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1: Respond to surges in electricity consumption and avoid power outages
It has become a trend for some families to install central air conditioners, lay floor heating, purchase new energy vehicles, and install charging piles, which has led to a surge in household electricity consumption.
On the other hand, with the surge in social electricity consumption, power outages may occur during peak periods of electricity consumption. At the same time, extreme weather such as typhoons, thunderstorms, and blizzards may also cause power outages in severe cases. Installing household storage can cope with surges in electricity consumption and meet emergency electricity needs.
2: Maximize the self-generation and self-use rate of photovoltaics
The photovoltaic energy storage system can give priority to the use of photovoltaic power to the load, and store excess power in the battery so that when photovoltaic power generation is insufficient or at night, the battery discharges to supply energy to the load, so as to improve the self-generation and self-use rate of the photovoltaic system, achieve energy self-sufficiency, and save electricity bills. Its working logic is as follows:
3: Use time-of-use electricity prices to reduce electricity expenses
Take Shanghai as an example, the electricity bills of residents are subject to time-of-use electricity prices:
According to the peak and valley periods in Shanghai (peak period 6:00~22:00, valley period 22:00~6:00 the next day), the electricity price shows that the valley electricity price is nearly 50% cheaper than the peak electricity price. If users introduce a photovoltaic storage system, the use of photovoltaic power and peak-valley time shifting can effectively reduce electricity expenses.
The inverter is set to a timed charging mode: that is, 22:00-06:00 is the charging time period; 6:00-22:00 is the discharging time period, and the battery charging is prioritized during the photovoltaic sufficient period; the system can control the charging and discharging time of the battery according to the peak and valley of the power grid to increase the benefits.
The photovoltaic + energy storage system has many advantages, such as improving power supply reliability, increasing the self-generation and self-use rate, and optimizing electricity expenses. From a global perspective, due to energy crises, rising electricity prices, and weak power grids in various countries and regions, the development of household photovoltaic storage will become the norm.
For the domestic market, as the contradiction between photovoltaic installed capacity and consumption deepens, the penetration rate of new energy vehicles, charging piles and other equipment increases, and household electricity consumption increases, photovoltaic storage systems will gradually become a development trend. More households will analyze the local electricity bill structure, consider introducing photovoltaic energy storage and comprehensively consider tiered electricity prices and peak and valley electricity prices to effectively reduce electricity bills and minimize electricity expenditures.
1: Respond to surges in electricity consumption and avoid power outages
It has become a trend for some families to install central air conditioners, lay floor heating, purchase new energy vehicles, and install charging piles, which has led to a surge in household electricity consumption.
On the other hand, with the surge in social electricity consumption, power outages may occur during peak periods of electricity consumption. At the same time, extreme weather such as typhoons, thunderstorms, and blizzards may also cause power outages in severe cases. Installing household storage can cope with surges in electricity consumption and meet emergency electricity needs.
2: Maximize the self-generation and self-use rate of photovoltaics
The photovoltaic energy storage system can give priority to the use of photovoltaic power to the load, and store excess power in the battery so that when photovoltaic power generation is insufficient or at night, the battery discharges to supply energy to the load, so as to improve the self-generation and self-use rate of the photovoltaic system, achieve energy self-sufficiency, and save electricity bills. Its working logic is as follows:
3: Use time-of-use electricity prices to reduce electricity expenses
Take Shanghai as an example, the electricity bills of residents are subject to time-of-use electricity prices:
According to the peak and valley periods in Shanghai (peak period 6:00~22:00, valley period 22:00~6:00 the next day), the electricity price shows that the valley electricity price is nearly 50% cheaper than the peak electricity price. If users introduce a photovoltaic storage system, the use of photovoltaic power and peak-valley time shifting can effectively reduce electricity expenses.
The inverter is set to a timed charging mode: that is, 22:00-06:00 is the charging time period; 6:00-22:00 is the discharging time period, and the battery charging is prioritized during the photovoltaic sufficient period; the system can control the charging and discharging time of the battery according to the peak and valley of the power grid to increase the benefits.
The photovoltaic + energy storage system has many advantages, such as improving power supply reliability, increasing the self-generation and self-use rate, and optimizing electricity expenses. From a global perspective, due to energy crises, rising electricity prices, and weak power grids in various countries and regions, the development of household photovoltaic storage will become the norm.
For the domestic market, as the contradiction between photovoltaic installed capacity and consumption deepens, the penetration rate of new energy vehicles, charging piles and other equipment increases, and household electricity consumption increases, photovoltaic storage systems will gradually become a development trend. More households will analyze the local electricity bill structure, consider introducing photovoltaic energy storage and comprehensively consider tiered electricity prices and peak and valley electricity prices to effectively reduce electricity bills and minimize electricity expenditures.
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