A large-capacity, compact industrial energy storage system <BLP> that corresponds to the operation of the energy storage system defined in the resilience ZEB demonstration project.
A large-capacity, compact industrial storage system compatible with the operation of the storage system defined in the Resilience ZEB demonstration project. ■ It is expected to reduce installation costs through subsidies limited to public facilities. A project promoting the introduction of autonomous and decentralized energy equipment, such as evacuation facilities, that simultaneously realizes regional resilience and decarbonization. Support for the introduction of renewable energy generation and storage systems in public facilities designated as evacuation facilities and disaster prevention bases. If introduced through a system that incurs no initial costs, priority selection is given, with subsidy rates of one-third for prefectures, ordinance-designated cities, and specified cities; one-half for solar power generation and cogeneration systems in municipalities; and two-thirds for remote islands. (Source: Ministry of the Environment website) ■ Features and Strengths ● Compatibility with PV Thanks to the pseudo-grid connection function, normal power generation is possible even during power outages without the PV power conditioner entering autonomous operation. ● Constructability Designed in a compact size that allows outdoor installation without the need for a separate enclosure, featuring a stainless steel casing with IP54 equivalent waterproof and dustproof properties. ● Expandability Up to four units can be connected in parallel within the same system, with a maximum output of 120kVA (30kVA output for each of the four during autonomous operation) / 294.8kWh.
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basic information
■Large-capacity industrial storage system - Solutions for storage batteries and solar power generation With a rated output of 30kW and a storage capacity of 73.7kWh, it provides peace of mind during prolonged power outages in emergencies. Compact size with an integrated battery enclosure and power conditioner. Achieves both power supply during emergencies and daily self-consumption. ■High cost performance - Achieves a price of about 2/3 to 1/2 compared to equivalent domestic products (Price per kWh) ■Compatible with the operation of storage systems defined in the Resilience ZEB demonstration project The industrial storage system <BLP> is compatible with the operation of storage systems defined in the Resilience ZEB demonstration project, contributing to planning that integrates environmental and crisis management, as well as the realization of efficient facility operation and energy solutions aimed at ZEB.
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Applications/Examples of results
■ The introduction of storage batteries enables 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, since power generation output is affected by weather conditions, it is necessary to store renewable energy electricity to ensure a stable supply from these unstable power sources. In this context, large-capacity storage batteries are indispensable. The government's decarbonization policy has clearly indicated support for the combined use of renewable energy facilities and storage batteries. ■ Future storage batteries will be environmentally friendly and resilient to disasters. As global warming accelerates, there is a growing demand for enhanced energy conservation in offices and facilities. To achieve both "environmentally friendly and disaster resilient," the introduction of renewable energy and storage batteries is essential. By combining solar power generation with storage batteries, we can effectively utilize natural energy sources. This contributes to CO2 reduction and significantly decreases energy consumption through energy creation. Furthermore, in the event of a power outage during a disaster, surplus electricity can be used, enabling "self-sufficient energy security," which allows for preparedness in emergencies as part of business continuity planning (BCP). This can lead to proactive measures for ESG investment and CSR activities, adding extra value to energy-saving and BCP initiatives through the introduction of storage batteries.
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●You can save on electricity costs Industrial storage batteries significantly enhance energy-saving effects when integrated with renewable energy devices such as solar power generation. Charge the storage battery during low-rate hours (mainly at night). By using electricity from the charged storage battery during high-rate hours, you can save on electricity costs.
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●Cost reduction through self-consumption The feed-in tariff has been declining year by year, and by prioritizing the electricity generated for "self-consumption" rather than selling it, you can reduce the amount of electricity purchased from the utility company. By reducing electricity costs and operating more cheaply, overall savings can be achieved.
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●Measures for Power Outages During Disasters Even if the power supply is interrupted due to a blackout, if there is electricity stored in a battery, it is possible to continue using electricity, allowing for preparedness as part of a BCP (Business Continuity Plan). The combination of batteries and solar power generation enables a response to prolonged power outages.
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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. Combined with solar power generation, it significantly reduces energy consumption through energy creation. It enables "self-consumption" of the "generated electricity" from renewable energy within the company.
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● Backup for three-phase power supply equipment is possible In corporate offices, factories, apartments, hospitals, and other places, many large electrical devices for business use are employed. These electrical products operate using power supply, which is delivered in three phases. The industrial storage system 'BLP' can supply electricity to three-phase power with an output of 30kW, making it possible to operate large air conditioners, commercial refrigerators, elevators, machine tools, large motors, pumps, and more.
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As part of measures to strengthen local disaster prevention capabilities (National Resilience), schools (closed schools), community centers, and roadside stations are being highlighted as evacuation sites and disaster prevention hubs for residents during disasters. By installing storage batteries at disaster prevention hubs, the local disaster prevention capabilities can be enhanced.
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●Energy-saving measures In factories and warehouses, it is possible to back up manufacturing lines, refrigeration and freezing equipment, wastewater pumps, commercial refrigerators, and industrial pumps. This is very effective as an energy-saving measure for companies. Since peak cut power settings are possible, it contributes to reducing electricity costs. By scheduling, it is also possible to achieve peak shift effects by charging and discharging generated power according to different time periods.
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By introducing storage batteries and optimally operating renewable energy facilities, it becomes possible to pursue decarbonization efforts during normal times. Achieving a decarbonized society requires renewable energy. However, due to the instability 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 support for the utilization of a combination of renewable energy and 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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The electricity generated is shifting from "selling" to "using." There is a growing demand for environmentally conscious initiatives, such as the promotion of renewable energy adoption. Additionally, the selling price of solar power has been declining, leading to more cases where it is more beneficial to use the generated electricity efficiently to reduce electricity costs (self-consumption) rather than selling it. By introducing storage batteries, it becomes possible to consume the generated electricity for one's own use. During normal times, it is possible to flatten the load of electricity consumption through peak cutting and peak shifting, which can lead to reductions in electricity costs and environmental impact.
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Company information
"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.