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Hybrid static var system (HSVS) control system

A control system and a hybrid technology, applied in the electrical field, can solve problems such as the scope and occasions of mechanical switches, and achieve real-time display, reasonable design, and real-time control effects

Inactive Publication Date: 2014-09-24
安徽金捷光电科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Early reactive power compensation devices used AC contactors as switching capacitors in parallel, and in the current medium and low voltage compensation systems, there are still many applications for mechanical switches.

Method used

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  • Hybrid static var system (HSVS) control system

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Embodiment Construction

[0010] In order to make the technical means, creative features, goals and effects achieved by the present invention easy to understand, the present invention will be further described below in conjunction with specific illustrations.

[0011] Such as figure 1 As shown, a hybrid reactive power compensation HSVS control system includes a microcomputer controller connected in parallel to the power grid, a voltage and current detection circuit, a switching module and a load circuit. The voltage and current detection circuit is connected to a signal acquisition circuit, and the signal acquisition circuit is connected to There is a signal trigger circuit, and the signal trigger circuit communicates with the microcomputer controller. The switching module includes MSC module, TSC module and TCR module connected in parallel. The MSC module is used as a capacitor switching device for coarse adjustment measures and eliminates harmonics at a fixed level. , the TSC module is used as a fine...

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Abstract

The invention provides a hybrid static var system (HSVS) control system and relates to the electrical technical field. The hybrid static var system (HSVS) control system comprises a microprocessor controller, a voltage / current detection circuit, a switching module and a load circuit, all of which are connected in parallel in a power grid; the voltage / current detection circuit is connected with a signal acquisition circuit which is connected with a signal trigger circuit; the signal trigger circuit is in communication connection with the microprocessor controller; the switching module comprises an MSC (Mechanically Switched Capacitor) module, a TSC (Thyristor Switched Capacitor) module and a TCR (Thyristor Control Reactor) module, all of which are connected in parallel; the MSC module serves as a capacitor switching device of a coarse tuning measure and is used for eliminating the harmonic quantity of a fixed layer, the TSC module serves as a capacitor switching device of fine tuning, and the TCR module is used for phase-control fine tuning and capable of absorbing excessive reactive power generated in the capacitor switching processes of the MSC module and the TSC module, and therefore, an SVC (Static Var Compensator) can be switched more accurately, and low harmonic pollution is generated during switching.

Description

technical field [0001] The invention relates to the field of electrical technology, in particular to a hybrid reactive power compensation HSVS control system. Background technique [0002] Most of the electric loads in the power grid are inductive loads. These inductive devices not only need to absorb active power from the power system during operation, but also absorb reactive power to establish an alternating magnetic field, which directly leads to low power factor. Excessive reactive power loss in the system will also cause other hazards: 1. Large network loss; 2. Low network transmission capacity; 3. User-side voltage offset; 4. Increased power rate and electricity charges. The electric power sent by the power supply bureau is the apparent power calculated in VA, but the charging is the active power calculated in W, and the reactive power in VAR is not used as the basis for charging. In order to enhance the energy-saving awareness of the majority of power-consuming ente...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J3/18
CPCY02E40/10
Inventor 朱友利
Owner 安徽金捷光电科技有限公司
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