NOMA (Non-Orthogonal Multiple Access) — Multiplekslashning kelajagimi?
Annotatsiya
Ushbu maqolada NOMA (Non-Orthogonal Multiple Access) texnologiyasining zamonaviy simsiz aloqa tizimlaridagi o‘rni tahlil qilingan. Shuningdek, uning an’anaviy multiplekslash usullaridan farqli jihatlari yoritilgan. Tadqiqot davomida NOMA texnologiyasining ishlash prinsipi, quvvat bo‘yicha foydalanuvchilarni ajratish usuli hamda SIC algoritmining vazifalari ko‘rib chiqilgan. Mazkur texnologiya 5G va istiqboldagi 6G tarmoqlari uchun muhim yechimlardan biri sifatida baholangan. Chunki u spektr samaradorligini oshiradi va ko‘proq foydalanuvchilarga xizmat ko‘rsatish imkonini beradi. Maqolada NOMA texnologiyasining afzalliklari bilan bir qatorda ayrim texnik muammolari ham tahlil qilingan. Jumladan, signal aralashuvi va hisoblash murakkabligi masalalariga alohida e’tibor qaratilgan. Tadqiqot natijalari NOMA texnologiyasi kelajakdagi mobil aloqa tizimlarida asosiy multiplekslash usullaridan biri bo‘lishini ko‘rsatadi.
Kalit so‘zlar: NOMA, multiplekslash, 5G, 6G, SIC algoritmi, simsiz aloqa, spektr samaradorligi, signal
Библиографические ссылки
1. Goldsmith A. Wireless Communications. Cambridge University Press, New York, 2005.
2. Rappaport T. S. Wireless Communications: Principles and Practice. Prentice Hall, New Jersey, 2002.
3. Tse D., Viswanath P. Fundamentals of Wireless Communication. Cambridge University Press, Cambridge, 2005.
4. Molisch A. F. Wireless Communications. Wiley Publishing, United Kingdom, 2011.
5. Haykin S., Moher M. Modern Wireless Communications. Pearson Education, Canada, 2005.
6. Stallings W. Wireless Communications and Networks. Pearson Education, 2005.
7. Sklar B. Digital Communications: Fundamentals and Applications. Prentice Hall, 2001.
8. Proakis J. G., Salehi M. Digital Communications. McGraw-Hill Education, 2008.
9. Andrea Goldsmith. Principles of Wireless Communications. Stanford University Publications, 2012.
10. Simon Haykin. Communication Systems. Wiley, 2009.
11. Jochen Schiller. Mobile Communications. Addison-Wesley, 2003.


