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EVM based AMC for an OFDM system

机译:用于OFDM系统的基于EVM的AMC

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摘要

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.
机译:常规的OFDM系统通常会对发射机(尤其是射频功率放大器(RFPA))提出严格的线性要求,以保持其误码率(BER)。结果,来自RFPA的输出功率经常受到限制,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,通信距离成为一个问题。在本项目中,我们建议使用自适应调制和编码(AMC)来自适应地控制RFPA的数字调制和输出功率。当AMC选择具有编码速率的调制阶数以实现目标BER时,只要RFPA的误差矢量幅度(EVM)小于要求的幅度,就可以提高其输出功率。因此,可以智能地扩展OFDM系统的通信距离。

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