Dynamic Power Allocation Based on Rain Attenuation Prediction for High Throughput Broadband Satellite Systems

Author(s):  
Shengchao SHI ◽  
Guangxia LI ◽  
Zhiqiang LI ◽  
Bin GAO ◽  
Zhangkai LUO
2019 ◽  
Vol 38 (1) ◽  
pp. 74-83
Author(s):  
Shuaijun Liu ◽  
Yuanyuan Fan ◽  
Yuemei Hu ◽  
Dapeng Wang ◽  
Lixiang Liu ◽  
...  

Author(s):  
Huaicong Kong ◽  
Min Lin ◽  
Zining Wang ◽  
Jian Ouyang ◽  
Julian Cheng

Author(s):  
Puneeth Jubba Honnaiah ◽  
Eva Lagunas ◽  
Danilo Spano ◽  
Nicola Maturo ◽  
Symeon Chatzinotas

Author(s):  
Juan Jose Garau Luis ◽  
Nils Pachler ◽  
Markus Guerster ◽  
Inigo del Portillo ◽  
Edward Crawley ◽  
...  

Electronics ◽  
2021 ◽  
Vol 10 (23) ◽  
pp. 2909
Author(s):  
Chen Zhang ◽  
Jiangtao Yang ◽  
Yong Zhang ◽  
Ziwei Liu ◽  
Gengxin Zhang

Beam hopping technology is considered to provide a high level of flexible resource allocation to manage uneven traffic requests in multi-beam high throughput satellite systems. Conventional beam hopping resource allocation methods assume constant rainfall attenuation. Different from conventional methods, by employing genetic algorithm this paper studies dynamic beam hopping time slots allocation under the effect of time-varying rain attenuation. Firstly, a beam hopping system model as well as rain attenuation time series based on Dirac lognormal distribution are provided. On this basis, the dynamic allocation method by employing genetic algorithm is proposed to obtain both quantity and arrangement of time slots allocated for each beam. Simulation results show that, compared with conventional methods, the proposed algorithm can dynamically adjust time slots allocation to meet the non-uniform traffic requirements of each beam under the effect of time-varying rain attenuation and effectively improve system performance.


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