论文标题
连贯FDA雷达的发射和接收权重的关节设计
Joint Design of the Transmit and Receive Weights for Coherent FDA Radar
论文作者
论文摘要
频率不同阵列(FDA)与常规阵列技术不同,因为它在整个数组元素上施加了额外的频率偏移(FO)。 FO的使用为FDA提供了范围维度可控的自由度,与其相结合的阵列或多重输入多输出(MIMO)相比,在关节角度和范围定位,范围内的混乱抑制和截距的概率低。特别是,相干FDA的FO比基带波形的带宽小得多,能够获得更高的发射增益和输出信号与互发率加上噪声比(SINR)。在本文中,我们调查了发射的关节设计问题,并接收了相干FDA雷达系统的权重。设计问题被提出,因为所需的二维范围内空间与整个区域的功率的功率比最大化,但要受到限制每个传输天线和相似性限制的能量的能量约束,因此可以保证良好的传输光束图。因此,由于结果问题是NP-硬化,因此开发了一种基于半稀释(SDR)技术的顺序优化方法。提供数值模拟以证明所提出的方案的有效性。
Frequency diverse array (FDA) differs from conventional array techniques in that it imposes an additional frequency offset (FO) across the array elements. The use of FO provides the FDA with the controllable degree of freedom in range dimension, offering preferable performance in joint angle and range localization, range-ambiguous clutter suppression, and low probability of intercept, as compared to its phased-array or multiple-input multiple-output (MIMO) counterparts. In particular, the FO of the coherent FDA is much smaller than the bandwidth of the baseband waveform, capable of obtaining higher transmit gain and output signal-to-interference-plus-noise ratio (SINR). In this paper, we investigate the problem of joint design of the transmit and receive weights for coherent FDA radar systems. The design problem is formulated as the maximization of the ratio of the power in the desired two-dimensional range-angle space to the power in the entire area, subject to an energy constraint that limits the emitted energy of each transmit antenna and a similarity constraint such that a good transmit beampattern can be guaranteed. Due to the resultant problem is NP-hard, therefore, a sequential optimization method based on semidefinite relaxation (SDR) technique is developed. Numerical simulations are provided to demonstrate the effectiveness of the proposed scheme.