The purpose of this article is to pragmatically analyze the effects of quality and innovation practices on the organizational performance from the sustainability perspective. Further, the researcher also aims to understand the effect of quality and innovative initiatives on the global sustainability as a whole. The study uses data obtained from a survey of 126 organizations comprising manufacturing (121) and services (5) both in India. The respondents chosen to answer the questions must have sufficient knowledge of innovation practices being deployed in the organizations at large. Descriptive statistics were used in order to determine the sustainability-oriented innovation practices deployed. Exploratory factor analysis (EFA) was applied to extract the factors and to provide the basis for gauging their reliability and validity. In addition, regression analysis was used to see the effect of sustainability-oriented practices on organizational performance as a whole. The sustainability-oriented innovation practices are definitely conducive to foster growth and performance benefits, provided and supported by this research based on theoretical and practical inputs taken from the leading manufacturing hubs in India.
Purpose -Health insurance in India has shown little development. It has not been able to evoke enthusiasm among Indian insurers. Consequently, several reports on Indian health care insurance have been produced. The purpose of this paper is to offer a review of this matter. Design/methodology/approach -Critical review of related published and grey literature. Findings -Almost 79 per cent of health expenditure is borne by private bodies and the rest by the public. Authors argue that to stimulate private health insurance growth, the Indian government should recognize health insurance as a separate line of business and distinguish it from other non-life insurance. Particular emphasis is placed on the present health care scenario in India and international field generally. A global comparison of selected Asian countries, regarding their national incomes and health expenditure in public and private sectors, generates insights. Third party administrators (TPAs) facilitate a cashless health services for their customers and offer back-up services to the insurance companies. Desired strategies and ways of furthering the role of the Insurance Regulatory and Development Authority in acting as a regulator for the purpose of ensuring the industry's smooth functioning is an issue for India's health services. Originality/value -Information about the present complexities in the health insurance market has been gathered from various sources and summarized.
In this paper, we present Generic System Verilog Universal Verification Methodology based Reusable Verification Environment for efficient verification of Image Signal Processing IP's/SoC's. With the tight schedules on all projects it is important to have a strong verification methodology which contributes to First Silicon Success. Deploy methodologies which enforce full functional coverage and verification of corner cases through pseudo random test scenarios is required. Also, standardization of verification flow is needed. Previously, inside imaging group of ST, Specman (e)/Verilog based Verification Environment for IP/Subsystem level verification and C/C++/Verilog based Directed Verification Environment for SoC Level Verification was used for Functional Verification. Different Verification Environments were used at IP level and SoC level. Different Verification/Validation Methodologies were used for SoC Verification across multiple sites. Verification teams were also looking for the ways how to catch bugs early in the design cycle? Thus, Generic System Verilog Universal Verification Methodology (UVM) based Reusable Verification Environment is required to avoid the problem of having so many methodologies and provides a standard unified solution which compiles on all tools. The main aim of development of this Generic and automatic verification environment is to develop an efficient and unified verification environment (at IP/Subsystem/SoC Level) which reuses the already developed Verification components and also sequences written at IP/Subsystem level can be reused at SoC Level both with Host BFM and actual Core using Incisive Software Extension (ISX) and Virtual Register Interface (VRI)/Verification Abstraction Layer (VAL) approaches. IP-XACT based tools are used for automatically configuring the environment for various imaging IPs/SoCs. Although this paper focus on Generic System Verilog Universal Verification Methodology based reusable verification environment built for imaging IPs/SoCs. Same concept can be extended for non imaging IPs/SoCs.
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