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Category "News EN"

16Mar

Nano sensorics electrical submeter impacts energy saving, reduction of the CO2 emissions

by Povilas

 Nano sensorics launched electrical submeter PoweSense based on LoRaWAN and M-Bus interface.

The benefits are as follows:

1. Energy Management and Efficiency

  • Detailed Consumption Data: Submeters provide granular data on energy consumption at different levels (e.g., individual apartments, floors, departments). This detailed information helps identify energy use patterns and inefficiencies.
  • Targeted Energy Savings: With precise data, building managers can implement targeted energy-saving measures. For instance, they can adjust HVAC settings, lighting, and equipment usage based on actual consumption patterns.

2. Cost Savings

  • Fair Billing: Submeters allow for accurate billing based on actual usage rather than estimates. This can lead to significant cost savings, especially in multi-tenant buildings, as tenants are billed for their specific energy consumption.
  • Incentivizing Energy Conservation: When tenants or departments are aware of their actual energy consumption and costs, they are more likely to adopt energy-saving practices, leading to overall cost reductions.

3. Improved Accountability and Transparency

  • Tenant Accountability: Submetering holds tenants accountable for their energy use, encouraging more responsible behavior. This can be particularly important in residential buildings, commercial offices, and industrial settings.
  • Transparency: Providing clear, transparent data on energy usage can improve tenant satisfaction and trust. It can also facilitate better communication between building managers and occupants regarding energy policies and initiatives.

4. Sustainability and Environmental Impact

  • Reduced Carbon Footprint: By enabling more efficient energy use, submeters contribute to reducing the overall carbon footprint of a building. This aligns with sustainability goals and regulatory requirements.
  • Supporting Renewable Energy Integration: Submeters can help manage and optimize the use of renewable energy sources by providing detailed consumption data that can be used to balance loads and reduce reliance on non-renewable sources.

5. Operational Benefits

  • Maintenance and Load Management: Submeters can help identify when and where maintenance is needed by highlighting unusual consumption patterns. They can also aid in load management by providing data on peak usage times.
  • Future Planning: The data collected through submeters can inform future planning and upgrades, such as the installation of more energy-efficient systems or the integration of new technologies.

6. Case Studies and Real-World Examples

  • Commercial Buildings: In office buildings, submeters have been shown to reduce energy costs by identifying inefficient lighting and HVAC systems, leading to targeted upgrades.
  • Residential Complexes: In apartment buildings, submeters have helped reduce overall energy consumption by encouraging tenants to adopt energy-saving behaviors.
  • Industrial Facilities: In manufacturing plants, submeters have provided critical data for optimizing production processes and reducing energy waste.
1Mar

Nano sensorics participate in the Leap24 exibition, Saudi Arabia

by Povilas

Nano sensorics participate in the Leap24 exhibition Riyadh Exhibition and Convention Center, Malham, Saudi Arabia

Meet with us to enable the transformation of  your industrial, municipal asset!

 

Convert your asset into a secure, sustainable with the cutting-edge smart LoraWAN IoT Sensors!

Our sensors enables significant positive impact to the health and energy saving, security:

✅ PowerSense-L is a electricity submeter measurement for the electricity consumption measurement, up to 1600 A;
✅ Vapeless- complex vape gas detection sensor and many more;
✅ Ampsense-measurement of electrical consumption anomalies, to 1000 A;
✅ Carbonless- Co2 and t+h sensor;
✅ Vocless – VOC harmful particles t+h sensor;
✅ Temphu – t+h sensor;
✅ BRIDGE AI.- complex infrastructure bridge health measurement sensor.

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14Jan

Nano sensorics develops an advanced, high-precision vaping gas monitoring sensor

by Povilas

The aim of the project:

The purpose of the project (published publicly on the EU investment website esinvesticijos.lt)

Development, testing and development of a high-precision sensor for low intensity monitoring of e-cigarette emissions.

 

Project description:

The project “Creation, testing and development of a sensor for monitoring gas emitted by electronic cigarettes” will be carried out by UAB “Nano sensors” (legal entity code: 305682967, address: Elektrėnų st. 7, LT-51193 Kaunas). UAB “Nano sensorics” conducts scientific research and experimental development in the field of smart Internet of Things (IoT) sensors. The company’s products directly influence the efficient use of energy resources and the reduction of carbon dioxide emissions. Sustainable construction, industrial sensors based on promising interfaces such as LoRaWAN, 5G are proposed.

The effects of e-cigarettes on others are questionable and controversial. Due to their possible impact in society, many questions arise regarding the change in the attitude of young people towards smoking and the consequences of passive vaping. A very significant factor in the formation of vaping habits is the possibility to vape cigarettes in places where is prohibited, thus enabling subjects to vape without restrictions.

E- vaping restrictions are enacted to reduce the prevalence of smoking, and the unlimited use of e-cigarettes returns the public health gains achieved up to that point to previous levels.

This could reduce successful quit attempts, increase tobacco use among youth and adults, and encourage quitters to relapse.

With the project, we aim to create a particularly accurate sensor for monitoring the gas emitted by electronic cigarettes at low vapor intensity. This sensor will use advanced algorithms to detect extremely high variety of the e-cigarette smoke consistencies and correlate the detected e-cigarette gas consistency correlations to determine the e-cigarette smoke detection intensity of a wide intensity range.

 

The main technical parameters of the advanced sensor:

Measurement parameters: vape index, CO, CO2, VOC; aggression level index;

Measuring diameter up to: 3.5-4 m;

Integrated advanced calculation algorithms (intellectual algorithms -AI);

Communication interfaces: 5G, LoRaWAN EU, US, AU, option NB-IoT;

Power supply: l5-12VDC, AA batteries to ensure communication interface operation.

 

 

Project is implemented until: 2024.12.31

Project financed by:

 2022–2030 METŲ PLĖTROS PROGRAMOS VALDYTOJOS LIETUVOS RESPUBLIKOS SUSISIEKIMO MINISTERIJOS SUSISIEKIMO PLĖTROS PROGRAMOS PAŽANGOS PRIEMONĖS  NR. 10-001-05-04-01 „DIDINTI SUSISIEKIMO SISTEMOS KURIAMĄ VERTĘ IR INFRASTRUKTŪROS PANAUDOJIMO EFEKTYVUMĄ“ VEIKLĄ „SKAITMENINIŲ TECHNOLOGINIŲ SPRENDIMŲ, KURIEMS ĮGYVENDINTI BŪTINAS 5G RYŠYS, KŪRIMAS, TESTAVIMAS IR VYSTYMAS“

Projekto kodas: Projekto kodas 08-006-K-0004