Improving the transmission reliability in smart factory through spatial diversity with ARQ

Author(s):  
Yanan Gao ◽  
Tao Yang ◽  
Bo Hu
2013 ◽  
Vol 39 (10) ◽  
pp. 1623
Author(s):  
Yun ZHANG ◽  
Zheng-Guo XU ◽  
Wen-Hai WANG ◽  
Jian-Gang LU ◽  
You-Xian SUN

2020 ◽  
Vol 14 ◽  
Author(s):  
Keerti Tiwari

: Multiple-input multiple-output (MIMO) systems have been endorsed to enable future wireless communication requirements. The efficient system designing appeals an appropriate channel model, that considers all the dominating effects of wireless environment. Therefore, some complex or less analytically acquiescent composite channel models have been proposed typically for single-input single-output (SISO) systems. These models are explicitly employed for mobile applications, though, we need a specific study of a model for MIMO system which can deal with radar clutters and different indoor/outdoor and mobile communication environments. Subsequently, the performance enhancement of MIMO system is also required in such scenario. The system performance enhancement can be examined by low error rate and high capacity using spatial diversity and spatial multiplexing respectively. Furthermore, for a more feasible and practical system modeling, we require a generalized noise model along with a composite channel model. Thus, all the patents related to MIMO channel models are revised to achieve the near optimal system performance in real world scenario. This review paper offers the methods to improve MIMO system performance in less and severe fading as well as shadowing environment and focused on a composite Weibull-gamma fading model. The development is the collective effects of selecting the appropriate channel models, spatial multiplexing/detection and spatial diversity techniques both at the transmitter and the receivers in the presence of arbitrary noise.


2019 ◽  
Vol 155 ◽  
pp. 145-152
Author(s):  
Jaehyeong Lee ◽  
Changyong Um ◽  
Guejong Jo ◽  
Dogun Park ◽  
Jongpil Jeong

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