most citedIntegrating Secure and High-Speed Communications into Frequency Hopping MIMO Radar

5 citations · 9 across the 4 of their papers we have counts for

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eess.SP2021

OTFS-Based Joint Communication and Sensing for Future Industrial IoT

Kai Wu, J. Andrew Zhang, Xiaojing Huang +1

Effective wireless communications are increasingly important in maintaining the successful closed-loop operation of mission-critical industrial Internet-of-Things (IIoT) applicatio…

eess.SP20212 cited

Integrating Low-Complexity and Flexible Sensing into Communication Systems

Kai Wu, J. Andrew Zhang, Xiaojing Huang +1

Integrating sensing into standardized communication systems can potentially benefit many consumer applications that require both radio frequency functions. However, without an effe…

eess.SP20212 cited

A Low-Complexity Method for FFT-based OFDM Sensing

Kai Wu, J. Andrew Zhang, Xiaojing Huang +1

OFDM sensing is gaining increasing popularity in wideband radar applications as well as in joint communication and radar/radio sensing (JCAS). As JCAS will potentially be integrate…

eess.SP2021

Accurate Frequency Estimation with Fewer DFT Interpolations based on Padé Approximation

Kai Wu, J. Andrew Zhang, Xiaojing Huang +1

Frequency estimation is a fundamental problem in many areas. The well-known A&M and its variant estimators have established an estimation framework by iteratively interpolating the…

eess.SP2020

Frequency-Hopping MIMO Radar-Based Communications: An Overview

Kai Wu, J. Andrew Zhang, Xiaojing Huang +1

Enabled by the advancement in radio frequency technologies, the convergence of radar and communication systems becomes increasingly promising and is envisioned as a key feature of…

eess.SP20205 cited

Integrating Secure and High-Speed Communications into Frequency Hopping MIMO Radar

Kai Wu, J. Andrew Zhang, Xiaojing Huang +1

Dual-function radar-communication (DFRC) based on frequency hopping (FH) MIMO radar (FH-MIMO DFRC) achieves symbol rate much higher than radar pulse repetition frequency. Such DFRC…