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51.
In this paper, we present a wireless 60 GHz OFDM transceiver for a high-throughput GigE Vision standard compliant color CCD camera system used in machine vision applications. The OFDM transceiver provides net data rates up to 3.9 Gb/s. The medium access controller (MAC) offers the reliable GigE point-to-point cable replacement functionality with special support of an asymmetrical downlink scenario. The main focus is on the high throughput MAC design for frame based wireless transmissions and the integration onto a hardware platform. The OFDM baseband processor and the MAC were fully implemented in FPGA technology. The performance of the system was theoretically analyzed and measured in an indoor environment. The developed system fulfills the high throughput requirement as well as the low latency requirement of the used industrial HD video camera system.  相似文献   
52.
非正交多址接入(non-orthogonal multiple access,NOMA)和毫米波大规模多输入多输出(multiple-input multiple-output,MIMO)的结合能够支持未来无线通信网络的巨流量大连接需求。研究了上行链路毫米波大规模MIMO-NOMA系统中的功率最小化问题,提出了基于群体串行干扰消除(group-levelsuccessiveinterference cancellation,GSIC)的混合波束成形毫米波MIMO-NOMA上行传输系统新架构。具体来说,根据信道增益对用户进行群体划分,不同群体用户由NOMA服务,群体内用户采用空分多址区分。通过给不同群体设计模拟波束成形矩阵,对数字波束成形和功率控制进行联合优化,提出了一种并行迭代算法来解决优化问题。仿真结果表明,所提出的新架构在总功率方面优于传统的基于分簇和用户级串行干扰消除的毫米波大规模MIMO-NOMA。  相似文献   
53.
Physical layer security (PLS) can improve the security of both terrestrial and nonterrestrial wireless communication networks. This study proposes a simplified framework for nonterrestrial cyclic prefixed orthogonal variable spreading factor (OVSF)-encoded multiple-input and multiple-output nonorthogonal multiple access (NOMA) systems to ensure complete network security. Various useful methods are implemented, where both improved sine map and multiple parameter-weighted-type fractional Fourier transform encryption schemes are combined to investigate the effects of hybrid PLS. In addition, OVSF coding with power domain NOMA for multi-user interference reduction and peak-to-average power ratio (PAPR) reduction is introduced. The performance of 1 2 -rated convolutional, turbo, and repeat and accumulate channel coding with regularized zero-forcing signal detection for forward error correction and improved bit error rate (BER) are also investigated. Simulation results ratify the pertinence of the proposed system in terms of PLS and BER performance improvement with reasonable PAPR.  相似文献   
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