Introduction of case studies for the industrial storage system LUVIS | We present examples of utilizing subsidies to achieve BCP measures, reduce electricity costs, and lower environmental impact.
Introducing the industrial storage battery system LUVIS, we present a case study that achieved BCP measures, reduction of electricity costs, and environmental impact reduction. ■ Utilization of the Ministry of the Environment's Subsidy for Sewage Treatment Systems We utilized the "Subsidy for Carbon Dioxide Emission Reduction Measures (Promotion Project for Decarbonization of Sewage Treatment Systems)" for the replacement work of aging sewage treatment systems. It was successfully adopted. This subsidy is a support system aimed at achieving long-term CO2 reduction effects by replacing sewage treatment equipment and the main body of the sewage treatment system with energy-efficient facilities that consume less energy. ■ Rising Electricity Costs Faced by Households and Companies The introduction of industrial storage batteries is highly effective for reducing electricity costs and implementing energy-saving measures at facilities. It serves as an effective solution for cost reduction, environmental impact issues, and disaster preparedness. ■ Backup Load - Complete sewage treatment system (pumps, blowers, etc.) ■ Deciding Factor for Implementation By choosing the industrial storage battery system LUVIS, we were able to meet the client's requests for reducing electricity costs and CO2 emissions, as well as addressing power outage measures for sewage treatment systems at a low cost. *For more details, please refer to the PDF materials or feel free to contact us.
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■Industrial Energy Storage System LUVIS This industrial energy storage system pursues the best balance of efficient output and storage capacity while keeping installation costs down with a reasonable system design. It enables the reduction of electricity costs through self-consumption in conjunction with solar power generation and provides measures against power outages during disasters. With a storage capacity of 61.4 kWh and a rated output of 30 kW, it is equipped with a function to automatically switch between grid connection and autonomous operation, making it ideal for microgrids. It offers models compatible with DC links that allow direct input from solar power generation systems and AC link-compatible models that work in conjunction with other companies' solar power inverters. 【Applications】 ● Power outage measures and BCP (Business Continuity Planning) The combination of renewable energy facilities and industrial storage batteries is highly effective as a "disaster response." Even if a power outage lasts for an extended period, it is possible to respond with self-generation and storage batteries until recovery. This provides "peace of mind and safety" in preparation for unexpected power outages and contributes to external "credibility and trust." *For more details, please refer to the PDF document or feel free to contact us.*
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【Backup for Three-Phase Power Supply Equipment】 In the sewage treatment plant replacement work due to the aging of the facility's sewage treatment tank, we utilized the "Subsidy for Carbon Dioxide Emission Reduction Measures (Decarbonization Promotion Project for Sewage Treatment Systems)." This enables BCP measures for the sewage treatment system. For BCP-purpose storage batteries, please consult Conex Systems. *For more details, please refer to the PDF document or feel free to contact us.*
Detailed information
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● You can save on electricity costs. Industrial storage batteries, in conjunction with renewable energy devices such as solar power generation, significantly enhance energy-saving effects. Charge the storage battery during low-cost time periods (mainly at night). By using electricity from the charged storage battery during high-cost time periods, you can save on electricity bills.
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●Utilization of Clean Energy Reduction of CO2 emissions through integration with solar power generation. Enhancing corporate value while considering the environment. The introduction of storage batteries is highly effective as an energy-saving measure for companies. By combining with solar power generation, it significantly reduces energy consumption through energy creation. It becomes possible to consume the "generated electricity" from renewable energy for self-consumption.
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The introduction of storage batteries enables the optimal operation of renewable energy facilities, making it possible to pursue decarbonization efforts during normal times. To achieve a decarbonized society, renewable energy is essential. However, due to the variability of power generation output influenced by weather conditions, it is necessary to store renewable electricity for stable supply. In this context, large-capacity storage batteries are indispensable. The government's decarbonization policy has clearly indicated a commitment to supporting the utilization of renewable energy combined with storage batteries, and as efforts to achieve carbon neutrality by 2050 accelerate, the introduction of storage batteries contributes to decarbonization initiatives.
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●Measures against rising electricity costs with renewable energy equipment and industrial storage batteries We will introduce a case where the industrial storage system LUVIS was implemented to achieve BCP measures, reduce electricity costs, and lower environmental impact. ●Backup Load - Complete purification tank system (pumps, blowers, etc.) By choosing the industrial storage system LUVIS, we were able to meet the client's requests for reducing electricity costs and CO2 emissions, as well as implementing backup measures for the purification tank at a low cost.
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● Collaboration between industrial storage batteries and self-consumption solar power generation Self-consumption solar power generation refers to a system that uses electricity generated from solar power within the company rather than selling it to the power company. By combining self-consumption solar power generation with industrial storage systems, it enables effective utilization of renewable energy for corporate decarbonization efforts, reduction of CO2 emissions and electricity costs, and mitigation of environmental impact. This brings benefits such as CSR (Corporate Social Responsibility) and adds value to energy conservation and BCP measures (ensuring power supply during emergencies). As a cost-effective solution, interest is currently growing among companies.
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●Impact of Electricity Price Increase on Business Management Since 2021, electricity prices have remained high. The manufacturing and retail industries, which have significant annual electricity costs and a high proportion of total costs, are particularly affected, especially large enterprises. As a result, more companies are considering further energy-saving efforts and the introduction of energy-efficient facilities and equipment. Various factors, including rising fuel prices due to global circumstances and the continuously increasing renewable energy surcharge, are expected to lead to further increases in electricity costs in the future. It is important to take early action to mitigate risks and implement measures against rising electricity prices.
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●Backup Power Measures During Power Outages (BCP Measures) One of the major issues during disasters is the interruption of power supply. When formulating a BCP, it is necessary to consider securing power during emergencies. Recovery from damage caused by disasters takes a certain amount of time. By securing emergency power with batteries, businesses can continue their operations. Ensuring power supply is the first step in BCP measures.
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●Efforts to Improve Renewable Energy Self-Sufficiency Rate Renewable energy not only helps improve energy self-sufficiency but also contributes to the reduction of greenhouse gas emissions. Japan has set a goal to achieve "carbon neutrality" by 2050, and as global warming accelerates, efforts to reduce CO2 emissions and strengthen energy conservation in facilities are becoming increasingly common. The trend in the business scene, driven by the acceleration of ESG investment, promotes environmental consideration activities and leads to energy conservation and SDGs management.
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● Backup for three-phase power supply equipment is possible Power outages can occur due to disasters. In some facilities, there is also a possibility of simultaneous water outages. This is because electric pumps are used to supply water. It can be said that this is one of the essential pieces of equipment that would cause problems if it stops during a disaster, as it is used in a wide range of facilities from buildings and hotels to food factories. The industrial storage battery system LUVIS can be used for power equipment such as purification tank systems with a three-phase three-wire output of 30kW.
Line up(2)
| Model number | overview |
|---|---|
| LB0610GS-AC | AC link compatible model |
| LB0610GS-DC | DC link compatible model |
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"Transforming energy infrastructure with innovative energy storage technology" We aim to promote regional energy independence and contribute to the creation of a clean and resilient future energy infrastructure. CONNEXX SYSTEMS is a startup company that, with this vision in mind, challenges the innovation of energy storage technology that far exceeds conventional wisdom. Energy storage is the "bond" that connects today's energy to the energy of the future. CONNEXX SYSTEMS contributes to the creation of a safe and secure future society through innovative energy storage solutions. CONNEXX SYSTEMS primarily engages in the development, manufacturing, sales, and planning of next-generation energy storage systems. Additionally, we provide system integration services. Through the accumulation of our unique technologies, we continue to evolve our energy storage systems to offer to our customers.

