首页> 外文会议>European Microwave Conference vol.3; 20041011-14; Amsterdam(NL) >Optimal Inter-Element Spacing in Linear Array Antennas and its Application in Satellite Communications
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Optimal Inter-Element Spacing in Linear Array Antennas and its Application in Satellite Communications

机译:线性阵列天线的最佳元件间间距及其在卫星通信中的应用

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As power is not abundantly available on satellites, the power consumed by on-board antennas should be kept low. This can be facilitated by using high-gain directive antennas on the satellite as well as at the ground station on earth, so that as little power as possible is wasted while sending and the power is picked up as efficiently as possible while receiving. In the framework of the KULSAT project, a linear receiving array of dipoles was designed and fabricated to demonstrate an implementation of a phase shifter. In this paper, an easy design method is introduced for the optimal linear array i.e. the array with the highest gain. The technique is only exact for isotropically radiating elements, but can easily be used for an array of dipoles or any other element type with a rotation symmetric radiation pattern around the x axis. The array is then used to scan the beam in the x, y plane (as in Figure 1). The quality of this approximation is discussed for an array of dipoles. For an exact solution or for an asymmetrical radiation pattern an iterative optimization search is needed. Though the array designed here is a ground station transmitting antenna, the results are valid for receiving, ground station, or satellite antennas as well.
机译:由于卫星上没有足够的功率,因此应将机载天线消耗的功率保持在较低水平。通过在卫星上以及在地球上的地面站上使用高增益定向天线可以简化此过程,以便在发送时浪费尽可能少的功率,并在接收时尽可能高效地获取功率。在KULSAT项目的框架中,设计并制造了偶极子的线性接收阵列,以演示移相器的实现。在本文中,介绍了一种用于最佳线性阵列(即增益最高的阵列)的简便设计方法。该技术仅适用于各向同性辐射元素,但可以轻松地用于偶极子阵列或具有围绕x轴旋转对称辐射图的任何其他元素类型。然后使用该阵列在x,y平面中扫描光束(如图1所示)。对于偶极子阵列讨论了这种近似的质量。对于精确的解决方案或不对称的辐射方向图,需要进行迭代优化搜索。尽管此处设计的阵列是地面站发射天线,但结果对于接收,地面站或卫星天线也有效。

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