Patent classifications
G05B2219/25168
Systems and Methods for Providing Network Connectivity and Remote Monitoring, Optimization, and Control of Pool/Spa Equipment
Systems and methods for providing network connectivity and remote monitoring, optimization, and control of pool/spa equipment are provided. Internet-of-Things (IoT) functionality is provided for pool and spa equipment in a flexible and cost-effective manner. Network connectivity and remote monitoring/control of pool and spa equipment is provided by various components such as a network communication and local control subsystem installed in pool/spa equipment, and other components. Also disclosed are various control processes (pool logic) which can be embodied as software code installed in any of the various embodiments of the present disclosure.
Remote access gateway configurable control system
A remote access gateway configurable control system. There may be a series of control commands to set or adjust a gateway device's running parameters and modify the behavior of the device or start process action. There may be configuration commands for remote control of the device and server commands for unattended devices.
METHODS AND SYSTEMS FOR IRRIGATION AND CLIMATE CONTROL
Methods and systems are provided for monitoring and controlling irrigation and climate conditions in landscapes (such as, e.g., municipal parks, gardens, and sports fields) and agricultural environments (such as, e.g., open agricultural fields, greenhouses, and other sites growing crops).
Programmable smart thermostat
A thermostat includes a front housing, a rear housing interoperably coupled to the front housing, at least one sensor integrated with the front housing, a display integrated with the front housing, and processing circuitry interoperably coupled to the at least one sensor and the display. The display is a touch-screen display and is configured to demonstrate a user-interface screen. The user-interface screen comprises a horseshoe-shaped temperature scale, a heat set-point control, and a cool set-point control. The heat set-point control and the cool set-point control are positioned on the horseshoe-shaped temperature scale. The horseshoe-shaped temperature scale can be adjusted by dragging at least one of the heat set-point control and the cool set-point control along circumferential edges of the horseshoe-shaped temperature scale.
Device management system
A management system includes an interface board configured to provide bi-directional communication between a networking device and one or more devices, wherein the interface board is coupled to the networking device and connects to one or more devices via one or more communication protocols supported by one or more devices. The management system further includes a management module connected to the interface board with the management module configured to receive, from the interface board, data packets generated by the one or more devices, and transmit the data packets to a remote server.
USER PREFERENCE UTILIZATION IN REMOTE APPLICATIONS
A method of applying a user preference from a user device in a first space to a user controllable device in a second space. The method includes acquiring a user preference associated with a first building system, authorizing communication with at least one user controllable device associated with a second building system, permitting control of a selected controllable device associated with the second building system based on the authorizing, and applying the user preferences associated with the first building system to the selected controllable device associated with the second building system.
CONTROL UNIT FOR MULTIPLE VARIABLE FREQUENCY DRIVES
A control unit is communicatively coupled to multiple variable frequency drives. The control unit includes a controller, and each variable frequency drive may have a respective controller. The controller of the control unit may be communicatively coupled to each variable frequency drive controller and manage and/or configure the multiple variable frequency drives by sending instructions and/or receiving information from the variable frequency drive controllers. In some embodiments, the control unit may be implemented as a part of a mobile computing device, such that the controller may wirelessly and communicatively couple to each variable frequency drive controller. In this manner, managing or changing settings and/or control parameters of multiple variable frequency drives may be performed via a single control unit, avoiding the tedious, repetitive, and inefficient process of using multiple control units.
Methods and apparatus for remotely monitoring and/or controlling a plumbing system
Methods and compositions for controlling and monitoring residential and commercial pumping systems. Preferably, the controlling and monitoring functions include a remotely located controller component capable of displaying alerts and/or from which a user may input commands regulating the functioning of the plumbing system. In particularly preferred examples, the plumbing system is an on command hot water system in which hot water availability, use and energy efficiencies and conservation are monitored and maximized.
RUNNING CONTROL METHOD, RESOURCE SHARING APPARATUS, AND COMPUTER-READABLE STORAGE MEDIUM
A running control method includes determining a remaining running space of a first household appliance, receiving a remaining running space sent by a second household appliance connected with the first household appliance in an Internet of Things, and determining one of the second household appliance and the first household appliance having the remaining running space meeting a preset remaining running space condition as a control-side household appliance.
SYSTEMS AND METHODS FOR INTEGRATING A TEMPORARY BUILDING NETWORK INTO A PERMANENT BUILDING NETWORK
A building network system for a building includes network devices forming a network for the building. Each network device includes a communications interface and a processing circuit. The communications interface is configured to communicate with other network devices of the multiple network devices. The processing circuit stores a first profile and a second profile. The first profile includes a first set of configuration settings that cause the network device to operate according to a first network topology when the first profile is active. The second profile includes a second set of configuration settings that cause the network device to operate according to a second network topology when the second profile is active. The processing circuit is configured to transition the network device from operating according to the first network topology to operating according to the second network topology by deactivating the first profile and activating the second profile.