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Effects of finite weight resolution and calibration errors on theperformance of adaptive array antennas

机译:有限权重分辨率和校准误差对自适应阵列天线性能的影响

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摘要

Adaptive antennas are now used to increase the spectral efficiency in mobile telecommunication systems. A model of the received carrier-to-interference plus noise ratio (CINR) in the adaptive antenna beamformer output is derived, assuming that the weighting units are implemented in hardware, The finite resolution of weights and calibration is shown to reduce the CINR. When hardware weights are used, the phase or amplitude step size in the weights can be so large that it affects the maximum achievable CINR. It is shown how these errors makes the interfering signals “leak” through the beamformer and we show how the output CINR is dependent on power of the input signals. The derived model is extended to include the limited dynamic range of the receivers, by using a simulation model. The theoretical and simulated results are compared with measurements on an adaptive array antenna testbed receiver, designed for the GSM-1800 system. The theoretical model was used to find the performance limiting part in the testbed as the 1 dB resolution in the weight magnitude. Furthermore, the derived models are used in illustrative examples and can be used for system designers to balance the phase and magnitude resolution and the calibration requirements of future adaptive array antennas
机译:自适应天线现在用于提高移动电信系统中的频谱效率。假设加权单元是在硬件中实现的,则推导了自适应天线波束形成器输出中接收到的载波干扰加噪声比(CINR)的模型。权重和校准的有限分辨率可降低CINR。当使用硬件权重时,权重中的相位或幅度步长可能会很大,以至于影响最大可实现的CINR。展示了这些误差如何使干扰信号“泄漏”通过波束形成器,并且展示了输出CINR如何取决于输入信号的功率。通过使用仿真模型,可以将导出的模型扩展为包括有限的接收器动态范围。将理论和仿真结果与针对GSM-1800系统设计的自适应阵列天线测试台接收机的测量结果进行比较。理论模型用于在测试台上找到性能限制部分,以重量级表示为1 dB。此外,导出的模型用于说明性示例,可用于系统设计人员平衡相位和幅度分辨率以及未来自适应阵列天线的校准要求

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