Abstract—In recent years, operators addressed the explosive growth of mobile data demand by densifying the cellular network so as to achieve a higher spectral efficiency and increase their capacity. The intense proliferation of wireless devices resulted in interference limited networks, which suggests the use of interference mitigation and coordination techniques. In this work, we study successive interference cancellation (SIC) for uplink communications and we define an analytical framework that describes the performance benefits of SIC which accounts for the computational complexity of the cancellation scheme and the relevant network related parameters such as the random position and density of the base stations and mobile users, and the ...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
International audienceIn recent years, operators addressed the explosive growth of mobile data deman...
International audienceIn recent years, operators addressed the explosive growth of mobile data deman...
In recent years, operators addressed the explosive growth of mobile data demand by densifying the ce...
In recent years, operators addressed the explosive growth of mobile data demand by densifying the ce...
International audienceAt present, operators address the explosive growth of mobile data demand by de...
International audienceAt present, operators address the explosive growth of mobile data demand by de...
International audienceAt present, operators address the explosive growth of mobile data demand by de...
At present, operators address the explosive growth of mobile data demand by densification of the cel...
At present, operators address the explosive growth of mobile data demand by densification of the cel...
The ideal successive interference cancellation paradigm helps to achieve the capacity of some multiu...
Abstract—Device-to-device (D2D) communication underlaying cellular networks is a promising technolog...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
International audienceIn recent years, operators addressed the explosive growth of mobile data deman...
International audienceIn recent years, operators addressed the explosive growth of mobile data deman...
In recent years, operators addressed the explosive growth of mobile data demand by densifying the ce...
In recent years, operators addressed the explosive growth of mobile data demand by densifying the ce...
International audienceAt present, operators address the explosive growth of mobile data demand by de...
International audienceAt present, operators address the explosive growth of mobile data demand by de...
International audienceAt present, operators address the explosive growth of mobile data demand by de...
At present, operators address the explosive growth of mobile data demand by densification of the cel...
At present, operators address the explosive growth of mobile data demand by densification of the cel...
The ideal successive interference cancellation paradigm helps to achieve the capacity of some multiu...
Abstract—Device-to-device (D2D) communication underlaying cellular networks is a promising technolog...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...
Cellular networks are increasingly densified to deal with the fast growing wireless traffic. Interfe...