B. Sedani, K. Borisagar, D. Kamdar, G. R. Kulkarni
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引用次数: 4
摘要
本文对采用Alamouti编码方案的WiMAX (Worldwide Interoperability for Microwave Access)系统及发射天线分集技术进行了仿真和性能分析。传统上,无线系统的设计一直专注于提高空中接口的可靠性,其中衰落和干扰被视为滋扰。最近的焦点是频谱效率,与这种转变相关的是一种新的观点,即衰落可以被视为一个可以利用的机会。在初始阶段,发射机和接收机两侧采用单天线系统(SISO系统),预期频谱效率较低,容量较小。可以看出,这些技术性能差的根本原因是可靠的通信仅依赖于单信号路径的强度,在某些情况下可能处于深衰落状态。一种自然的解决方案是确保信息符号通过多个信号路径,每个信号路径独立淡出,确保只要其中一个路径是强的,就可以实现可靠的通信。这种技术被称为多样性。本文的主要目标是利用天线分集原理和高效的无线信道,在4G无线系统中实现更大程度的误码率降低。采用天线分集技术和实时图像输入,建立了基于质量的WiMAX系统仿真模型。给出了仿真结果,并对几个测试用例进行了对比分析。
Simulation and Performance Analysis of WiMAX System Using Transmit Diversity and Alamouti Coding Scheme with Real Time Image Input
This paper presents the simulation and performance analyses of WiMAX (Worldwide Interoperability for Microwave Access) system along with transmit antenna diversity technique using Alamouti coding scheme. Traditionally the design of wireless systems has been focused on increasing the reliability of the air interface where fading and interference are viewed as nuisances. Recent focus is now on spectral efficiency, associated with this shift is a new point of view that fading can be viewed as an opportunity to be exploited. In the initial stages, the single antenna system was used at transmitter and receiver in both the sides (SISO system) anticipating lower spectral efficiency and lesser capacity. It can be seen that root cause of the poor performance of these technique is that reliable communication depends on the strength of the single signal path only which may be in a deep fade under certain circumstances. A natural solution is to ensure that the information symbols pass through multiple signal paths, each of which fades independently, making sure that reliable communication is possible as long as one of the paths is strong. This technique is called diversity. The main objective of this paper is to achieve the greater reduction in bit error rate in 4G wireless system using antenna diversity principles along with efficient wireless channels. The quality based simulation models are developed for WiMAX system using antenna diversity technique and real time image input. The simulation results are presented along with the comparative analysis for several test cases.