Microgrid protection method based on impedance characteristics
An impedance characteristic, microgrid technology, applied in emergency protection circuit devices, electrical components, etc., can solve problems such as high data synchronization requirements and poor resistance to transition resistance.
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Embodiment 1
[0076] Set the fault point f in the area 1 , the fault type is BC phase-to-phase fault, and the fault time is t=1.0s.
[0077] (1) In the microgrid, the protection devices on both sides of the protected line L2, that is, the M side and the N side, respectively collect the three-phase voltage and three-phase current in real time, and record the obtained three-phase voltage sampling value sequence of the M side as u MA (k), u MB (k), u MC (k), the M-side three-phase current sampling value sequence is respectively denoted as i MA (k), i MB (k), i MC (k); denote the obtained N-side three-phase voltage sampling value sequence as u NA (k), u NB (k), u NC (k), the N-side three-phase current sampling value sequence is respectively denoted as i NA (k), i NB (k), i NC (k). The value of the sequence number k above is 1 to 1440.
[0078] (2) The protection device on the M side extracts the positive sequence voltage sampling value and the positive sequence current sampling valu...
Embodiment 2
[0104] Set the out-of-area fault point f 2 , the fault type is BC phase-to-phase fault, and the fault time is t=1.0s.
[0105] The steps (1) to (7) in Example 2 are consistent with the steps (1) to (7) in Example 1, and only the differences will be described below.
[0106] Step (6), after calculation, Z CM =-0.4001-j0.2598Ω, Z CN =0.3155+j0.2947Ω.
[0107] Step (7), after calculation, arg(Z CM )=216.51°, arg(Z CN )=41.78°, Protective devices on both sides do not need to be calculated|Z CM +Z CN The value of |. arg(Z CN )∈(0°,180°], arg(Z CM )∈[90°,360°], the result of the discrimination in the present invention is an out-of-area fault.
Embodiment 3
[0109] Set the out-of-area fault point f 3 , the fault type is BC phase-to-phase fault, and the fault time is t=1.0s.
[0110] Steps (1) to (7) in Example 3 are consistent with the processes of Steps (1) to (7) in Example 1, and only the differences will be described below.
[0111] Step (6), after calculation, Z CM =0.0019+j0.0166Ω, Z CN =-0.0816+j0.0272Ω.
[0112] Step (7), after calculation, arg(Z CM )=83.54°, arg(Z CN )=198.41°, arg(Z CN )∈(180°,270°), the protective devices on both sides need to calculate |Z CM +Z CN | to distinguish between internal and external faults. After calculation, |Z CM +Z CN |=0.080Ω,|Z CM +Z CN |<0.096Ω, the judgment result of the present invention is an out-of-area fault.
[0113] Table 2 is the discrimination result of 3 examples, wherein "—" indicates that this content does not need to be calculated.
[0114] The discrimination result of table 2 embodiment
[0115] fault location arg(Z CM )
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