Power lines or underground power cables generate electromagnetic interaction with other objects near to them. This study evaluates the magnetic field emitted by underground extra high voltage cables. The presented work aims to show a numerical simulation of the magnetic field of a buried 400 kV underground power line, which is used as a novel prototype in several countries at a short distance. The underground power cable study, in the presence of the current harmonics at different positions, with time variation by finite element resolution, using Comsol Multiphysics with Matlab software in two dimensions. The simulation results illustrate the magnetic flux density variation-in terms of amplitude and distribution as a function of different actual harmonics rates. The underground cable performance and magnetic field have affected by the harmonics effects. The maximum magnetic induction levels generated by significant harmonics are superior to the limits recommended by the international standard norms. In this paper, shielding has been used as an appropriate remedy to attenuate the magnetic field.
Ultra-Wideband Direct Sequences Code Division Multiple Access (DS-DMA) plays
an important role in the case of multi-terminal multi-application
communications of UWB devices. In the case of UWB systems that exploit the
injection of the pulse itself directly to the antenna hence the very wide
bandwidth, generation of suitable DS-CDMA codes poses a real challenge. In
this paper we will describe our novel UWB transmission which uses
pseudo-orthogonal time code (POC) as DS-CDMA sequences. The suggested codes
are unipolar sequences with chips that may be dynamically modified to target
a certain number of users or applications. Our approach bypasses the
modulations schemes commonly used on UWB systems. Moreover, as perspectives
to our work, it would be very interesting to realize our new approach based
on an FPGA circuit.
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