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Output power and efficiency of electromagnetic energy harvesting systems with constrained range of motion

机译:运动范围受限制的电磁能量采集系统的输出功率和效率

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In some energy harvesting systems, the maximum displacement of the seismic mass is limited due to the physical constraints of the device. This is especially the case where energy is harvested from a vibration source with large oscillation amplitude (e.g., marine environment). For the design of inertial systems, the maximum permissible displacement of the mass is a limiting condition. In this paper the maximum output power and the corresponding efficiency of linear and rotational electromagnetic energy harvesting systems with a constrained range of motion are investigated. A unified form of output power and efficiency is presented to compare the performance of constrained linear and rotational systems. It is found that rotational energy harvesting systems have a greater capability in transferring energy to the load resistance than linear directly coupled systems, due to the presence of an extra design variable, namely the ball screw lead. Also, in this paper it is shown that for a defined environmental condition and a given proof mass with constrained throw, the amount of power delivered to the electrical load by a rotational system can be higher than the amount delivered by a linear system. The criterion that guarantees this favourable design has been obtained.
机译:在某些能量收集系统中,由于设备的物理限制,地震质量的最大位移受到限制。从振荡幅度大的振动源(例如海洋环境)收集能量的情况尤其如此。对于惯性系统的设计,质量的最大允许位移是一个限制条件。在本文中,研究了运动受限的线性和旋转电磁能量收集系统的最大输出功率以及相应的效率。提出了输出功率和效率的统一形式,以比较受约束的线性和旋转系统的性能。已经发现,由于存在额外的设计变量,即滚珠丝杠,旋转能量采集系统比线性直接耦合系统具有更大的将能量传递到负载电阻的能力。同样,在本文中还表明,对于定义的环境条件和给定的带有受约束投掷的证明质量,旋转系统传递给电负载的功率量可以大于线性系统传递的功率量。已经获得了保证这种良好设计的标准。

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