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This textbook provides both profound technological knowledge and a comprehensive treatment of essential topics in music processing and music information retrieval. Including numerous examples, figures, and exercises, this book is suited for students, lecturers, and researchers working in audio engineering, computer science, multimedia, and musicology. The book consists of eight chapters. The first two cover foundations of music representations and the Fourier transform—concepts that are then used throughout the book. In the subsequent chapters, concrete music processing tasks serve as a starting point. Each of these chapters is organized in a similar fashion and starts with a general description of the music processing scenario at hand before integrating it into a wider context. It then discusses—in a mathematically rigorous way—important techniques and algorithms that are generally applicable to a wide range of analysis, classification, and retrieval problems. At the same time, the techniques are directly applied to a specific music processing task. By mixing theory and practice, the book’s goal is to offer detailed technological insights as well as a deep understanding of music processing applications. Each chapter ends with a section that includes links to the research literature, suggestions for further reading, a list of references, and exercises. The chapters are organized in a modular fashion, thus offering lecturers and readers many ways to choose, rearrange or supplement the material. Accordingly, selected chapters or individual sections can easily be integrated into courses on general multimedia, information science, signal processing, music informatics, or the digital humanities.
The textbook provides both profound technological knowledge and a comprehensive treatment of essential topics in music processing and music information retrieval (MIR). Including numerous examples, figures, and exercises, this book is suited for students, lecturers, and researchers working in audio engineering, signal processing, computer science, digital humanities, and musicology. The book consists of eight chapters. The first two cover foundations of music representations and the Fourier transform—concepts used throughout the book. Each of the subsequent chapters starts with a general description of a concrete music processing task and then discusses—in a mathematically rigorous way—essential techniques and algorithms applicable to a wide range of analysis, classification, and retrieval problems. By mixing theory and practice, the book’s goal is to offer detailed technological insights and a deep understanding of music processing applications. As a substantial extension, the textbook’s second edition introduces the FMP (fundamentals of music processing) notebooks, which provide additional audio-visual material and Python code examples that implement all computational approaches step by step. Using Jupyter notebooks and open-source web applications, the FMP notebooks yield an interactive framework that allows students to experiment with their music examples, explore the effect of parameter settings, and understand the computed results by suitable visualizations and sonifications. The FMP notebooks are available from the author’s institutional web page at the International Audio Laboratories Erlangen.
When Speech and Audio Signal Processing published in 1999, it stood out from its competition in its breadth of coverage and its accessible, intutiont-based style. This book was aimed at individual students and engineers excited about the broad span of audio processing and curious to understand the available techniques. Since then, with the advent of the iPod in 2001, the field of digital audio and music has exploded, leading to a much greater interest in the technical aspects of audio processing. This Second Edition will update and revise the original book to augment it with new material describing both the enabling technologies of digital music distribution (most significantly the MP3) and a range of exciting new research areas in automatic music content processing (such as automatic transcription, music similarity, etc.) that have emerged in the past five years, driven by the digital music revolution. New chapter topics include: Psychoacoustic Audio Coding, describing MP3 and related audio coding schemes based on psychoacoustic masking of quantization noise Music Transcription, including automatically deriving notes, beats, and chords from music signals. Music Information Retrieval, primarily focusing on audio-based genre classification, artist/style identification, and similarity estimation. Audio Source Separation, including multi-microphone beamforming, blind source separation, and the perception-inspired techniques usually referred to as Computational Auditory Scene Analysis (CASA).
Music and/as Process brings together ideas about music and the notion of process from different sub-fields within musicology and from related fields in the creative arts as a whole. These can be loosely categorised into three broad areas – composition, performance and analysis – but work in all three of these groups in the volume overlaps into the others, covers a broad range of other musicological sub-fields, and draws inspiration from, non-musicological fields. Music and/as Process comprises chapters written by a mix of scholars; some are leaders in their field and some are newer researchers, but all share an innovative and forward-thinking attitude to music research, often not well represented within ‘traditional’ musicology. Much of the work represented here started as papers or discussions at one of the Royal Musical Association (RMA) Music and/as Process Study Group Annual Conferences. The first section of the book deals with the analysis of performance and the performance of analysis. The historical nature of music and the recognition of pieces as musical ‘works’ in the traditional sense is questioned by the authors, and is a factor in the analyses which address processes in composing, performing, and listening, and the links between these, in three very different but interlinking ways. These three approaches posit new directions and territory for musical analysis. The second section builds on the first, framing performance and/as process from the individual perspectives of the authors and their experiences as practitioners. Music by Berio, de Falla, music by the authors and their collaborators, and music composed for the authors are explored through looking at processes of interpretation and risk; processes which further undermine the ontology of the musical ‘work’ as traditionally understood, and bring the practitioner as active agent to the foreground of an examination of musical discourse. The third section encounters and questions the musical ‘work’ at its inception, exploring composition and/as process through its encounters with performance, analysis, collaboration, improvisation, translation, experimentation and cross-disciplinarity. Through explorations of new music, the way in which practitioners relate to music frame a personal and reflective account of the creative process, finally looking beyond music to musicology.
This book serves as an ideal starting point for newcomers and an excellent reference source for people already working in the field. Researchers and graduate students in signal processing, computer science, acoustics and music will primarily benefit from this text. It could be used as a textbook for advanced courses in music signal processing. Since it only requires a basic knowledge of signal processing, it is accessible to undergraduate students.
Provides an introduction to the nature, synthesis and transformation of sound which forms the basis of digital sound processing for music and multimedia. Background information in computer techniques is included so that you can write computer algorithms to realise new processes central to your own musical and sound processing ideas. Finally, material is inlcuded to explain the way in which people contribute to the development of new kinds of performance and composition systems. Key features of the book include: · Contents structured into free-standing parts for easy navigation · `Flow lines' to suggest alternative paths through the book, depending on the primary interest of the reader. · Practical examples are contained on a supporting website. Digital Sound Processing can be used by anyone, whether from an audio engineering, musical or music technology perspective. Digital sound processing in its various spheres - music technology, studio systems and multimedia - are witnessing the dawning of a new age. The opportunities for involvement in the expansion and development of sound transformation, musical performance and composition are unprecedented. The supporting website (www.york.ac.uk/inst/mustech/dspmm.htm) contains working examples of computer techniques, music synthesis and sound processing.
To produce a Grammy award winning album you need to know what goes into creating great music- both the business and the technical. What is Music Production takes a look at the process, looking at the art of producing and providing insight into the producer's lifestyle. Packed with information the book gives a step by step guide and insight into the process of music production. Whether you're are a professional or just starting out ?What is Music Production? will tell you everything you need to know from choosing the artist, songs, pre production, mixing, mastering to finance and budgeting. Combining the ?how to? with case studies, online assets and interviews the book arms you with the tools, techniques and knowledge to be a top producer.
Compiled by an international array of musical and technical specialists, this book deals with some of the most important topics in modern musical signal processing. Beginning with basic concepts, and leading to advanced applications, it covers such essential areas as sound synthesis (including detailed studies of physical modelling and granular synthesis) ,control signal synthesis, sound transformation (including convolution), analysis/resynthesis (phase vocodor, wavelets, analysis by chaotic functions), object-oriented and artificial intelligence representations, musical interfaces and the integration of signal processing techniques in concert performance.
This text offers a comprehensive introduction to the theory of signals and systems and the way in which this theory is applied to the study of acoustic communication (both digital and analogue): the development of systems for producing, transmitting and processing speech and music signals. The book is designed to make the reader acquainted with the refined and powerful theoretical and practical tools available for this purpose.;The book teaches understanding of such concepts as amplitude and phase spectrum, impulse and frequency response, amplitude and frequency modulation, as well as such methods for the analysis and synthesis of speech and musical systems like LPC and wave shaping. The use of complex numbers is avoided and a knowledge of mathematics beyond that of secondary school level is not necessary.
The last time you whistled a tune or hummed a song-why did you choose that one? You may not consider yourself a musical person, but your little act of unintended music may be the key to unlocking within you a wealth of unsuspected creativity-a kind of creativity that goes way beyond music, too. Lane Arye, PhD, a musician himself, focuses on the music that people do not intend to make. Using the highly regarded psychological model called Process Work, developed by Arnold Mindell, PhD, Arye has been teaching students around the world how to awaken their creativity, using music as the starting point, but including all art forms and ways of expression. The unintentional appears at moments when some hidden part of us, something beyond our usual awareness, suddenly tries to express itself. If we start paying attention to what is trying to happen rather than to what we think should happen, we open the door to self-discovery and creativity. Sometimes what we regard as "mistakes" in self-expression are in fact treasures. The book is rich with real-life stories, ideas, and practical techniques for unlocking creativity, which Arye dispenses with humor, insight, and enthusiasm.