A new mutual impedance - the receiving mutual impedance - between two normal-mode helical antennas is defined, measured, and theoretically calculated. The variations of the receiving mutual impedance with antenna separation, with frequency, and with excitation source direction are critically investigated. An application of the receiving mutual impedance in direction finding demonstrates its more accurate description of the mutual coupling effect than that using the conventional mutual impedance
Mutual coupling is well known as an undesirable effect as it degrades the performance of most array ...
Mutual coupling is well known as an undesirable effect as it degrades the performance of most array ...
A new and practical method is proposed to compensate for the mutual coupling effect in a dipole arra...
A new mutual impedance, the receiving mutual impedance, between two parallel dipole antennas is intr...
Abstract—A new definition of mutual impedance for two dipole antennas is introduced to characterize ...
The spatial correlation coefficient of signals received by two normal-mode helical antennas in a mul...
A new mutual impedance, the receiving mutual impedance, between two printed dipole antennas was rigo...
A new definition of mutual impedance for two dipole antennas is introduced to characterize the mutua...
In this work an analytical expression is obtained for the mutual impedance between two small circula...
A new calculation method of the receiving mutual impedances that has taken the scattering effect fro...
A new definition of mutual impedance for two coils used for simultaneous signal reception in MRI is ...
A practical normal-mode helical antenna array together with a new method for the compensation of mut...
A general expression was developed for the mutual impedance of two thin, linear, coplanar, perpendic...
A new method for the characterisation of receiving mutual impedances of compact arrays with omni-dir...
A short review of the receiving-mutual-impedance method (RMIM) for mutual coupling compensation in d...
Mutual coupling is well known as an undesirable effect as it degrades the performance of most array ...
Mutual coupling is well known as an undesirable effect as it degrades the performance of most array ...
A new and practical method is proposed to compensate for the mutual coupling effect in a dipole arra...
A new mutual impedance, the receiving mutual impedance, between two parallel dipole antennas is intr...
Abstract—A new definition of mutual impedance for two dipole antennas is introduced to characterize ...
The spatial correlation coefficient of signals received by two normal-mode helical antennas in a mul...
A new mutual impedance, the receiving mutual impedance, between two printed dipole antennas was rigo...
A new definition of mutual impedance for two dipole antennas is introduced to characterize the mutua...
In this work an analytical expression is obtained for the mutual impedance between two small circula...
A new calculation method of the receiving mutual impedances that has taken the scattering effect fro...
A new definition of mutual impedance for two coils used for simultaneous signal reception in MRI is ...
A practical normal-mode helical antenna array together with a new method for the compensation of mut...
A general expression was developed for the mutual impedance of two thin, linear, coplanar, perpendic...
A new method for the characterisation of receiving mutual impedances of compact arrays with omni-dir...
A short review of the receiving-mutual-impedance method (RMIM) for mutual coupling compensation in d...
Mutual coupling is well known as an undesirable effect as it degrades the performance of most array ...
Mutual coupling is well known as an undesirable effect as it degrades the performance of most array ...
A new and practical method is proposed to compensate for the mutual coupling effect in a dipole arra...