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Exact(5)
The annual energy loss, percentage annual energy loss reduction and the minimum node voltage among all the 27 load levels considered is presented in Table 5.
After providing this integrated solution, feeder power losses and minimum node voltage are determined for each load level as shown in Figs. 3 and 4, respectively.
Also a better node voltage profile with a minimum node voltage of 0.9542 p.u. is obtained during the peak load hours.
It can be observed from these figures that the power losses are substantially reduced and the minimum node voltage is significantly enhanced using optimal DG allocation.
Table 5 Comparison of network performance Particulars Base case DG allocation DG allocation and network reconfiguration Annual energy loss (kWh) 984630.15 143,248 108,378 Percentage annual energy loss reduction – 85.45 88.99 Minimum node voltage (p.u).
Similar(55)
The best time complexity of the algorithm is O(1), i.e. the minimum mismatch sequence of node voltage sequence matrix is the mapping sequence of probability isomorphism, the worst time complexity of which is O k!), when we need to enumerate all possible nodes mapping relationship.
node voltage of bus i. minimum bus voltage.
Node voltage constraint.
U 0 Standard node voltage.
However, the minimum node degree was not given.
But, as we know from [32], the minimum node degree does not imply the minimum interference.
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