4G Connectivity · Custom Development for Enterprises

4G Greenhouse Control Terminal Development

For greenhouse equipment manufacturers, agricultural automation integrators and park operating companies, it connects temperature and humidity, light and carbon dioxide sensors, and develops fan, shading, roller blind interfaces, local rules and remote configuration.

Agricultural irrigation and breeding equipmentSoftware, hardware and system integration testingPhased delivery

SERVICE OVERVIEW

Service overview

4G Greenhouse control terminal development is aimed at enterprise projects that "lack unified management of the greenhouse environment and execution equipment". Winge Technology carries out the docking of terminal hardware, embedded software and business systems based on existing equipment and target functions, forming design data and programs that can be used for subsequent integration testing, deployment and maintenance.

  • Device and interface access
  • Product business functions
  • Platform and data connection
  • Exception handling and operational constraints

DEVELOPMENT SCOPE

Development services

Development Scope

01

Device and interface access

Connect to temperature and humidity, light and carbon dioxide sensors, and connect to the start and stop, limit and status feedback of fans, roller blinds and sunshade equipment.

02

Product business functions

Connect temperature, humidity, light and carbon dioxide sensors, and develop fan, sunshade, roller blind interfaces, local rules and remote configuration.

03

Platform and data connection

Combined with the business link of sensor → local collection and control → 4G → remote configuration and alarm → job record, the device identity, data fields, update time, abnormal status and result confirmation method are defined.

04

Exception handling and operational constraints

Different actuators need to define their stroke, limit, interlock and manual priority respectively; parameter changes must record the version and effective status.

Data and Operational Workflow

Environment sampling → Local conditions and interlock judgment → Execute device action → 4G upload status → Enterprise platform setting policy and viewing records.

The device side, communication side and platform side retain necessary status and logs respectively. Project integration testing is checked with actual equipment data and execution results, and network connection status and business completion status are recorded separately.

Project Inputs

  • Existing device models, interface and wiring diagrams, licensing agreements, data samples and available codes.
  • Business processes and parameters: environmental thresholds, actuator travel limits, interlocks and manual priorities.
  • Target location, operator, SIM/APN, power supply, installation method and equipment size.
  • Existing platform interfaces, user roles, development modules, number of prototypes and planned nodes.

Deliverables and Acceptance

DeliverablesDelivery contentVerification method
product realizationHardware design data, prototypes or existing equipment modification data involved in the project, as well as corresponding firmware and interfacesCheck the sampling value and rule triggering conditions.
Business integration testingData fields, status definitions, platform adaptation procedures and business integration testing recordsTest limit, interlock and manual automatic switching.
Version and test dataTarget hardware and software versions, build or deployment instructions, parameter configurations and test logsVerify parameter consistency between offline operation and recovery.

First confirm the scope and key functions, then complete prototype or software development, system integration testing and stage acceptance. The acceptance conditions list the prototype, version, environment, duration and passing threshold; source code, design documents, third-party licenses, materials, traffic, cloud resources and on-site work are agreed separately.

Frequently Asked Questions

Does the greenhouse control have to keep 4G online?

The confirmed control rules can be saved locally on the terminal, and 4G is responsible for remote management and data return. The rules that can continue to be executed during a disconnection and the operations that must be suspended need to be determined during the design phase.

Can I entrust only some functions of the greenhouse control terminal?

The device interface, terminal program, 4G communication and platform integration testing can be split based on the existing R&D foundation. Please provide existing information and target boundaries, first check "environmental thresholds, actuator travel limits, interlocks and manual priorities", and then clarify the deliverables and interface responsibilities of each module.

How are costs and cycle time assessed?

Split the workload based on target devices, interfaces, existing data, and verification criteria. This project focuses on checking environmental thresholds, actuator travel limits, interlocks and manual priorities; when prototypes, on-site integration testing or third-party platform cooperation are required, the corresponding costs, prerequisites and nodes will be listed separately.

PROJECT DELIVERY

From requirements to delivery

01

Requirements review

Confirm business goals, existing devices and systems, interfaces and deployment conditions.

02

Scope and solution

Review technical dependencies and agree responsibilities, deliverables and acceptance methods.

03

Development and integration

Implement the agreed scope and integrate with the target devices and systems.

04

Testing and issue resolution

Run agreed test cases and record issues, fixes and regression results.

05

Handover and acceptance

Deliver the agreed work, build configurations, interface documentation and test records.

06

Maintenance and changes

Handle version maintenance and assess new requirements within the agreed support scope.

Define Devices, Interfaces and Deliverables

Please provide the target functions, existing equipment information and usage environment of the 4G greenhouse control terminal, focusing on environmental thresholds, actuator travel limits, interlocks and manual priorities, so as to facilitate the determination of technical scope and stage delivery arrangements.

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