Skip to product information
1 of 1

Delay and Uncertainty in Human Balancing Tasks

Delay and Uncertainty in Human Balancing Tasks

Paperback

Regular price £67.47
Regular price Sale price £67.47

Join our rewards scheme and earn 201 reward points on this purchase!

Earn 201 points on this!

Sign in or Sign up!
View full details
  • Release Date: 19/10/2021
  • Barcode: 9783030845810
  • Imprint: Springer Nature
  • Publisher: Springer
Delay and Uncertainty in Human Balancing Tasks

Delay and Uncertainty in Human Balancing Tasks

Standard Edition

Collapsible content

DESCRIPTION

Motivated by the question of how the nervous system deals with these feedback control challenges, there is a discussion of ‘’microchaotic’’ fluctuations in balance control and how robust control can be achieved in the face of uncertainties in the estimation of control parameters.

This book demonstrates how delay differential equations (DDEs) can be used to compliment the laboratory investigation of human balancing tasks. This approach is made accessible to non-specialists by comparing mathematical predictions and experimental observations. For example, the observation that a longer pole is easier to balance on a fingertip than a shorter one demonstrates the essential role played by a time delay in the balance control mechanism. Another balancing task considered is postural sway during quiet standing. 

With the inverted pendulum as the driver and the feedback control depending on state variables or on an internal model, the feedback can be identified by determining a critical pendulum length and/or a critical delay. This approach is used to identify the nature of the feedback for the pole balancing and postural sway examples. Motivated by the question of how the nervous system deals with these feedback control challenges, there is a discussion of ‘’microchaotic’’ fluctuations in balance control and how robust control can be achieved in the face of uncertainties in the estimation of control parameters. The final chapter suggests some topics for future research.

Each chapter includes an abstract and a point-by-point summary of the main concepts that have been established. A particularly useful numerical integration method for the DDEs that arise in balance control is semi-discretization. This method is described and a MATLAB template is provided.

This book will be a useful source for anyone studying balance in humans, other bipedal organisms and humanoid robots. Much of the material has been used by the authors to teach senior undergraduates in computational neuroscience and students in bio-systems, biomedical, mechanical and neural engineering.  




DELIVERY & RETURNS

UK Delivery:

  • Free delivery on all orders of £10 or more.
  • £1.49 delivery fee on orders below £10.
  • UK orders are shipped via Royal Mail 2nd Class.

International Delivery:

  • Flat rate delivery charges vary by country.

Dispatch and Delivery Times:

  • All orders are shipped from our warehouse in Northampton, UK within 48 hours of receipt during working hours.
  • UK mainland orders typically arrive within 3-5 working days via Royal Mail 2nd Class.
  • International estimated delivery times:
  • Europe & Channel Islands: 7 to 10 working days
  • USA: 7 to 15 working days
  • Rest of the World: 9 to 21 working days

View our full delivery infomation here.

  • OVER

    2 MILLION PRODUCTS

  • 60 MILLION CUSTOMERS

    ACROSS 190 COUNTRIES