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Performance Assessment for 5g Access Techniques /

dc.contributor.advisorSupervisor : Fawzy Ibrahim, Hesham ElBadawy
dc.contributor.authorAl-Masry, Ahmed Ali Fawzy,
dc.date.accessioned2022-01-18T07:14:02Z
dc.date.accessioned2022-03-27T11:27:21Z
dc.date.available2022-01-18T07:14:02Z
dc.date.available2022-03-27T11:27:21Z
dc.date.submitted2019.
dc.descriptionDISSERTATION NOTE-Degree type M.Sc.
dc.descriptionDISSERTATION NOTE-Name of granting institution Misr International University, Faculty of Engineering
dc.descriptionIncludes Arabic Summary.
dc.descriptionIncludes bibliographic references (pages 134-142)`
dc.description.abstractNowadays, Non-Orthogonal Multiple Access (NOMA) has gained great attention due to its higher spectral efficiency (SE) over Orthogonal Multiple Access (OMA). NOMA can play a vital role in improving the capacity of future networks. Moreover, power domain NOMA multiplexes the users in power domain utilizing the Superposition Coding (SC) and allows them to access the whole spectrum simultaneously. Furthermore, at the receiver side Successive Interference Cancelation (SIC) is applied for signal detection. In this thesis, the Nakagami-m fading channel is more suitable to study the channel model. Therefore, the generation of the Nakagami-m fading channel represents the main contribution of this work. This is why the special Nakagami-m function will be generated. This thesis addresses two main channel models. First of all, the effect of conventional channel model on dual NOMA user (conventional NOMA system two users) is studied. This will be done to get complete modelling of the NOMA system. Secondly, the channel model is changed to be based on a statistical Nakagami-m generation function. The channel statistical model is used by taking into consideration the correlation coefficient matrix. Finally, the statistical channel model is deployed with multi user and perform the assessment technique. The obtained results show that the maximum efficiency that may be reached for conventional NOMA (two users NOMA) will occur at transmitted power of 25dBm. Whereas, by increasing the number of users up to sixteen users the maximum Energy Efficiency (EE) will be achieved at power level of 32dBm. Therefore, increasing more power the system will suffer from more interference, so that the obtained EE will be degraded.eng
dc.format.extent149 pages : illustrations, 26 cm
dc.format.mediumtext
dc.format.mimetypeapplication/pdf
dc.identifier.otherEG-CaMIU
dc.identifier.otherThs321
dc.identifier.urihttps://iorep.miuegypt.edu.eg/handle/20.500.13071/96
dc.language.isoeng
dc.subject.lcshWireless Communication Systems
dc.subject.lcshGlobal System for Mobile Communications
dc.titlePerformance Assessment for 5g Access Techniques /
dc.title.alternativeتقييم الأداء لتقنيات الولوح فى الجيل الخامس
dc.typetext

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