SIMULATION MICROSTRIP ANTENNA FREQUENCY RANGE OF 2300–2400 MHZ FOR TELECOMMUNICATIONS SYSTEMS
Article Sidebar
Main Article Content
Abstract
The need to reduce the cost, weight, size, highly reliable antenna poses new challenges in the field of antenna design Wireless. This article presents the design and simulation of a rectangular microstrip antenna array at a frequency of 2300-2400 MHz. Described LTE 4G communication standard, which is the working range of the antenna array developed for wireless communication, which provides radiation pattern and the gain reaches 14.06 dBm. Modelling conducted in Antenna Magus software package. Microstrip antenna array with improved gear ratio is the perfect solution for use in this frequency range. Array of design in the range 2300-2400 MHz. The results of the calculations of the input impedance of the antenna array in the specified frequency range. The results can be used in telecommunication systems.
Article Details
This work is licensed under a Creative Commons Attribution 4.0 International License.
V. YANUSHKEVICH, Polotsk State University
канд. техн. наук, доц.
References
Стандарт 4G: операторы и устройства с поддержкой LTE [Электронный ресурс]. – Режим доступа: http://mediapure.ru/stati/standart-4g-v-rossii-operatory-i-ustrojstva-s-podderzhkoj-lte/. – Дата доступа: 08.03.2016.
Стандарт 4G (LTE) – краткое описание поколения мобильной связи [Электронный ресурс]. – Режим доступа: http://feetch.com/4g-LTE.html. – Дата доступа: 08.03.2016.
Компания OOO «Евроинтех» [Электронный ресурс] / Нац. центр правовой информации Рос. Федерации. – Москва. – Режим доступа: http://www.eurointech.ru. – Дата доступа: 08.03.2015.
Материалы фирмы Rogers Corporation [Электронный ресурс].
Панченко, Б.А. Микрополосковые антенны / Б.А. Панченко, Е.И. Нефедов. – М. : Радио и связь, 1986.
Most read articles by the same author(s)
- V. YANUSHKEVICH, S. ABRAMENKO, V. BOGUSH, FEATURES OF PROPAGATION OF TWO-FREQUENCY ELECTROMAGNETIC WAVES OVER HYDROCARBONS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 12 (2020)
- S. ABRAMENKO, V. YANUSHKEVICH, V. BOHUSH, INFLUENCE OF LAYOUT SURFACE CHARACTERISTICS ON COMPONENTS OF SURFACE IMPEDANCE OF THE MEDIUM OVER HYDROCARBONS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 4 (2020)
- V. YANUSHKEVICH, I. RUSETSKI, CHARACTERISTICS OF THE EARTH SURFACE OVER HYDROCARBONS IN THE POWERFUL LOW FREQUENCY SIGNAL MODE, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 12 (2019)
- V. YANUSHKEVICH, E. ZAYATS, DISTRIBUTION OF RADIO IMPULSE SIGNALS IN ANISOTROPIC ENVIRONMENTS ON HYDROCARBONS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 4 (2019)
- V. YANUSHKEVICH, ELECTROMAGNETIC METHODS OF SEARCHING AND DEFINITION OF HYDROCARBON DEPOSITS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 11 (2022)
- V. YANUSHKEVICH, METHODS OF SEARCHING AND DELINERING OF HYDROCARBON DEPOSITS USING MODULATED AND RADIO PULSE SIGNALS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 11 (2022)
- V. YANUSHKEVICH, APPLICATION OF PHASE METHODS TO SEARCH FOR HYDROCARBONS BASED ON AMPLITUDE-MODULATED SIGNALS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 1 (2023)
- V. YANUSHKEVICH, S. KALINTSEV, K. SHPAK, REGULARITIES OF CHANGE IN PROPERTIES OF THE ANISOTROPIC MEDIUM OVER HYDROCARBONS FROM SENSING MODES, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 2 (2023)
- V. YANUSHKEVICH, ELECTRODYNAMIC RESPONSE OF ANISOTROPIC MEDIUM OVER HYDROCARBONS TO THE INFLUENCE OF PROBING SIGNALS, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 1 (2024)
- V. LEVOSCHENKO, V. YANUSHKEVICH, FORMING APPARATUS DIGITAL RADIATION PATTERN, Vestnik of Polotsk State University. Part C. Fundamental Sciences: No. 4 (2016)