Abstract: A smart terraponic gardening system is provided that includes a first reservoir configured to contain a liquid and a second reservoir configured to contain a growing medium for a plant or fungus. A light source and a watering system are provided. A control unit is in electronic communication with the light source and the watering system. At least one sensor of a camera, a temperature sensor, or a humidity sensor is provided in signal communication with the control unit to adjust growing conditions based on the sensor output. The control unit is programmed to maintain growing conditions for a specific plant or fungus growing in the second reservoir.
Abstract: A smart terraponic gardening system is provided that includes a first reservoir configured to contain a liquid and a second reservoir configured to contain a growing medium for a plant or fungus. A light source and a watering system are provided. A control unit is in electronic communication with the light source and the watering system. At least one sensor of a camera, a temperature sensor, or a humidity sensor is provided in signal communication with the control unit to adjust growing conditions based on the sensor output. In some instances, the control unit is programmed to maintain growing conditions for a specific plant of fungus growing in the second reservoir. The program in some instances is associated with a library of target plants or fungi, and their associated idealized growing conditions.