A generalized method for calculating both radiation and surface-wave losses is developed for microstrip discontinuities. The losses are determined by a rigorous Poynting vector analysis where the current distribution over all the microstrip discontinuities is a result of a full-wave moment method solution. A self-consistency check of the results based on power conservation is performed to confirm the numerical results. It is found that above a certain frequency, the surface-wave loss becomes more important than the radiation loss.
机构:Univ of California, Los Angeles,, Electrical Engineering Dep, Los, Angeles, CA, USA, Univ of California, Los Angeles, Electrical Engineering Dep, Los Angeles, CA, USA
ALEXOPOULOS, NG
JACKSON, DR
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机构:Univ of California, Los Angeles,, Electrical Engineering Dep, Los, Angeles, CA, USA, Univ of California, Los Angeles, Electrical Engineering Dep, Los Angeles, CA, USA
JACKSON, DR
KATEHI, PB
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机构:Univ of California, Los Angeles,, Electrical Engineering Dep, Los, Angeles, CA, USA, Univ of California, Los Angeles, Electrical Engineering Dep, Los Angeles, CA, USA
机构:Univ of California, Los Angeles,, Electrical Engineering Dep, Los, Angeles, CA, USA, Univ of California, Los Angeles, Electrical Engineering Dep, Los Angeles, CA, USA
ALEXOPOULOS, NG
JACKSON, DR
论文数: 0引用数: 0
h-index: 0
机构:Univ of California, Los Angeles,, Electrical Engineering Dep, Los, Angeles, CA, USA, Univ of California, Los Angeles, Electrical Engineering Dep, Los Angeles, CA, USA
JACKSON, DR
KATEHI, PB
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机构:Univ of California, Los Angeles,, Electrical Engineering Dep, Los, Angeles, CA, USA, Univ of California, Los Angeles, Electrical Engineering Dep, Los Angeles, CA, USA