电池支持的光伏模块集成级联高增益升压转换器,用于电信塔电源

V. Verma, Vandana Arora
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引用次数: 2

摘要

在电网无法到达的地区,由于环境和系统问题,为电信塔供电成为一项艰巨的任务。因此,一种环保、低维护和低成本的发电方式是时代的需要。具有电池作为备用的PV馈电系统通常适合这些应用。本文提出了一种集成级联高增益升压变换器(MICHGBC),该变换器可以实现最大功率输出,并与电池混合将电压提升到可用水平,以支持基本传输接收系统(BTS)负载。该控制方案在日照变化时,将光伏发电时的最大功率作为从电流源,而蓄电池保持输出电压,作为主电流源。本文提出了系统的尺寸,确定了电池板的容量以保证白天电池的充足充电,以及电池的尺寸以消耗BTS负载的电力供应。在MATLAB/Simulink环境下对系统进行了性能评估。仿真结果表明,所提出的控制方法与设计和定尺基本一致,验证了所提控制方法在MICHGBC运行中的有效性。
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Battery supported PV Module integrated Cascaded High Gain Boost Converter for telecom tower power supply
For areas, which are unapproachable to the grid, powering the telecom towers becomes a difficult task due to both environmental and system issues. Thus an environment-friendly, low maintenance and cost-effective electricity generation is the necessity of the time. PV fed system with battery as back-up which typically suits these applications. This paper proposes a PV Module integrated Cascaded High Gain Boost Converter (MICHGBC) which can do MPPT and boosts the voltage upto a usable level hybridized with battery to support Base Tran receiver Systems (BTS) load. The control scheme evacuates the maximum power during PV generation amidst insolation change presenting a slave current source, whereas, the battery maintains the output voltage and act as Master. The system sizing is presented in the paper, which decides the capacity of the panels to ensure the adequate charging of the batteries during the day time and battery size to consume the supply of power to BTS load. The performance of the system is evaluated under MATLAB/Simulink environment. Presented simulation results show close conformity with design and sizing done & also validates the effectiveness of the proposed control employed for operations of MICHGBC.
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