A Novel Nonlinear Robust Control System of Unified Power Flow Controller

A technology of power flow controller and robust control, which is applied in the direction of AC network circuits, electrical components, circuit devices, etc., and can solve the problem that the nonlinear physical structure characteristics of the UPFC system cannot be preserved, chattering, and linearization controllers are difficult to provide satisfactory control effects etc. to achieve the effect of improving transient stability and oscillation damping

Active Publication Date: 2018-01-19
GUIZHOU INST OF TECH
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Problems solved by technology

[0005] The UPFC system is a nonlinear system, and there are modeling errors in modeling, and the UPFC device is often affected by external uncertain disturbances during operation. Therefore, when the system is subject to large external disturbances and large (Feedback) linearized controllers do not provide satisfactory control when the range fluctuates
The direct Lyapunov finite-time control method and the synovial film variable structure control method are discontinuous control methods, which cannot retain the nonlinear physical structure characteristics of the UPFC system, and are prone to "chattering" phenomenon

Method used

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  • A Novel Nonlinear Robust Control System of Unified Power Flow Controller
  • A Novel Nonlinear Robust Control System of Unified Power Flow Controller
  • A Novel Nonlinear Robust Control System of Unified Power Flow Controller

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Embodiment Construction

[0042] The technical solution of the present invention is further described below, but the scope of protection is not limited to the above.

[0043] Such as figure 1 with figure 2 A new nonlinear robust control system of a unified power flow controller is shown, including a measurement module, a signal analog conversion module, a comparison module, a state space conversion module, a central control module, a state space inverse conversion module, and a voltage source converter gate Trigger and control module and UPFC module, the signal output terminal of the measurement module is connected to the signal input terminal of the central control module through the signal analog conversion module, the comparison module, and the state space conversion module in turn, and the signal output terminal of the central control module is sequentially connected The state space inverse conversion module, the voltage source converter gate triggering and control module are connected to the signal...

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Abstract

The present invention provides a novel non-linear robustness control system of a unified power flow controller. The system comprises a measurement module, a signal simulation transformation module, a comparison module, a state space conversion module, a central control module, a state space inverse transformation module, a voltage source converter gate trigger and control module and a UPFC module. The signal output end of the measurement module is connected with the signal input end of the UPFC module through the signal simulation transformation module, the comparison module, the state space conversion module, the central control module, the state space inverse transformation module and the voltage source converter gate trigger and control module in order, and the signal output end of the UPFC module is connected with a power transmission system. The non-linear robustness control method provided by the invention is a continuous control method with no need for boundary functions, and is able to fully maintain and utilize the non-linear physical structure characteristics of a controlled object UPFC and realize the real-time control of the UPFC.

Description

Technical field [0001] The invention relates to a new non-linear robust control system of a unified power flow controller, in particular to the technical field of flexible AC power transmission. Background technique [0002] The modern power system is a typical high-dimensional, strong nonlinear dynamic large-scale system, with the main characteristics of large generating units, ultra-high voltage, long distance, heavy load, interconnection of large power grids, and combined AC and DC transmission. With the use of various new power equipment and the vigorous development and utilization of renewable energy (such as wind power, photovoltaic power generation, etc.), more and more micro-grids are formed and integrated into the main network, making power generation and transmission more economical and efficient. It also increases the scale, complexity and uncertainty of the power system. In this case, local faults in the power system (such as short-circuit faults, ground faults, load...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02J3/00
CPCH02J3/00
Inventor 雷邦军肖迎群刘刚
Owner GUIZHOU INST OF TECH
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