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Active power demand at bus i. Reactive power demand at bus i. Voltage magnitude at bus i. Resistance of branch i. Reactance of branch i. Active power loss of branch i. + 1.
Each block denotes the MP associated to the branch i of antenna ℓ.
|I i | is the current magnitude and Ii,max is the maximum current limit of the branch i.
P ℓ i and M ℓ i are the polynomial order and memory depth of the branch i, respectively.
I i is the current magnitude and I i, max is the maximum current limit of the branch i.
where σ n 2 is the power of additive white Gaussian noise (AWGN) a and Pi 0 is the source transmission power in branch i.
Each branch i of the path ℓ composes the MIMO-PD, is formed by a MP implemented with M ℓ i MLPs.
If the two nodes of branch i are within the same partition ( g_{i} ) is 0, or ( g_{i} ) is 1.
For any branching node at which the trip passes from branch i to a different branch k, A trip is multiplied by a factor 2 p k.
We consider a dendritic branching structure with the dynamics of the membrane voltage on a finite branch i described by the passive cable equation.
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For locating the faulty branch i-j, the differences of positive sequence current phasor angles measured at both ends of the lines (connected to the faulted bus) are computed and is denoted by θcpij.
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