Charge Discharge Analysis of a 12-Volt Battery using Radiant Battery Energizer

F. Ali, G. Ahmad, S. Jan, S. Faheem
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Abstract

any electrical system efficiency is a key pgn= Efficiency strictly depends on system losses. Generally,batteries are charged by conventional methods like Solar/Photovoltaic charging or alternatively they can be charged using Electrical Supply and then the available stored power can be reused when required. This paper is focused on free battery charging based on radiant energy, which is produced as a result of making and breaking of magnetic dipoles in form of high voltage spikes. Initially the rotor requires a kick, then it attains a fixed synchronous speed and rotates almost indefinitely.Making and breaking of dipoles results in high voltage spikes which allows charging of a number of batteries connected in parallel without any cost. The charged batteries can be used directly to feed DC load or with an inverter circuit to feed AC load. The charging time of batteries is 200 minutes, whereas the effective discharge time is around 170 -180 minutes. Though a gap of 20-30 minutes exists, but as multiple batteries are charged at a time; the system works effectively at very high efficiency.
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利用辐射电池充能器对12伏电池进行充放电分析
任何电力系统的效率都是关键,效率严格取决于系统损耗。一般来说,电池通过太阳能/光伏充电等传统方法充电,或者可以使用电源充电,然后在需要时重用可用的存储电力。本文主要研究基于辐射能的自由电池充电,辐射能是由高电压尖峰形式的磁偶极子形成和断裂产生的。最初转子需要一个踢,然后它达到一个固定的同步速度和旋转几乎无限。偶极子的制造和破坏会产生高电压尖峰,这使得许多电池并联充电而不需要任何成本。充电后的电池可以直接供直流负载使用,也可以与逆变电路一起供交流负载使用。电池充电时间为200分钟,有效放电时间为170 -180分钟左右。虽然存在20-30分钟的间隔,但由于多个电池同时充电;这个系统工作效率很高。
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