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基于单目标多约束发射机宽带匹配参数优化算法

Transmitter Broadband Matching Parameter Optimization Algorithm Based on Single Objective and Multiple Constraints

  • 摘要: 压电式水声换能器宽带匹配是发射机设计的关键技术之一,良好的宽带匹配可减小发射机体功率容量需求。针对压电换能器的宽带发射机,首先建立基于正弦波脉宽调制(SPWM)的功放数学模型并分析常规的一阶和多阶宽带匹配拓扑。其次,基于功放数学模型推导出以电流最小化为目标函数可保证发射机损耗最小,并且构建发射源级、带内平坦度及谐波等多约束条件,进而提出一种基于单目标多约束的水声发射机匹配参数优化算法。最后,利用该优化算法计算得到的匹配参数进行实验,实验结果表明,优化得到的匹配参数可使发射机满足各约束条件,且功放输出电流与优化计算值基本一致,误差不超过10%。

     

    Abstract: Broadband matching of piezoelectric underwater acoustic transducers is one of the key technologies in transmitter design. Good broadband matching can reduce the power capacity requirements of the transmitter. For piezoelectric transducer-based broadband transmitters, the mathematical model of the power amplifier based on sinusoidal wave pulse width modulation (SPWM) is first established, and the conventional first-order and multi-order broadband matching topologies are analyzed. Secondly, based on the derivation of the mathematical model of the power amplifier, it is derived that using current minimization as the objective function can ensure the minimization of transmitter loss, and multiple constraints—including the transmitter source level, in-band flatness, and harmonics—are established. Thus, an optimization algorithm for the matching parameters of underwater acoustic transmitters based on a single objective and multiple constraints is proposed. Finally, relevant experiments were conducted using the matching parameters calculated by this optimization algorithm. The experimental verification results show that the optimized matching parameters enable the transmitter to meet each constraint condition and ensure that the output current of the power amplifier is basically consistent with the optimized calculated current, with an error not exceeding 10%.

     

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