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Multicarrier technology for 4G WiMax system [WiMAX/LTE Update]

机译:用于4G WiMax系统的多载波技术[WiMAX / LTE更新]

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As one of the candidate fourth-generation mobile communication systems, the IEEE 802.16m-based WiMAX 2.0 system is required to provide up to 1 Gb/s peak transmission rate. The most efficient solution to achieve this challenging objective is to utilize wider channel bandwidth. Multicarrier is the technology to utilize wider bandwidth for parallel data transmission across multiple RF carriers, which is well agreed as one of the key technologies to satisfy ITU-R IMTAdvanced requirements. As the evolution of the IEEE 802.16e-based WiMAX 1.0 system, IEEE 802.16m specifies physical and MAC layers to enable multicarrier technology for the WiMAX 2.0 system. This can lead to more than 1 Gb/s peak transmission rate for low-mobility users and 100 Mb/s peak transmission rate for high-mobility users. By having the protocol structure with a common MAC entity to control transmission by multiple physical-layer connections over different RF carriers, the network operator can aggregate either contiguous or non-contiguous spectrum resources with higher deployment flexibility, user throughput, and spectrum efficiency. This article provides an overview of the multicarrier technology supported by the IEEE 802.16m draft standard1 for WiMAX 2.0 system, including not only the general operation principle but also some details of physical layer and MAC layer support.
机译:作为候选的第四代移动通信系统之一,需要基于IEEE 802.16m的WiMAX 2.0系统,以提供高达1 Gb / s的峰值传输速率。实现此挑战性目标的最有效解决方案是利用更宽的信道带宽。多载波技术是利用更宽的带宽跨多个RF载波进行并行数据传输的技术,它被广泛认为是满足ITU-R IMTAdvanced要求的关键技术之一。随着基于IEEE 802.16e的WiMAX 1.0系统的发展,IEEE 802.16m指定了物理层和MAC层以支持WiMAX 2.0系统的多载波技术。对于低移动性用户,这可能会导致超过1 Gb / s的峰值传输速率,而对于高移动性用户会导致100 Mb / s的峰值传输速率。通过使用具有公共MAC实体的协议结构来控制通过不同RF载波上的多个物理层连接的传输,网络运营商可以聚合具有更高部署灵活性,用户吞吐量和频谱效率的连续或不连续频谱资源。本文概述了WiMAX 2.0系统的IEEE 802.16m标准草案1支持的多载波技术,不仅包括一般的工作原理,还包括对物理层和MAC层支持的一些详细信息。

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