1) power ratio
功率配比
2) power match up
功率比配套
3) bit and power allocation
比特功率分配
1.
Adaptive bit and power allocation algorithm based on V-BLAST OFDM systems;
基于V-BLAST OFDM系统的比特功率分配算法
2.
Research on Adaptive Subcarrier, Bit and Power Allocation Algorithms for OFDM Systems;
OFDM自适应子载波、比特功率分配算法的研究
3.
This paper proposes adaptive bit and power allocation algorithm for frequency division OFDM system, which can be used over multipath frequency selective fading channels.
提出了一种改进的OFDM系统中自适应比特功率分配算法。
4) Bit and power allocation
比特和功率分配
1.
An adaptive bit and power allocation algorithm for MC-CDMA system is proposed in this paper based on the study of MC-CDMA system and adaptive allocation technology.
在研究MC-CDMA系统和自适应比特分配技术的基础上,提出了一种适合MC-CDMA系统的自适应比特和功率分配算法。
2.
Conventional bit and power allocation algorithms in multiuser OFDM systems have many problems,including high computational complexity, time consuming,and they did not consider the proportional fairness among users.
针对传统多用户正交频分复用(OFDM)系统中比特和功率分配算法计算复杂度较高、实时性不强、无法保证用户间公平性等问题,提出了一种下行OFDM传输中高效率的线性比特和功率分配算法。
3.
A low complexity bit and power allocation algorithm is proposed to minimize the total trans- mit power under transmission rate and bit error ratio constraints in multiple-input multiple-output sys- tems with inaccurate channel state information.
提出了一种低复杂度的自适应比特和功率分配算法,在满足系统信息传输速率和误比特率限制的条件下,利用不精确的信道状态信息使多输入多输出系统的发送功率最小化。
5) bit loading and power allocation
比特与功率分配算法
6) adaptive bit and power allocation
自适应比特和功率分配
1.
Aiming at the problem,an adaptive bit and power allocation algorithm is proposed,it takes advantage of the idea of Greedy algorithm to maximize throughput subject to the constraint of reliable transmission requirement and transmit power.
将自适应比特和功率分配引入两跳正交频分复用-放大转发(OFDM-AF)中继系统,提出了该系统中的比特和功率分配的最优化问题;并结合贪婪算法的思想,提出了一种自适应比特和功率分配算法,在可靠传输要求和发送功率限制的条件下能最大化吞吐量。
2.
An adaptive bit and power allocation algorithm for the multiple-input multiple-output (MIMO) OFDM systems was proposed.
分析了MIMOOFDM系统中的自适应调制问题,提出了一种BICM-OFDM系统中的自适应比特和功率分配算法。
补充资料:调和设备——配比器
调和设备——配比器 | ||
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