This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell environment. The energy efficiency is measured by throughput per Joule, while both RF transmission power and device electronic circuit power are considered. We define the energy efficiency (EE) capacity for UL MU-MIMO and study the power allocation that achieves this capacity. First we assume all users consume a fixed amount of circuit power and show that user antennas should be used only when the corresponding spatial channels are sufficiently good and using them improves the overall network EE. Mobile devices may have improved circuit management capability and turn off circuit operations when some antennas are not used to reduce circuit power con...
Massive multi-input–multi-output (MIMO) systems are crucial to maximizing energy efficiency (EE) and...
Massive multi-input–multi-output (MIMO) systems are crucial to maximizing energy efficiency (EE) and...
In this paper, we develop an uplink pilot and downlink link adaptation approach to improve the energ...
This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell enviro...
This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell enviro...
This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell enviro...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is becoming increasingly importantfor mobile devices because battery technology ha...
Energy efficiency is becoming increasingly importantfor mobile devices because battery technology ha...
Energy efficiency is becoming increasingly importantfor mobile devices because battery technology ha...
International audienceAssume that a multiuser multiple-input multiple-output (MIMO) system is design...
Abstract—Assume that a multi-user multiple-input multiple-output (MIMO) system is designed from scra...
Massive multi-input–multi-output (MIMO) systems are crucial to maximizing energy efficiency (EE) and...
Massive multi-input–multi-output (MIMO) systems are crucial to maximizing energy efficiency (EE) and...
In this paper, we develop an uplink pilot and downlink link adaptation approach to improve the energ...
This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell enviro...
This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell enviro...
This paper addresses optimal energy-efficient design for uplink (UL) MU-MIMO in a single cell enviro...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is important for mobile devices because battery technology development has not kep...
Energy efficiency is becoming increasingly importantfor mobile devices because battery technology ha...
Energy efficiency is becoming increasingly importantfor mobile devices because battery technology ha...
Energy efficiency is becoming increasingly importantfor mobile devices because battery technology ha...
International audienceAssume that a multiuser multiple-input multiple-output (MIMO) system is design...
Abstract—Assume that a multi-user multiple-input multiple-output (MIMO) system is designed from scra...
Massive multi-input–multi-output (MIMO) systems are crucial to maximizing energy efficiency (EE) and...
Massive multi-input–multi-output (MIMO) systems are crucial to maximizing energy efficiency (EE) and...
In this paper, we develop an uplink pilot and downlink link adaptation approach to improve the energ...