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Application of the conjugate gradient method to a self-matching network for industrial microwave heating antennas

机译:共轭梯度法在工业微波加热天线自匹配网络中的应用

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One of the main problems regarding the efficiency in a heating industrial system using high power microwaves is related with the uncontrolled changes on the load. These changes can be caused both by the different kinds of materials to be processed in the same oven and by the temperature rise which modifies the material's physical properties, particularly its dielectric permittivity. Usually, the microwave generator is matched to the antenna feeding the oven by means of a waveguide matching system, typically a two, three or four capacitive-screw tuner empirically adjusted for a given load. Once the heating process is started, the temperature dependence of the complex permittivity usually changes the impedance seen by the generator, worsening the mismatch factor and reducing the efficiency of the heating process. A similar process happens when the load is inhomogeneous or discontinuous; it is not feasible to manually re-adjust the matching network for every different sample processed. Until now the solution has been simple but highly inefficient: to increase the incident power in order to overcome the mismatching effects.
机译:在使用大功率微波的加热工业系统中,有关效率的主要问题之一与负载的不受控制的变化有关。这些变化可能是由于在同一炉中要处理的材料种类不同,也可能是由于温度上升而改变了材料的物理性能,特别是介电常数。通常,微波发生器是通过波导匹配系统与天线馈送烤箱的天线相匹配的,该波导匹配系统通常是根据给定负载根据经验调整的两个,三个或四个电容式螺旋调谐器。一旦开始加热过程,复介电常数对温度的依赖性通常会改变发生器产生的阻抗,从而加剧失配因数并降低加热过程的效率。当负载不均匀或不连续时,也会发生类似的过程。对于每个已处理的不同样本,手动重新调整匹配网络是不可行的。到目前为止,解决方案一直很简单,但是效率很低:增加入射功率以克服失配效应。

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