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- W2186469146 abstract "A recent investigation into methods for monolithically integrating antenna elements at millimetre wavelengths has identified a metal strip dipole antenna contiguous with the edge of an ungrounded extension of the substrate of a monolithic microwave integrated circuit (MMIC) chip as a potentially useful element for a phased array [l]. An extensive analytical and experimental analysis has enabled the computation of the important characteristics of such an antenna element [2]. In this paper, the analytical techniques are extended to calculate the mutual coupling between adjacent elements of a three-element array of such antennas. This is made possible because of the computational efficiency of the numerical implementation in terms of both computer time and memory usage. Nevertheless, the computation still requires the use of a high performance computer for its implementation. The results of the analysis are compared with experimentally determined mutual impedances and show good agreement. Two folded dipole arrays are then considered: the first with the antennas collateral and the second with the antennas collinear. It is shown that although the antennas are considered to be ideally fed dipoles in the analysis, the results of such an analysis can be used to predict the mutual coupling of a practical antenna element to a high degree of accuracy. Finally the effect of the central element on the coupling between the outer elements is discussed." @default.
- W2186469146 created "2016-06-24" @default.
- W2186469146 creator A5057098150 @default.
- W2186469146 date "1992-01-01" @default.
- W2186469146 modified "2023-09-24" @default.
- W2186469146 title "MUTUAL COUPLING BETWEEN METAL STRIP DIPOLE ANTENNAS ON ELECTRICALLY THICK, FINITE SIZE" @default.
- W2186469146 cites W1543362394 @default.
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- W2186469146 hasPublicationYear "1992" @default.
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