He Zhengyao
Institute of Acoustic Engineering, Northwestern Polytechnical University, Xi'an, 710072, China.
Biomed Mater Eng. 2014;24(1):1201-8. doi: 10.3233/BME-130921.
A method is proposed to calculate the weight vector of a transducer array for ultrasound imaging to obtain a low-sidelobe transmitting beam pattern based on the near-field response vector. An optimization problem is established, and the second-order cone (SOC) algorithm is used to solve the problem to obtain the weight vector. The optimized acoustic emitted field of the transducer array is then calculated using the Field II program by applying the obtained weight vector to the array. The simulation results with a 64-element 26 MHz linear phased array show that the proposed method can be used to control the sidelobe of the near-field transmitting beam pattern of the transducer array and achieve a low-sidelobe level. The near-field sound pressure distribution of the transducer array using the proposed method focuses much better than that using the standard delay and sum (DAS) beamforming method. The sound energy is more concentrated using the proposed method.
提出了一种计算用于超声成像的换能器阵列权重向量的方法,以基于近场响应向量获得低旁瓣发射波束图。建立了一个优化问题,并使用二阶锥(SOC)算法来解决该问题以获得权重向量。然后通过将获得的权重向量应用于阵列,使用Field II程序计算换能器阵列的优化声发射场。对一个64阵元、26 MHz线性相控阵的仿真结果表明,该方法可用于控制换能器阵列近场发射波束图的旁瓣,并实现低旁瓣电平。使用该方法的换能器阵列的近场声压分布比使用标准延迟求和(DAS)波束形成方法时聚焦要好得多。使用该方法时声能更集中。