Description: 本程序仿真了CDMA系统在理想功率控制条件下的上行链路小区容量-This procedure simulated CDMA system in the ideal power control under the conditions of the uplink cell capacity Platform: |
Size: 34816 |
Author: 逍遥 |
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Description: LTE系统级仿真平台搭建过程中的主要模块之一:功率控制模块-LTE system level simulation platform, the power control module Platform: |
Size: 1024 |
Author:zhouxianzi |
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Description: Ka频段卫星通信上行链路自适应功率控制Ka band satellite communication uplink adaptive power control-Ka band satellite communication uplink adaptive power control Platform: |
Size: 1139712 |
Author:ect200 |
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Description: a robust 1 prediction-based pole placement
control design is introduced for CDMA uplink power control via the LMI method from the state-space perspective Platform: |
Size: 601088 |
Author:lee saint |
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Description: 本程序源码仿真了CDMA系统在理想功率控控制条件下的上行链路小区容量 可直接使用。
-The program source code simulation of the uplink cell capacity of CDMA system under controlled conditions ideal power control can be used directly. Platform: |
Size: 34816 |
Author:海的 |
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Description: This E book contain the power control information of CDMA systems. it gives the de tails both in the uplink as well as in the donlink Platform: |
Size: 142336 |
Author:Syed Bokhari |
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Description: LTE系统功率控制技术的概括整理,包括详细的上下行功控技术。-LTE system power control techniques outlined finishing, including detailed uplink power control technology. Platform: |
Size: 1616896 |
Author:yananli |
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Description: [18] Relay Selection and Resource Allocation for D2D-Relaying under Uplink Cellular Power Control Platform: |
Size: 1302528 |
Author:abdxxx
|
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Description: In order to achieve diverse arrived power in uplink
non-orthogonal multiple access (NOMA), an uplink power control
scheme is proposed. The proposed scheme makes evolved NodeB
(eNB) distinguish the multiplexing user equipments (UEs) in
power domain. The outage performance and the achievable sum
data rate for the proposed scheme are theoretically analyzed, and
the closed-form expressions of outage probability and achievable
sum data rate are derived. By simulation, we show that the outage
performances are related to both the power back-off step and
the target data rate. Compared with the traditional orthogonal
multiple access (OMA) scheme, the proposed NOMA scheme
significantly improves the achievable sum data rate. Platform: |
Size: 604638 |
Author:dipfr@yahoo.fr |
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Description: To address the ever increasing high data rate and
connectivity requirements in the next generation 5G wireless
network, novel radio access technologies (RATs) are actively
explored to enhance the system spectral efficiency and connectivity. As a promising RAT for 5G cellular networks, nonorthogonal multiple access (NOMA) has attracted extensive
research attentions. Compared with orthogonal multiple access
(OMA) that has been widely applied in existing wireless communication systems, NOMA possesses the potential to further
improve system spectral efficiency and connectivity capability.
This paper develops analytical frameworks for NOMA downlink
and uplink multi-cell wireless systems to evaluate the system
outage probability and average achievable rate. In the downlink
NOMA system, two different NOMA group pairing schemes are
considered, based on which theoretical results on outage and
achievable data rates are derived. In the uplink NOMA, revised
back-off power control scheme is applied and outage probability
and per UE average achievable rate are derived. As wireless
networks turn into more and more densely deployed, inter-cell
interference has become a dominant capacity limiting factor but
has not been addressed in most of the existing NOMA studies.
In this paper a stochastic geometry approach is used to model a
dense wireless system that supports NOMA on both uplink and
downlink, based on which analytical results are derived either in
pseudo-closed forms or succinct closed forms and are further
validated by simulations. Numerical results demonstrate that
NOMA can bring considerable system-wide performance gain
compared to OMA on both uplink and downlink when properly
designed Platform: |
Size: 6695586 |
Author:dipfr@yahoo.fr |
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