BantayBaybay Puerto Alon Case Study
Day 1 High-Yield Financial Appraisal, Three-Point PERT & Work Breakdown Structure Estimator
Direct Step-by-Step Continuation of Your Agri-Fisheries IT Hackathon Project
CRITICAL INSTRUCTION: Do not invent a new, disconnected project topic. During the Agri-Fisheries IT Hackathon Workshop, your student team selected a real-world coastal or agricultural hazard and produced an initial Hackathon Project Charter (e.g., LandingWatch, BantayBaybay, PalayTrust, AgriTrack).
In Day 1: Initiation, Business Case & Scope Baseline, your team takes that exact same project charter and advances it through today's graduate-level governance stage. Every day in this 5-day curriculum builds one unified, audit-ready master project dossier!
Open your team's Hackathon Charter from the Hackathon Panel above. Identify your selected Problem Statement, Target Beneficiary Group, and Core Technical Innovation.
Check the checklist in Tab 2 (Deliverables Checklist & Rubric). It provides clear instructions, formulas, and quality criteria for each section you must produce.
Review Tab 3 (Puerto Alon Exemplar). It demonstrates how a graduate team took the BantayBaybay Hackathon concept and produced full mathematical appraisals, matrices, and audit sign-offs.
Switch to Tab 4 (Blank Submission Form). Fill in your team's project details using the turnkey Markdown template. Use the 1-Click Copy Markdown or Download .md File buttons to save your work.
Explicit benefit chain connecting technical outputs to measurable public/citizen outcomes without vague generalities.
Defensible calculations (PERT durations, Payback, NPV, EVM, EMV, or TCO) with honest operational buffers.
Strict adherence to Philippine RA 9184 public procurement rules and COA asset capitalization guidelines.
Clear consideration of grassroots realities: device constraints (2G phones), local dialects, and operational stress.
Complete each deliverable for your team's Hackathon initiative. Check each item off as you complete your dossier.
Extract your problem statement from Hackathon Charter Round 1. Map the complete Benefit Chain: Technical Outputs → Operational Capabilities → Citizen Outcomes → Strategic Municipal Benefits.
Compare Option A (Status Quo / Manual), Option B (Your Hackathon Solution), and Option C (High-End Commercial Alternative) across upfront CapEx, annual OpEx, warning speed, and payback period.
Calculate the simple payback period ($ ext{Payback} = ext{CapEx} / ext{Annual Benefit}$) and discounted Net Present Value at 10% discount rate over 5 years. Prove capital recovery is within acceptable municipal thresholds.
Document explicit inclusions and at least three explicit exclusions (e.g. acoustic sirens or hardware subsidies deferred to Phase 2) to protect your team from political scope creep.
Hierarchical deliverable decomposition satisfying the 100% Rule and 8-to-80 hour work package sizing criteria across procurement, hardware, software, and handover.
Calculate expected duration $T_e = (O + 4M + P)/6$ for all work activities, determine precedence dependencies, identify activity float, and highlight the zero-float Critical Path.
Separate PM-managed Contingency Reserves (for identified risk events) from Sponsor-managed Management Reserves (for unforeseen municipal emergencies) above the Cost Baseline.
This is an authentic, graduate-level reference dossier illustrating how the BantayBaybay team executed Day 1. Use this as your benchmark for rigor, formatting, and depth.
| Option | Upfront CapEx | Warning Speed | Payback Period | 5-Year NPV (@ 10%) | Verdict |
|---|---|---|---|---|---|
| Option A (Manual Radio) | ₱0 | 45–90 mins | N/A | Negative | Rejected (Inadequate safety) |
| Option B (Hybrid Cloud + Solar) | ₱1,100,000 | 6.4 mins | 3.19 years | +₱207,820 | RECOMMENDED |
| Option C (Commercial Satellite) | ₱2,400,000 | 5.0 mins | 6.95 years | -₱412,000 | Rejected (Unsustainable OpEx) |
The PERT calculation established the 26-week statutory critical path anchored by RA 9184 competitive procurement (ACT-01, 6.3 wks) → Sensor tower civil foundation works (ACT-02, 5.2 wks) → Telemetry & solar installation (ACT-03, 3.3 wks) → Integrated field stress testing (ACT-05, 3.0 wks) → Final COA handover audit (ACT-06, 2.0 wks). Non-critical software development (ACT-04, 3.2 wks) possessed 2.0 weeks of total float.
Copy or download this pre-formatted Markdown template, fill in your team's Hackathon data, and submit for evaluation.
# [PROJECT NAME] — IT Project Initiation & Scope Baseline Charter
*(Continuation of Hackathon Project Charter · Round 1–4)*
**Team Name:** [Enter Hackathon Team Name]
**Academic Program:** MIT 704 · IT Project Management & Governance
**Sponsoring Entity:** [e.g., Municipal Agriculture Office / MDRRMO / Coastal Fisherfolk Federation]
**Primary Authors:** [Student Team Members & Designated Roles]
---
## 🧭 HACKATHON CONTINUITY BRIEF
* **Selected Problem Statement:** [Copy from Hackathon Charter Round 1: Specific coastal/agricultural vulnerability addressed]
* **Target Beneficiaries:** [e.g., 2,100 municipal small-scale fisherfolk, 8 coastal barangays, local municipal disaster council]
* **Proposed Technical Innovation:** [Copy from Hackathon Charter Round 2: Core hardware/software architecture]
---
## 1. Benefit Chain Alignment (Strategic Traceability)
*Every graduate IT project must demonstrate statutory value before spending public funds.*
* **Outputs (Delivered by Technical Team):** [e.g., 6 solar telemetry stations with sea-level sensors and an automated SMS broadcast gateway installed]
* **Capabilities (Delivered by Technical Team):** [e.g., Ability to detect tidal storm surges and broadcast targeted hazard warnings to 2,000+ mobile numbers within 3 minutes]
* **Outcomes (Achieved by Operational Users & Citizens):** [e.g., Coastal fisherfolk receive early warnings and dock boats safely ashore before gale-force squalls hit]
* **Strategic Benefits (Achieved by Municipality / Enterprise):** [e.g., Zero fisherfolk casualties at sea, ₱1.8M annual savings in municipal search-and-rescue emergency expenditures]
---
## 2. Three-Way Options Appraisal & Economic Business Case
| Appraisal Criteria | Option A: Status Quo / Manual | Option B: Hybrid Cloud + Solar Telemetry (Recommended) | Option C: Commercial Satellite Network |
| :--- | :--- | :--- | :--- |
| **Capital Outlay (CapEx)** | ₱0 upfront | ₱1,100,000 | ₱2,400,000 |
| **Annual Operating Cost (OpEx)** | ₱450,000 (Search & rescue, fuel) | ₱150,000 / year (SIMs, cloud, battery maintenance) | ₱680,000 / year (Recurring satellite bandwidth fees) |
| **Warning Dissemination Speed** | 2 to 6 hours (Manual relays) | 3 to 7 minutes (Automated SMS dispatch) | 2 to 5 minutes |
| **Simple Payback Period** | N/A (Net ongoing liability) | **3.19 Years** [(CapEx ₱1.1M) / (Annual Net Benefit ₱345k)] | 6.95 Years |
| **5-Year NPV (@ 10% Discount Rate)** | Negative cash flow | **+₱207,820** | -₱412,000 |
| **Delivery Risk & Vendor Dependency**| High risk of loss of life | Moderate (Standard GSM telco APIs & local solar works) | High (Single proprietary foreign satellite vendor) |
| **Recommendation Verdict** | **REJECTED** (Unacceptable public safety risk) | **RECOMMENDED** (Optimal balance of speed, cost, and payback) | **REJECTED** (Unsustainable recurring municipal OpEx) |
---
## 3. Scope Baseline & Work Breakdown Structure (WBS)
### 3.1 Explicit In-Scope Boundaries
* **Deliverable 1 (Civil & Sensor Works):** Installation of 6 galvanized telemetry masts with solar panels, deep-cycle AGM batteries, and ultrasonic sea-level sensors.
* **Deliverable 2 (Software Broadcast Pipeline):** Cloud dispatch server, telco aggregator SMS API integration, and emergency web console for MDRRMO dispatchers.
* **Deliverable 3 (Operational Handover):** Bilingual alert templates (Hiligaynon/Tagalog), operator SOP manuals, and municipal validation drill.
### 3.2 Explicit Scope Exclusions (Protecting Against Scope Creep)
* **Exclusion 1:** Acoustic sirens and loudspeaker towers (deferred to municipal Phase 2 expansion).
* **Exclusion 2:** Individual boat-mounted GPS transponders (individual vessel equipment is out-of-scope for municipal infrastructure).
* **Exclusion 3:** Subsidized smartphones for fishermen (system strictly leverages existing 2G keypad phones).
### 3.3 Three-Level Work Breakdown Structure (Adhering to 100% Rule)
* **1.0 [Project Name] Implementation**
* **1.1 Project Governance & Statutory Procurement**
* 1.1.1 Project Charter & Stakeholder Alignment Protocol
* 1.1.2 RA 9184 Competitive Bidding & Vendor Contracts
* **1.2 Physical Telemetry Infrastructure**
* 1.2.1 Coastal Mast Foundation Civil Works & Concrete Curing
* 1.2.2 Solar Panel, Charge Controller & Battery Bank Rigging
* 1.2.3 Sea-Level & Barometric Pressure Sensor Calibration
* **1.3 Software & Communications Infrastructure**
* 1.3.1 Telco SMS Gateway API Integration & Shortcode Setup
* 1.3.2 Dispatcher Web Dashboard & Geo-Targeted Alert Pipeline
* 1.3.3 End-to-End Latency & Load Testing
* **1.4 Training, Verification & Handover**
* 1.4.1 Barangay Captain & Operator Protocol Drills
* 1.4.2 COA Inspection, Asset Tagging & Certificate of Acceptance
---
## 4. Precedence Network & Critical Path Method (Three-Point PERT)
\$\$\text{Expected Duration } T_e = \frac{O + 4M + P}{6} \qquad \text{Standard Deviation } \sigma = \frac{P - O}{6}\$\$
| Activity ID | Activity Description | Opt (O) | Likely (M) | Pess (P) | PERT \$T_e\$ | Predecessors | Total Float | Critical? |
| :--- | :--- | :---: | :---: | :---: | :---: | :---: | :---: | :---: |
| **ACT-01** | RA 9184 Public Bidding & Contract Award | 4 wks | 6 wks | 10 wks | **6.3 wks** | None | 0 wks | **YES (Critical)** |
| **ACT-02** | Mast Civil Foundation & Concrete Curing | 3 wks | 5 wks | 8 wks | **5.2 wks** | ACT-01 | 0 wks | **YES (Critical)** |
| **ACT-03** | Sensor Telemetry & Solar Power Rigging | 2 wks | 3 wks | 6 wks | **3.3 wks** | ACT-02 | 0 wks | **YES (Critical)** |
| **ACT-04** | SMS Gateway Software & Dispatch Console | 2 wks | 3 wks | 5 wks | **3.2 wks** | ACT-01 | 2.0 wks | NO (Float = 2 wks)|
| **ACT-05** | Integrated Field Stress Test & Drill | 2 wks | 3 wks | 4 wks | **3.0 wks** | ACT-03, ACT-04 | 0 wks | **YES (Critical)** |
| **ACT-06** | COA Audit Inspection & Final Handover | 1 wk | 2 wks | 3 wks | **2.0 wks** | ACT-05 | 0 wks | **YES (Critical)** |
* **Total Critical Path Duration:** **19.8 Weeks (~5.0 Months)**. Any delay in ACT-01, ACT-02, ACT-03, ACT-05, or ACT-06 causes an immediate day-for-day slippage of final system go-live.
---
## 5. Cost Baseline & Two-Tier Reserves Allocation
* **Direct Work Packages Base Cost:** ₱940,000 (Detailed BOM: sensors, towers, cloud setup, training)
* **Contingency Reserve (Known Unknowns):** ₱90,000 (9.6% · Managed directly by Project Manager for identified risks like weather delays)
* **TOTAL COST BASELINE:** **₱1,030,000**
* **Management Reserve (Unknown Unknowns):** ₱70,000 (Requires formal Municipal Mayor & Council approval for unforeseen emergencies)
* **TOTAL APPROVED CAPITAL BUDGET ENVELOPE:** **₱1,100,000**
See how your Hackathon concept advances across all 5 days of the ISUFST MIT 704 curriculum.
Establish statutory justification, 3-way options appraisal, 5-year NPV (+₱207k), and 26-week CPM baseline.
Form Scrum team, craft BDD acceptance criteria, define DoD quality contract, and size Sprint 1 (78 task hrs).
Price risk exposure with EMV, prioritize via RRL (>1.0), assign single-A RACI accountability, and enforce RA 9184 SLAs.
Separate governance (EDM) from management (PBR), trace COBIT Goals Cascade, and budget full ₱2.41M 5-year TCO.
Diagnose midterm EVM variance (CPI 0.92, SPI 0.80), execute live monsoon storm test, and capitalize fixed assets under COA rules.
Teams of 3 to 5 graduate students working simultaneously across 3 workstreams. Every team develops and pitches one fundable, field-tested IT solution for Philippine artisanal agriculture or fisheries.
Open the class scoring spreadsheet and write five grassroots problems in your community. Every problem must be framed from the fisher's or farmer's point of view, backed with empirical field evidence (no jumping to solutions).
Score each problem 1 to 5 on the 6 weighted criteria. Before locking in the #1 winner, the team's designated Devil's Advocate delivers the strongest objection, and the team must defend it in one sentence.
Split into 3 workstreams to fill the 11-section Project Charter: SMART criteria, Level-2 WBS, System Context Diagram, Milestones, and a preliminary budget with a mandatory 10% contingency reserve.
3-minute 1-slide pitch to municipal stakeholder roles (Mayor, MAO, BFAR, Fisherfolk Co-op, ICT/DPO) followed by a 2-minute defense defending operational and financial feasibility.
If your team needs empirical inspiration, draw from these real-world coastal and rural municipal challenges:
• FishR and BoatR municipal registries severely out of date.
• Zero recorded catch logs for municipal waters under 15km.
• Late gale warnings fail to reach fishers without smartphone 4G.
• Red tide shellfish harvesting bans arrive after market dispatch.
• Farmers missing from RSBSA registry, blocking DA fuel subsidies.
• PCIC crop insurance claim verification stuck on physical paper.
• Armyworm and blast pest outbreaks reported days too late.
• Estuary water salinity and pH tested manually once a week.
• Ice-ice seaweed blight spreads without predictive environmental warning.
• Severe price asymmetry: fishers sell at buyer price without market feeds.
• 30% post-harvest loss from inadequate ice logistics at municipal piers.
• Thousands of mangrove saplings planted with zero survival monitoring.
• Marine Protected Area (MPA) patrol logs kept on paper notebooks.
| Criterion | Weight | Anchor: Score 1 (Weak) | Anchor: Score 5 (Exemplary) |
|---|---|---|---|
| Livelihood Impact | 25% | Touches <20 households; minor economic inconvenience | Directly protects hundreds of livelihoods, food security, or life safety |
| Feasibility | 20% | Requires unavailable satellite arrays or 4G LTE at sea | Feasible in 12 months using 2G SMS, solar batteries, and local LGU staff |
| Urgency & Vulnerability | 15% | Can wait 3 years with negligible public impact | Critical immediate hazard: loss of life, harvest failure, or stock collapse |
| Sustainability & Climate | 15% | Zero ecological or climate resilience benefit | Directly reduces disaster risk, preserves fish stocks, or restores mangroves |
| Data Readiness | 15% | No registries exist; Data Privacy Act compliance impossible | Empirical registries exist (FishR, RSBSA) and are legally accessible |
| Policy Alignment | 10% | Not mentioned in any municipal or national plans | Explicitly prioritized in LGU AIP, Coastal Resource Plan, or BFAR mandate |
The project chosen today does not end today. Here is exactly how your team will advance this exact project across Days 2 to 5:
Problem discovery, SMART success criteria, 1-box Context Boundary, 3-level WBS, Three-Point PERT, 26-week Critical Path & 10% Reserves.
Decompose the Charter into Scrum Epics, write BDD User Stories for Mang Ramon & Ate Liza, and calculate 78 focus hours for Sprint 1.
Score typhoon and political risks with EMV ($P imes I$), prove Risk Reduction Leverage (RRL > 1.0), and establish RA 9184 SLA penalty clauses.
Align project with municipal objectives using COBIT Goals Cascade, calculate the 5-Year TCO Iceberg (CapEx vs OpEx), and score against portfolio competitors.
Conduct Month 3 EVM audit ($PV, EV, AC, CPI, SPI, EAC$), execute crisis schedule crashing during typhoons, and execute COA asset capitalization handover.
ISUFST School of Graduate Studies · Master in Information Technology · BantayBaybay Puerto Alon Framework
Foundations of public-sector IT investment appraisal, strategic benefit chains, and predictive scope planning for the BantayBaybay Puerto Alon early-warning network.
Distinguishing capital initiatives from ongoing IT operations; establishing the PM accountability boundary (Outputs vs Capabilities vs Outcomes vs Strategic Benefits).
Financial justification models, options analysis under LGU fiscal constraints, and hierarchical decomposition into Work Breakdown Structures.
Translating municipal requirements into INVEST-compliant user stories, Given-When-Then BDD acceptance tests, story point sizing, and probabilistic velocity burndown.
Empirical process control (Transparency, Inspection, Adaptation), Scrum 3 accountabilities, INVEST backlog decomposition, and Behavior-Driven Development (BDD).
Separating effort from duration using relative story points, historical velocity forecasting, team focus factor, and real-time burndown tracking.
Mitigating supply chain and community risks in municipal IT projects, pricing risk quantitatively with Expected Monetary Value (EMV), Philippine RA 9184 compliance, and cross-functional RACI matrices.
Systematic hazard taxonomy, probability-impact rating, quantitative Expected Monetary Value (EMV), and sizing contingency vs management reserves.
Engaging fisherfolk cooperatives and MDRRMO officials, navigating Philippine public procurement (RA 9184), vendor SLAs, and organizational RACI governance.
Aligning municipal IT investments to LGU strategic vision, implementing the COBIT 2019 Goals Cascade, modeling 5-Year Total Cost of Ownership (TCO), and IT Balanced Scorecard prioritization.
Distinguishing enterprise governance from management; applying the COBIT 2019 Goals Cascade to map municipal stakeholder needs into concrete IT objectives.
Holistic lifecycle financial analysis factoring recurring cellular telemetry, solar battery replacement, cloud compute, maintenance contracts, and IT Balanced Scorecards.
Executing Earned Value Management (EVM) to detect project drift, executing midpoint recovery, validating resiliency during the Typhoon Ambo trial deployment, and formal administrative closure.
Tracking objective work progress using Planned Value ($PV$), Earned Value ($EV$), and Actual Cost ($AC$); diagnosing cost/schedule variances and forecasting final completion costs ($EAC$).
Validating sensor telemetry under extreme typhoon weather, executing formal administrative closeout, asset handover to MDRRMO, and conducting Post-Implementation Reviews.
Select any day below to inspect its academic curriculum, lecture breakdown, deliverables, and launch its interactive module.