the force factor formula of stator stuck with pzt pieces is deduced, and the relationship between input exciting voltage and output force is ascertained.
推导出粘贴压电片式定子的力系数计算公式,得出了定子输入激励电压与端面输出力间的函数关系。
finally, two novel control schemes, exciting voltage control and full conducted current chopping control, are discussed in detailed and proved by tests of srg prototype system.
同时对无位置传感器的全导通电流斩波方案在开关磁阻发电系统中的应用进行了分析与研究。最后针对上述控制方案进行了较全面的实验验证。
therefor, it is suggested that a resistor or a capacitor be connected with the relay in parallel to lower the exciting voltage at both ends of the output relay.
为此,提出了在继电器两端并联一个电阻器或者电容器的改进方案,使其起到降低输出继电器两端激励电压的作用。
experiment results showed that the relation between exciting voltage and induced velocity magnitude was linear, but the influence of supply frequency was not evident.
实验结果表明,等离子体激励作用主要集中在近壁面附近;激励电压与诱导速度近似为线性关系,激励频率对诱导速度的影响不大。
the same size particles distribute more evenly with 100v exciting voltage than with 50v exciting voltage.
励磁电压为100 v时的颗粒分布比励磁电压为50v时的颗粒分布更均匀。
the capacitive gate transducer has several kinds of exciting voltage forms that affect its performances greatly. but this problem is investigated little.
容栅传感器激励电压形式有若干种,对性能指标有较大影响,但人们对此很少研究。