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Downlink beamforming with delayed channel estimates under total power, element power and equivalent isotropic radiated power (EIRP) constraints

机译:在总功率,元素功率和等效各向同性辐射功率(EIRP)约束下具有延迟信道估计的下行链路波束成形

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摘要

A WLAN-type scenario where a base-station (access point) equipped with multiple antennas is transmitting and a mobile with only a single antenna is receiving, is considered. Three approaches are investigated: grid-of-beams (GOB), maximal-ratio (MR) and equal-gain (EG), each with one of the following constraints 1) total transmit power over all antenna elements, 2) maximum power on any antenna element 3) equivalent isotropic radiated power (EIRP). The median diversity gain for the MR approach is estimated to be 14.8 dB, 10.6 dB, and 11.4 dB using constraint 1-3, respectively at 5.2 GHz in a modern university building at 5-50 meter range. For GOB corresponding numbers are 9.4 dB, 9.4 dB, 2.3 dB and for EG 13.9 dB, 13.9 dB, 10.3 dB, respectively. These results are virtually independent of delay between channel estimation and use of the same estimate, when the delay is less than 130 ms. This result is obtained although there were people moving in the environment. The diversity gain under the EIRP constraint is encouraging and shows that coverage improvements are possible even under EIRP limitations.
机译:考虑一种WLAN类型的场景,其中配备有多个天线的基站(接入点)正在发送,而只有一个天线的移动台正在接收。研究了三种方法:波束栅(GOB),最大比(MR)和等增益(EG),每种方法都具有以下约束之一:1)所有天线元件上的总发射功率; 2)最大功率任何天线元件3)等效各向同性辐射功率(EIRP)。在现代大学建筑中,在5-50米范围内,使用约束1-3估计MR方法的中值分集增益分别为14.8 dB,10.6 dB和11.4 dB。对于GOB,相应的数字分别为9.4 dB,9.4 dB,2.3 dB,对于EG的相应数字分别为13.9 dB,13.9 dB,10.3 dB。当延迟小于130 ms时,这些结果实际上与信道估计和使用相同估计之间的延迟无关。尽管有人在环境中移动,但仍可获得此结果。 EIRP约束下的分集增益令人鼓舞,表明即使在EIRP限制下,覆盖范围的改善也是可能的。

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