Single-phase overlapping sequence setting method for reducing power frequency fault component distance protection misoperation rate in AC-DC system
A technology of AC and DC systems and fault components, applied in emergency protection circuit devices, emergency protection devices with automatic disconnection, parameter calibration/setting, etc., can solve problems such as commutation failure of DC systems, sudden changes in electrical quantities, etc.
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Embodiment 1
[0218] Embodiment 1, a single-phase coincidence sequence setting method for reducing the misoperation rate of power frequency fault component distance protection in AC and DC systems, the specific steps are:
[0219] (1) The system is running normally
[0220] 1) Form a node admittance matrix under normal operation;
[0221] The method of forming the admittance matrix Y is as follows:
[0222] The order of the admittance matrix is equal to the number of nodes in the power system network, the number of nodes is denoted as n, and the number of non-zero elements in the off-diagonal elements of each row of the admittance matrix is equal to the number of ungrounded branches connected to the corresponding node; the admittance matrix Each diagonal element, that is, the self-admittance Y of each node ii Equal to the sum of the admittances of the branches connected to the corresponding node:
[0223] The mutual admittance Y of each off-diagonal element of the admittance matrix...
Embodiment 2
[0361] Example 2, in the Southern Power Grid in 2015, the Guangdong Power Grid has dense DC drop points, and the selection is as follows figure 1 The grid in northern Guangdong with three DC feed-in shown is the research object. Take Huadu Zhitong and the Huadu side of the 500kV AC line as an example. Huadu-Tonghe 500kV AC line Huadu side 0-cycle single-phase fault occurred, 5-cycle line head-end circuit breaker tripped, 10-cycle line end circuit breaker tripped.
[0362] When the 50-cycle Huadu side recloses first, the positive-sequence, negative-sequence, and zero-sequence voltage fault components and current fault components of each AC line protection are first calculated using the dual-port theory, and then the a, b, c of each protection are calculated using the symmetrical component method The three-phase voltage fault component and current fault component, and finally according to the power frequency fault component criterion, the measured impedance of the power frequen...
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