), Reliability Growth Curves (RGCs) (See DoDI 5000.02, Enc 3, sec. Advising the PM on whether production capability forms a satisfactory, affordable and sustainable basis for proceeding into LRIP and FRP. During testing, the risk level may change due to test configurations, which differ from the eventual system design. Both Task 108 and NAS 411 require a contractual listing of the HAZMAT, which the program intends to manage. Identifying SE process requirements (for example, requirements management, configuration management and risk management; see. ), Metrics should evaluate the extent to which the product can be manufactured with relative ease at minimum cost and maximum reliability. It is equally important for the contracting officers as they develop acquisition strategies, seek opportunities for small businesses, and negotiate contract terms. Systems engineering (SE) is a methodical and disciplined approach for the specification, design, development, realization, technical management, operations and retirement of a system. The should-cost target is based on the efficient use of resources and effective implementation of processes identified as should-cost initiatives, and is the focus of SE activities and program management decisions across the life cycle. The following baselines are critical to executing Configuration Management: The program office and developer share responsibility for planning, implementing and overseeing the Configuration Management process and its supporting activities. Identify: Getting a Clear Picture of Reality; Chapter 3. Throughout the acquisition life cycle, the PM and Systems Engineer should monitor the system affordability, seek out cost saving opportunities and identify any associated cost, schedule and performance risks. ), Informed advice to the Request for Proposal (RFP), Informed advice to the Acquisition Strategy (AS) (See CH 1–4.1. Documenting the plan to CDR in the SEP and elsewhere as appropriate. The program’s plan for DEMIL and disposal of DoD excess and surplus property protects the environment and personnel and minimizes the need for abandonment or destruction. Systems engineers support the PM in executing a risk management program. ), Informed advice to the Test and Evaluation Master Plan (TEMP) (See CH 8–4.1. A resource for SRR preparation is IEEE 15288.2 "Standard for Technical Reviews and Audits on Defense Programs". Compliance with DoD SE policy is required for program approval and completion of successful milestone decisions. It should have been available for use in the AoA and can then be used to support development of missions and operational scenarios to evaluate the preferred materiel solution. This is a best practice review. provide low-risk assurances for supporting LRIP and FRP. The PM should ensure that the allocated baseline established at the Preliminary Design Review (PDR) includes an initial list of proposed CSIs and a proposed process for selecting and approving CSIs, and that it addresses the critical characteristics of those items. Ensuring specifications contain realistic quantitative R&M requirements traceable to the Initial Capabilities Document (ICD), Capability Development Document (CDD) and Capability Production Document (CPD). Lead and manage the execution of the technical activities as documented in the SEP. Plan and execute technical reviews, including the System Requirements Review (SRR), System Functional Review (SFR), and Preliminary Design Review (PDR). Provide mission assurance while maximizing warfighter safety (or minimizing their exposure to threats). 13 and CH 9–3.4.2.2. Analysis of the system’s progress in achieving performance metrics (see. The Alternative Systems Review is focused on achieving a government-to-government understanding of the user’s needs and the preferred materiel solution. Decision Analysis can be the central process for formulating, managing and executing an effective and efficient program at any point in the life cycle. Sound Corrosion Prevention and Control (CPC) planning reduces life-cycle costs, improves maintainability and availability and enhances ESOH compliance. Risks associated with SoS dependencies (both programmatic and technical) and interoperability requirements, including environment, safety and occupational health (ESOH), and security risks to be accepted by Joint Authorities. SE activities should be integrated with EMD phase-specific test and evaluation, and logistics and sustainment activities identified in CH 8–4.3. Technical Reviews and Audits), and program management reviews in order to help reduce the PSA burden on the program office and developer staff. These requirements should be captured in the contract specifications or SOW. Modern weapon systems are inherently dependent on a variety of scientific and technical intelligence products throughout every stage of their life cycle. PMs should coordinate with the contracting authority to be kept aware of materiel recalls and shortfalls that may impact production rates and sustainment. As a best practice, the Systems Engineer should develop an implementation plan that includes implementation procedures, fabrication processes, tools and equipment, implementation tolerances and verification uncertainties. Support the Requirements Analysis process to establish and maintain a traceability matrix to document how the system requirements are intended to meet the stakeholder objectives and achieve stakeholder agreements. 13.a) due at the Development Request for Proposals (RFP) Release Decision Point. The development of the system architecture should adhere to sound systems engineering (SE) and conform to industry standards as applicable. In addition, the Systems Engineer implements and controls the technical effort by: One of the key responsibilities of the Systems Engineer is to provide insight/oversight of the technical activities of the capability acquisition. Manage cascading/deferred requirements and mitigate development concurrency. To design for security, the program protection planning and execution activities should be integrated into the systems engineering technical reviews and audits. The PM and Systems Engineer should apply appropriate resources with the requisite skill sets to ensure successful execution of each process. 0 ��������fŲ��FƄY!ń If the schedule is being preserved through parallel design and build decisions, any system deficiency that leads to reopening design may result in rework and possible material scrap. The hazard, potential mishap, initial RAC and risk level, Risk acceptance/user representative concurrence status, HAZMAT item or substance name (with Chemical Abstract Services (CAS) Number if available), HAZMAT Category (Prohibited, Restricted or Tracked), Special Material Content Code (SMCC) as designated in, The locations, quantities, and usage of each HAZMAT embedded in the system or used during operations and support of the system, with traceability, as applicable, to version specific hardware designs, ESOH requirements for demilitarization and disposal, Energetic qualification information, as applicable, Reasonably anticipated quantities of hazardous waste generated during normal operation and maintenance, Reasonably anticipated HAZMAT (whether categorized or not) generated during the system's life cycle (e.g., installation, Government test and evaluation, normal use and maintenance or repair of the system), Hazardous emissions/discharges, including those reasonably anticipated in emergency situations, Special control, training, handling, Personal Protective Equipment (PPE) and storage requirements, to include provision of required Safety Data Sheets (SDSs), previously called Material Safety Data Sheets (MSDSs). 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