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PVSTORLOAD – Industrial PV-Storage Integrated Solution 

Working Modes:

面向工业光储场景,我们提供以 “自发自用,动态储能” 为核心的高可靠光储解决方案。该方案支持企业实现用电成本优化与供电自主保障,显著提升能源使用效率。
For industrial PV-storage scenarios, we provide a highly reliable PV-storage integrated solution centered on “self-consumption and dynamic energy storage”. This solution enables enterprises to optimize electricity costs and ensure independent power supply, significantly improving energy efficiency.

系统可根据企业生产负荷与电价波动,动态调整充放电策略,实现削峰填谷、自发自用,同时在电网断电时提供应急供电,保障关键生产环节连续运行。

The system can dynamically adjust charge/discharge strategies based on enterprise production loads and electricity price fluctuations, achieving peak shaving and valley filling as well as self-consumption of PV power. It also provides emergency power supply during grid outages to ensure continuous operation of key production processes.

Core Features:

-高功率适配:逆变器功率覆盖 30kW 至 125kW,可灵活匹配工业生产场景的大功率用电需求,保障生产设备稳定运行。
-High power adaptation: Inverter power ranges from 30kW to 125kW, flexibly matching the high-power electricity needs of industrial production scenarios and ensuring stable operation of production equipment.

– 高压安全储能:电池系统采用高压安全架构,容量灵活配置,范围涵盖 64kWh 至 257kWh,多重安全防护,满足工业级高可靠储能需求。

– High-voltage safe energy storage: The battery system adopts a high-voltage safety architecture with flexible capacity configuration ranging from 64kWh to 257kWh, featuring multiple safety protections to meet industrial-grade high-reliability energy storage requirements.

– 模块化高扩展:系统采用模块化设计,可根据企业生产规模扩张与负荷增长,灵活扩容储能容量与逆变器功率,适配全生命周期能源需求。

– Modular and highly scalable: The system adopts a modular design, allowing flexible expansion of energy storage capacity and inverter power according to enterprise production scale expansion and load growth, adapting to full-life-cycle energy needs.

-动态储能优化:以 “自发自用,动态储能” 为核心,结合分时电价与生产计划,动态调整储能策略,实现用电成本最优与能源利用效率最大化。

-Dynamic energy storage optimization: Centered on “self-consumption and dynamic energy storage”, the system dynamically adjusts energy storage strategies in combination with time-of-use electricity prices and production plans to achieve optimal electricity costs and maximum energy efficiency.

Application Scenarios:

– 高能耗制造企业:适配 60kW-125kW 逆变器、128kWh-257kWh 电池,实现削峰填谷、自发自用,降低生产用电成本,保障关键设备连续运行。
– High-energy-consuming manufacturing enterprises: Adapts to 60kW-125kW inverters and 128kWh-257kWh batteries, achieving peak shaving and valley filling, self-consumption of PV power, reducing production electricity costs, and ensuring continuous operation of key equipment.

– 工业园区 / 产业集群:适配 30kW-100kW 逆变器、64kWh-200kWh 电池,构建园区级光储系统,实现园区能源自治,提升整体能源利用效率。

– Industrial parks/industrial clusters: Adapts to 30kW-100kW inverters and 64kWh-200kWh batteries, building park-level PV-storage systems to achieve park energy autonomy and improve overall energy efficiency.

– 电网薄弱区域工业项目:适配 50kW-125kW 逆变器、100kWh-257kWh 电池,在电网断电时提供应急供电,保障生产连续性,降低停电损失。

-Industrial projects in grid-weak areas: Adapts to 50kW-125kW inverters and 100kWh-257kWh batteries, providing emergency power supply during grid outages to ensure production continuity and reduce outage losses.

-典型场景示例:对于一个负荷 80kW、光伏装机 200kW 的制造企业,采用 100kW 逆变器 + 200kWh 电池方案,可实现白天光伏自发自用,低谷电价时段充电、高峰时段放电,年节约电费超 30 万元。

– Typical scenario example: For a manufacturing enterprise with an 80kW load and 200kW PV installation, a 100kW inverter + 200kWh battery solution enables self-consumption of PV during the day, charging during low-price periods and discharging during peak-price periods, saving over 300,000 yuan in annual electricity costs.

Application Value:

– 实现用电成本优化:通过削峰填谷、自发自用,结合分时电价策略,显著降低企业生产用电成本,提升经济效益。
– Optimize electricity costs: Through peak shaving and valley filling, self-consumption of PV power, and time-of-use electricity price strategies, significantly reduce enterprise production electricity costs and improve economic benefits.

– 保障供电自主可靠:在电网断电、光伏出力波动等突发情况下,提供应急供电,保障关键生产环节连续运行,降低停电损失。

– Ensure independent and reliable power supply: Provide emergency power supply during sudden situations such as grid outages and PV output fluctuations, ensuring continuous operation of key production processes and reducing outage losses.

– 助力能源转型落地:高扩展性与模块化设计,适配企业全生命周期能源需求,稳步推进低碳运营与绿色转型,实现可持续发展。

– Drive energy transition: High scalability and modular design adapt to the full-life-cycle energy needs of enterprises, steadily advancing low-carbon operation and green transformation for sustainable development.

– 提升能源使用效率:减少能源转换损耗,最大化利用光伏能源,降低弃光率,实现能源利用效率与经济效益双重提升。

– Improve energy efficiency: Reduce energy conversion loss, maximize PV energy utilization, reduce curtailment rate, and achieve dual improvements in energy efficiency and economic benefits.

Technical parameters of the solution