Title :
Adaptive Waveform Design for Separated Transmit/Receive ULA-MIMO Radar
Author :
Zhang, Jindong ; Wang, Haiqing ; Zhu, Xiaohua
Author_Institution :
Sch. of Electron. Eng. & Optoelectron. Tech., Nanjing Univ. of Sci. & Technol., Nanjing, China
Abstract :
The colocated uniform linear array (ULA) multiple-input multiple-output (MIMO) radar has been demonstrated to provide enhanced performance in theory. Similar to a bistatic radar, performance of the separated transmit/receive (STR) ULA-MIMO radar is affected not only by the transmitted multiple orthogonal waveforms, but also by the position of the target. In this correspondence, the ambiguity function of the STR-ULA-MIMO radar is investigated and the corresponding range-velocity ambiguity function (RVAF) is deduced. The range and velocity resolution of RVAF for the STR-ULA-MIMO radar is discussed. Because the shape of RVAF for the STR-ULA-MIMO radar is related to the position of the target, a new algorithm for adaptively designing the orthogonal frequency-hopping waveforms according to the position of the target is proposed. This algorithm improves the range and velocity resolution and the integrated sidelobe level (ISL) of the matched filter output at the corresponding position.
Keywords :
MIMO radar; STR-ULA-MIMO radar; ULA-MIMO radar; adaptive waveform design; ambiguity function; colocated uniform linear array; multiple-input multiple-output radar; orthogonal frequency-hopping waveforms; range-velocity ambiguity function; separated transmit/receive radar; transmitted multiple orthogonal waveforms; Adaptive waveform design; MIMO radar; frequency-hopping waveform; range-velocity ambiguity function;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2010.2052043