BESS optimisation

10.9.2025
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BESS optimisation (Battery Energy Storage System) is the process of managing and controlling an energy storage system in order to maximise its performance, durability, safety and economic efficiency. This includes selecting and monitoring battery charging and discharging parameters, cell balancing, state of charge (SOC) and state of health (SOH) management, as well as integration with the power grid and renewable energy sources.

What is BESS optimisation?

BESS optimisation is advanced energy storage system management that uses intelligent algorithms and energy management systems (EMS) to effectively control battery charging and discharging and monitor battery status, extending battery life, increasing energy efficiency and minimising the risk of failure or excessive wear.

BESS optimisation functions

  • Controlling charging and discharging cycles under optimal conditions, protecting batteries before overcharging, excessive discharging, overheating and other damage,
  • balancing cells to maintain an even state of charge, which counteracts battery degradation,
  • predictive maintenance through data analysis and prediction of potential problems,
  • profit maximisation by adjusting system operation to current energy prices and grid needs,
  • integration with grid management systems, enabling flexible response to changes in energy demand and production.

Benefits of BESS optimisation

  • Extended battery life by avoiding harmful operating conditions and evenly utilising cells,
  • greater energy efficiency through optimal energy management and reduced losses,
  • operational safety through continuous parameter monitoring and immediate response to anomalies,
  • reduction of operating costs and increased return on investment through better use of energy resources
  • improved stability and reliability of system operation in integration with renewable sources and the power grid.

Why optimise BESS?

BESS optimisation is essential for the energy storage system to operate efficiently, safely and economically over a long period of time. This prevents premature battery degradation, reduces the risk of failure, allows BESS to better adapt to changing grid conditions and renewable sources, and maximises economic benefits for both businesses and individual users. As a result, optimisation increases the value of BESS as a key element of a modern, sustainable and smart energy infrastructure.

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