Skip to content

Author

Suzan Hassan Bakhit

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Open access Aug 2026

Dynamic routing with deterministic scheduling and self-healing recovery for industrial thermal storage networks in a hybrid physical emulation testbed

Industrial thermal-storage systems require communication mechanisms that can prioritize control traffic according to both network conditions and the physical urgency of the associated thermal process. This study proposes a Thermal-State-Aware Dynamic Routing (TSDR) method that integrates thermal criticality with link delay, jitter, packet-delivery probability, congestion, energy cost, and fault risk in a constrained multi-criteria path-selection framework. The proposed method is deterministic and rule-based; it combines multi-criteria routing, deterministic queue scheduling, threshold-based fault detection, precomputed backup paths, route hysteresis, and explicit recovery-confirmation rules, and it does not employ a trained artificial-intelligence or machine-learning model. Evaluation was conducted in a hybrid physical–emulation Hardware-in-the-Loop environment comprising three physical 500-L thermocline tanks, 45 measurement devices, PLC-based control and industrial networking hardware, 14 physical communication endpoints, 146 NS-3-emulated nodes, and synchronized MATLAB/Simulink and reduced-order CFD thermal models. A total of 480 independently initialized runs were completed across four routing architectures and ten operating or fault conditions. Compared with the strongest baseline, namely TSN-enabled network-state adaptive routing, the proposed method reduced P95 end-to-end latency from 98 to 64 ms (34.7%), jitter from 32 to 24 ms ( 25.0 % ), and fault-recovery time from 6.1 to 2.9 s ( 52.5 % ). Packet Delivery Ratio increased from 97.3 % to 99.1 % , while deadline misses decreased from 5.8 % to 1.9 % . Physical temperature-tracking RMSE decreased from 0.81 to 0.62 ∘ C , Energy Utilization Factor increased from 0.84 to 0.95 , and measured auxiliary power decreased by 9.1 % . Mixed-effects analyses identified statistically significant differences under the evaluated HIL conditions, with moderate-to-large effect sizes for the principal outcomes. Emulation-based scalability tests maintained the 100 ms routing deadline at 640 logical nodes; this result is EMU evidence and does not represent a physically deployed 640-node system. Under the base techno-economic scenario, the projected incremental investment produced an NPV of approximately USD 104,000, an IRR of 41.8 % , a simple payback of 2.32 years, and an estimated annual reduction of 68.3 tCO 2 e . These financial and environmental outcomes are scenario-based projections, while the technical findings apply only to the evaluated hybrid HIL configuration.

Abed Saif Ahmed Alghawli, Ali Raza, Altahir Saad Ahmed et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.