Abstract:
An adaptive matching RF architecture and an associated matching method are provided. The RF architecture comprises a power amplifier module, a receiving module, an antenna, an RF processing module, a baseband control module and at least one adjustable matching network module, the at least one adjustable matching network module being connected between the power amplifier module and the RF processing module, and/or between the receiving module and the RF processing module, and/or between the antenna and the RF processing module. The baseband control module is pre-stored with multiple matching values corresponding to multiple different application scenarios, the matching values of the at least one adjustable network module being applied based on the application scenarios to attain the optimum RF performance.
Abstract:
A GPS OTA testing method and system is provided. The GPS OTA testing method comprises: placing a terminal under test on a rotating table in a darkroom, and generating a GPS signal by a GPS satellite signal generator in the darkroom; acquiring the satellite signal strength at each of the angles and in each of the polarization directions, and forming a signal strength direction map; searching for an optimal angle and an optimal polarization direction and acquiring a sensitivity corresponding to the optical angle and the optimal polarization direction; and acquiring a sensitivity at each of the angles and in each of the polarization directions according to the sensitivity corresponding to the optimal angle and the optimal polarization direction and according to the signal strength direction map and integrating the sensitivities to acquire an antenna signal strength.
Abstract:
A method for quickly testing a total radiated power of an antenna of a terminal is provided, comprising; looking up a first antenna polarization direction corresponding to a Θ angle and a Φ angle which conform with a prescribed requirement according to a transmission power intensity and direction pattern; testing equivalent radiated power of channels to be tested; integral calculating all the equivalent radiated powers to obtain a total radiated power of the antenna of the terminal. In this method, the production process of the equivalent radiated power at the Θ angle and Φ angle is simplified, thereby increasing the testing efficiency of the total radiated power.