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  1. Home
  2. Products
  3. ePlant TreeTag
ePlant TreeTag logo

ePlant TreeTag

TreeTag System Monitors Urban and Natural Forests with Real-Time Data

ePlant TreeTag featured image

The rapidly growing field of environmental monitoring has given rise to innovative solutions for tracking plant health and ecosystem dynamics. Among these advancements, ePlant's TreeTag system represents a significant breakthrough in real-time tree monitoring, combining sophisticated sensor technology with robust data management capabilities. This comprehensive introduction will explore the technical foundations of the TreeTag system, from its sensor-equipped devices to the cloud-based infrastructure that processes and analyzes the resulting data. We will also examine the practical aspects of TreeTag installation and maintenance, as well as the comprehensive suite of tools provided to users through ePlant's app and data portal. By understanding the technical capabilities and operational principles of this system, we can appreciate its potential to transform how we monitor and manage our urban and natural forests.

Data Collection and Sensors

The TreeTag system equips plants with miniature environmental sensing devices that transmit comprehensive data to scientists and managers. Each TreeTag includes a dendrometer for measuring radial growth, an accelerometer for monitoring stability, and sensors for temperature and humidity. These instruments work in concert to provide detailed insights into tree physiology and environmental conditions.

Data transmission ranges from 1 to 3 miles, leveraging 900 MHz radio frequencies optimized for long-range communication while consuming minimal power. Gateway devices connect TreeTags to the ePlant cloud via both Ethernet and cellular networks, ensuring reliable data delivery. The system's robust design allows it to store up to a year's worth of data locally on the device, preserving information during potential connectivity outages.

The TreeTag mounts easily onto trunks or branches with a diameter greater than 1.0 inch using a simple mounting screw and drilled hole. For optimal performance, northern hemisphere installations typically position the sensor on the north-facing side of the tree to minimize direct sunlight exposure. Despite its compact size - measuring just 3.5 inches and weighing a few ounces - each sensor unit can operate for over a decade, even in dense-canopy environments.

The ePlant App provides essential management tools for activating and monitoring TreeTags, while the Data Portal offers advanced visualization capabilities. Users can track multiple data streams from their sensors, compare metrics, and export data in CSV format for detailed analysis. This comprehensive suite of tools enables researchers and managers to unlock valuable insights from their plant monitoring data.

Communication Infrastructure

The TreeTag system utilizes a robust 900 MHz radio frequency for long-range communication, enabling data transmission up to several miles between individual sensors and the ePlant cloud infrastructure. This frequency range provides an optimal balance of transmission distance and environmental stability, ensuring reliable communication even in dense-canopy settings.

Data is relayed through specialized gateway devices that interface between the TreeTags and external networks. These gateways support both Ethernet and cellular connections, providing multiple pathways for data transmission and ensuring continuous connectivity. The gateway technology employs LoRaWAN (Long Range Wide Area Network) protocols to facilitate efficient data handling, capable of managing communications from thousands of TreeTags simultaneously.

The system incorporates several technical features to enhance reliability and performance. Built-in acknowledgment protocols ensure data integrity during transmission, while local storage capabilities allow TreeTags to retain up to a year's worth of information. This data caching mechanism enables continuous monitoring even during periods of network connectivity loss, preserving critical data streams for later analysis.

The radio system supports sensor data collection every five minutes, with uplink transmissions occurring every 20 minutes. This frequency allows for detailed temporal analysis while maintaining minimal data overhead. The gateway infrastructure is designed to handle simultaneous communications from multiple TreeTags, with each gateway capable of managing thousands of devices at once.

For deployment flexibility, the system supports both indoor and outdoor gateway configurations. These devices require either Ethernet or cellular connectivity, depending on the available infrastructure. The overall architecture has been engineered to scale seamlessly, accommodating deployment across diverse environments while maintaining consistent performance.

Installation and Mounting

ePlant has developed a flexible mounting system that enables TreeTags to be installed on a range of tree and woody vine species. The device mounts by drilling a 1.5-inch (4 cm) hole and attaching the sensor with a dedicated mounting screw, a process that requires minimal bark disruption while providing secure attachment.

Ideal mounting positions vary based on the measurement objectives. Branch mounting captures localized canopy effects, while trunk mounting provides broader canopy impact data. For optimal temperature readings in the northern hemisphere, sensors should be positioned on the north-facing side of the tree. This placement strategy helps minimize direct sunlight exposure while enabling accurate environmental data collection.

The TreeTag system utilizes a hybrid solar power and capacitor storage solution, enabling continuous operation over a decade even in dense-canopy environments. The device requires minimal maintenance, with automated firmware updates deployed via the wireless radio system. Each TreeTag includes a three-axis accelerometer for stability monitoring, a thermometer, and hygrometer to assess local environmental conditions. Together, these sensors enable comprehensive tree physiology and external condition analysis, supporting informed management and research decisions.

Data Management and Visualization

The ePlant Data Portal serves as the central hub for managing and visualizing TreeTag data, offering users and administrators powerful tools for data analysis and interpretation. Through this user-friendly interface, users can select specific TreeTags and sensor types to create customized data visualizations that reveal hidden patterns and insights within their monitoring network. The system supports advanced graphing capabilities, allowing users to plot multiple data streams simultaneously and compare metrics across different plants or locations.

Data export functionality enables seamless integration with other tools and analysis platforms. Users can easily specify the devices, data streams, and time ranges for their export requests, downloading files in CSV format for detailed analysis. The Data Portal also provides developers with direct access to an Application Programming Interface (API), facilitating automated data integration with existing systems and expanding the potential applications of TreeTag data.

The platform offers several organizational features to help users manage their monitoring network. Users can view comprehensive lists of their TreeTags and associate them with specific plants or sites. The system allows for creating custom groups based on geographic location, species type, or other criteria, enabling more effective data segmentation and analysis. Regularly updated firmware is deployed over the air through the portal, ensuring that all devices remain synchronized with the latest system features and improvements.

Users can monitor the status of their TreeTags through the Data Portal interface, checking connectivity, battery strength, and other key performance indicators. The system provides detailed status information for each sensor, including error messages and other diagnostic data that can help users troubleshoot connectivity issues or hardware problems. This monitoring capability helps ensure that data collection remains robust and reliable, even in challenging environmental conditions.

Company Background and Technical Team

Graham L. Hine serves as the company's Chief Technology Officer and chief inventor, bringing a wealth of experience in robotics and sensing platforms to the team. As a co-founder and director of ePlant, Hine's technical expertise has been crucial in developing the TreeTag system's underlying technologies.

The founding team draws from diverse professional backgrounds, with several key members bringing extensive experience in technology development and business operations:

David Walker, the VP Hardware Engineering, brings over two decades of experience in hardware and electronics development, having led multiple engineering organizations across various companies. His expertise has been essential in developing the robust and cost-effective hardware platform that forms the foundation of the TreeTag system.

Financial leadership comes from Bruce Kamolnick, the Chief Financial Officer (CFO), who brings 15 years of experience as a VP of Finance and key company administrator. His role has focused on the non-engineering/sales aspects of company management, including human resources, insurance, and payroll. Co-founders Joseph Rizzi and CC Parsons bring additional finance and operations expertise from their backgrounds in venture capital and agriculture.

The team's technical foundation traces back to Liquid Robotics, where co-founder Graham L. Hine served as CEO after the company's acquisition by Boeing. This experience has provided the team with valuable lessons in building successful technology companies from the ground up.

The company's management structure supports both technical innovation and practical deployment. In-field operations and customer support are led by CC Parsons, who combines technical expertise with extensive experience in organic agriculture and youth education. His role ensures that the technology remains accessible and valuable to a diverse range of users, from academic researchers to urban arborists.

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