Main circuit of controllable current disturbing source
A current disturbance, main circuit technology, applied in electrical components, AC power input into DC power output, output power conversion devices, etc., can solve the problems of small output capacity, weak overload capacity, high cost, and achieve fast response, Low cost and low loss
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2012-05-23
- Estimated Expiration
- Not applicable · inactive patent
Smart Images
Figure 1 Figure 2
Abstract
Description
technical field
[0001] The invention belongs to the technical field of power quality disturbance generation, and in particular provides a controllable current disturbance source main circuit. Background technique
[0002] At present, the controllable current sources on the market mainly use linear amplifiers composed of high-power transistors (BJT), field effect transistors (MOS) and other semiconductor devices to complete the output function of the set current, which has the advantages of good control linearity and high precision. . But its inherent defects are also very obvious: (1) The switching device in the main circuit works in the linear amplification area, which consumes a lot of power, generates heat, and the operating point is easily affected by temperature drift; (2) due to the device voltage and current capacity However, this type of controllable current source is difficult to output high power and can only be used in some low-power applications.
[0003] The i...
Examples
specific Embodiment approach
[0010] figure 1 A specific embodiment of the main circuit of a controllable current disturbance source provided by the present invention includes a DC power supply 1, a high-frequency H-bridge inverter 2, a high-frequency reactor 3, a DC power supply 4, and a fundamental frequency H-bridge inverter Transformer 5, fundamental wave reactor 6 and system power supply 7.
[0011] The DC power supply 1 is composed of an electrolytic capacitor, and a high-frequency H-bridge inverter 2 is connected in parallel between the positive pole and the negative pole of the electrolytic capacitor; the high-frequency H-bridge inverter 2 is formed by connecting two IGBT bridge arms in parallel, and each IGBT bridge arm It is composed of two IGBTs connected in series, and the connection points of the IGBTs constitute the two output terminals of the high-frequency H-bridge inverter 2; one output terminal of the high-frequency H-bridge inverter 2 is connected to the input terminal of the high-freque...