In this paper, we propose a cumulative distribution function (CDF)-based scheduling for multi-cell uplink networks in order to exploit multi-user diversity, while satisfying fair resource sharing among users. In the proposed scheduling, each user adjusts its transmit power to reduce the amount of generating interference to other cells, based on a pre-determined threshold. Then, each user calculates CDF of an uplink signal-to-noise ratio with the adjusted transmit power, and feeds the CDF value back to its serving base station (BS). In each time slot, the BS selects the user having the largest CDF value. The proposed scheduling operates with a distributed manner even though it effectively copes with inter-cell interference. As a main result,...
In this paper, we propose a novel user scheduling that achieves the optimal multi-user diversity gai...
We introduce a distributed protocol to achieve multiuser diversity in a multicell multiple-input mul...
In this paper, we propose a novel cumulative-distribution-function-based scheduling (CS) with flexib...
"In this paper, we investigate fundamental performance limits of cumulative distribution functi...
Cumulative distribution function (CDF)-based scheduling (CS) is known to be effective in meeting the...
In this paper, we study cooperation among the adjacent base stations (BSs) for downlink scheduling i...
In this paper, we study cooperation among the adjacent base stations (BSs) for downlink scheduling i...
In this paper, we study cooperation among the adjacent base stations (BSs) for downlink scheduling i...
Cellular networks are becoming dense due to deployment of small cells and a number of user devices. ...
In modern heterogeneous wireless networks, the task of supporting fairness along with user prioritie...
Efficient packet scheduling in CDMA cellular networks is a challenging problem due to the time varia...
To meet the growing demand of mobile data service with limited radio resources, wireless networks ha...
Opportunistic scheduling exploits the multiuser diversity to improve the performance of wireless com...
In wireless communications, it is of utmost importance to exploit multi-user diversity and at the sa...
Efficient packet scheduling in CDMA cellular networks is a challenging problem due to the time varia...
In this paper, we propose a novel user scheduling that achieves the optimal multi-user diversity gai...
We introduce a distributed protocol to achieve multiuser diversity in a multicell multiple-input mul...
In this paper, we propose a novel cumulative-distribution-function-based scheduling (CS) with flexib...
"In this paper, we investigate fundamental performance limits of cumulative distribution functi...
Cumulative distribution function (CDF)-based scheduling (CS) is known to be effective in meeting the...
In this paper, we study cooperation among the adjacent base stations (BSs) for downlink scheduling i...
In this paper, we study cooperation among the adjacent base stations (BSs) for downlink scheduling i...
In this paper, we study cooperation among the adjacent base stations (BSs) for downlink scheduling i...
Cellular networks are becoming dense due to deployment of small cells and a number of user devices. ...
In modern heterogeneous wireless networks, the task of supporting fairness along with user prioritie...
Efficient packet scheduling in CDMA cellular networks is a challenging problem due to the time varia...
To meet the growing demand of mobile data service with limited radio resources, wireless networks ha...
Opportunistic scheduling exploits the multiuser diversity to improve the performance of wireless com...
In wireless communications, it is of utmost importance to exploit multi-user diversity and at the sa...
Efficient packet scheduling in CDMA cellular networks is a challenging problem due to the time varia...
In this paper, we propose a novel user scheduling that achieves the optimal multi-user diversity gai...
We introduce a distributed protocol to achieve multiuser diversity in a multicell multiple-input mul...
In this paper, we propose a novel cumulative-distribution-function-based scheduling (CS) with flexib...