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    • 2. 发明授权
    • Reflector antenna
    • 反射天线
    • US07081863B2
    • 2006-07-25
    • US10526220
    • 2003-12-25
    • Yoshio InasawaShinji KurodaYoshihiko KonishiShigeru MakinoKenji KusakabeIzuru Naito
    • Yoshio InasawaShinji KurodaYoshihiko KonishiShigeru MakinoKenji KusakabeIzuru Naito
    • H01Q13/00
    • H01Q19/19
    • A reflector antenna device includes: an auxiliary reflector 1 that receives an electric wave radiated from an opening portion by a primary radiator 3 and reflects the electric wave; and a main reflector 2 that receives the electric wave that is reflected by the auxiliary reflector 1 and radiates the electric wave to a space. In the reflector antenna device, the configurations of the auxiliary reflector 1 and the main reflector 2 are designed such that an electric power in an area of the main reflector 2 where the auxiliary reflector 1 is projected on the main reflector 2 in parallel with the radiating direction of the electric wave due to the main reflector 2 is equal 1 or lower than a predetermined first threshold value, and a radiation pattern of the antenna which is determined by the area of the main reflector 2 other than the area has a desired characteristic.
    • 反射器天线装置包括:辅助反射器1,其接收由初级辐射器3从开口部分辐射的电波并反射电波; 以及主反射器2,其接收由辅助反射器1反射的电波并将电波辐射到空间。 在反射器天线装置中,辅助反射器1和主反射器2的构造被设计成使得主反射器2的辅助反射体1的区域中的电力与辅助反射体2平行地投射在主反射体2上 由于主反射器2引起的电波的方向等于1或低于预定的第一阈值,并且由除了该区域之外的主反射器2的面积确定的天线的辐射图案具有期望的特性。
    • 3. 发明申请
    • Reflector antena
    • 反射器电话
    • US20060001588A1
    • 2006-01-05
    • US10526220
    • 2003-12-25
    • Yoshio InasawaShinji KurodaYoshihiko KonishiShigeru MakinoKenji KusakabeIzuru Naito
    • Yoshio InasawaShinji KurodaYoshihiko KonishiShigeru MakinoKenji KusakabeIzuru Naito
    • H01Q13/00
    • H01Q19/19
    • A reflector antenna device includes: an auxiliary reflector 1 that receives an electric wave radiated from an opening portion by a primary radiator 3 and reflects the electric wave; and a main reflector 2 that receives the electric wave that is reflected by the auxiliary reflector 1 and radiates the electric wave to a space. In the reflector antenna device, the configurations of the auxiliary reflector 1 and the main reflector 2 are designed such that an electric power in an area of the main reflector 2 where the auxiliary reflector 1 is projected on the main reflector 2 in parallel with the radiating direction of the electric wave due to the main reflector 2 is equal 1 or lower than a predetermined first threshold value, and a radiation pattern of the antenna which is determined by the area of the main reflector 2 other than the area has a desired characteristic.
    • 反射器天线装置包括:辅助反射器1,其接收由初级辐射器3从开口部分辐射的电波并反射电波; 以及主反射器2,其接收由辅助反射器1反射的电波并将电波辐射到空间。 在反射器天线装置中,辅助反射器1和主反射器2的构造被设计成使得主反射器2的辅助反射体1的区域中的电力与辅助反射体2平行地投射在主反射体2上 由于主反射器2引起的电波的方向等于1或低于预定的第一阈值,并且由除了该区域之外的主反射器2的面积确定的天线的辐射图案具有期望的特性。
    • 6. 发明申请
    • SATELLITE COMMUNICATION SYSTEM AND METHOD FOR DIVIDING THE COVERAGE AREA THEREOF
    • 用于分割其覆盖区域的卫星通信系统和方法
    • US20110212681A1
    • 2011-09-01
    • US13127475
    • 2009-11-10
    • Shinichi YamamotoTamotsu NishinoIzuru NaitoYoshihiko Konishi
    • Shinichi YamamotoTamotsu NishinoIzuru NaitoYoshihiko Konishi
    • H04H20/74
    • H04B7/2041
    • A beam forming apparatus of a satellite is configured to: define a perimeter of a coverage area, and define a coordinate grid of a polar coordinate system so as to divide the coverage area into a plurality of small areas; calculate coordinates of borders between basic cells in a Cartesian coordinate system, the basic cells being shaped into regular hexagons arranged to be in contact with one another along their sides and at their vertices or into circles circumscribing the regular hexagons; define a plurality of new cells by converting, through coordinate transformation, the coordinates of the borders between the basic cells in the Cartesian coordinate system into coordinates of borders in the polar coordinate system; and set amplitudes and phases to the plurality of antenna devices that are suitable to form a plurality of beams in respective directions of the plurality of new cells.
    • 卫星的波束形成装置被配置为:定义覆盖区域的周边,并且定义极坐标系的坐标网格,以便将覆盖区域划分成多个小区域; 计算笛卡尔坐标系中基本单元之间边界的坐标,将基本单元整形成规则六边形,布置为沿着它们的侧面和它们的顶点或围绕正六边形的圆形彼此接触; 通过坐标变换将笛卡尔坐标系中的基本单元之间的边界的坐标转换为极坐标系中边界的坐标来定义多个新单元; 并且将幅度和相位设置到适合于在多个新小区的各个方向上形成多个波束的多个天线装置。
    • 7. 发明授权
    • Satellite communication system and method for dividing the coverage area thereof
    • 卫星通信系统及其覆盖区域划分方法
    • US08145123B2
    • 2012-03-27
    • US13127475
    • 2009-11-10
    • Shinichi YamamotoTamotsu NishinoIzuru NaitoYoshihiko Konishi
    • Shinichi YamamotoTamotsu NishinoIzuru NaitoYoshihiko Konishi
    • H04H20/71
    • H04B7/2041
    • A beam forming apparatus of a satellite is configured to: define a perimeter of a coverage area, and define a coordinate grid of a polar coordinate system so as to divide the coverage area into a plurality of small areas; calculate coordinates of borders between basic cells in a Cartesian coordinate system, the basic cells being shaped into regular hexagons arranged to be in contact with one another along their sides and at their vertices or into circles circumscribing the regular hexagons; define a plurality of new cells by converting, through coordinate transformation, the coordinates of the borders between the basic cells in the Cartesian coordinate system into coordinates of borders in the polar coordinate system; and set amplitudes and phases to the plurality of antenna devices that are suitable to form a plurality of beams in respective directions of the plurality of new cells.
    • 卫星的波束形成装置被配置为:定义覆盖区域的周边,并且定义极坐标系的坐标网格,以便将覆盖区域划分成多个小区域; 计算笛卡尔坐标系中基本单元之间边界的坐标,将基本单元整形成规则六边形,布置为沿着它们的侧面和它们的顶点或围绕正六边形的圆形彼此接触; 通过坐标变换将笛卡尔坐标系中的基本单元之间的边界的坐标转换为极坐标系中边界的坐标来定义多个新单元; 并且将幅度和相位设置到适合于在多个新小区的各个方向上形成多个波束的多个天线装置。
    • 8. 发明授权
    • Radome equipment
    • 天线罩设备
    • US08605001B2
    • 2013-12-10
    • US13381200
    • 2010-09-01
    • Shinichi YamamotoShuji NuimuraIzuru Naito
    • Shinichi YamamotoShuji NuimuraIzuru Naito
    • H01Q1/42
    • H01Q1/42
    • Radome equipment that includes an antenna device, and a radome that protects the antenna device by housing the antenna device therein and that transmits electric power necessary for communication, in which: a matching layer made of a single-layer dielectric is attached to an inner surface of the radome; and the matching layer has a thickness that is set to a value that minimizes reflection based on an impedance estimated from an interface between the matching layer and the radome before the matching layer of the radome is attached, a characteristic impedance of a medium of the matching layer, a wavelength in the matching layer, and a characteristic impedance of a medium of a space in which the radome is disposed.
    • 包括天线装置的天线罩装置和通过将天线装置容纳在其中来保护天线装置并且发送通信所需的电力的天线罩,其中:由单层电介质制成的匹配层附接到内表面 的天线罩 并且匹配层的厚度被设定为使得基于在安装了天线罩的匹配层之前的匹配层和天线罩之间的界面估计的阻抗来最小化反射的值,匹配的介质的特性阻抗 层,匹配层中的波长和布置天线罩的空间的介质的特性阻抗。
    • 9. 发明申请
    • RADOME EQUIPMENT
    • RADOME设备
    • US20120127057A1
    • 2012-05-24
    • US13381200
    • 2010-09-01
    • Shinichi YamamotoShuji NuimuraIzuru Naito
    • Shinichi YamamotoShuji NuimuraIzuru Naito
    • H01Q1/42
    • H01Q1/42
    • Radome equipment that includes an antenna device, and a radome that protects the antenna device by housing the antenna device therein and that transmits electric power necessary for communication, in which: a matching layer made of a single-layer dielectric is attached to an inner surface of the radome; and the matching layer has a thickness that is set to a value that minimizes reflection based on an impedance estimated from an interface between the matching layer and the radome before the matching layer of the radome is attached, a characteristic impedance of a medium of the matching layer, a wavelength in the matching layer, and a characteristic impedance of a medium of a space in which the radome is disposed.
    • 包括天线装置的天线罩装置和通过将天线装置容纳在其中来保护天线装置并且发送通信所需的电力的天线罩,其中:由单层电介质制成的匹配层附接到内表面 的天线罩 并且匹配层的厚度被设定为使得基于在安装了天线罩的匹配层之前的匹配层和天线罩之间的界面估计的阻抗来最小化反射的值,匹配的介质的特征阻抗 层,匹配层中的波长和布置天线罩的空间的介质的特性阻抗。