How iBUS Eliminated Mobile Dead Zones Across 40+ Departments at PMCH.

Healthcare

Patna Medical College & Hospital (PMCH), one of Asia's largest public hospitals, was losing mobile signal across wards, diagnostic zones, and basements; disrupting staff coordination and blocking OTP-based access to schemes like Ayushman Bharat and ABHA.

With no architectural drawings available and patient care unable to pause, iBUS Networks engineered a fibre-fed, multi-operator Neutral Host Distributed Antenna System (DAS) - shared indoor antennas that rebroadcast multiple carriers' signal throughout the building.

The result: 500+ antennas installed across 40+ departments ensuring consistent signal restored in every dead zone. The entire deployment completed without a single drill hole or disruption to hospital operations.

At a Glance

Location Patna, Bihar, India
Facility Type Government public hospital: PMCH - spanning wards, diagnostics, OPDs, basements
Solution Multi-operator Neutral Host DAS on a fibre-fed backbone, installed non-invasively
Coverage Improvement Persistent dead zones - consistent signal strength hospital-wide
Key Impact Uninterrupted patient care, reliable staff coordination, dependable access to Ayushman Bharat and ABHA

The Challenge

PMCH had to undergo a major infrastructure upgrade since persistent mobile connectivity gaps were identified across critical zones; including patient wards/diagnostic areas/basement levels. In a 100-year-old (yet active) hospital environment, these dead zones disrupted day-to-day operations - from routine staff coordination to OTP-based verification required for government healthcare schemes such as Ayushman Bharat and ABHA.

The deployment environment also carried significant constraints of its own:

  • No structural documentation: no drawings or cable routes existed. The building had to be manually mapped before design work could begin.
  • Deep indoor signal RF attenuation: basements, stairwells, and lower floors saw consistent signal loss.
  • Weak incoming signal capture: limited rooftop space restricted equipment placement for pulling in outdoor carrier signal.
  • Zero tolerance for disruption: continuous patient activity ruled out drilling or cutting through walls and floors.
  • Blocked digital health workflows: poor connectivity disrupted OTP verification, digital payments, and mobile-first diagnostic and admin processes.

The Solution

iBUS Networks designed and deployed a hybrid, fibre-fed, multi-operator Neutral Host DAS for shared network infrastructure for simultaneous multi-operators use. The approach was built specifically for an active, structurally undocumented healthcare facility, combining RF survey-led planning, entirely non-invasive installation methods, and multi-band infrastructure ready for both LTE and 5G, to deliver consistent indoor coverage across 40+ hospital departments without pausing hospital operations at any point.

How It Was Built

  • Manual signal mapping: With no architectural drawings available, the team conducted walkthroughs and shaft mapping across 40+ departments, using RF planning software (iBwave) to design the network around the building's actual layout.
  • Antenna deployment: More than 500 indoor antennas were installed across OPDs, wards, diagnostics, stairwells, and corridors, fed by a hybrid fibre network with multi-band support.
  • Non-invasive installation: Fibre and coax cabling were manually routed using surface-mounted routes, eliminating any need for drilling or core-cutting in sensitive hospital areas.
  • Signal fine-tuning: Directional donor antennas and signal amplifiers (BBUs) were positioned to maintain clean, stable reception despite limited rooftop space.
  • Testing and optimization: Walk tests using industry-standard tools (TEMS and Nemo) fine-tuned signal strength and antenna positioning, with all work scheduled during non-peak, silent hours to avoid disrupting patients and staff.
  • Handover: The network was integrated with operator systems under the neutral host model, with real-time monitoring dashboards and hands-on training handed over to the facility team.

Results: Before and After

Parameter Before After
Indoor Signal Coverage Dead zones in basements, stairwells, lower floors Consistent signal across all zones
Healthcare Scheme Access OTP verification frequently disrupted Reliable access to Ayushman Bharat, ABHA, payments
Structural Impact N/A - no indoor network Zero drilling or structural modification
Operational Disruption High risk given live operations Zero disruption throughout deployment
Network Readiness Legacy, single-band LTE-enabled, 5G-ready, neutral host across 4 bands
Deployment Scale No structured indoor network 500+ antennas across 40+ departments

Technical Outcomes

  • 500+ indoor antennas deployed across 40+ hospital departments, including OPDs, wards, diagnostics, stairwells, and corridors.
  • Consistent signal strength achieved in every previously low-coverage zone, including basements and lower floors.
  • Fully LTE-enabled and 5G-ready infrastructure, operating as a neutral host across four mobile bands.
  • Entire deployment completed with zero drilling, core-cutting, or structural modification anywhere on site.
  • Real-time signal monitoring dashboards handed over, with facility teams trained for ongoing, proactive network management.

Institutional Benefits

  • Uninterrupted Patient Care: The entire deployment was completed without disrupting hospital services or requiring structural modifications, protecting continuity of care throughout a live, fully operational hospital.
  • Staff Coordination: Clinical and administrative teams across the hospital reported improved mobile communication, supporting mobile-first workflows for diagnostics, labs, and administration.
  • Cost Efficiency & Scalability: The neutral host model allows multiple operators to share one infrastructure footprint, reducing long-term maintenance complexity and cost compared to operator-by-operator deployments.
  • Replicable Model: The project established a scalable, precision-led deployment approach that can be replicated across other high-density, structurally undocumented healthcare facilities.

Patient Access in Focus: Digital Healthcare Scheme Verification

OTP-based verification for government healthcare schemes like Ayushman Bharat and ABHA depends on a stable mobile connection to authenticate patients and process claims in real. Before this deployment, patchy indoor coverage across wards and diagnostic areas put this access at risk on a regular basis. With consistent signal now restored hospital-wide, patients and visitors can reliably complete OTP-based verification for these schemes alongside digital payments, making essential healthcare access a routine part of a patient's visit rather than something dependent on where in the building they happen to be standing.

iBUS_Connectivity_GovtHospital_CaseStudy.pdf · 4.7 MB

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