Performance Analysis Of Free Space Optics For 5g Communication
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Abstract
Increasing demand for higher data rate has led the research to
newlinefocus on new kind of networks - 5G which can support increasing
newlinenumber of users. The research discussed in this study is directed towards
newlinethe usage of mm waves in Ro-FSO. Two separate channels are hired,
newlineeach with data rate of 5Gbps and radio signal of 60GHz. The obtained
newlineperformance signal is analyzed with the help of Bit Error Rate (BER)
newlineand eye diagrams. A Ro-FSO device is equipped with two separate
newlinechannels, each with a data rate of 5Gbps and is broadcast over 60GHz
newlineradio spectrum, resulting in improved efficiency for usage of 5G
newlinenetworking networks. The ambient turbulence is implemented in the
newlineform of fog and the output of the device is analyzed in terms of the
newlineBER. To handle higher data rate and traffic, integration use of
newlinemillimeter wave (mm wave) is proposed with free space optical
newlinenetworks. This research work also focuses on transportation of 40GHz
newlineradio signal over free space optical link. Four independent channels are
newlineused with a data rate of 10Gbps and 40GHz radio signal are transported
newlineover 400m free space link by employing On-Off Keying (OOK).
newlineAnalysis of the received output signal is performed using BER and eye
newlinediagrams. Furthermore, comparison of Non-Return to Zero (NRZ) and
newlineReturn to Zero (RZ) modulation schemes are also investigated.
newline The Optical Wireless Communication (OWC) networks for
newlinedifferent optical filters are evaluated and contrasted with their previous
newlineconfiguration to enhance the efficiency of 5G optical communication
newlinenetwork. Quality measurement is carried out using different optical
newlinefilters, including the optical filters like Bessel, Trapezoidal, Gaussian
newlinevii
newlineand Fabry Perot. The findings demonstrated highest efficiency factor in
newlineterms of both optical spectrum and beam separation as opposed to the
newlineprevious work. In terms of optical length, transmitter, and receiver
newlineaperture diameters, the proposed model has reached optimum efficiency
newlinefactor with various optical filters. In contrast with different optical
newlinefilters, it is