基于频率联动定价机制的智能不间断电源

A. Gupta, S. Chanana, A. Kumar
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引用次数: 2

摘要

分布式发电、分布式存储和需求侧负荷管理等新兴技术将改变我们消费和生产能源的方式。本文设计并开发了一种智能不间断电源(UPS)系统,该系统可以有效地利用其附带的储能和非常规能源(NCES)。该系统是根据实时定价与系统频率挂钩。在印度,这种价格也被称为基于可用性的关税(ABT)。UPS系统的设计和制造采用了智能控制算法,帮助它根据实时价格做出电池充放电决策。UPS的控制是在ATMEL公司AVR系列的ATmega8单片机上制作的。微控制器检测电源频率和电池电平,并相应地控制继电器在电源,负载,整流器,逆变器,电池和NCES之间的切换操作。根据供电频率、电池电量和NCES的可用性等多种系统运行条件,对系统进行检查和验证。该系统对消费者的好处是,供应负荷的有效成本降低,他们有更多的选择供应的选择。该系统在价格较低时从市电(配电网)获取电力,并储存电力。相比之下,当价格上涨时,它不会从市电中获取电力,而是使用成本更低的存储电力。如果大规模实施,它还将帮助配电公司管理需求,提高可靠性,优化采购成本。此外,电网运营商也将在更好地管理电网频率和减少停电方面受益。在印度这样的国家,这样的系统也有助于减少高峰需求和可用性之间的差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A smart Uninterruptible Power Supply based on frequency linked pricing mechanism
Emerging new technologies like distributed generation, distributed storage, and demand-side load management would change the way we consume and produce energy. In this paper, a smart Uninterruptible Power Supply (UPS) system which helps in efficient utilization of energy storage and non-conventional energy sources (NCES) attached to it has been designed and developed. This system is based on real-time pricing linked to the system frequency. In India, such prices are also known by the name of Availability Based Tariff (ABT). The UPS system has been designed and fabricated by employing intelligent control algorithms which help it to take battery charging and discharging decisions on the basis of real-time prices. The control of UPS has been fabricated in ATmega8 microcontroller of AVR family from ATMEL Corporation. Microcontroller detects the supply frequency & Battery level and accordingly controls the Relays for switching operations among Mains, Load, Rectifier, Inverter, Battery and NCES. The system is checked and verified for multiple system operating conditions depending upon supply frequency, Battery level, and availability of NCES etc. The benefit of this system to the consumer is that the effective cost of supplying the load is reduced and they get more options for the choice of the supply. This system draws power from mains (distribution grid) when price is low, as well as stores power. In contrast when price increases it doesn't take power from mains instead uses the stored power which is stored at cheaper cost. If implemented at large scale, it will also help Distribution Utilities in managing demand, improving reliability, optimizing the procurement cost. Additionally, the Grid Operators will also be benefited in terms of better management of grid frequency and reduction in blackouts. In a country like India, such a system would also be helpful in reducing the gap between peak demand and availability.
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