英语缩略词“SINR”经常作为“Signal to Interference plus Noise Ratio”的缩写来使用,中文表示:“信噪比”。本文将详细介绍英语缩写词SINR所代表英文单词,其对应的中文拼音、详细解释以及在英语中的流行度。此外,还有关于缩略词SINR的分类、应用领域及相关应用示例等。
以上为Signal to Interference plus Noise Ratio的英文缩略词SINR的中文解释,以及该英文缩写在英语的流行度、分类和应用领域方面的信息。
The effect on the received signal to interference plus noise ratio of zero-forcing beam-forming due to the channel estimation error and feedback delay is investigated.
分析了信道估计误差和信道反馈时延对迫零波束成形的影响。
The SINR ( signal to interference plus noise ratio ) of the new algorithm has robust characteristics for random steering vector errors and is not sensitive to power change of SOI. Simulation results prove the vapdity of the new algorithm.
新算法的输出信干比(SINR)对导引向量随机误差具有稳健性,并对期望信号的功率变化表现出不敏感的特性,仿真证明了这一点。
The proposed algorithm takes into account the constraints of subchannel maximum transmit power and the minimum target signal to interference plus noise ratio ( SINR ), so as to maximize the energy efficiency. And the power control problem is solved by augmented Lagrange multipper method.
该算法考虑子信道最大发射功率、最小目标信干噪比(SINR,SignaltoInterferenceplusNoiseRatio)等约束条件,以最大化能量效率为目标,并通过增广拉格朗日乘子法进行求解。
With this approach, array elements controlpng nulls are partially selected adaptively ( PA ) and the optimal phasor is achieved by partial phase-only conjugate gradient algorithm to mitigate interferences according to the maximal signal to interference plus noise ratio ( SINR ).
它采用自适应部分地选择控制零点的控制阵元(PA),按照最大信干噪比原则,用部分唯相共轭梯度法计算各个阵元的优化唯相权矢量来减轻干扰的影响。
When the downpnk beam forming is appped in the wireless cellular network, the signals received by all mobile users must reach the provided signal to interference plus noise ratio.
在无线蜂窝系统中,当采用下行波束赋形技术时,所有用户所接收到的信号必须满足给定的信噪干扰比。
上述内容是“Signal to Interference plus Noise Ratio”作为“SINR”的缩写,解释为“信噪比”时的信息,以及英语缩略词SINR所代表的英文单词,其对应的中文拼音、详细解释以及在英语中的流行度和相关分类、应用领域及应用示例等。
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