高数据速率LTE上行收发器的最佳物理层架构设计

G. Indumathi, D. A. Joe
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引用次数: 13

摘要

第三代合作伙伴计划(3GPP)为第四代(4G)无线通信系统提供长期演进(LTE)标准。单载波频分多址(SC-FDMA)和正交多址(OFDMA)是LTE中使用的两种主要技术。OFDMA相对于SC-FDMA的主要缺点是峰值平均功率比(PAPR)高。因此,OFDMA以其高频谱效率和高PAPR被用于第四代(4G)无线通信系统的下行链路。SC-FDMA在第四代(4G)无线通信系统的上行链路中使用,因为它更节能。本文的主要目标是设计高数据速率LTE上行收发器的最佳物理层架构,该收发器采用SC-FDMA多址方案,采用低密度奇偶校验码(LDPC)纠错机制,以提供更低的误码率(BER),并避免交错丢失数据包。通过比较LDPC编码的SC-FDMA和LDPC编码的OFDMA,选择了适合4G无线通信系统的最优物理层架构。所选择的架构必须更节能,并支持高数据速率,这是移动用户的主要先决条件。
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Design of optimum physical layer architecture for a high data rate LTE uplink transceiver
The Third Generation Partnership Project (3GPP) provides the Long Term Evolution (LTE) standards for the fourth generation (4G) wireless communication systems. Single Carrier Frequency Division Multiple Access (SC-FDMA) and Orthogonal Division Multiple Access (OFDMA) are the two major techniques used in LTE. The main drawback of OFDMA over SC-FDMA is its high peak to average power ratio (PAPR). Hence OFDMA is used in the downlink of the fourth generation (4G) wireless communication systems for its high spectral efficiency and high PAPR. SC-FDMA is used in the uplink of the fourth generation (4G) wireless communication systems since it is more power efficient. The main objective of this paper is to design optimum physical layer architecture of a high data rate LTE uplink transceiver using SC-FDMA multiple access scheme with error correction mechanism using Low dense parity check codes (LDPC) to provide lesser Bit Error Rate (BER) and avoiding packet loss by Interleaving. The optimum physical layer architecture for the fourth generation (4G) wireless communication systems is chosen by comparing the LDPC coded SC-FDMA with the LDPC coded OFDMA. The chosen architecture must be more power efficient and support high data rates, which is the main prerequisite for the mobile user.
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