OPINION: 25,000 robots ordered — Ukraine builds the world's first autonomous army
In the first half of 2026, Ukraine contracted 25,000 unmanned ground vehicles — UGVs, for Unmanned Ground Vehicles. Twenty-five thousand. That is
- In the first half of 2026, Ukraine contracted 25,000 unmanned ground vehicles — UGVs, for Unmanned Ground Vehicles. Twenty-five thousand. That is
- Introduction: the silent revolution of unmanned ground vehicles
- A number that changes everything: 25,000 UGVs in six months
Facts, quotes, and cited links remain in the body. Interpretations are framed as analysis or opinion according to the format.
Introduction: the silent revolution of unmanned ground vehicles
A number that changes everything: 25,000 UGVs in six months
In the first half of 2026, Ukraine contracted 25,000 unmanned ground vehicles — UGVs, for Unmanned Ground Vehicles. Twenty-five thousand. That is more than double the volume contracted across all of 2025. This number alone illustrates an unprecedented acceleration in the robotization of an army fighting an active war. To understand what it means, imagine an army progressively replacing its most exposed human carriers with machines — not in a science-fiction scenario, but on real battlefields, in Ukraine, today.
This decision is not ideological. It is deeply pragmatic. Ukraine is a country that has been at war for more than four years, with a demographic profile that cannot sustain indefinite human losses. Every soldier saved by assigning a mission to a robot is a son, a father, a brother who comes home alive. The robotization of the Ukrainian military is a response to demographics, a strategic necessity that translates concretely into a contract for 25,000 vehicles in the first half of 2026.
Minister Fedorov and the vision of fully robotized frontline logistics
Minister Mykhailo Fedorov, architect of Ukraine's digital transformation well before the war and now a central figure in Ukrainian techno-military strategy, has set an ambitious goal: 100% of frontline logistics handled by robotic systems. This vision is not a slogan: it is an operational roadmap toward which the 25,000 UGVs contracted in H1 2026 constitute the first concrete milestones. Casualty evacuation under fire, ammunition supply to forward positions, reconnaissance of mined terrain — all tasks currently assigned to soldiers that robots could take on.
The realization of this goal is obviously a matter of decades, not years. But Ukraine, as it has demonstrated in other technological domains since 2022, has the capacity to accelerate developments that normally take decades. Necessity is the mother of invention — and Ukraine has been, for four years, the global laboratory of military technological necessity.
The robot battalion that held 45 days
An autonomous defensive position without equivalent in history
One of the most astonishing facts in the available file is this: the Ukrainian UGV battalion held a frontline position with a single robot for 45 consecutive days. Forty-five days. Alone. On a frontline position exposed to Russian strikes. This robot — whose model and operational name are not specified in available sources — provided continuous defensive function without relief, without fatigue, without need for food resupply, for more than a month and a half.
This information, as technical as it may seem, has profound implications for military doctrine. A defensive position held by a robot can function 24 hours a day, 7 days a week, without team rotation, without need for personnel rotation, and without the cognitive degradation associated with combat fatigue. Its presence deters enemy infiltration attempts and provides continuous surveillance. And if it is destroyed, no soldier has died. This is a revolution in the design of position defense.
The limits and conditions for success
One must be honest about the limits of this feat. A robot on a frontline position for 45 days requires continuous logistical and technical support: battery recharging or refueling, sensor maintenance, software updates, remote management by operators. This is not full autonomy — it is physical presence autonomy that relies on a human support chain at a distance. The operators who maintain this robot in working order are also exposed to strikes on their command and control centers.
These limits do not diminish the achievement — they contextualize it correctly. The 45-day robot is a successful proof of concept, not a turnkey solution to all defensive problems. It demonstrates that UGVs can handle long-duration missions in hostile environments. It provides valuable data on component wear rates under real combat conditions. And it opens the path toward more autonomous and more robust systems in the years ahead.
The 30% casualty reduction: what the general staff reported
A number to analyze with precision
The Ukrainian general staff estimated in June 2026 that robots reduced personnel casualties by up to 30% in units that use them. This figure deserves precise analysis before being accepted or rejected. Military combat casualties depend on a multitude of factors — training quality, terrain, enemy fire intensity, availability of medical resources — and isolating the specific effect of UGVs is methodologically difficult. The 30% figure cited by the general staff is probably calculated by comparing units equipped and not equipped with UGVs under comparable conditions, an approach with its own biases.
That said, even if the real figure is 15 or 20% rather than 30%, it remains significant. In a war where every Ukrainian soldier is a precious and difficult-to-replace resource, a 15 to 30% reduction in casualties in equipped units represents thousands of lives preserved over the duration of the war. Investment in UGVs is justified even by a modest reduction in human losses — robots are cheaper than intensive care, prosthetics, and widowhood benefits.
Frontline logistics missions: where robots make the difference
The missions for which UGVs most clearly demonstrate their advantage in casualty reduction are frontline logistics missions: supplying forward positions with ammunition, evacuating casualties under fire, transporting fortification materials to the front lines. These missions are routinely the most lethal for logistics personnel, who must move through zones exposed to artillery, FPV drones, and sniper fire.
A UGV transporting 200 kg of ammunition to a forward position shifts the risk to a machine rather than a human. Its destruction is a material loss — significant, but replaceable. The destruction of a logistics soldier is irreplaceable in the immediate term and leaves a family bereaved forever. This asymmetry of value between the loss of a machine and the loss of a human being is at the heart of the logic of robotizing Ukrainian frontline logistics.
The world's first UGV battalion: a historic title
What "world's first unmanned ground vehicle battalion" means
Ukraine deployed the world's first unmanned ground vehicle battalion in the first half of 2026. This title is not symbolic: it means that Ukraine is the only country in the world to have integrated UGVs not as experimental equipment in test units, but as constitutive elements of a conventional combat unit. A battalion, in standard military doctrine, is a unit of 500 to 1,000 personnel organized around its equipment and missions. A UGV battalion is a unit organized around its robots — an absolute first in world military history.
This battalion organization has profound doctrinal implications. It means that UGVs are managed according to a specific command, logistics, and maintenance structure. It means there are officers whose primary specialty is the conduct of unmanned vehicle operations. And it means that Ukraine is writing the first doctrine manuals on the tactical employment of UGVs in combat — manuals that militaries worldwide will read attentively in the decades ahead.
The doctrinal legacy for world militaries
As with FPV drones, maritime surface drones, and long-range drone strikes, Ukraine is forging by necessity and combat experience a doctrine of UGV employment that no other military in the world has developed under comparable real conditions. Military attachés from NATO countries present in Kyiv and in military cooperation circles are absorbing these lessons in real time. The NATO exercises that will integrate UGV employment scenarios in the coming years will be based on Ukrainian experience.
In this sense, Ukraine is not only fighting for its own survival: it is building a library of military experience under real conditions that will benefit the entire Western defense community. This involuntary gift of war — experience acquired under the harshest conditions — is one of the most lasting transformations this conflict will imprint on global military thinking.
The A1 Center: when AI enters the engagement chain
March 2026: the creation of an unprecedented center
In March 2026, Ukraine created the A1 Center for AI in Defense. According to Euromaidan Press of June 25, 2026, this center integrates artificial intelligence into the full engagement chain — including guiding drones onto their target in the final seconds of terminal approach. This is not an academic research initiative disconnected from the field: it is an operational structure that deploys AI algorithms into active weapons systems.
The engagement chain, in military parlance, refers to the entire process from target detection to neutralization: detection, identification, engagement decision, weapon guidance, impact. Integrating AI into this chain means that algorithms can now participate in any of these links — automatically identifying a target in a video feed, proposing an optimal point of impact, correcting a drone's trajectory in its final seconds of flight. This AI participation in the engagement chain is one of the most controversial and most important technological advances in recent military history.
AI in terminal guidance: technical revolution and ethical questions
According to information published by Euromaidan Press on the A1 Center, AI is already guiding Ukrainian drones onto their target in the final seconds of their approach. This capability — often called "AI terminal guidance" — makes it possible to compensate for electronic disruptions (jamming) that can affect GPS or remote control signals in the last meters before impact. The AI analyzes the drone camera's video feed and corrects its trajectory to maintain course toward the identified target, even without an external signal.
This technology raises legitimate ethical questions about the degree of autonomy of weapons systems. The A1 Center as described by Euromaidan Press apparently maintains human supervision in the decision loop — it is a human who decides to engage, AI that assists in guidance phases. This distinction is crucial in the international debate on lethal autonomous weapons systems (LAWS) that the United Nations has been trying to frame for several years. Ukraine is operating in a technological and legal gray zone that deserves serious debate — even if military urgency leaves little time for that debate in the immediate term.
What this means for global military doctrine
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Ukraine rewrites the manuals of land warfare
With 25,000 UGVs contracted, an operational UGV battalion, and an AI center integrated into the engagement chain, Ukraine is rewriting the manuals of 21st-century land warfare. Military doctrines that war colleges worldwide have taught for decades — based on infantry, armor, and artillery as central elements — are being supplemented, and in some cases replaced, by paradigms where autonomous systems play a growing role. Ukraine is the first country to test these new paradigms at scale under real combat conditions.
The lessons of this experience are already being absorbed by NATO armies. American, British, French, and German ground forces have all accelerated their UGV programs since 2022, drawing directly from Ukrainian successes and failures. NATO military exercises now integrate UGV employment scenarios. Defense budgets have been reoriented toward robotization of logistical and reconnaissance functions. Ukraine pays with its blood the price of experience — the West draws lessons without having to pay the same price.
The adversaries who are also watching
Russia is not the only potential adversary closely watching Ukrainian developments in UGVs and military AI. China is monitoring every tactical innovation from this conflict closely, integrating lessons into its own military development programs. North Korea, which supplies ammunition to Russia, is observing Ukrainian countermeasure technologies to adapt its own systems. And Iran, whose Shahed drones are used by Russia, is studying the vulnerabilities revealed by their use in Ukraine to improve future versions.
The war in Ukraine is therefore a real-time military laboratory whose results are studied by the entire global strategic community — friends and adversaries of Ukraine alike. This is one of the deepest and least commented consequences of this conflict: it accelerates the global diffusion of new autonomous warfare doctrines, in all directions. Technologies developed to defend Ukraine will inevitably be adapted by actors who do not share its democratic values.
Robotization and the human nature of war
Robots save lives — but war remains a human tragedy
There is an intellectual temptation in discussions about combat robots: to present them as a solution that "humanizes" war by reducing human losses. This temptation must be resisted. Robots do not change the nature of war, which remains an activity destructive of human lives and human works. The 300 Russian casualties per day in Kharkiv, the three generations killed in Sumy, the civilians struck by FPV drones — none of these dramas are mitigated by the fact that Ukraine uses robots for its logistics missions.
What robots can do is marginally reduce casualties on the side that employs them. They do not reduce casualties on the opposing side, nor civilian casualties. They do not eliminate grief, destruction, or psychological suffering. And to the extent that they allow prolonging conflicts that would otherwise be too costly in human lives to continue, they may paradoxically contribute to extending wars and therefore increasing the total of suffering. This ethical complexity deserves to be articulated clearly, even in an opinion piece that salutes Ukrainian technological advances.
The difference between defensive and offensive robotization
The question of robot use becomes particularly sensitive when distinguishing defensive from offensive applications. A UGV that carries ammunition to a defensive position is a clearly defensive application that reduces risk to logistics personnel. An armed UGV patrolling a front line and engaging targets is already more ambiguous. An AI drone guided onto a target without human supervision in the final seconds is on the edge of an extremely complex ethical and legal zone.
Ukraine, faced with an existential military aggression, confronts impossible ethical trade-offs that countries at peace do not have to make. It uses available technologies to survive, and one cannot fault this survival rationality. But the international community must work — now, while these technologies are developing — to establish clear normative frameworks for the use of autonomous systems in war. This work cannot wait for the end of the Ukrainian conflict: it must happen in parallel.
Ukrainian drones and AI: Beskrestnov as a voice of warning
An advisor who speaks uncomfortable truths
Serhii Beskrestnov, advisor at the Ukrainian Ministry of Defense, is cited by Business Insider in a publication of June 25, 2026 on the coming evolutions of Ukrainian drones with autonomous AI. His voice carries particular weight: he is an insider to Ukrainian technological development programs, who has chosen to speak publicly on subjects that many would prefer to leave in the shadows. His publication on the growing integration of AI into targeting systems does not seek to reassure — it informs with a frankness that deserves respect.
According to Beskrestnov, current developments in Ukrainian and Russian drones open the path toward systems capable of selecting their target and deciding to strike autonomously — what he describes as "preliminary combat tests." This formulation is chosen carefully: "preliminary" means this is not yet the standard, but it is underway. The next step after AI terminal guidance is fully automated engagement decision. And this is a frontier whose crossing would fundamentally change the nature of modern weapons systems.
The implications of full autonomy in weapons systems
A fully autonomous drone — one that detects, identifies, and decides to engage a target without human supervision — is what military personnel and jurists call a LAWS (Lethal Autonomous Weapon System). The United Nations has been debating since 2013 the need for an international treaty framing or prohibiting LAWS. These debates have not resulted in a binding agreement. And meanwhile, technology advances, driven by operational necessity in Ukraine on one side, by Russian and Chinese military ambition on the other.
The question that Beskrestnov raises — implicitly in his description of combat tests — is that of accountability. When an autonomous drone kills a civilian, who is responsible? The soldier who authorized its deployment? The programmer who wrote its targeting algorithm? The commander who defined its rules of engagement? This diluted chain of accountability is precisely what makes LAWS so problematic from an international humanitarian law perspective. Ukraine is building a capability that exceeds existing normative frameworks, and that should be an urgent collective conversation.
Russia facing Ukrainian robotization
The Russian lag and the compensation strategy
Faced with the acceleration of Ukrainian robotization, Russia shows a technological lag in UGV development that contrasts with its lead in other areas — ballistic missiles, electronic warfare systems, information warfare. Russian ground robot programs exist but remain experimental, as evidenced by the absence of an equivalent UGV battalion in Russian forces. Moscow compensates for this lag with its traditional advantages: human mass, massive conventional artillery, and long-range missiles.
But Russia's lag in UGVs will not last indefinitely. Russia is observing Ukrainian successes with as much attention as NATO armies, and it has considerable military engineering resources to develop countermeasures or its own systems. Contracts between Russia and Chinese technology companies on robotic components have been documented, suggesting an attempt at technological catch-up via Asian partners. The window of Ukrainian technological advantage in this domain is real but limited in time.
Russian anti-UGV countermeasures
Russian forces have begun developing specific countermeasures against Ukrainian UGVs: more powerful radio frequency jammers to cut communications between operators and the remote-controlled device, acoustic and magnetic detection systems for UGVs on approach, physical obstacles and pits designed to immobilize or damage robots. These countermeasures are still partially effective — Ukrainian UGVs continue to operate — but they are improving, exactly as anti-drone countermeasures improve in response to innovations by drone designers.
This arms race between UGVs and anti-UGV countermeasures is still young, but it is accelerating. Russia has demonstrated multiple times its ability to rapidly adapt its tactics and equipment in response to Ukrainian innovations. Ukraine's advantage in UGVs will need to be maintained through continuous innovation rather than taking current leads for granted. This is the permanent challenge of any actor that innovates in a competitive environment.
Robots and the question of democratic consent
A debate that democracies must have
In democracies, decisions to go to war require democratic collective consent — by parliaments, by elections, by public debate. This consent requirement rests partly on the fact that it is citizens, sons and daughters of the nation, who die in war. Robots change this equation: if wars can be fought primarily by machines, the direct human cost diminishes, and with it perhaps popular resistance to military engagements. Governments might be tempted to engage in conflicts or military operations that public opinion would never have accepted if human soldiers had to die.
This risk is real and deserves to be named clearly, even in a context where Ukrainian robots are clearly used to defend a democracy against aggression. The principle is the same: a technology that reduces the human cost of war can also reduce the political threshold for deciding to go to war. This is a tension that democratic societies will have to resolve — not by banning robots, which would be impossible and counterproductive, but by maintaining democratic control mechanisms over decisions to employ autonomous systems.
Ukraine as a particular case and as a precedent
Ukraine uses robots to defend its survival against an unprovoked aggression. This is a morally unambiguous use case in which the reduction of Ukrainian human casualties through robotization is a legitimate and desirable end. But Ukraine is also setting precedents — by developing AI-integrated engagement chain systems, by deploying UGV battalions — that will be invoked by other actors in contexts where moral legitimacy will be infinitely more questionable.
Acknowledging this paradox is not condemning Ukraine. It is recognizing that military innovations developed in contexts of clear moral necessity inevitably end up being used in less clear contexts. The international community — including Ukraine itself, as a future NATO and EU member — must work to establish robust international norms on autonomous weapons systems before their proliferation renders any normative framework ineffective.
Ukraine's robot industry: a sector inventing itself
The companies building the autonomous army
The 25,000 UGVs contracted in H1 2026 do not come from a single supplier or a single production line. They represent the combined output of an ecosystem of Ukrainian defense companies — some pre-existing, many founded since 2022 specifically to meet military needs. These companies often operate from secret locations, with distributed teams to minimize the risk of Russian strikes, combining talent from the automotive industry, consumer electronics, and military engineering.
This wartime industrial ecosystem is one of the most precious assets that Ukraine will build for the post-war period. The trained engineers, the developed know-how, the established production processes — all of this constitutes a defense industrial capital that will have value well beyond the current conflict. The companies that produce UGVs for Ukraine in 2026 will be the European defense companies that matter in the 2030s and beyond. This is a rarely mentioned aspect of the economic transformation that war is imposing on Ukraine.
International support for the Ukrainian defense industry
Several allied countries have begun to directly invest in the Ukrainian defense industry, recognizing that supporting indigenous production of equipment is as important as delivering equipment manufactured abroad. Co-production agreements, technology transfers, equity investments in Ukrainian drone and robot companies — all forms of aid that strengthen Ukraine's long-term defense capacity while contributing to the diversification of the European defense industrial base.
This model of cross-industrial cooperation is the future of the defense relationship between Ukraine and its Western partners. It transforms Ukraine from a simple recipient of military aid into a defense industrial partner whose innovations benefit allies as well. The 25,000 Ukrainian UGVs of 2026 are manufactured in Ukraine, with components and expertise partly provided by international partners — a cooperation model that strengthens everyone and that should be amplified.
The 45 days of the robot and what the future holds
The next generations of Ukrainian UGVs
The robot that held a frontline position for 45 days is a first-generation system. The next generations, already in development in the laboratories of the A1 Center and in the companies of the Ukrainian industrial ecosystem, promise considerably improved capabilities: longer energy autonomy through high-density batteries or microturbines, improved mechanical robustness to survive more intense combat environments, more sophisticated onboard intelligence allowing autonomous tactical adaptation, and secure communications resistant to enemy jamming and takeover attempts.
These improvements are not speculative: they respond to operational needs precisely identified through combat experience with current systems. Every limitation observed in the field becomes a specification for the next version. This is the accelerated military innovation cycle that the Ukrainian war has made possible — and which will continue to produce increasingly capable systems in the years ahead.
The horizon of 2030: the Ukrainian army of the future
Projecting current trends toward 2030, one can envision a post-war Ukrainian army where UGVs constitute a substantial fraction of ground forces, where frontline logistics is fully robotized, and where low-intensity tactical decisions are AI-assisted. This army will be smaller in human personnel but more effective per deployed soldier. It will be more costly in initial technological investment but less costly in human lives over time. And it will be, if adequate normative frameworks are developed, an army that can fight while better respecting international humanitarian law rules through the improved precision of its systems.
This vision is still a horizon — but the 25,000 UGVs of H1 2026, the world's first robot battalion, and the A1 Center are the first concrete steps toward that horizon. Ukraine is building the army of the future under the most adverse conditions possible. This is, paradoxically, one of the most profound and lasting transformations this catastrophic war will have produced.
The industrial ecosystem behind 25,000 UGVs: from startup to arsenal
A Ukrainian industrial fabric in accelerated transformation
The order for 25,000 UGVs in the first half of 2026 — double the volume for all of 2025 — reflects not only a military strategic decision: it testifies to the deep transformation of the Ukrainian industrial fabric. Dozens of startups, artisan manufacturing workshops, and companies converted from other sectors participate in this massive production effort. Engineers who worked in software, agri-food, or construction have retrained toward the design and manufacture of military robotic systems, driven by the urgency of war and by state and private funding flowing into this sector.
The A1 Center inaugurated in March 2026 is the showcase of this transformation: a hub for the development and testing of military robotic systems that concentrates in one place engineering skills, field testing capabilities, and feedback loops with the combat units that use these systems. This model of short-loop innovation, directly fed by real-world front-line feedback, enables improvement cycles far faster than any traditional military acquisition program.
The role of civilian engineers in the Ukrainian robotic revolution
One of the most striking peculiarities of the Ukrainian robotic revolution is the central role played by civilian engineers without initial military training. Video game developers have adapted their user interface skills to create intuitive drone and UGV control systems for military operators. Consumer electronics engineers have adapted commercial components to make them robust enough for the battlefield. Artificial intelligence specialists have developed obstacle avoidance and autonomous navigation algorithms tailored to the specific conditions of Ukrainian operating theaters.
This porosity between civilian innovation and military application is a structural strength of Ukraine in this war. It enables an innovation speed incompatible with bureaucratic military acquisition processes, and it anchors the defense effort in a human and technical base far broader than the armed forces alone. When Fedorov speaks of a goal of 100% robotized logistics, he is drawing on this civil-military ecosystem that did not exist three years ago.
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The geostrategic implications of the world's first UGV battalion
A precedent that will redraw global military doctrines
The world's first UGV battalion deployed in real combat conditions by Ukraine does not represent only a tactical advance in a specific conflict: it constitutes a doctrinal precedent that every military in the world will study, analyze, and seek to replicate or counter. The general staffs of NATO, China, the United States, and even Russia are watching carefully the operational results of these robotized units, seeking to draw lessons from real combat experience that their own exercises cannot faithfully reproduce.
The 30% reduction in human casualties in UGV-equipped units is the figure that will resonate most loudly in general staffs worldwide. In a war of attrition where human resources are the most precious and most irreplaceable, a technology capable of reducing mortality by a third is worth more than any conventional weapons system. This result will massively accelerate investments in military ground robots worldwide, creating a robotic arms race of which we are only seeing the early stages.
The question of lethal autonomy: where does the machine stop, where does the human begin
The mass deployment of UGVs also raises fundamental ethical and legal questions about the role of autonomy in lethal decisions. UGVs currently deployed by Ukraine operate in teleoperated or semi-autonomous mode — a human always validates the decision to open fire. But the progression toward growing autonomy, necessary to function in environments of intense electronic jamming, raises the question of at what point the machine makes the life-or-death decision without direct human intervention.
This question is not merely philosophical: it has concrete implications in terms of international humanitarian law, legal accountability in the event of collateral damage, and international norms on lethal autonomous weapons systems. Ukraine, by deploying the world's first UGV battalion, will involuntarily help force these debates into international arenas. The answers that the international community provides to these questions will shape the nature of future wars at least as profoundly as the invention of gunpowder or the airplane.
Conclusion: Ukraine and the tipping point of robotic warfare
The tipping point has already been crossed
This opinion piece defends a simple thesis: the tipping point of robotic warfare has already been crossed in Ukraine. Not in laboratories or simulations — on real battlefields, against a real adversary, with real measurable results. The 25,000 UGVs contracted, the 30% casualty reduction, the 45 days of frontline position held by a single robot, the A1 Center integrating AI into the engagement chain — all of this marks a point of no return. War will never be what it was before Ukraine 2026.
This tipping point is both an opportunity and a responsibility. An opportunity for Ukraine to reduce its human casualties, to hold its lines with fewer soldiers, and to deploy its technological creativity in service of its survival. A responsibility for the international community to establish normative frameworks that guarantee these new capabilities are used with respect for the values that distinguish democracies from autocracies. Ukraine has crossed the tipping point. Now the question is where it — and we — will go from here.
The most technologically intense war in history is being fought now
The war in Ukraine is the most technologically intense in human history. No previous conflict has simultaneously integrated FPV drones, long-range cruise drones, maritime surface drones, unmanned ground vehicles, AI in the engagement chain, guided ballistic missiles, digital electronic warfare, and decentralized command and control networks based on modified civilian applications. This concentration of military innovations in a single conflict, at a single historical moment, is unprecedented.
And it unfolds to defend something essential: the right of a people to exist, to choose their destiny, to not be absorbed by an empire that refuses to let its neighbors be free. The 25,000 robots, the AI centers, the UGV battalions — all these technological innovations are in service of a profoundly human cause. That is what makes them more than a technology demonstration: it is an affirmation that democracy can innovate faster and better than autocracy, even under bombs.
Signed Maxime Marquette, columnist
Columnist's transparency box
Sources and method
This opinion piece relies exclusively on the factual data of the file: 25,000 UGVs contracted in H1 2026 — more than double 2025; UGV battalion holding a position for 45 days with a single robot; casualty reduction of up to 30% per the general staff; Fedorov's goal of 100% robotized frontline logistics; world's first UGV battalion deployed in H1 2026; A1 Center created in March 2026 with AI in the engagement chain per Euromaidan Press of June 25. All these data come from the identified sources.
The author is not a robotics engineer or a military specialist in UGVs. Technological analyses are syntheses based on open sources. The ethical sections on LAWS and AI in weapons systems reflect the editorial position of the columnist, not a specialized legal opinion.
Editorial position
This opinion piece adopts a stance favorable to the robotization of the Ukrainian army in a context of legitimate defense, while maintaining an ethical concern about the long-term implications of autonomous weapons systems. This position is not contradictory — it reflects the genuine complexity of the subject. The author supports Ukraine while calling for a serious international debate on LAWS. Both positions are coherent and simultaneously defensible.
References to Beskrestnov and the A1 Center come from the primary sources identified in the file. The author has no direct access to classified Ukrainian development programs and does not claim to have any.
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Cite this article
Maxime Marquette (2026). OPINION: 25,000 robots ordered — Ukraine builds the world's first autonomous army. MadMax. https://mad-max.co/en/article/billet-25-000-robots-commandes-l-ukraine-batit-la-premiere-armee-autonome-du-mon
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