EVM based AMC for an OFDM system

Ramdane Chouitem
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引用次数: 13

Abstract

A conventional OFDM system often poses a stringent linearity requirement to the transmitter, especially the radio-frequency power amplifier (RFPA), to maintain its bit error rate (BER). As a result, the output power from a RFPA is often limited, thus, the communication distance is compromised. With the deployment of WiMAX (IEEE 802.16), which is targeting at the mobile market, the communication distance is a concern. In this project, we propose to use Adaptive Modulation and Coding (AMC) to adaptively control the digital modulation and the output power of a RFPA. When the AMC selects the modulation order with the coding rate to achieve the targeted BER, the output power of a RFPA can be increased as long as its Error Vector Magnitude (EVM) is less than the required. Therefore, the communication distance of an OFDM system could be intelligently extended.
基于EVM的OFDM系统AMC
传统的OFDM系统通常对发射机,特别是射频功率放大器(RFPA)提出严格的线性要求,以保持其误码率(BER)。因此,RFPA的输出功率通常是有限的,因此,通信距离受到损害。随着针对移动市场的WiMAX (IEEE 802.16)的部署,通信距离成为人们关注的问题。在本计画中,我们提出使用自适应调制和编码(AMC)来自适应控制RFPA的数字调制和输出功率。当AMC根据编码速率选择调制顺序以达到目标误码率时,只要RFPA的误差矢量幅度(Error Vector Magnitude, EVM)小于要求,就可以增加RFPA的输出功率。因此,可以智能地扩展OFDM系统的通信距离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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