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991.
A method is proposed for determining the excitation coefficients of an antenna array operating in a large rectangular waveguide and used as a hyperthermia system. The excitation coefficients of the array elements are optimized for attaining an improved specific absorption rate (SAR) distribution around a deep-seated tumor. The method is applied to a two-dimensional problem of a piecewise homogeneous post in a waveguide representing a section of the human torso. The array is operating below the cutoff frequency of the dominant mode of the waveguide. Numerical simulations have been performed to check the effectiveness of this approach. The results show that by using the proposed optimization method, SAR distributions can be improved  相似文献   
992.
The optimization problem corresponding to the design of a presteered broadband processor with maximally flat second-order spatial response in the look direction is discussed. The constraints corresponding to necessary and sufficient conditions for second-order flatness are presented. The nonlinearly constrained optimization approach is unable to consistently locate the global minimum. An approach to solving this problem that essentially converts the nonconvex optimization problem into a parameterized set of convex problems is presented. In the case of 2-D scenarios, the global optimum is determined by finding the roots of a cubic function. The characteristics of the constraints, including the minimum number required and the dependence on the choice of coordinate systems, are examined  相似文献   
993.
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996.
Belopolsky  Y. 《Micro, IEEE》1993,13(2):36-44
The stresses and strains in substrate-connector systems in multichip modules (MCMs) are discussed. Simultaneous stresses were applied as structural loads in combined stress models. Modeling results show that definite relations exist between connector pitch, length, substrate thickness and material, and stresses in a connector body  相似文献   
997.
The results of residual phase noise measurements on a number of VHF, UHF, and microwave amplifiers, both silicon (Si) bipolar junction transistor (BJT) and gallium arsenide (GaAs) field effect transistor (FET) based, electronic phase shifters, frequency dividers and multipliers, etc., which are commonly used in a wide variety of frequency source and synthesizer applications are presented. The measurement technique has also been used to evaluate feedback oscillator components, such as the loop and buffer amplifiers, which can play important roles in determining an oscillator's output phase noise spectrum (often in very subtle ways). While some information has previously been published related to component residual phase noise properties, it generally focused on the flicker noise levels of the devices under test, for carrier offset frequencies less than 10 kHz. The work reported herein makes use of an extremely low noise, 500 MHz surface acoustic wave resonator oscillator (SAWRO) test source for residual phase noise measurements, both close-to-and far-from-the-carrier. Using this SAWRO-based test source at 500 MHz, we have been able to achieve a measurement system phase noise floor of -184 dBc/Hz, or better, for carrier offset frequencies greater than 10 kHz, and a system flicker phase noise floor of -150 dBc/Hz, or better, at 1 Hz carrier offset. The paper discusses the results of detailed residual phase noise measurements performed on a number of components using this overall system configuration. Several interesting observations related to the residual phase noise properties of moderate to high power RF amplifiers, i.e., amplifiers with 1 dB gain compression points in the range of +20 to +33 dBm, are highlighted  相似文献   
998.
The finite element method is applied to stress and strain analyses around rigid spherical particles in elastomers at large extensions. The stress and strain distribution computed agree well with the classical theoretical ones at small strain. At large extension, however, the maximum stress concentration factor increases greatly and the maximum strain concentration factor decreases slightly as strain increases. These tendencies are increased more in carbon black-filled elastomers than in unfilled ones, which can be understood reasonably by considering both the geometric and material non-linearity. Reinforcement of elastomers with rigid spherical particles was also analysed through a numerical computation. The computed results agree with the Guth and Mooney equations at low volume fraction of fillers. In carbon black-filled elastomers, on the other hand, where the modulus is much higher than that given by the above equations, the computations give a good agreement with the experiments, considering the 20% increase in effective diameter of the filler.  相似文献   
999.
1000.
So far, all tests on Kalman filters have been performed in the time domain. However, it is shown that conventional signal-processing tools such as frequency response can be successfully applied for the performance analysis. The concept of frequency response as applied to Kalman filters is based on its variation with time. Consequently, it is defined with respect to a definite observation window. It is also shown that the ratio of the initial error covariance matrix terms to the measurement noise variance, not the absolute values, is the relevant statistical quantity. The same principle applies to the ratio of the process noise covariance matrix diagonal terms to the noise measurement variance  相似文献   
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