41 research outputs found

    Integration of multi-sensorial effects in synchronised immersive hybrid TV scenarios

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    [EN] Traditionally, TV media content has exclusively involved 2D or 3D audiovisual streams consumed by using a simple TV device. However, in order to generate more immersive media consumption experiences, other new types of content (e.g., omnidirectional video), consumption devices (e.g., Head Mounted Displays or HMD) and solutions to stimulate other senses beyond the traditional ones of sight and hearing, can be used. Multi-sensorial media content (a.k.a. mulsemedia) facilitates additional sensory effects that stimulate other senses during the media consumption, with the aim of providing the consumers with a more immersive and realistic experience. They provide the users with a greater degree of realism and immersion, but can also provide greater social integration (e.g., people with AV deficiencies or attention span problems) and even contribute to creating better educational programs (e.g., for learning through the senses in educational content or scientific divulgation). Examples of sensory effects that can be used are olfactory effects (scents), tactile effects (e.g., vibration, wind or pressure effects), and ambient effects (e.g., temperature or lighting). In this paper, a solution for providing multi-sensorial and immersive hybrid (broadcast/broadband) TV content consumption experiences, including omnidirectional video and sensory effects, is presented. It has been designed, implemented, and subjectively evaluated (by 32 participants) in an end-to-end platform for hybrid content generation, delivery and synchronised consumption. The satisfactory results which were obtained regarding the perception of fine synchronisation between sensory effects and multimedia content, and regarding the users' perceived QoE, are summarised and discussed.This work was supported in part by the "Vicerrectorado de Investigacion de la Universitat Politecnica de Valencia'' under Project PAID-11-21 and Project PAID-12-21.Marfil, D.; Boronat, F.; González-Salinas, J.; Sapena Piera, A. (2022). Integration of multi-sensorial effects in synchronised immersive hybrid TV scenarios. IEEE Access. 10:79071-79089. https://doi.org/10.1109/ACCESS.2022.319417079071790891

    Perceived synchronization of mulsemedia services

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    Multimedia synchronization involves a temporal relationship between audio and visual media components. The presentation of "in-sync" data streams is essential to achieve a natural impression, as "out-of-sync" effects are often associated with user quality of experience (QoE) decrease. Recently, multi-sensory media (mulsemedia) has been demonstrated to provide a highly immersive experience for its users. Unlike traditional multimedia, mulsemedia consists of other media types (i.e., haptic, olfaction, taste, etc.) in addition to audio and visual content. Therefore, the goal of achieving high quality mulsemedia transmission is to present no or little synchronization errors between the multiple media components. In order to achieve this ideal synchronization, there is a need for comprehensive knowledge of the synchronization requirements at the user interface. This paper presents the results of a subjective study carried out to explore the temporal boundaries within which haptic and air-flow media objects can be successfully synchronized with video media. Results show that skews between sensorial media and multimedia might still give the effect that the mulsemedia sequence is "in-sync" and provide certain constraints under which synchronization errors might be tolerated. The outcomes of the paper are used to provide recommendations for mulsemedia service providers in order for their services to be associated with acceptable user experience levels, e.g. haptic media could be presented with a delay of up to 1 s behind video content, while air-flow media could be released either 5 s ahead of or 3 s behind video content

    360° mulsemedia experience over next generation wireless networks - a reinforcement learning approach

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    The next generation of wireless networks targets aspiring key performance indicators, like very low latency, higher data rates and more capacity, paving the way for new generations of video streaming technologies, such as 360° or omnidirectional videos. One possible application that could revolutionize the streaming technology is the 360° MULtiple SEnsorial MEDIA (MULSEMEDIA) which enriches the 360° video content with other media objects like olfactory, haptic or even thermoceptic ones. However, the adoption of the 360° Mulsemedia applications might be hindered by the strict Quality of Service (QoS) requirements, like very large bandwidth and low latency for fast responsiveness to the users, inputs that could impact their Quality of Experience (QoE). To this extent, this paper introduces the new concept of 360° Mulsemedia as well as it proposes the use of Reinforcement Learning to enable QoS provisioning over the next generation wireless networks that influences the QoE of the end-users

    360° mulsemedia experience over next generation wireless networks - a reinforcement learning approach

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    The next generation of wireless networks targets aspiring key performance indicators, like very low latency, higher data rates and more capacity, paving the way for new generations of video streaming technologies, such as 360° or omnidirectional videos. One possible application that could revolutionize the streaming technology is the 360° MULtiple SEnsorial MEDIA (MULSEMEDIA) which enriches the 360° video content with other media objects like olfactory, haptic or even thermoceptic ones. However, the adoption of the 360° Mulsemedia applications might be hindered by the strict Quality of Service (QoS) requirements, like very large bandwidth and low latency for fast responsiveness to the users, inputs that could impact their Quality of Experience (QoE). To this extent, this paper introduces the new concept of 360° Mulsemedia as well as it proposes the use of Reinforcement Learning to enable QoS provisioning over the next generation wireless networks that influences the QoE of the end-users

    Using olfactory media cues in e-learning – perspectives from an empirical investigation

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    People interact with computers using their senses. Currently, in a digital context, traditional digital media like videos and images used to convey information to users, and these media can be used as a source of information. However, relatively few studies have been conducted on olfactory media as a source of information in a digital context. In this paper, we report on a study that examined the possibility of using olfactory media as a source of information and whether its usage as informational cues enhances learning performance and user Quality of Experience (QoE). To this end, an olfactory-enhanced quiz (web-based) was developed about four countries. The quiz contained different types of questions employing four types of digital media in their contents: text, image, audio and olfactory media. Four scents were used that were considered to be related to the respective countries. Sixty-four participants were invited to our experiment to evaluate this application. Our results revealed that usage of olfactory media synchronised with traditional digital media had a significant impact on learner performance compared to the case when no olfactory media was employed. In respect of user QoE, it was found that olfactory media influenced users positively; moreover, they were passionate about engaging with enhanced olfactory applications in the future

    360° Mulsemedia: A Way to Improve Subjective QoE in 360° Videos

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    Previous research has shown that adding multisensory media-mulsemedia-to traditional audiovisual content has a positive effect on user Quality of Experience (QoE). However, the QoE impact of employing mulsemedia in 360° videos has remained unexplored. Accordingly, in this paper, a QoE study for watching a 360° video-with and without multisensory effects-in a full free-viewpoint VR setting is presented. The parametric space we considered to influence the QoE consists of the encoding quality and the motion level of the transmitted media. To achieve our research aim, we propose a wearable VR system that provides multisensory enhancement of 360° videos. Then, we utilise its capabilities to systematically evaluate the effects of multisensory stimulation on perceived quality degradation for videos with different motion levels and encoding qualities. Our results make a strong case for the inclusion of multisensory effects in 360° videos, as they reveal that both user-perceived quality, as well as enjoyment, are significantly higher when mulsemedia (as opposed to traditional multimedia) is employed in this context. Moreover, these observations hold true independent of the underlying 360° video encoding quality-thus QoE can be significantly enhanced with a minimal impact on networking resources

    Especificación, implementación y evaluación de soluciones de sincronización multimedia híbrida (broadcast/broadband) e inter-destinatario para posibilitar nuevas experiencias televisivas enriquecidas, personalizadas, inmersivas y compartidas.

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    [ES] Actualmente, existe una gran variedad de tecnologías de distribución de contenidos multimedia, de dispositivos de consumo, así como de tipos de contenidos. En cuanto a tecnologías de distribución, dichos contenidos se pueden enviar bien a través de redes broadcast, como las redes DVB, o bien a través de redes broadband, como las redes IP (por ejemplo, a través de Internet). La coordinación y convergencia entre los dos tipos de tecnologías para distribuir contenidos relacionados ofrece un gran potencial a los proveedores de contenidos, así como grandes beneficios a los consumidores (una prueba de ello es el estándar Hybrid Broadcast Broadband TV o HbbTV). Sin embargo, la recepción de contenidos relacionados procedentes de diferentes redes híbridas (broadcast/broadband) conlleva una variabilidad de retardos significativa, por lo que se deben superar una serie de retos importantes, como, por ejemplo, la necesidad de mecanismos que garanticen un consumo sincronizado de dichos contenidos, bien en un mismo dispositivo o bien en distintos dispositivos (locales o remotos). Se han especificado, implementado y evaluado soluciones de sincronización de los procesos de reproducción de contenidos híbridos (prevenientes de redes broadcast y/o broadband) tanto en entornos multidispositivo, entre dispositivos locales (Inter-Device Synchronization o IDES), como en entornos multiusuario, entre destinatarios distribuidos en red (Inter-Destination Media Synchronization o IDMS), incluyendo la sincronización de efectos multisensoriales. Se ha diseñado e implementado una plataforma extremo-a-extremo para la generación, distribución (adaptativa) y consumo de contenidos híbridos relacionados, tanto en un mismo dispositivo como en múltiples dispositivos locales (por ejemplo, escenario multipantalla) o remotos (por ejemplo, TV Social). Se han generado y preparado contenidos multimedia tradicionales (2D) y omnidireccionales (360), enriquecidos con efectos multisensoriales que mejoran el grado de realismo y la inmersividad de los usuarios. La plataforma es compatible con el estándar HbbTV y, además, incluye soluciones eficientes para aspectos clave que no están especificados en dicho estándar, pero que son necesarios para la implementación satisfactoria de servicios de TV híbridos y multidispositivo en la misma, como, por ejemplo: la necesidad de un buffer para el contenido broadcast (existente y opcional hasta la especificación HbbTV 2.0.2); mecanismos de señalización, asociación y descripción de contenido disponible y relacionado con el contenido principal; mecanismos de coordinación e interacción entre los dispositivos de consumo; o soluciones de sincronización para alinear en el tiempo el consumo de contenidos de forma satisfactoria. Los resultados obtenidos en la evaluación realizada muestran que el nivel de sincronización adquirido entre los procesos de reproducción de los diversos tipos de contenido disponibles a través de distintas tecnologías de transmisión alcanza unos valores suficientes para proporcionar al usuario un consumo con un nivel de asincronías imperceptible. Dicha precisión alcanzada ha resultado en una QoE para el consumidor muy satisfactoria, ofreciéndole al mismo un completo ecosistema de consumo de contenidos que incluye tanto contenido multimedia tradicional, como contenido omnidireccional y mulsemedia.[CA] Actualment, hi ha una gran varietat de tecnologies de distribució de contingut multimèdia, dispositius de consum, així com tipus de contingut. Pel que fa a les tecnologies de distribució, aquest contingut es pot lliurar a través de xarxes de difusió, com ara xarxes DVB, o a través de xarxes de banda ampla, com les xarxes IP (per exemple, a través d'Internet). La coordinació i convergència entre els dos tipus de tecnologies per distribuir continguts relacionats ofereix un gran potencial als proveïdors de continguts, així com grans beneficis per als consumidors (una prova d'això és l'estàndard Hybrid Broadcast Broadband TV o HbbTV). Tanmateix, la recepció de continguts relacionats des de diferents xarxes híbrides (emissió/banda ampla) comporta una important variabilitat de retard, per la qual cosa s'han de superar una sèrie de reptes importants, com la necessitat de mecanismes que garanteixin el consum sincronitzat d'aquests continguts, ja siga en el mateix dispositiu. o en diferents dispositius (locals o remots). S'han especificat, implementat i evaluat solucions de sincronització per a processos de reproducció de continguts híbrids (xarxes de broadcast i/o de banda ampla) tant en entorns multidispositiu, entre dispositius locals (Inter-Device Synchronization o IDES), com en entorns IDMS (Inter-Destination Media Synchronization o IDMS), incloent la sincronització d'efectes multisensorials. S'ha dissenyat i implementat una plataforma d'extrem a extrem per a la generació, distribució (adaptativa) i consum de contingut híbrid relacionat, tant en un sol dispositiu com en múltiples locals (p. ex., escenari multipantalla) o remots (p. ex., Social TV). dispositius. S'han generat i preparat contingut multimèdia tradicional (2D) i omnidireccional (360), enriquit amb efectes multisensorials que milloren el grau de realisme i immersivitat dels usuaris. La plataforma és compatible amb l'estàndard HbbTV i, a més, inclou solucions eficients per a aspectes clau que no s'especifiquen en aquest estàndard, però que són necessaris per a la implantació amb èxit de serveis de televisió híbrids i multidispositiu en el mateix, com ara: la necessitat per a un buffer per a continguts de difusió (existent i opcional fins a HbbTV 2. 0.2); mecanismes de senyalització, associació i descripció dels continguts disponibles i relacionats amb el contingut principal; mecanismes de coordinació i interacció entre dispositius de consum; o solucions de sincronització per alinear en el temps el consum de continguts de manera satisfactòria. Els resultats obtinguts en l'avaluació realitzada mostren que el nivell de sincronització adquirit entre els processos de reproducció dels diferents tipus de continguts disponibles a través de diferents tecnologies de transmissió assoleix valors suficients per proporcionar a l'usuari un consum amb un nivell d'asincronies imperceptibles. La precisió aconseguida ha donat com a resultat una QoE molt satisfactòria per al consumidor, oferint-li un ecosistema complet de consum de continguts que inclou tant contingut multimèdia tradicional com contingut omnidireccional i mulsemedia.[EN] Currently, there is a wide variety of multimedia content distribution technologies, consumer devices, as well as types of content. In terms of distribution technologies, such content can be delivered either over broadcast networks, such as DVB networks, or over broadband networks, such as IP networks (e.g. over the Internet). The coordination and convergence between the two types of technologies to distribute related content offers great potential to content providers, as well as great benefits to consumers (a proof of this is the Hybrid Broadcast Broadband TV or HbbTV standard). However, the reception of related content from different hybrid networks (broadcast/broadband) entails significant delay variability, so a number of important challenges must be overcome, such as the need for mechanisms to ensure synchronized consumption of such content, either on the same device or on different devices (local or remote). We have specified, implemented and evaluated synchronization solutions for hybrid content playback processes (broadcast and/or broadband networks) both in multi-device environments, between local devices (Inter-Device Synchronization or IDES), and in multi-user environments, between distributed network recipients (Inter-Destination Media Synchronization or IDMS), including the synchronization of multi-sensory effects. An end-to-end platform has been designed and implemented for the generation, distribution (adaptive) and consumption of related hybrid content, both on a single device and on multiple local (e.g., multiscreen scenario) or remote (e.g., Social TV) devices. Traditional (2D) and omnidirectional (360) multimedia content has been generated and prepared, enriched with multisensory effects that enhance the degree of realism and immersiveness for users. The platform is compatible with the HbbTV standard and, in addition, includes efficient solutions for key aspects that are not specified in that standard, but are necessary for the successful implementation of hybrid and multi-device TV services on it, such as: the need for a buffer for broadcast content (existing and optional up to the HbbTV 2. 0.2); mechanisms for signaling, association and description of content available and related to the main content; coordination and interaction mechanisms between consumption devices; or synchronization solutions to align in time the consumption of content in a satisfactory way. The results obtained in the evaluation carried out show that the level of synchronization acquired between the reproduction processes of the different types of content available through different transmission technologies reaches sufficient values to provide the user with a consumption with an imperceptible level of asynchronies. The accuracy achieved has resulted in a very satisfactory QoE for the consumer, offering him a complete content consumption ecosystem that includes traditional multimedia content as well as omnidirectional and mulsemedia content.Marfil Reguero, D. (2022). Especificación, implementación y evaluación de soluciones de sincronización multimedia híbrida (broadcast/broadband) e inter-destinatario para posibilitar nuevas experiencias televisivas enriquecidas, personalizadas, inmersivas y compartidas [Tesis doctoral]. Universitat Politècnica de València. https://doi.org/10.4995/Thesis/10251/18574
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