An EIRP Measurement Method for Base-Station Antennas Using Field Strengths Measured along a Single Straight Line
Soon‐Soo Oh, Young-Hwan Lee
Abstract
Open-access reader
Soon‐Soo Oh, Young-Hwan Lee
Abstract
Open-access reader
We describe an EIRP measurement technique for a base-station antenna. The proposed method especially can be applied to the base-station antenna installed in real environments. Fresnel region measurement method is an optimal technique to avoid the far-field multipath interference, and, furthermore, it could shorten the measurement time. For detecting only the field strengths along a single straight line, we also propose a simple phase-retrieval method. For verification, a simulation and experiment have been performed. An anechoic chamber was utilized in this paper before the real environment test with the outdoor measurement system. The transformed far-field pattern and EIRP agree closely with the reference data within a valid angle. The proposed method can be applied for the EIRPin situmeasurements without moving a vehicle loading the EIRP measurement apparatus.
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We describe an EIRP measurement technique for a base-station antenna. The proposed method especially can be applied to the base-station antenna installed in real environments. Fresnel region measurement method is an optimal technique to avoid the far-field multipath interference, and, furthermore, it could shorten the measurement time. For detecting only the field strengths along a single straight line, we also propose a simple phase-retrieval method. For verification, a simulation and experiment have been performed. An anechoic chamber was utilized in this paper before the real environment test with the outdoor measurement system. The transformed far-field pattern and EIRP agree closely with the reference data within a valid angle. The proposed method can be applied for the EIRPin situmeasurements without moving a vehicle loading the EIRP measurement apparatus.
Key concepts: Anechoic chamber, Antenna (radio), Base station, Remote sensing, Multipath propagation, Interference (communication), Multipath interference, Field (mathematics)