Development of a Dual-Frequency Base Station Antenna for Cellular Mobile Radios
スポンサーリンク
概要
- 論文の詳細を見る
This paper proposes a newly developed dual-frequency antenna for 800 MHz and 1500 MHz band use. A uniformly spaced array configuration, originally designed for a 800 MHz analog system, is extended to yield dual frequencies operations. An important characteristic of a base station antenna is low sidelobe level in order to suppress inter-cell interference. In the case of a uniformly spaced array configuration, sidelobe levels are increased by the emergence of grating lobes at higher frequencies. Electrical beam tilt also degrades the sidelobe level. As does the change in the excitation coefficients of the array elements at higher frequencies. These three factors are studied theoretically to yield practical sidelobe levels. One more important beam characteristic is the sector beam in the horizontal plane. The same beam width in two frequency bands is achieved by designing the novel reflector shape and determining the proper array element positions in front of the reflector. Practical antenna characteristics are confirmed by designing, manufacturing, and testing a base station antenna.
- 社団法人電子情報通信学会の論文
- 1999-04-25
著者
-
Yamada Yoshihide
National Defense Academy
-
Ebine Y
Ntt Mobile Communication Network Inc. Kanagawa Jpn
-
Ebine Yoshio
Wireless Laboratories Ntt Docomo Inc.
-
KIJIMA Makoto
General Affair Department, NTT Mobile Communications Network Inc.
-
Kijima Makoto
General Affair Department Ntt Mobile Communications Network Inc.
-
Yamada Yoshihide
National Defense Acad. Kanagawa
関連論文
- Improvement of Beam Scanning Characteristics of a Dielectric Lens Antenna by Array Feeds
- Radiation from Multiple Reflected Waves Emitted by a Cabin Antenna in a Car(Special Section on Multi-dimensional Mobile Information Networks)
- Development of a Dual-Frequency Base Station Antenna for Cellular Mobile Radios
- Design of a Base Station Antenna with 60 Degrees Beam Width in the Horizontal Plane for Cellular Mobile Radios(The IEICE Transactions (publishedin Japanese) Vol. J 86-B, No.6(Communications))
- Phase Correction Method for GO Designed Dielectric Lens Horn Antenna(2004 International Symposium on Antennas and Propagation)