The fast multipole method(FMM)is introduced to solve the magnetic vector potential in 3-D electromagnetoquasistatic field. The continually distributed source is discretized according to the required accuracy
the electromagnetoquasistatic integral function is discretized by electrostatic analogy analysis
and then the magnetic vector potential created by current-carry conductors in 3-D space is transformed into N-body problem which can be calculated by FMM.Thus the computation is reduced from O(N
2
) to O(N) and the error can be flexibly controlled by division density. The numeral results demonstrate that with division length of volume cell density as a quarter o
f skin depth
the relative error of the FMM result of the magnetic vector potential of the redistributed current-carry conductor in its own space gets less than 0.005
and the result of magnetic vector potential outside the conductor is more accurate. The fast multipole method for calculating the magnetic vector potential in 3-D electromagnetoquasistatic field can be extended to evaluate the on-chip interconnect inductance parameters.
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references
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