Mastering 5G PHY: Complete Development Training

所在平台: Udemy

课程主页: https://www.udemy.com/course/5g-phy-training/

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课程简介

**课程名称:** Master 5G PHY:全面开发训练 **课程概述:** 本课程旨在帮助学员成为5G物理层(PHY)的专家,提供从基础概念到高级技术的全方位训练。无论您是初学者还是有经验的专业人士,都能深入了解5G PHY的复杂性。 **学习内容:** * **3GPP 标准:** 了解3GPP在塑造5G技术中的关键作用及其对网络架构和性能的影响。 * **物理层基础模块:** 学习5G PHY的核心组件,包括调制、编码、信号处理技术、PN序列、ZC序列、波束成形、OFDM、循环前缀以及物理层信道和信号中的天线。 * **SS Burst(同步信号突发):** 掌握同步信号突发的概念及其在5G网络中的重要性,以促进初始接入和移动性管理。 * **PDCCH(物理下行控制信道):** 深入了解PDCCH的发射机和接收机链、CORESET、搜索空间、盲解码和DCI。 * **PDSCH(物理下行共享信道):** 掌握PDSCH的发射机和接收机链、MCS、传输块、MIMO(MU-MIMO & SU-MIMO)、预编码和UE复用。 * **CSI-RS(信道状态信息参考信号):** 理解CSI-RS如何帮助信道估计和优化,以提高数据吞吐量和网络效率,包括CDM组概念、CSI-IM、ZP和NZP CSI-RS。 * **DMRS(解调参考信号):** 探索DMRS及其在提高数据解调精度和整体信号质量方面的功能。 * **PUCCH(物理上行控制信道):** 学习PUCCH的各种格式(Format 0 to Format 4)及其支持上行控制信息传输的方式,以及每种格式的UE复用和接收机设计。 * **PRACH(物理随机接入信道):** 了解PRACH的短格式和长格式,以及它在5G网络中促进随机接入过程和初始连接设置中的作用。 * **PUSCH(物理上行共享信道):** 学习PUSCH的发射机和接收机链、资源分配、MCS、传输块、变换预编码和MIMO。 * **SRS(探测参考信号):** 理解SRS在上行信道探测中的作用及其对波束成形、UL MIMO和DL MIMO的影响。 * **PTRS(相位跟踪参考信号):** 了解相位噪声是什么,PTRS在相位噪声补偿中的作用及其对维持信号完整性的影响。 * **HARQ(混合自动重传请求):** 掌握HARQ的纠错概念及其如何提高数据可靠性和吞吐量。 * **附加主题:** 扩展知识面,涵盖RSRP、RSRQ、ARFCN、GSCN、PAPR、TDD帧结构、5G吞吐量计算等内容。

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Become a Physical Layer Expert with 5G PHY Development Training ProgramDive into the cutting-edge world of 5G technology with our comprehensive training on the 5G Physical Layer (PHY). Designed for beginners and experienced professionals, this training program will guide you through the intricacies of 5G PHY, from foundational concepts to advanced techniques.What You'll Learn:3GPP Standards: Understand the crucial role of the 3rd Generation Partnership Project (3GPP) in shaping 5G technology and how its standards influence network architecture and performance.Basic Modules of the Physical Layer: Explore the core components of 5G PHY, including modulation, coding, signal processing techniques, PN sequence, ZC sequence, beamforming, OFDM, Cyclic Prefix, and antennas that are part of the physical layer channels and signals.SSBurst (Synchronization Signal Burst): Learn about synchronization signal bursts and their significance in 5G networks for facilitating initial access and mobility management.PDCCH (Physical Downlink Control Channel): Gain insights into the PDCCH transmitter and receiver chains, CORESET, search space, blind decoding, and DCIs.PDSCH (Physical Downlink Shared Channel): Master the workings of the PDSCH transmitter and receiver chains, MCS, transport blocks, MIMO (MU-MIMO & SU-MIMO), Precoding, and UE multiplexing. CSI-RS (Channel State Information Reference Signal): Understand how CSI-RS aids in channel estimation and optimization for enhanced data throughput and network efficiency. Additionally, understand the CDM group concepts, CSI-IM, ZP, and NZP CSI-RS. DMRS (Demodulation Reference Signal): Explore the DMRS and its function in improving the accuracy of data demodulation and overall signal quality.PUCCH (Physical Uplink Control Channel): Delve into the various formats of PUCCH (Format 0 to Format 4) and how they support uplink control information transmission, how the UE multiplexing happens for each format and how the receiver can be designed. PRACH (Physical Random Access Channel): Discover the PRACH, its short and long formats, and its role in facilitating random access procedures and initial connection setups in 5G networks.PUSCH (Physical Uplink Shared Channel): Learn about the workings of the PUSCH transmitter and receiver chains, resource allocation, MCS, transport blocks, Transform Precoding, and MIMO. SRS (Sounding Reference Signal): Understand the purpose of SRS in uplink channel sounding and its impact on beamforming, UL MIMO, and DL MIMO.PTRS (Phase Tracking Reference Signal): Explore what phase noise is, the role of PTRS in phase noise compensation, and its effect on maintaining signal integrity.HARQ (Hybrid Automatic Repeat reQuest): Grasp the concepts of HARQ for error correction and how it enhances data reliability and throughput.Additional Topics: Expand your knowledge with bonus content like RSRP, RSRQ, ARFCN, GSCN, PAPR, TDD frame structure, throughput calculations in 5G, and more.

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