Coordinated emergency control method for near-region power grid voltage of phase modifier
A power grid voltage and emergency control technology, applied in AC network voltage adjustment, circuit devices, AC network circuits, etc., can solve problems such as low reactance, long-term low point suspension of nearby voltage, low capacity of 500kV substation, etc., and achieve high speed Fast, good computability and wide adaptability, easy to calculate effects
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Embodiment 1
[0047] Embodiments of the present invention will be described in further detail below in conjunction with the accompanying drawings.
[0048] The invention provides an emergency control method for voltage coordination and emergency control of a power grid in the near area with a regulator, the flow chart is as follows figure 1 shown, including the following steps:
[0049] Step 1. Build the data model of the power grid with the regulator:
[0050] Step 2. Regardless of the dynamic reactive power support capability of the condenser, check the stability of the power grid by adopting AC and DC system faults;
[0051]Step 3. Determine and distinguish the type of voltage stability problem caused by the fault: if the low voltage of the power grid in the vicinity of the condenser is suspended, go to step 4; if the voltage of the power grid in the vicinity of the condenser is collapsed, go to step 7;
[0052] Step 4. Throwing / cutting capacitive reactors; throwing / cutting capacitive ...
Embodiment 2
[0072] The technical solution provided by the present invention will be further described in detail below by taking the Qishao DC near-area power grid as an example. The Qishao DC receiving end is equipped with a 300MVar condenser.
[0073] Step 1. Build the power flow data model and stability data model of the power grid with the regulator. In the PSD-BPA program, the power grid data including the regulator is established, the system reference capacity is taken as 100MVA, and the equipment parameters are all taken as per-unit values based on the system reference capacity. Adjust the grid operation mode, the specific grid structure is as attached figure 2 shown.
[0074] Step 2, check the stability of the grid built in the first step. Specifically, adjust the steady-state output of the power flow data model to zero, and control the steady-state data model to set the reactive power output to zero; at the same time, the AC adopts N-1 or N-2 faults, and the DC adopts unipola...
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