Integrated sensing and communications (ISAC) has attracted tremendous attention for the future 6G wireless communication systems. To improve the transmission rates and sensing accuracy, massive multi-input multi-output (MIMO) technique is leveraged with large transmission bandwidth. However, the growing size of transmission bandwidth and antenna array results in the beam squint effect, which hampers the communications. Moreover, the time overhead of the traditional sensing algorithm is prohibitive for practical systems. In this paper, instead of alleviating the wideband beam squint effect, we take advantage of joint beam squint and beam split effect and propose a novel user directions sensing method integrated with massive MIMO orthogonal frequency division multiplexing (OFDM) systems. Specifically, with the beam squint effect, the BS utilizes the true-time-delay (TTD) lines to steer the beams of different OFDM subcarriers towards different directions simultaneously. The users feedback the subcarrier frequency with the maximum array gain to the BS. Then, the BS calculates the direction based on the subcarrier frequency feedback. Futhermore, the beam split effect introduced by enlarging the inter-antenna spacing is exploited to expand the sensing range. The proposed sensing method operates over frequency-domain, and the intended sensing range is covered by all the subcarriers simultaneously, which reduces the time overhead of the conventional sensing significantly. Simulation results have demonstrated the effectiveness as well as the superior performance of the proposed ISAC scheme.
翻译:未来6G无线通信系统(ISAC)已吸引了对未来6G无线通信系统的极大关注。为了提高传输率和感测准确度,大型传输带宽利用了大规模多投入多输出(MIMO)技术。然而,传输带宽和天线阵列的日益扩大导致射线斜形效应,从而阻碍通信。此外,传统遥感算法的时间管理令实用系统难以承受。在本文中,我们不是减轻宽频波波束光谱效应,而是利用联合光谱和波束分割效应,并提议一种与大型MIMO或色谱频率分解(OFDM)系统结合的用户方向感测方法。具体地,随着光谱光谱光谱效果的不断增强,BS使用真实时间显示线将不同DM子色谱的光束同时引向不同的方向。用户将亚焦频频率频率与最大阵列增到BS。然后,BSS根据亚谱频率反馈计算出新的用户方向。Futthermormoremore(Fthermoral-levelyal) 将Serview 覆盖所有常规测距的频率,通过Sal-role 将Syal 将Syal 范围的测为Syal 。Syal 将Syal 将所有S 范围的测到整个测为S 范围,通过测测测测距的测到整个测到整个测程的测距法的测到整个测到整个测程的测程的测距。