2012
DOI: 10.1109/tap.2011.2167904
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Time Reversal Based Broadband Synthesis Method for Arbitrarily Structured Beam-Steering Arrays

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Cited by 30 publications
(13 citation statements)
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“…Generally, optimizing far-field patterns of tightly-coupled array is time-consuming and difficult. The spatial and temporal focusing characteristic of time-reversed electromagnetic wave can be used to optimize the beam-steering arrays with strong coupling [18]. The amplitude and phase of the excitation signal of each element can be determined adaptively by using the time reversal synthesis method (TRSM) [19].…”
Section: A Wide-angle Scanning Array With the Proposed Jpm-type Wimentioning
confidence: 99%
See 1 more Smart Citation
“…Generally, optimizing far-field patterns of tightly-coupled array is time-consuming and difficult. The spatial and temporal focusing characteristic of time-reversed electromagnetic wave can be used to optimize the beam-steering arrays with strong coupling [18]. The amplitude and phase of the excitation signal of each element can be determined adaptively by using the time reversal synthesis method (TRSM) [19].…”
Section: A Wide-angle Scanning Array With the Proposed Jpm-type Wimentioning
confidence: 99%
“…Compared to the conventional array synthesis methods, TRSM has the following characteristics [18]: (1) The element mutual coupling is not required to be measured. (2) All the element excitation can be determined by a single TR operation.…”
Section: A Wide-angle Scanning Array With the Proposed Jpm-type Wimentioning
confidence: 99%
“…The detailed description of the two kinds of dipole arrays can be found in our recent work, in which they were used as examples to demonstrate the time reversal-based broadband pattern synthesis of arbitrarily structured arrays. [16] In this paper, we emphasis on fast sampling and processing of the pulsed echoes received by the linear array and the circular array. The two models are numerically simulated with the time-domain solver of the CST Microwave Studio, and the temporal array echoes are obtained by recording all waves reflected from the feeding ports of the array elements.…”
Section: Basis Function Determinationmentioning
confidence: 99%
“…Furthermore, complex scattering media are shown to enhance the performance of a TRM due to an effective increase in spatial coverage by capturing parts of the waves redirected by scattering [7]. TRMs are studied for both acoustic and electromagnetic waves in various applications such as underwater communications [8][9][10], sensors [11][12][13], wireless communications [4,[14][15][16][17][18], imaging [19][20][21][22], radars [23,24], and beam forming [25][26][27][28].…”
Section: Introductionmentioning
confidence: 99%