voltage sampling circuit is a wire connected to the load power supply and the power controller respectively, one end of which is respectively ...
Embodiment 2
[0048] Figure 4 It is a schematic diagram of using Δxx compensation unit to transform the existing compensation device composed of Δx compensation unit: it includes a cabinet and a main switch, three current sampling circuits, three voltage sampling circuits, and a power controller are installed in the cabinet , twelve fuses, four Δx compensation units, and four Δxx compensation units. In this example, the compensation devices Q in all compensation units are capacitors; all switches CJ 1-24 There are contacts and the voltage of the control coil is 220VAC). The current sampling is composed of three transformers LH1, LH2, and LH3 used to detect the three-phase load current, one end of which is respectively connected to the input ends 1, 2, and 3 of the power controller, and the other ends are connected together. , and then connected to the 0 terminal of the power controller. The voltage sampling circuit is a wire connected to the load power supply and the power controller res...
Embodiment 3
[0050] Figure 5 It is a schematic diagram of using Δlx compensation unit to transform the existing compensation device composed of Δl compensation unit. It consists of a cabinet and a main switch, three current sampling circuits, three voltage sampling circuits, a power controller, twelve fuses, two Δl compensation units, a Yxo compensation unit, a Yo compensation unit unit (in this example all compensation devices Q in the compensation unit are capacitors; all switches K and Ko are non-contact). The current sampling is composed of three transformers LH1, LH2, and LH3 used to detect the three-phase load current, one end of which is respectively connected to the input ends 1, 2, and 3 of the power controller, and the other ends are connected together. , and then connected to the 0 terminal of the power controller. The voltage sampling circuit is a wire connected to the load power supply and the power controller respectively, one end of which is respectively connected to inpu...
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