Outline Commercial Case Sample Clauses

Outline Commercial Case. The project will be delivered through an OJEU procurement process. The commercial strategy will ensure the Service will deliver commercial outcomes that fulfil operational requirements, provide best value for money and incorporate a continuous improvement programme covering both patient experience and Service performance. This will be fulfilled through a defined contract structure and the adoption of an optimum procurement approach, delivered by an experienced team, informed by market knowledge and with cognisance of commercial information security and sensitivities.
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Outline Commercial Case. 12.1 At this stage the project is one of a number of similar projects in the pipeline of the new HubSES that has been established for the South East Scotland territory.
Outline Commercial Case. 7.11 The commercial case assesses the possible procurement routes which are available for a project. Normally these include Frameworks Scotland, NPD and Hub revenue models. NHSGGC have consulted with Scottish Futures Trust and the advice is that the project should be developed based on the hub revenue financed model.
Outline Commercial Case. The purpose of setting out the commercial case is to consider the implications of potential procurement options. Detailed consideration of all appropriate procurement routes will take place during the production of the OBC as part of a full value for money and affordability assessment.

Related to Outline Commercial Case

  • Synchronization, Commissioning and Commercial Operation 4.1.1 The Power Producer shall give at least thirty (30) days written notice to the SLDC and GUVNL, of the date on which it intends to synchronize the Power Project to the Grid System.

  • Synchronisation Commissioning and Commercial Operation 8.1 The Developer shall provide at least forty (40) days advanced preliminary written notice and at least twenty (20) days advanced final written notice to ESCOM of the date on which it intends to synchronize the Power Project to the Grid System.

  • Recommended language skills The sending institution, following agreement with the receiving institution, is responsible for providing support to its nominated candidates so that they can have the recommended language skills at the start of the study or teaching period: Receiving institution [Erasmus code] Optional: Subject area Language of instruc­tion 1 Language of instruc­tion 2 Recommended language of instruction level4 Student Mobility for Studies [Minimum recommended level: B1] Staff Mobility for Teaching [Minimum recommended level: B2] I NAPOLI01 Italian English IT-B1 EN-B2; IT-B2 Partner Institution code

  • Failure to Achieve Commercial Operation If the Large Generating Facility fails to achieve Commercial Operation, but it or another generating facility is later constructed and makes use of the Network Upgrades, the Participating TO shall at that time reimburse Interconnection Customer for the amounts advanced for the Network Upgrades. Before any such reimbursement can occur, the Interconnection Customer, or the entity that ultimately constructs the generating facility, if different, is responsible for identifying and demonstrating to the Participating TO the appropriate entity to which reimbursement must be made in order to implement the intent of this reimbursement obligation.

  • Commercial Operation (i) On or before December 31, 2021, Interconnection Customer must demonstrate commercial operation of all generating units. Demonstrating commercial operation includes achieving Initial Operation in accordance with Section 1.4 of Appendix 2 to this ISA and making commercial sales or use of energy, as well as, if applicable, obtaining capacity qualification in accordance with the requirements of the Reliability Assurance Agreement Among Load Serving Entities in the PJM Region.

  • Traditional Medicine Cooperation 1. The aims of Traditional Medicine cooperation will be: (a) to build on existing agreements or arrangements already in place for Traditional Medicine cooperation; and (b) to promote information exchanges on Traditional Medicine between the Parties. 2. In pursuit of the objectives in Article 149 (Objectives), the Parties will encourage and facilitate, as appropriate, the following activities, including, but not limited to: (a) encouraging dialogue on Traditional Medicine policies and promotion of respective Traditional Medicine; (b) raising awareness of active effects of Traditional Medicine; (c) encouraging exchange of experience in conservation and restoration of Traditional Medicine; (d) encouraging exchange of experience on management, research and development for Traditional Medicine; (e) encouraging cooperation in the Traditional Medicine education field, mainly through training programs and means of communication; (f) having a consultation mechanism between the Parties' Traditional Medicine authorities; (g) encouraging cooperation in Traditional Medicine therapeutic services and products manufacturing; and (h) encouraging cooperation in research in the fields of Traditional Medicine in order to contribute in efficacy and safety assessments of natural resources and products used in health care.

  • Pre-Commencement Phase Services The services required to be provided by the Contractor for the Pre- Commencement Phase of the Project in accordance with the Contract Documents.

  • Creative Commons Attribution Non-Commercial License The Creative Commons Attribution Non-Commercial (CC-BY-NC)License permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.(see below)

  • Professional Development Program (a) The parties agree to continue a Professional Development Program for the maintenance and development of the faculty members' professional competence and effectiveness. It is agreed that maintenance of currency of subject knowledge, the improvement of performance of faculty duties, and the maintenance and improvement of professional competence, including instructional skills, are the primary professional development activities of faculty members.

  • Non Commercial You may not use this work for commercial purposes. No Derivative Works - You may not alter, transform, or build upon this work. Any of these conditions can be waived if you receive permission from the author. Your fair dealings and other rights are in no way affected by the above. Take down policy If you believe that this document breaches copyright please contact xxxxxxxxxxx@xxx.xx.xx providing details, and we will remove access to the work immediately and investigate your claim. INTEREFERENCE MANAGEMNET IN COGNITIVE RADIO NETWORKS Xxxx Xxxxxxxxx-Xxxxxxxx Centre for Telecommunications Research School of Natural & Mathematical Sciences King’s College London Doctor of Philosophy June 2013 This thesis is dedicated to my parents for their love and endless support. Acknowledgements Completing my PhD degree was probably the most challenging part of my life. The best and worst moments of my doctoral journey have been shared with many people. It has been a great privilege to spend several years in the Centre for Telecommunications Research (CTR) at King’s College London, and its members will always remain dear to me. At the end of my thesis I would like to thank all those people who made this thesis possible and an unforgettable experience for me. The highest gratitude goes to my supervisor, Xx Xxxxxxxx Xxxx Nakhai, for his support, patience, and encouragement throughout my PhD studies. It is not often that one finds a supervisor that always finds the time for listening to the little problems and roadblocks that unavoidably crop up in the course of performing research. His technical and editorial advice was essential to the completion of this dissertation and has taught me innumer- able lessons and insights on the workings of academic research in general. I could not have imagined having a better advisor and mentor for my PhD study. I am grateful to to my beloved parents; Xx Xxxxxxxx Xxxxxxxxx-Esfahani and Xxx. Xxxxxx Xxxxxx. Their love provided my inspiration and was my driving force. I owe them everything and wish I could show them just how much I love and appreciate them. I wish also to thank my brothers; Xx Xxxxx Xxxxxxxxx-Esfahani and Xx Xxxxxxx Xxxxxxxxx-Esfahani for their endless love and encouragement. I would like to thank my former colleague, Xx Xxxx Xxx Xx for his valuable assistance and support through out my PhD. Last but not least, to those who indirectly contributed in this research, your kindness means a lot to me. Thank you very much. Xxxx Xxxxxxxxx-Xxxxxxxx London, U.K. May 2013. Abstract‌ Radio spectrum is becoming increasingly scarce as more and more devices go wireless. Meanwhile, studies indicate that the assigned spectrum is not fully utilised. Cognitive radio technology is envisioned to be a promising solution to address the imbalance between spectrum scarcity and underutilisation. Cognitive radio enables the unlicensed (secondary) user to establish a communication link in licensed (primary) spectrum on the condition that there is no or minimal interference to the primary user. The interference management has become an important topic in cognitive radio in order to manage and fulfill the regulatory constraints. The management of interference is, unquestionably, required to treat and quantify all the interference produced by the cognitive transmission at the primary users. In order to manage this interference, the secondary users must be able to adjust their parameters to fulfill these constraints. In addition, the performance of contemporary multicell wireless networks is limited by intercell interference (ICI), due to cochannel transmission in other cells. This per- formance degradation is especially severe for users close to the cell-edge. As a solution, in this thesis different cognitive beamfomring techniques are proposed by deploying cognitive cells on the primacy cells boundaries to support the primary cell-edge users as well as servicing the secondary users. This thesis proposes interference management techniques based on cognitive beam- forming in a cellular network. We have identified conditions and proposed different techniques for optimal usage of radio spectrum, by allowing coexistence on the same spectrum resources between primary and cognitive users. Deploying cognitive cells on

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