Austria Farm Solar Power Project
Case introduction

CASE

Case

Austria Farm Solar Power Project

The photovoltaic system provides clean energy to the farm, reducing operational costs while promoting sustainable development and achieving an organic integration of agriculture and renewable energy.



Project Introduction

This project is located on a family farm in Austria, where a photovoltaic system is installed to provide clean energy, reduce operational costs, and promote sustainable development, achieving an organic integration of agriculture and renewable energy.

Project Details

The project covers part of the farm’s vacant land and includes 300 monocrystalline silicon solar panels. The system adopts a distributed generation model, equipped with intelligent inverters to convert DC power into AC power for farm use. The excess power is fed back into the local grid.

Applications

The system meets the farm’s daily electricity needs, including lighting, irrigation equipment, and livestock farming equipment.

It provides stable power to the farm’s refrigeration facilities and food processing equipment, ensuring the quality of agricultural products.

Main Equipment

Monocrystalline Silicon Solar Panels: High-efficiency power generation with excellent photoelectric conversion efficiency.

Intelligent Inverters: Ensure power conversion efficiency and system stability.

Energy Storage Batteries (Optional): Store excess energy for use during nighttime or cloudy days.



Project advantages

Significant Economic Benefits
Significant Economic Benefits
The system reduces the farm's electricity costs, with excess power fed back into the grid to generate additional income. The payback period for the investment is short.
Outstanding Environmental Benefits
Outstanding Environmental Benefits
The annual power generation can reduce carbon dioxide emissions, equivalent to the carbon offset of planting 5,000 trees.
High Energy Independence
High Energy Independence
The system reduces reliance on the traditional grid, ensuring stable power supply for the farm and protecting it from power supply fluctuations.
Strong Technological Reliability
Strong Technological Reliability
The project uses mature photovoltaic technology and equipment, with low maintenance costs and a long lifespan, ensuring the system's long-term stable operation.

Core products

Satellite Communication Energy Cabinet
Satellite Communication Energy Cabinet

The Satellite Communication Energy Cabinet is a PV energy storage cabinet from Highjoule Technology Group designed specifically for off-grid satellite communication sites. The system consists of PV modules, an MPPT solar controller, an LFP (Lithium Iron Phosphate) battery pack, a thermal management system, and a power distribution unit, forming a complete off-grid PV generation and energy storage system that provides stable power to satellite communication base stations. The system adopts a modular design and can be efficiently operated and maintained via local and remote monitoring. It supplies 48V DC and AC 120V–200V power to satellite and other industry communication equipment, supporting floor-standing and pole-mount installation.

Outdoor Battery Cabinet
Outdoor Battery Cabinet

The Outdoor Battery product line is centered on green low-carbon, high-efficiency, and intelligent coordination principles. It covers both indoor and outdoor configurations, with lithium batteries (or lead-acid batteries) forming battery energy storage cabinets. Each cabinet also houses environmental sensors, battery circuit breakers, battery cables, and thermal management accessories to form an integrated battery cabinet.

Hybrid Power System
Hybrid Power System

The Site Hybrid Power System is a next-generation multi-energy integrated power supply for 4G/5G base stations, communication equipment rooms, edge data centers, and outdoor compact sites. It breaks the traditional “single grid input, single DC output” architecture to achieve multi-source energy input + multi-voltage output + intelligent coordinated dispatch. At the site level, it accommodates grid power, PV, energy storage, diesel generators, and other sources, delivering a highly reliable, efficient, and simply deployable power framework for 5G equipment, transmission equipment, and IoT loads. Power range: 6 kW–36 kW; available in both 3U and 1U circuit breaker configurations.

Stacked-PV MPPT Solar Controller
Stacked-PV MPPT Solar Controller

The Stacked-PV MPPT Solar Controller is specially developed for PV capacity expansion at base station sites. Using a series-connection scheme, the system consists of PV modules, a stacked-PV MPPT controller, and a DC meter. Each PV string is series-connected to the controller, which steps down the module output voltage to −48V and injects it onto the rectifier output busbar to supply DC loads. Designed for communication base stations, it supports wall-mount and pole-mount installation. The product is available in outdoor and rack-mount versions.

Outdoor Hybrid Energy Cabinet
Outdoor Hybrid Energy Cabinet

The products deeply integrate AC/DC conversion, multi-energy intelligent scheduling, energy storage charge/discharge management, and remote monitoring technologies. Flexibly deployable in indoor equipment rooms, outdoor 5G base stations, and remote sites, they ensure uninterrupted power for communications and critical loads while maximizing green energy consumption, reducing energy use and carbon emissions, and upgrading traditional power supply to a clean, intelligent, integrated site energy solution.

Solution

Professional Integrated "Turnkey" Service System

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