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Piezoelectric-Based Hybrid Reserve Power Sources for Munitions

机译:基于压电的弹药混合动力储备电源

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Reserve power sources are used extensively in munitions and other devices such as emergency devices or remote sensors that have to be powered only once and for a relatively short duration. Current chemical reserve power sources, including thermal batteries and liquid reserve batteries require sometimes in excess of 100 msec to become fully activated. In many applications, however, electrical energy is required in a few msec following the launch event. In such applications, other power sources have to be provided to provide power until the reserve battery is fully activated. The amount of electrical energy that is required by most munitions before chemical reserve batteries are fully activated is generally small and can be provided by properly designed piezoelectric-based energy harvesting devices. In this paper the development of a hybrid reserve power source obtained by the integration of a piezoelectric-based energy harvesting device with a reserve battery that can provide power almost instantaneously upon munitions firing or other similar events is being reported. A review of the state of the art in piezoelectric-based electrical energy harvesting methods and devices and their charge collection electronics for use in the developed hybrid power sources is also provided together with the results of testing of the piezoelectric component of the power source and its electronic safety and charge collection electronics.
机译:备用电源广泛用于弹药和其他设备,例如紧急设备或远程传感器,这些设备仅需供电一次,并且持续时间相对较短。当前的化学备用电源(包括热电池和液体备用电池)有时需要超过100毫秒才能完全激活。然而,在许多应用中,发射事件后几毫秒内就需要电能。在此类应用中,必须提供其他电源来提供电源,直到备用电池完全激活为止。在化学备用电池完全激活之前,大多数弹药所需的电能通常很小,并且可以通过适当设计的基于压电的能量收集装置来提供。在本文中,已经报道了通过将基于压电的能量收集装置与备用电池集成而获得的混合备用电源的开发,该备用电池可以在弹药发射或其他类似事件发生时几乎立即提供电力。还提供了对在已开发的混合电源中使用的基于压电的电能收集方法和设备及其电荷收集电子设备的最新技术的回顾,以及对电源及其组件的压电组件的测试结果。电子安全和收费电子。

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