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Active control is used to improve the performance of noise barrier at low-frequency range and the excess insertion loss due to the active control system is influenced by the positions of the error sensors.
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The study is based on a numerical model using boundary element techniques that enables the excess attenuation and insertion loss for various noise barriers and cuttings of complex profile and surface cover to be calculated.
Spectra of insertion loss, change in insertion loss and excess attenuation results for a broadband traffic-source are presented.
The switch's insertion loss compares favorably with that of 50/50 fiber couplers, which typically have insertion losses of 3.4 dB (excess loss of 0.4 dB).
It has low insertion loss and crosstalk.
Techniques for reducing insertion loss are cited.
Nominal insertion loss values from the literature are used here, since optimizing the insertion loss is an engineering task being sensitive to material and process variations.
Mohsin, M. et al. Graphene based low insertion loss electro-absorption modulator on SOI waveguide.
The minimum insertion loss including the transmission loss and coupling loss is about 10.7 dB.
However, the conventional directional coupler has relatively large insertion loss.
A constant average insertion loss mode is demonstrated.
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