© 2017 IEEE. A joint radar-communication (JRC) system can provide cost-effective and spectrum-efficient platform solution with simultaneous operation, while accomplishing important tasks, sensing via radar processing and allocation of communication links. Existing modulation techniques where information embedding is achieved using sidelobe Amplitude-Shift Keying (ASK) for the JRC system are not investigated so far under fading channels and an optimum threshold estimation algorithm is yet to be developed. Specifying an optimum threshold level under fading can become a comprehensive problem, especially for mobile communication systems. In this paper, a novel non-data aided (NDA) threshold estimation technique and a receiver design are introdu...
Inspired by the success of multi-carrier waveforms such as Orthogonal Frequency Division Multiplexin...
In this study, a novel transmission scheme is proposed to serve radar-sensing and communication obje...
The article of record as published may be found at http://dx.doi.org/10.1016/j.dsp.2018.05.013Due to...
© 2017 IEEE. A joint radar-communication (JRC) system can provide cost-effective and spectrum-effici...
We propose a novel joint radar communication waveform design method based on OFDM spectrum allocatio...
Recently, huge attention is attracted to the concept of integrating communication and radar missions...
This paper develops an efficient index modulation (IM) approach for the joint radar-communication (J...
With revolutionary new services and applications, integrated sensing and communication has been esse...
Radar systems are radios to sense objects in their surrounding environment. These operate at a defin...
Recently, dual-function radar communication (DFRC) systems have been proposed to integrate radar and...
We consider the problem of time-frequency waveform design for an OFDM dual-functional radar-communic...
A joint radar-communication (JRC) system utilizes the integrated transmit waveform and a single plat...
The use of multicarrier waveforms, such as orthogonal frequency division multiplexing (OFDM) as used...
This dissertation considers the optimization of radar performance within the structure imposed by a ...
Since the advent of “pulse compression” radar, the “chirp” signal (Linear Frequency Modulation, LFM)...
Inspired by the success of multi-carrier waveforms such as Orthogonal Frequency Division Multiplexin...
In this study, a novel transmission scheme is proposed to serve radar-sensing and communication obje...
The article of record as published may be found at http://dx.doi.org/10.1016/j.dsp.2018.05.013Due to...
© 2017 IEEE. A joint radar-communication (JRC) system can provide cost-effective and spectrum-effici...
We propose a novel joint radar communication waveform design method based on OFDM spectrum allocatio...
Recently, huge attention is attracted to the concept of integrating communication and radar missions...
This paper develops an efficient index modulation (IM) approach for the joint radar-communication (J...
With revolutionary new services and applications, integrated sensing and communication has been esse...
Radar systems are radios to sense objects in their surrounding environment. These operate at a defin...
Recently, dual-function radar communication (DFRC) systems have been proposed to integrate radar and...
We consider the problem of time-frequency waveform design for an OFDM dual-functional radar-communic...
A joint radar-communication (JRC) system utilizes the integrated transmit waveform and a single plat...
The use of multicarrier waveforms, such as orthogonal frequency division multiplexing (OFDM) as used...
This dissertation considers the optimization of radar performance within the structure imposed by a ...
Since the advent of “pulse compression” radar, the “chirp” signal (Linear Frequency Modulation, LFM)...
Inspired by the success of multi-carrier waveforms such as Orthogonal Frequency Division Multiplexin...
In this study, a novel transmission scheme is proposed to serve radar-sensing and communication obje...
The article of record as published may be found at http://dx.doi.org/10.1016/j.dsp.2018.05.013Due to...