The central aim of this thesis was to increase understanding of designing vocational learning environments at the school–work boundary. Four studies were conducted, focusing on learning environment designs at the school–work boundary and on design considerations of the actors involved in their construction, both from the world of school and the world of work.
Nomination Best Research & Practice Project Award at the EAPRIL conference, Jyväskylä, Finland. Hybrid forms of learning environments in vocational education are central to the two projects of this application: a design-oriented, applied research project from the Centre for Expertise in Vocational Education (ecbo-project) and an educational innovation/practitioner-research project (hpboproject). A PhD-research project is closely related.
All over the world entrepreneurs drive changes. They develop new products and services, inspire others and take decisions that result in growth of their businesses. But the world around entrepreneurs is changing and so are entrepreneurs. Life-long selfemployment or permanent wage employment are of the past. And the way people perceive self-employment is changing as well. And so must our thinking. Changes in our society call for policies and programmes in support of enterprising people. Diversity, mobility and connectivity offer new opportunities for enterprising people. Markets are changing, become more accessible and there is less need to be bound physically to one place for an entrepreneur. New avenues for business are open thanks to our improved access to information, our connectivity globally through social media and our ability to travel freely and frequently from one country to another. With less focus on life-long (self) employment people now combine paid work (or unpaid – house- work) with self-employment, or opt for just parttime entrepreneurship. New, hybrid forms of enterprising emerge. This combining of work with self-employment is rather common in developing countries, but in Europe it is a phenomenon not yet reported on in statistics and for which policy makers and service providers have no answers yet. Neither exist clear definitions or classifications. This book may serve as an eye-opener: hybrid entrepreneurs are indeed around us and deserve our attention. The research unit Financial Inclusion and New Entrepreneurship of The Hague University of Applied Science challenges policy makers, academics and service providers (such as educational institutes, business advisers and financial institutions) to pay more attention to hybrid entrepreneurs, those enterprising people who intend to create new values for a fair and sustainable society. They might not yet been seen, but they exist…..
Logistics represents around 10-11% of global CO2 emissions, around 75% of which come from road freight transport. ‘The European Green Deal’ is calling for drastic CO2 reduction in this sector. This requires advanced and very expensive technological innovations; i.e. re-design of vehicle units, hybridization of powertrains and automatic vehicle technology. Another promising way to reach these environmental ambitions, without excessive technological investments, is the deployment of SUPER ECO COMBI’s (SEC). SEC is the umbrella name for multiple permutations of 32 meter, 70 tons, road-train combinations that can carry the payload-equivalent of 2 normal tractor-semitrailer combinations and even 3 rigid trucks. To fully deploy a SEC into the transport system the compliance with the existing infrastructure network and safety needs to be guaranteed; i.e. to deploy a specific SEC we should be able to determine which SEC-permutation is most optimal on specific routes with respect to regulations (a.o. damage to the pavement/bridges), the dimensions of specific infrastructures (roundabouts, slopes) and safety. The complexity of a SEC compared to a regular truck (double articulation, length) means that traditional optimisation methods are not applicable. The aim of this project is therefore to develop a first methodology enabling the deployment of the optimal SEC permutation. This will help transport companies (KIEM: Ewals) and trailer manufactures (KIEM: Emons) to invest in the most suitable designs for future SEC use. Additionally the methodology will help governments to be able to admit specific SEC’s to specific routes. The knowledge gained in this project will be combined with the knowledge of the broader project ENVELOPE (NWA-IDG). This will be the start of broader research into an overall methodology of deploying optimal vehicle combinations and a new regulatory framework. The knowledge will be used in master courses on vehicle dynamics.
The consistent demand for improving products working in a real-time environment is increasing, given the rise in system complexity and urge to constantly optimize the system. One such problem faced by the component supplier is to ensure their product viability under various conditions. Suppliers are at times dependent on the client’s hardware to perform full system level testing and verify own product behaviour under real circumstances. This slows down the development cycle due to dependency on client’s hardware, complexity and safety risks involved with real hardware. Moreover, in the expanding market serving multiple clients with different requirements can be challenging. This is also one of the challenges faced by HyMove, who are the manufacturer of Hydrogen fuel cells module (https://www.hymove.nl/). To match this expectation, it starts with understanding the component behaviour. Hardware in the loop (HIL) is a technique used in development and testing of the real-time systems across various engineering domain. It is a virtual simulation testing method, where a virtual simulation environment, that mimics real-world scenarios, around the physical hardware component is created, allowing for a detailed evaluation of the system’s behaviour. These methods play a vital role in assessing the functionality, robustness and reliability of systems before their deployment. Testing in a controlled environment helps understand system’s behaviour, identify potential issues, reduce risk, refine controls and accelerate the development cycle. The goal is to incorporate the fuel cell system in HIL environment to understand it’s potential in various real-time scenarios for hybrid drivelines and suggest secondary power source sizing, to consolidate appropriate hybridization ratio, along with optimizing the driveline controls. As this is a concept with wider application, this proposal is seen as the starting point for more follow-up research. To this end, a student project is already carried out on steering column as HIL
Community, lab, werkplaats, netwerk, systeem, multi-stakeholder leeromgeving, leerwerkplaats, hybride leeromgeving: de termen buitelen over elkaar heen. Het gaat om omgevingen waarbij betrokkenen vanuit verschillende werelden met elkaar samen werken, leren en innoveren over grenzen heen, vaak rondom een maatschappelijke opgave. Bij de HU is gekozen voor de term ‘rijke leeromgevingen’. Vanwege het samen werken, leren en innoveren over grenzen heen, vinden wij ‘grensoverstijgende leeromgevingen’ een passend concept.