Malawi’s energy minister was on hand last week as the southeast African country inaugurated its first large-scale standalone battery energy storage system (BESS).
Dr Jean Mathanga, Minister of Energy and Mining, presided over a commissioning ceremony for the 20MW/40MWh BESS project in Kanengo, a township in Lilongwe, the capital.
The ceremony was announced on 24 July by the Global Energy Alliance for People and Planet (GEAPP). Global non-profit GEAPP delivered the project in partnership with state-owned power transmission and distribution operator Electricity Supply Corporation of Malawi (ESCOM).
GEAPP contributed a US$20 million grant toward the cost of a project which aims to help stabilise the national grid, reduce reliance on diesel back-up generation and enable the integration of renewable energy, which otherwise faces curtailment.
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The project makes energy storage a core infrastructure asset for the grid, enabling more flexible power systems and a more modern market design, the Global Energy Alliance said.
The Kanengo BESS was installed by renewable energy contractor JIVO Energy. According to the company’s site, which mentions that the project is also equipped with grid-forming (GFM) capabilities, JIVO Energy designed, procured, installed, tested, and commissioned the plant.
For Malawi, access to electricity is also a pressing issue. The country is targeting 70% access to electricity for its entire population by 2030. At present, around a quarter of the 22.8 million population has access, with much higher percentages in urban areas.
The country’s electricity generation largely comes from hydroelectric power and biomass. The hope is that battery storage can enable the increasing integration of variable renewable energy (VRE) resources. The World Bank-supported Malawi Electricity Access Project, which began in 2019 and recently concluded, provided electricity access to around two million people by extending service to existing distribution infrastructure via low-voltage wires.
BESS a gamechanger for system stability, ESCOM CEO says
The new project is part of GEAPP’s programme, Grids of the Future, which helps emerging economies ‘leapfrog’ the need to build traditional transmission and distribution (T&D) infrastructure and instead leverage digitalisation and distributed energy integration.
In 2023, GEAPP and the governments of 11 countries launched the BESS Consortium at the COP28 multilateral climate conference. The BESS Consortium aims to enable 5GW of BESS deployments in low or middle-income countries, with Malawi one of the first 11 signups.
The new project in Lilongwe is also part of the consortium’s work and will serve as a demonstration of how energy storage can strengthen the grid and help build what GEAPP called a pipeline of investable storage assets in emerging markets and developing economies (EMDEs).
“Today marks far more than the switch-on of a battery system—it marks the moment Malawi’s grid became smarter, stronger, and future-ready. For years, grid instability forced us to curtail renewable energy we had already generated and to fall back on costly diesel at the expense of our consumers and our climate commitments,” ECOM CEO William Kayipa said.
“The Kanengo BESS changes that calculus entirely. By storing and deploying power instantaneously, we are stabilising feeder voltages, reducing system losses, and unlocking about 100MW of renewable generation that was previously constrained.”
Kayipa said the project is also the foundation for “ESCOM’s transformation into a financially viable, high-performing utility capable of supporting Malawi’s target of 70% electricity access by 2030.”
There will also be a knowledge-sharing component to the project with Mzuzu University in South Africa’s BESS Centre of Excellence, supporting skills development and knowledge sharing across Africa.
While Kanengo BESS is Malawi’s first-ever standalone project, there is at least one completed co-located solar-plus-storage project reported previously by Energy-Storage.news in the country.
In 2022, independent power producer (IPP) JCM Power and infrastructure investor InfraCo Africa brought online Golomoti Solar PV and Battery Energy Storage project in Dedza district. Golomoti pairs a 28.5MWp solar PV array with a 5MW/10MWh lithium-ion BESS. It was thought to be the first project of its kind in Sub-Saharan Africa.
Facts Only
* Malawi's energy minister presided over the commissioning ceremony for a BESS project in Kanengo.
* The project involves a 20MW/40MWh BESS installed in Kanengo, Lilongwe.
* GEAPP delivered the project in partnership with ESCOM and JIVO Energy.
* GEAPP contributed a US$20 million grant for the project.
* The project aims to stabilize the national grid, reduce diesel reliance, and integrate renewable energy.
* JIVO Energy designed, procured, installed, tested, and commissioned the plant, which has GFM capabilities.
* Malawi targets 70% electricity access for its population by 2030.
* Electricity generation in Malawi largely comes from hydroelectric power and biomass.
* The BESS project is part of GEAPP’s Grids of the Future programme.
* The BESS Consortium launched at COP28 aims to enable 5GW of BESS deployments in low or middle-income countries, with Malawi being one signatory.
* An earlier co-located solar-plus-storage project involving a 28.5MWp solar PV array and a 5MW/10MWh lithium-ion BESS was reported in Dedza district.
Executive Summary
Malawi inaugurated its first large-scale standalone Battery Energy Storage System (BESS) in Kanengo, Lilongwe, with a system rated at 20MW/40MWh. The project was developed in partnership with the Electricity Supply Corporation of Malawi (ESCOM). The initiative received a US$20 million grant from the Global Energy Alliance for People and Planet (GEAPP) to support stabilizing the national grid, reducing reliance on diesel backup, and integrating renewable energy sources that face curtailment.
The BESS project was installed by JIVO Energy, which also designed, procured, installed, tested, and commissioned the plant, noting it includes grid-forming (GFM) capabilities. This project supports Malawi’s goal of achieving 70% electricity access for its population by 2030, as the country relies mainly on hydroelectric power and biomass. The broader context involves GEAPP's Grids of the Future program, which aims to leverage digitalization and distributed energy integration to develop energy storage as a core infrastructure asset for flexible power systems.
ESCOM’s CEO noted that the BESS changes the grid calculus by stabilizing feeder voltages, reducing losses, and unlocking constrained renewable generation. This development is part of a consortium, the BESS Consortium, which aims to facilitate 5GW of BESS deployments in low or middle-income countries. Furthermore, the project includes knowledge-sharing with Mzuzu University regarding skills development across Africa.
Full Take
The narrative positions energy storage not merely as an efficiency upgrade but as a foundational infrastructure asset capable of fundamentally reshaping national energy strategy for emerging economies. The transition from grid instability, which previously necessitated curtailment of renewable generation and expensive diesel use, to a "smarter, stronger, and future-ready" system suggests a critical inflection point in development trajectories.
The pattern observed is the external financing and technical cooperation that supports localized, distributed solutions—the BESS Consortium mechanism exemplifies this. The focus on 'leapfrogging' traditional T&D infrastructure via digitalization acknowledges a systemic preference for modular, flexible solutions over massive centralized build-outs, which often fail in contexts of limited capital and legacy infrastructure.
The implication is that grid stability is not just an operational concern but a precondition for achieving broader developmental goals, such as improving access targets. The cost calculus shifts from managing supply deficits (diesel backup) to maximizing the utilization of existing intermittent resources (VRE). However, a subtle tension exists in how this progress is framed: while showcasing technological triumph and partnership, the focus remains on specific deployments rather than the systemic policy or regulatory changes required to ensure these assets become ubiquitous and economically sustainable for all end-users.
Bridge Questions: What are the long-term regulatory hurdles that prevent BESS deployment from becoming a universally accepted standard in Malawi? How can knowledge-sharing mechanisms like the one with Mzuzu University be institutionalized to scale decentralized energy integration across the region? Does the current emphasis on distributed storage inadvertently divert focus from necessary large-scale transmission investment?
Sentinel — Human
This text appears to be a human-authored report synthesizing specific details about an energy project within the context of broader regional and international energy strategy.
